ejemplo de acoples excentricos
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VIBRATORY EQUIPMENTFeeders Conveyors Table-Packers
Bulk Bag Fill ing Systems Bag Unloading Station
VIBRATORS / SHAKERSAjax Shaker QE Vibrator
RE Rotary Electric Vibrator
Pneumatic Vibrators
CorporateBulletin
AjaxShaker
REVibrator
QEVibrator
TablePackerVibrator
LCConveyor
BF Feeder BBU BulkBag
CaseHistory
Renold Inc. P.O. Box A Westfield , N.Y. 14787-0546Phone: 716-326-3121 Fax: 716-326-8243PHONE TOLL FREE: 1-800-879-AJAX (2529)
In Canada:Renold Canada Ltd., 121 Roy Blvd. Brantford, Ontario N3T 5N4Phone: 519-756-6118 Fax: 519-756-1767Toll Fr ee: Phone 1-800-265-9970 * 1-800-265-8470 * Fax: 1-800-661-6118
EquipmentAds
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Reduced warehouse space for storage
Reduced freight costs
Fewer containers required
Fewer containers to handle
Put equipment to w ork
...on your most demanding application.
Bag/Box Filling
& Weighing Stations
Renolds filling stations are unique because they are always
weighing. In addition, they provide proper bulk materials
compaction, resulting in:
Rotary Electric Vibrators
New USA product
Factory support
engineering
More value and qualityper pound of force output
Continuous duty
Inverter duty rated
CE certification
BRUTE FORCE FEEDERSRenolds Vibratory Feeders meter bulkmaterials into the process at rates of1,000 lbs. per hour through 1,400 TPH.Our feeders are custom designed tomeet application needs. Ruggedequipment produces the consistentflow rates and trouble-free operationneeded for efficient processing.
VIBRATORY CONVEYORSFor more than half a century, Renold AJAXVibrating Conveyors have been used to transfergranular and bulk materials. The systems canbe modified to perform many functions, likescreening, scalping, drying, cooling, grading anddewatering. The conveyors are designed forrugged heavy-duty applications and will provideyears of continuous trouble-free operation. Our
engineers can design a conveyor to meetspecific needs in widths from 6 to 60 and inlengths up to 70.
VIBRATORY TABLES/PACKERSAUTOMATED WEIGH FILL SYSTEMSRenolds custom engineered VibratoryTables/Packers provide more material in lessspace while filling and weighing materialssimultaneously. Our units provide the propervibration, eliminating voids and increasing thedensity of materials being packaged. Weutilize a packer with our packaging systems to
get 20% to 50% more material in thecontainer. In addition, the units can continueto weigh during the vibration cycle.
ELECTRIC VIBRATORSRenolds Rotary Electric Vibrators areeconomical and reliable motor-basedvibratory drives. No other vibrator deliversmore value and quality per pound of forceoutput. We offer a variety of modelsoperating at frequencies of 900, 1200,1800 and 3600 RP M. Adjustable eccentric
weights allow you to vary the output force.The R/KB-KC Series can also be used asdrives for vibratory feeders, screeners andcompaction tables.
SHAKER DRIVESThroughout the world, Renolds AJAX ShakerDrives are recognized as energy efficient unitsthat are adaptable to countless new andunusual application possibilities. Standardapplications include open and enclosed panconveyors, screeners, feeders, packing tables,dewatering units, tampers, electronic test tables
and cable laying plows. Seven basic sizes are
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R/KBC06
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Rotary Electric
VibratorsApplications for Flow Aids,
Densification and Metering
KBM models match
competitive mounting holes
Factory support engineering
More value and quality per
pound of force output
Continuous duty
Inverter duty rated
CE certification
SIZING EXAMPLESAND EQUATIONSFOR SELECTINGVIBRATORS
NEWModel KBC
UP TO 25 TONS
OF FORCE
OUTPUT
KBM KBC
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Flow Aids (page 3)When moisture, temperature or grain size of material
causes irregular flow through bins, hoppers, chutes, etc.,
vibration can be introduced to solve problems. AJAX
vibrators break up bridging in storage vessels, keeping
material in continuous motion and thus minimizing friction
along the transporting body. As a general rule, both1800 and 3600 RPM are utilized pending the type
of application.
Densification or Shakeout (page 4)Dual counter-rotating vibrators
produce a rectilinear motion,
which is ideal for increasing the
density of material in a
container. The result is
20-50% more material in the
container and a reduction in
containers, warehouse space
and freight costs. The same
principle in reverse will
shake-out foundry molds. Refer
to the densification chart for
Metering or Transporting (page 5)Dual counter rotating vibrators attached to feeders,screeners, sorters and conveyors will meter and transportmaterials. Both vibrators synchronize producing arectilinear motion at 30 degrees to the flow path. Specialconsideration must be given to fabricating a rugged
mounting drive triangle as the vibrators must be attachedto the same one-piece mounting structure. Here, 1200and 900 RPM are generally the recommend frequencychoices. Special attention must be given to the structuresmoment of inertia when exceeding 1200 RPM. A dualmagnetic starter having a single starter with two overloads
is required for operation(refer to page 10 diagram).Other enhancements
include: variable speed con-trol for tuning the flow rate orfast/dribble feed control anddynamic braking to cut offthe flow immediately.
Why buy competitive brandswhose services offerlimited experience usingib t R ld d t
AJAXR/KBM and R/KBC Series
Rotary Electric Vibrators
The Renold AJAX R/KBM and R/KBC Series is the most economical vibrator
drive available in the North American market today. No other electric vibrator
motor delivers more value and quality per pound of force output. The new
KBM series matches competitive mounting holes. Our full line consists of
models operating at frequencies of 900, 1200, 1800 and 3600 RPM.
Eccentric weights can be manually adjusted to vary the centrifugal force
from 0 through 100%. A suitable model can be supplied for most any type
application or environment, and are rated for continuous operation.
Special features include: foot mounting, cast metal housing, Oring groovesealed end covers, increased corrosion protection, external ground lug
with CE certification and optional 304SS end covers.
NOTE: 700 and 1000 RPM is also available, consult factory.
ApplicationsThe AJAX R/KBM and R/KBC Series Rotary Electric Vibrators are specifically
suited for flow aids, densification, shake-out and metering of solid materials.
Examples defined are related to Brute Force designs.
TABLE OF
CONTENTS
R/KBM and R/KBC Series . . . . . . 2Flow Aids . . . . . . . . . . . . . . . . . . . 3
Densification or Shake-out . . . . . . 4
Metering or Transporting . . . . . . . 5
3600 RPM Single Phase 110/1/60 &
230/460/3/60 . . . . . . . . . . . . . . . . . 6
1800 RPM 4 Pole 230/460/3/60 . . 7
1200 RPM 6 Pole 230/460/3/60 . . 8
900 RPM 8 Pole 230/460/3/60 . . . 9
Setting of Eccentric Weight and
Wiring Diagrams . . . . . . . . . . . . . 10
Application Data Sheet and
Capacitor Starter 115V . . . . . . . . 11
Fl Aid
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Flow AidsModel selection or sizing of Renold AJAX electric motorvibrators for bins, hoppers and silos is based upon aratio of product weight in the sloped wall portion of thevessel and the force output (Fo) of the vibrator. Thegeneral rule should be 10:1, i.e., ten pounds of product
to one pound of force output. Generally, the followingfrequencies are used as flow aids:
Frequency Condition Problem
3600 free flowing dry, continuousdischarging,uniform product size
1800 irregular flow high moisture
content, sticky,intervals betweendischarges
Determine the volume (V) of product in the sloped wall.
[Conical Shape]V = 1.0472 x vertical height x (R2 + (Rr) + r2)
Where: R = radius of the cone at the inletr = radius of the cone at the discharge
[Square or Rectangular Shape]
V =vertical height
x (B + Bb + b)
3
Where: B = area of the pyramid at the inletb = area of the pyramid at the discharge
Convert all dimensions to feet. Multiply the calculatedvolume by the bulk density of the product to find thetotal weight.
Determine the vertical height (Vh):
Where: Vh = tan O x X
Example: Find the weight of material in the slopedwall of a 10 ft diameter silo having a 60 degree slopeand a 12 inch discharge. The product will be dry free
fl i l ti ll t if i i ith b lk d it
Find the volume of a conical vessel:V = 1.0472 x 7.794 ft x (52 + (5 x 1) + 12)
= 1.0472 x 7.794 ft x (31)= 253 cu ft
Find the weightof product:W = 253 x 33 pcf
= 8,349 lbs
Most bins and hoppers only require one (1) vibratormounted 1/3 the total sloped distance from thedischarge as shown. When product is very difficult toflow or the capacity in the sloped portion exceeds 25tons, two or three vibrators may be required.The vibrators should be staggered at 90 degreesabout the initial vibrator at 1/4 intervals thereafter.When in operation each vibrator should not bepermitted to turn on simultaneously, but ratherintermittently. The use of an on/off timer will be required.
INITIALVIBRATOR
HIP
Max product (LBS) Renold AJAXIn sloped section model
700 R/VBM-2M
2,000 R/KBM-1.5-24,000 R/KBM-2.5-2
5,000 R/KBM-4-2
10,000 R/KBM-6-2
20,000 R/KBM-12-2
28,000 R/KBM-18-2
35,000 R/KBM-20-2
D ifi ti Refer to the chart below and scan the density column
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Densificationor Shake-Out
Vibration is created by applying an alternating force to
an isolated mass. The two critical factors when
determining the proper vibration are amplitude andfrequency. Amplitude is the distance through which the
mass is moved from one extreme to another. Frequency
is the number of times the mass is moved in a given
period of time (RPMs). G-level is referred to as the ratio
of force required to change the motion of a body
(mass). Whereby, mass resists any change in motion.
When dual vibrators are used to produce a rectilinearmotion (up/down) for densification, we can calculate the
size/model of a vibrator by knowing the material and its
bulk density.
Stroke =Fo x C
Twt x f2
G-level =
Fo
Twt
Pre-DesignExample: Find the vibrator size for a packer needed to
densify a 48 square container with pallet having a
target weight of 2500 lbs. The material is a granular
powder @ 60 pcf. Assume the vibratory deck weight
to be 850 lbs., and vibrators weighing 200 lbs each.
Refer to the chart below and scan the density column
with respect to type of material. We find the optimum
frequency is 1200 RPM @ 2.5 Gs.
Twt = 850 lbs + 400 lbs + 2500 lbsdeck vibrators load
= 3750 lbs
If G-level equals Fo divided by Twt, thenFo = G-level x Twt
Find the vibrator Fo: Fo =2.5 Gs x 3750 lbs
2 vibrators
= 4687.5 lbs, each vibrator
Refer to the 1200 RPM chart (page 8) and scan downthe force output column and match the Fo calculated.We find the vibrators should be R/KBC-3-400-6. Themaximum Fo of each vibrator is 5628 lbs. Therefore,the eccentric setting should be set at the followingpercentage:
% =4687.5
5628
= 83%
NOTE: The energy level of 2.5 Gs is very large, and inthis case we calculated for a full load vibration cycle. Ifthe container requires vibration at various steps duringthe filling process, the eccentric setting should bereduced to match the first vibration setpoint. Siderestraints may be required to contain the pallet/
container to prevent walking off the vibratory deck, asthe flow into the box may not be directly into the center.
NotRecommended
900/3600
1800/36003600
900/1200
900/1200
900/1200
Type
Industry
Foods
Feeds
Chemicals
F d
Product
(general)
Croutons
Powders/Resins
Pellets/Feed
Plastic
Powders/Lime
Powders/Metal
Sand (air set)
S d ( )
Density
(ppcf)
1-15
20-6035-50
60-90
100-200
100
80 100
Recommended Frequency/G-Level
Optimum
1200/2.5
900/2.0900/2.0
1200/2.0
1200/2.5
1800/2.0
3600/2.0
3600/1.0
1800/1 5
Acceptable
1800/2.5
1200/2.01800/2.0
900/2.0
3600/2.0
1800/2.0
1800/2.0
3600/1 0
resultantstroke( )
Metering or Transporting
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Metering or Transporting
When dual motor vibrators are directly attached to a
trough it is referred to as a Brute Force design. It is
very simple to calculate the necessary vibrator
size/model by finding the required force output (Fo), ifyou can project the desired stroke. The stroke, also
referred to as amplitude (peak to peak), is the resultant
action produced by these vibrators when properly
isolated. The following chart depicts the maximum
stroke electric vibrators should operate at a specific
frequency in a brute force design. As a rule of thumb,
the feed rate will most likely be considered to be
approximately 35 FPM.
Stroke =Fo x C
Twt x f2
Where: Fo = the total force output of the vibrator(s)
C = a constant having a numerical
value of 70470.91
Twt = total weight, combined value of thetrough, vibrator(s) weight and load
f2 = frequency squared
Pre-DesignExample: Find the vibrator size for a feeder needing to
deliver 75 TPH of sand @ 100 pcf. Assume the pan
width to be 30 wide and 72 long. Also for this exampleassume the trough weight is 495 lbs and 1200 RPM
vibrators @ 150 lbs each.
Find the depth of product flow
75 TPH =60 sec. x 1.0 x 30 wide x depth x 100 pcf x 35 FPM
144 in.2 x 2000 lbs
Find the load of material in the trough:
3.43 x 30 x 72x 100 pcf = 428.75 lbs
12 x 12 x 12
Find the total vibrated weight Twt:495 lbs + 300 lbs + 428 lbs = 1223 lbstrough vibrators load
Stroke 0.25 =2Fo x 70470.91 2 vibrators
1223 lbs x 12002
Fo = 3123 lbs minimum for each vibrator
Refer to the 1200 RPM chart (page 8) and scan downthe force output column and match the Fo calculated.We find the vibrators should be R/KBC3-350-6, havinga maximum force output of 3988 lbs. Since thecalculated Fo needs to be 3123 lbs, the vibratorscan be set to the following percentage.
NOTE: In this pre-design there were assumptions madesuch as trough and vibrator weight. Always re-checkyour calculations with real values.
% =3123
3988
= 78%
Remove the end covers and change the eccentric
percentage (page 10). Keep the covers off and start the
vibrators (momentarily) to verify each vibrator is counter
rotating, i.e. one running CW and the other CCW.
BE SAFEinsure there isnt any person or obstacle
near the vibrators during this check. Once rotation is
correct, disconnect power, and install both end covers.
The equipment is ready for final testing.
RPM Max. Stroke
900 0.375
1200 0.250
1800 0.125
3600 0.063
R/KBM
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Model HP Max Amp Draw Wt Unbal Draw A B C D E F H K N P SForce Force (lbs) (in-lbs) Ref dia.(lbs) (lbs) 230 460
R/VBM 2M 0.04 71 0.2 .08 3.5 0.2 #1 1.26 3.62 0.35 2.40 2.17 4.37 1.34 5.75 0.87 2.76 0.28
R/KBM 1.5-2 0.20 226 0.6 0.3 10 0.6 #1 2.44 4.17 0.39 4.13 3.89 5.91 2.36 8.35 1.38 5.71 0.35
R/KBM 2 5 2 0 24 421 0 6 0 3 11 1 1 #1 2 95 4 13 0 39 4 13 3 89 5 91 2 36 8 35 1 38 5 71 0 35
Mode HP Max Amp Wt Unbal Draw A B C D E F H K N P SForce Draw (lbs) (in-lbs) Ref(lbs) 115/1/60
R/VBM 2MS 0.04 71 0.15 3.5 0.2 #1 1.26 3.62 0.35 2.40 2.17 4.37 1.34 5.75 0.87 2.76 0.28
R/KBM 1.5-2S 0.20 226 1.40 10 0.6 #1 2.44 4.17 0.39 4.13 3.89 5.91 2.36 8.35 1.38 5.71 0.35
R/KBM 2.5-2S 0.24 421 1.50 11 1.1 #1 2.95 4.13 0.39 4.13 3.89 5.91 2.36 8.35 1.38 5.71 0.35
R/KBM 4-2S 0.24 615 1.50 12 1.7 #1 2.76 5.12 0.39 4.13 3.89 5.91 2.36 8.35 1.38 5.71 0.35
R/KBM 6-2S 0.36 1003 2.80 20 2.7 #1 3.54 4.92 0.47 5.12 4.72 6.54 2.95 10.24 1.57 7.28 0.51
R/KBM 12-2S 0.68 2168 4.50 46 5.9 #1 3.94 6.29 0.63 5.95 5.35 7.48 3.35 11.34 1.57 8.07 0.51
TYPE R/KBM
110/1/60 w/CAPACITOR
TYPE R/KBM
230/460/3/60
R/KBM
3600 RPMSingle Phase 110/1/60
R/KBM
1800 RPMSingle Phase 110/1/60
3600 RPM2 Pole 230/460/3/60
*Technical data upon request
R/KBM 6-4S 0.14 259 1.0 12 0.7 #1 2.44 4.17 0.39 4.13 3.89 5.91 2.36 9.06 1.38 5.71 0.35
R/KBM 16-4S 0.27 679 1.8 22 1.8 #1 3.54 4.92 0.47 5.12 4.72 6.54 2.95 11.73 1.57 7.28 0.51
TYPE R/KBM DWG #1
1800 RPM
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TYPE R/KBM TYPE R/KBC1 thru R/KBC3 TYPE R/KBC5 thru R/KBC11
Model HP Max Amp Draw Wt Unbal Draw A B C D E F G H K N O P SForce (lbs) (in-lbs) Ref dia.(lbs) 230 460
R/KBM 2.5-4 0.11 97 0.4 0.2 10 1.1 #1 2.44 4.17 0.39 4.13 3 .89 5 .91 5.12 2.36 8.35 1.38 1.18 5.71 0.35
R/KBM 4-4 0.14 194 0.4 0.2 11 2.1 #1 2.44 4.17 0.39 4.13 3.89 5.91 5.12 2.36 8.35 1.38 1.18 5.71 0.35
R/KBM 6-4 0.14 259 0.4 0.2 13 2.8 #1 2.44 4.17 0.39 4.13 3 .89 5.91 5.12 2.36 9.06 1.38 1.18 5 .71 0.35
R/KBM 16-4 0.24 679 0.8 0.4 24 7.4 #1 3.54 4.92 0.47 5.12 4 .72 6 .54 6.3 2.95 11.73 1.57 1.18 7 .28 0.51
R/KBM 30-4 0.42 1294 1.1 0.6 55 14.1 #1 3.94 6.29 0 .63 5.95 5.35 7.48 7.36 3.35 13.78 1.57 1 .30 8 .07 0.51
R/KBM 40-4 0.46 1618 1.2 0.6 57 17.6 #1 3.94 6.29 0 .63 5.95 5.35 7.48 7.36 3.35 13.78 1.57 1 .30 8 .07 0.51
R/KBM 55-4 0.68 2297 1.6 0.8 77 25 #1 4.72 6.69 0.79 7.13 6 .29 8.27 8.5 3.98 13.98 1.69 1 .57 9 .29 0.67
R/KBM 90-4 0.81 3559 2.0 1.0 90 38.7 #1 4.72 6.69 0.79 7.13 6.29 8.27 8.5 3.98 16.34 1.69 1.57 9.29 0.67
R/KBC 1-55-4 0.7 1516 1.8 0.9 76 16.5 #2 5.51 6.69 0 .79 7.13 6.89 8.27 8.5 3.98 13.98 1.69 1 .38 9 .29 0.67
R/KBC 1-90-4 0.9 2447 2.28 1.14 90 26.6 #2 5.51 6.69 0.79 7.13 6.89 8.27 8.5 3.98 16.34 1.69 1.38 9.29 0 .67
R/KBC 2 120 4 1 5 3224 3 1 5 112 35 1 #2 5 51 6 69 0 98 8 62 7 36 8 66 10 16 4 8 17 56 1 77 1 77 10 24 0 87
1800 RPM4 Pole 230/460/3/60
TYPE R/KBM DWG #1 TYPE R/KBC1 thru R/KBC3
DWG #2
TYPE R/KBC5 thru R/KBC11
DWG #3
1200 RPM
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Model HP Max Amp Draw Wt Unbal Draw A B C D E F G H K N O P SForce (lbs) (in-lbs) Ref dia.(lbs) 230 460
R/KBM 6-6 0.12 129 0.6 0.3 13 3.2 #1 2.44 4.17 0.39 4.13 3.89 5.91 2.36 9.06 1.38 5.71 0.35
R/KBM 15-6 0.19 291 1.2 0.6 25 7.1 #1 3.54 4.92 0.47 5.12 4.72 6.54 2.95 11.73 1.57 7.28 0.51
R/KBM 30-6 0.32 582 0.8 0.4 55 14.2 #1 3.94 6.29 0.63 5.95 5.35 7.48 3.35 13.78 1.57 8.07 0.51
R/KBM 40-6 0.35 712 1.0 0.5 57 17.4 #1 3.94 6.29 0.63 5.95 5.35 7.48 3.35 13.78 1.57 8.07 0.51
R/KBM 60-6 0.43 1035 1.2 0.6 77 25.3 #1 4.72 6 .69 0.79 7.13 6.29 8 .27 8.5 3.98 13.98 1.69 1.57 9.29 0.67
R/KBM 90-6 0.61 1535 1.8 0.9 90 37.6 #1 4.72 6 .69 0.79 7.13 6.29 8 .27 8.5 3.98 16.34 1.69 1.57 9.29 0.67
R/KBC 1-60-6 0.5 967 1.36 0.68 76 23.7 #2 5.51 6 .69 0.79 7.13 6.89 8 .27 8.5 3.98 13.98 1.69 1 .38 9.29 0.67R/KBC 1-90-6 0.7 1226 1.9 0.95 90 30 #2 5.51 6 .69 0.79 7.13 6.89 8 .27 8.5 3.98 16.34 1.69 1.38 9.29 0.67
R/KBC 2-165-6 1.1 1985 2.6 1.3 126 48.6 #2 5.51 6.69 0.98 8.62 7.36 8.66 10.16 4.8 19.21 1.77 1.77 10.24 0.87
R/KBC 2-200-6 1.2 2279 3.2 1.6 143 55.8 #2 5.51 6.69 0.98 8.62 7.36 8.66 10.16 4.8 21.42 1.77 1.77 10.24 0.87
R/KBC 2-240-6 1.2 2848 3.2 1.6 154 69.7 #2 5.51 6.69 0.98 8.62 7.36 8.66 10.16 4.8 21.42 1.77 1.77 10.24 0.87
R/KBC 3-325-6 1.9 4264 4.6 2.3 209 104.3 #2 5.51 6.69 1.06 9.41 8.27 10.83 10.94 5.2 22.83 2.76 2.17 12.2 0.87
R/KBC 3-350-6 1.9 4592 4.6 2.3 227 112.4 #2 5.51 6.69 1.06 9.41 8.27 10.83 10.94 5.2 25 2.76 2.17 12.2 0.87
R/KBC 3-400-6 1.9 5628 4.6 2.3 238 137.7 #2 5.51 6.69 1.06 9.41 8.27 10.83 10.94 5.2 25 2.76 2.17 12.2 0.87
R/KBC 5-520-6 2.8 7009 8.4 4.2 304 171.5 #3 3.27 9.02 1.38 11.14 9.84 12.2 12.8 6.18 25.59 2.56 2.44 15.35 0.87
R/KBC 5-815-6 4 10755 10 5 423 263.2 #3 3.27 9.02 1.38 12.17 9.84 12.2 13.98 6.77 27.83 2.56 2.44 15.35 0.87
R/KC8 800-6 4.90 14237 11.4 5.7 507 348.4 #3 4.13 11.02 1.18 14.17 12.80 14.57 6.89 27.36 3.15 14.96 1.02
R/KC8 900-6 4.90 15952 11.4 5.7 525 390.3 #3 4.13 11.02 1.18 14.17 12.80 14.57 6.89 27.36 3.15 14.96 1.02
1200 RPM6 Pole 230/460/3/60
TYPE R/KBM TYPE R/KBC1 thru R/KBC3 TYPE R/KBC5 thru R/KBC11
TYPE R/KBM DWG #1 TYPE R/KBC1 thru R/KBC3
DWG #2
TYPE R/KBC5 thru R/KBC11
DWG #3
900 RPM
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Model HP Max Amp Draw Wt Unbal Draw A B C D E F G H K N O P S
Force (lbs) (in-lbs) Ref dia.(lbs) 230 460
R/KBC 1-60-8 0.4 544 1.3 0.65 76 23.7 #2 5.51 6.69 0.79 7.13 6 .89 8.27 8.5 3.98 13.98 1.69 1.38 9.29 0.67
R/KBC 1-90-8 0.5 845 1.5 0.75 90 36.7 #2 5.51 6.69 0.79 7.13 6 .89 8.27 8.8 3.98 16.34 1.69 1.38 9.29 0.67
R/KBC 2-165-8 0.7 1602 2.4 1.2 126 69.7 #2 5.51 6.69 0.98 8.62 7.36 8.66 10.16 4.8 19.21 1.77 1.77 10.24 0.87
R/KBC 2-200-8 0.8 1971 2.8 1.4 143 85.7 #2 5.51 6.69 0.98 8.62 7.36 8.66 10.16 4.8 21.42 1.77 1.77 10.24 0.87
R/KBC 2-240-8 0.8 2350 2.8 1.4 154 102.2 #2 5.51 6.69 0.98 8.62 7.36 8.66 10.16 4.8 21.42 1.77 1.77 10.24 0.87
R/KBC 3-325-8 1.7 3166 4.8 2.4 209 137.7 #2 5.51 6.69 1.06 9.41 8.27 10.83 10.94 5.2 22.83 2.76 2.17 12.2 0.87
R/KBC 3-350-8 1.7 3544 4.8 2.4 227 154.2 #2 5.51 6.69 1.06 9.41 8.27 10.83 10.94 5.2 25 2.76 2.17 12.2 0 .87
R/KBC 3-400-8 1.7 3923 4.8 2.4 238 170.6 #2 5.51 6.69 1.06 9.41 8.27 10.83 10.94 5.2 25 2.76 2.17 12.2 0 .87R/KBC 5-520-8 2.4 5040 7.8 3.9 304 219.2 #3 3.27 9.02 1.38 11.14 9.84 12.2 12.8 6.77 25.59 2.56 2.44 15.35 0.87
R/KBC 5-815-8 3.2 7943 10.6 5.3 423 345.5 #3 3.27 9.02 1.38 12.17 9.84 12.2 12.8 6.77 27.83 2.56 2.44 15.35 0.98
R/KC8 800-8 4.59 7766 10.4 5.2 507 337.8 #3 4.13 11.02 1.77 14.57 12.80 14.57 6.69 27.36 3.15 14.96 1.02
R/KC8 900-8 4.59 8736 10.4 5.2 525 380.0 #3 4.13 11.02 1.77 14.57 12.80 14.57 6.69 27.36 3.15 14.96 1.02
R/KC8 1000-8 4.32 9707 11.8 5.9 542 422.3 #3 4.13 11.02 1.77 14.57 12.80 14.57 6.69 27.36 3.15 14.96 1.02
R/KC8 1250-8 4.86 12296 12.6 6.3 580 534.9 #3 4.13 11.02 1.77 14.57 12.80 14.57 6.69 30.51 3.15 14.96 1.02
R/KC8 1500-8 4.86 14884 12.8 6.4 617 647.5 #3 4.13 11.02 1.77 14.57 12.80 14.57 6.69 30.51 3.15 14.96 1.02
R/KBC 11-1550-8 9 .1 15090 22 11 816 656.4 #3 4.92 12.6 1.65 16.18 13.78 15.75 18.11 8.86 34.02 3.35 3.15 17.64 1.26
900 RPM8 Pole 230/460/3/60
TYPE R/KBC1
thru R/KBC3
TYPE R/KBC5
thru R/KBC11
TYPE R/KBC5 thru R/KBC11
DWG #3TYPE R/KBC1 thru R/KBC3
DWG #2TYPE R/KBC15 and R/KBC20
DWG #4
Setting of Eccentric Weight Junction Box
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100% 90% 80% 70% 50%
AB
C
304050
60 7
0
1 23
"fixed" weight
A
B
70%
9070
100%
80
Setting of Eccentric Weight
If adjustments are made:
insure both ends of the vibrators eccentric weights equal the same percentage value
when utilizing dual vibrators in a configuration to produce a rectilinear motion;insure one is running CW, and one is running CCW
when utilizing dual vibrators for feeders, and the outer eccentric weight isthinner than the inner weight, one vibrator must be rotated 180 so the
vibrators synchronize when settings are less than 100%
(It is a good rule to do this all of the time)
KBM Series KC Series
OUTERWEIGHT
Lifting Lug
Capacitor Starter Wiring DiagramProper Hardware/Bolt Sizing
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KBM, 115VProper Hardware/Bolt Sizing
Single Magnetic Starter
Notes:
1. Fusible disconnect supplied by others
2. Control transformer always wired tocustomer stated input voltage
3. Control wires are 18 awg
4. Overload size based upon amperagedraw and voltage
5. Motor should always be wired to rotateinto the product load or flow
Dual Magnetic Starter
Notes:
1. Fusible disconnect supplied by others
2. Control transformer always wired tocustomer stated input voltage
3. Control wires are 18 awg
4. Overload size based upon amperagedraw and voltage
5. Motors should always be wiredcounter rotating
DETERMINING BOLT LENGTHS
Add 1/8 for all washers Add bolt dia. for nut height Add 1/4 for thd past nut Round stack-up dimensions to largest quarter
EXAMPLE:2 1/16 = next size = 2 1/4 lg bolt
MINIMUM GRADE 5
BELLEVILLE ORCOMPRESSIONWASHER
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Website: www.renold.com
Go to PRODUCTS at top, click on MATERIAL HANDLING.
Scroll on left appears; click on to several other vibratory
products. All info can be downloaded.
SETTLER
BREAKER
BAG FILLING
BAG FILL SYSTEMS
FEEDERS
LARGE HOPPERS
QE/01
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Lubrication free gear set
Quiet operation 68-70 DbA
Changeable eccentricity
Coupled dual vibrators
Direct factory applicationengineering assistance
QE Quadra-Eccentric VibratorsApplications for the Food Processing Industry
U.S. Patents: 4,942,776
5,231,886
AJAX QE Quadra-Eccentric Vibrators
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The Ajax Quadra-Eccentric vibrator was developed for all
oil drip free and sound sensitive applications in the food
processing industry.
Gear set that requires no lubricationno oil leaks
Units operate in the range of 68-72 DbA
Nickel plated shafts
Polyamide 12 plastic driver gear
Changeable eccentric weights
Models 512 and 675 create a force output range
from 400-4,774 lbs. with an operating frequency
range of up to 1200 RPM. See rated RPM.
All eccentric weights are manufactured in cast steel.
Both model ranges (the QE 512 and QE 675) have only
two different size castings to cover the range from A to G.
Simply select which force output you require and remove the appropriate mass by drilling the weight. This gives you
the ability to change the force output very quickly, either on your shop floor prior to dispatch or when in use.
Dual QE Vibrators
As the demand in processing requiresgreater production, it also requires larger
equipment which equates to more force
output from your vibrator. Renold Ajax has
tested and commissioned dual QE vibrators
for such applications. Drive shafts are
assembled left- and right-hand and
connected with a flexible coupling.
Lubrication-free Gear Set Vibrator
The QE Vibrator was introduced to the market after two years of development and rigorous testing, both in the plant
and in the field. Increased quality and value have been achieved as a result. For example, stress relieving of the nylon
Selecting a QE Vibrator
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When a QE Vibrator is directly attached to a trough it is
referred to as a Brute Force design. It is very simple to
calculate the necessary vibrator by finding the required
force output (Fo) projecting the desired stroke. Thestroke, also referred to as amplitude (peak to peak),
is the resultant action produced by the vibrator when
properly isolated. As a general rule, brute force
conveyors should operate at 0.375 stroke @ 900 RPM
under load. The feed rate will most likely be considered
to be approximately 35 FPM.
Stroke = Fo x C
Twt x f 2
Where:
Fo = the total force output of the vibrator(s)
C = a constant having a numerical valueof 70470.91
Twt = total weight, combined value of thetrough, vibrator(s) weight and load
f 2 = frequency squaredppcf = pond per cubic foot
Pre-DesignExample: Find the QE Vibrator size for a conveyor
needing to deliver 5 TPH of sand @ 100 ppcf. Assume
the pan width to be 18 wide and 72 long. Also for this
example, assume the trough weight is 205 lbs. and the
QE Vibrator @ 150 lbs.
5 TPH =60 sec. X 1.0 x 18 wide x depth x 100 pcf x 35 FPM
144 in.2 x 2000 lbs.
The resulting depth is 0.38. The sides of the trough
should be a minimum of twice this value. This depth is
the end of the dynamic angle of repose as it leaves the
trough. The inlet will be much greater.
Find the load of material in the trough:
0.38 x 18 x 72x 100 pcf = 28.5
12 x 12 x 12
Find the total vibrated weight Twt:
205 lbs. + 150 lbs. = 28.5 lbs.
Further:
Fo = 3.41 x 10 4 x f 2 x ER
Or
ER =Fo
3.41 x 10 4 x f 2
If you supplement 1653 lbs. for Fo, the required ER
(unbalance, ft. lb. ) value is 5.98.
Refer to the QE Vibrator chart on page 6 and select
the vibrator on unbalanced ER value equal to the value
calculated, which is a model QE 675A.
Once the QE Vibrator is mounted on the trough,
operate the unit and check the feed rate and stroke.
If parameters have changed after the pre design, such
as trough weight, vibrator and loads, you may find it
necessary to either increase or decrease the eccentricity,thereby changing the stroke. Simply remove the covers
and change out the weights. QE Vibrators can be
purchased as core units and the eccentric weights
sold separately. Refer to pages 4-5 as weights can be
altered, changing the ER value by simply drilling and
removing mass. Consult the factory when doing this.
*NOTE: Do not exceed the maximum RPM shown on
page 6. The maximum ambient room temperature
of all units is 100 degrees Fahrenheit, or 37.7 degree
Centigrade. Always drill (2) 3/8 diameter holes at the
lowest point through each of the plastic covers to
allow for water drainage when units are subjected
to wash down. If holes are not drilled, this will cause
corrosion and washout of the bearing grease,
Drill (2) 3/8 holes in both plastic covers,
see *NOTE.
Ajax QE Vibrator
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j
Means Flexibility
Core units can be purchased. Included are
the basic housing sub-assembly and fastener
hardware kit less the four eccentric weights
and plastic covers with seal.
Complete models can also be purchased.
You must be accurate in your designs to
predict the required stroke. If you find that
design needs to change as your project
progresses, the QE Vibrator will provide
maximum flexibility very quickly since it is
so easy to change the weights, and
therefore the force.
If flexibility in your conveyor design is a
necessity on the lower end of an A through
D range, simply purchase for your stock the
Model D machined weight for either 512
or 675 QE Vibrators. The Model D
machined weights can be transformed
into a model A through C version by drilling
the appropriate diameter hole through the
weight. Always re-stamp the new weight for
future identification. All four weights fitted
into the one QE Vibrator must be identical.
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The model E to G weight cannot be used
unless it is drilled for either a model E or F
weight. The model G weight must be specially
drilled at the factory level and filled with lead.
This new development gives us the ability
to change out the weights very quickly.
If you do not have the capability of accurately
drilling these holes, you must purchase
weights from the factory.
Refer to page 3 for calculating the required
stroke. Remember the total weight (Twt) is
the combined weight of the trough, vibrator
and the dynamic load.
The warranty of the Renold Ajax QE Vibrator
is valid only if they are selected and operated
within the guidelines set forth in this brochure.
If you have any questions on selection or
operation of these QE models, please contact
the Renold AJAX factory for assistance.
Ajax QE Quadra-Eccentric Vibrators
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QE675-G 14.0 2 2339 3449 4774 @ 1000 180
QE675-F 12.25 11/2 2047 3018 4694 @ 1060 166
QE675-E 10.75 11/2 1796 2649 4436 @ 1100 159
QE675-D 9.25 11/2 1546 2279 3817 @ 1100 152
QE675-C 8.0 1 1337 1971 3301 @ 1100 161
QE675-B 7.0 1 1170 1725 2888 @ 1100 152
Model Unbalance (ER)LB.FT.
Motor HP* Force @700 RPM
Force @850 RPM
Force @ Max.Rated RPM
Unit Weight
QE512-G 6.00 1.0 1003 1478 2946 @ 1200 96
QE512-F 5.20 1.0 869 1281 2553 @ 1200 86
QE512-E 4.50 1.0 755 1114 2220 @1200 81
QE512-D 3.85 .75 643 948 1891 @ 1200 86
QE512-C 3.35 .75 560 825 1645 @ 1200 79
QE512-B 2.90 .75 483 712 1419 @ 1200 76QE512-A 2.50 .75 418 616 1228 @ 1200 73
*HP requirement may vary with applicationvalue given is guide for estimating.
Model Unbalance (ER)LB.FT.
Motor HP* Force @700 RPM
Force @850 RPM
Force @ Max.Rated RPM
Unit Weight
QE 675 Specifications
and Dimensions
QE 512 Specifications
and Dimensions
Conveyor Parts
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When purchasing your QE Vibrator or AJAX Shaker, complete your design with complimentary parts such as pan arm
isolators or fiberglass belt guards. A single pan arm is capable of loads up to 75 lbs., while pan arms with booster
springs are capable of 125 lb. loads.
Renold also provides other isolation devices such as fiberglass leaf springs, coil springs, booster springs and repair
kits for your Vibrator-Shaker needs. Contact Customer Service at 800-879-2529 Extension 248, for more information.
The #26W-3 One-piece Pan Arm Assembly replaces the
#25W-3 three-piece assembly. Items 8 and 9, coil springs, are
used for amplification of stroke only. Booster springs are used
with applications to hold up the pan under heavy loads.
1 1 26W-2 Pan Arm 10202
2 1 Bolt 701-037-16-550
3 1 Hex Nut 765-037-16-000
4 1 Lockwasher 775-037-00-000
5 1 Rubber Bushing 101116 2 Cotter Pin 789-009-00-150
7 1 Stepped Washer 10207
8 1 Coil Spring 10203
9 1 Coil Spring 10206
ItemNo.
Description Part No.Required
DrawingPart Number Center Shaker
2-5/16
1-15/16
3/8
22-1/2
9-1/16
7
2
9
1
8
4
3
6
5
CENTERDIMENSION
Belt Guard Kits
Renold AJAX stocks three sizes of
fiberglass belt guards with metal
backs and posts. The metal
plate is provided with sufficient
clearance holes for the
motor/shaker shafts.
It requires fitting after the
motor/shaker is assembled.A stiffener is then welded to
the metal plate and secured
to the base. After the
sheaves and belts are fitted,
the fiberglass guard can be bolted to the post.
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ELECTRIC
VIBRATORS
Renolds Rotary Electric
Vibrators are economical
and reliable motor-basedvibratory devices. No other
vibrator delivers more
value and quality per
pound of force output. We
offer a variety of models
operating at frequencies of
SHAKER DRIVES
Throughout the world,
Renolds AJAX Shaker
Drives are recognized as
energy efficient units that
are adaptable to countless
new and unusual
application possibilities.
Standard applications
include open and enclosed
pan conveyors, screeners,
feeders, packing tables,
Put to work for your most demanding applications
Distribution Network
UNITED STATES
Headquarters
100 Bourne Street
Westfield, NY 14787-9706
Contact: Dave Anderson,
1-800-879-2529
Fax: 1-716-326-6121
Email: [email protected]
CANADA
Renold Canada Ltd.
121 Roy Boulevard, Brantford,
Ontario N3T 5N4 Canada
Contact: Doug MacDonald,
519-756-6118
Fax: 519-756-1767
UNITED KINGDOM
Renold House, Styal Road
Wythenshawe, Manchester
M22 5WL
Contact: Keith Spencer,
0161-437-5221
Fax: 0161-437-7782
Email: [email protected]
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NEW NEW NEWBulk Bag
BB501
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UnloadingStationsModel BBU 20 Shown
FOUR STANDARD MODELS
NEW discharger enhances product flow
Minimal componentsless maintenance
Optional upgrades available
Custom built per application needs
The NEW Ajax Bulk Bag Unloader incorporatesa unique molded 1/2 thick, FDA approved polymer
discharger. The curved profile was developed to
enhance product flow utilizing minimal components.
Activating the electric vibrator increases flowability of
stubborn products, and can be pulsated to vary the
flow rate. Renolds Bulk Bag Unloaders are designed
for flexibility and will accommodate changes without
having to purchase expensive retrofit components or
another unloading station. The discharger will accept
bags 30 square or round and larger.
Users of Bulk Unloaders receive products from many
suppliers. It is not uncommon for bulk bags to vary
in straight wall height and stirrup lengths. The upper
bag frame support can be adjusted to accommodate
these differences.
Bulk Bag Unloading Station
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Build Your OwnUnloaderPlastic Discharge unit
and vibrator
Discharger body is manufactured from 1/2 thick,
FDA approved, chemically resistant, polyethylene
polymer. Provides dust free unloading of bulk bags.
Hinged and toggle lock access panel to interface with
bag discharge spout. Includes model R/KMB6-4S
Rotary Electric Vibrator to induce flow. Special
contour design, with vibrator assistance, guarantees
complete and total flow of product. This will cause
the bag bottom to follow the flow pattern.
BBU-10 Narrow economy Erecta-Frame bag framedesign with plastic discharge unit and vibrator
BBU-20 Same as BBU-10, except for welded frame.
(3 x 3 or 4 x 4) square tubing.
BBU-30 Heavy duty welded frame (5 x 5) square tubing
with plastic discharge unit and vibrator,
includes 2 or 3-ton (air/electric) hoist and
motorized trolley.
BBU-40 Heavy duty welded frame (4 x 4 or 5 x 5)
square tubing with plastic discharge unit and
vibrator. Includes: Toledo Panther weigh
batching indicator, load cells and NEMA 4x
summing box, operators control panel and/or
2- or 3-ton (air/electric) hoist and motorized
trolley.
OPTIONAL COMPONENTS
8 cubic foot surge hopper with hinged cover and vibrator
Flow valve, 2 position (open/close)
Inclined screw conveyorbuild to suit
Iris valve or rotary actuator
Dual side wall stimulators with vibrators
Work platforms
For more information about your process or your bag
unloading requirements, contact our Engineers in
our Material Handling Department at
1-800-879-2529extension 242, 254 or 256
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TraditionalAjax Shaker Drives
EnclosedScreener Conveyor
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jEnergy Efficient
Electro-Mechanical
Vibratory Drives
Renolds Ajax Vibrating Shaker Drives are recognized and
used as energy efficient drives for a wide variety of
vibrating equipment throughout the world. Applications
include open and enclosed pan conveyors, screeners,
feeders, packing tables, dewatering units, tampers,
electronic test tables and cable laying plows. Ajaxs
unique operating principle is applicable to countless
other new and unusual application possibilities.
Ajax ShakersModel 5 through 20
S C yModel LCS-E-1276-10DFH
Open LongConveyor with
Side Skirt Diverters
Model LC-24284-20MF
Provides: Continuous operation
Long life dependability
Low maintenance schedule
Offers:
Easy replacement without tuning
or balancing
Totally enclosed gear driven eccentrics
26 sizes from which to choose
Shaker USA Patented Design#1.999.213, 2.059.754, 2.079.347,
2.178.813, 4.870.870,
D323.514
Automatic VibratingWeigh Systems
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BINS
BOXES
BAGS
Fill and WeighSimultaneously with aSingle On-Line System
Renolds fully automated weigh and fill stations are designed to
integrate with your total material handling process. The Renold
system handles boxes, bins, bags and drums. Containers areautomatically indexed to the fill station, filled, weighed and data
recorded for proper labeling, all perfectly coordinated with PLC
system communication.
Patented Concept Increases Productivity
Single operator Automatic sequencing
Increased Density More material per container
Requires less warehouse space
Fewer containers to ship
Reduces container damage
Custom Design/ Manufacturing Designed to fit existing processes
Provides greater system reliability
Interfaces with existing MHS Supervisory Network
AJAX FEEDERS
DELIVER!
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Renold Feeders and Screener/Feeders are custom engineered and
manufactured to provide dependable delivery of bulk materials for a wide
range of applications. Sizes range from 1-1/2 wide to 72 wide. Renold
Feeders and Screeners/Feeders provide delivery rates from 1000 lbs. to
1500 tons per hour. Shaker output forces are provided by the AJAX ShakerDrive or QE Vibrator. For more information and literature,
contact Renold toll free at
1-800-879-AJAX.
100 Bourne St. Westfield, NY 14787Phone: (716)326-3121 Fax (716)326-6121
Canada: 121 Roy Blvd.,
Brantford, Ont. N3T 5N4 (519)756-6118
AJAX FEEDERS
DELIVER!
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100 Bourne St. Westfield, NY 14787Phone: (716)326-3121 Fax (716)326-6121
Canada: 121 Roy Blvd.,
Brantford, Ont. N3T 5N4 (519)756-6118
Renold Feeders and Screener/Feeders are custom engineered and manufactured
to provide dependable delivery of bulk materials for a wide range of applications.
Sizes range from 1-1/2 wide to 72 wide. Renold Feeders and Screeners/Feeders
provide delivery rates from
1000 lbs. to 1500 tons per hour.
Shaker output forces are
provided by the AJAX Shaker
Drive or QE Vibrator. For more
information and literature,
contact Renold toll free at
1-800-879-AJAX.
AJAXVIBRATING
CONVEYORS
R li bl C t Eff ti
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Material Handling Products100 Bourne St. Westfield, NY 14787-0546Phone: 800-879-2529 Fax (716)326-6121Canada: 121 Roy Blvd., Brantford, Ont. N3T 5N4Phone: (519)756-6118 Fax: (519)756-1767
Reliable Cost-EffectiveTransfer of Bulk Materials
Ajax vibrating conveyors are custom
designed to transfer granular and bulk
materials for a wide variety of
applications. they can alsoperform functions such as:
screening, cooling, drying and
dewatering. Ajax conveyors incorporate
a heavy duty design that provides
rugged trouble-free operation.
They feature low frequency operation
to minimize structural stress
Call
1-800-879-AJAX
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Automated BulkPacking Weigh
Systems
Fill weigh and densify simultaneously
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Fill, weigh and densify simultaneously
Material Handling Products100 Bourne St. Westfield, NY 14787-0546Phone: 800-879-2529 Fax (716)326-6121Canada: 121 Roy Blvd., Brantford, Ont. N3T 5N4Phone: (519)756-6118 Fax: (519)756-1767
Call 1-800-879-2529Ext. 256, 254, 237
Increased Productivity
Indexing roller conveyors for staging and accumulation
Single unit will accommodate bags, boxes, bins and now DRUMS
Models to meet Class I, Div. I requirements
Dust tight product seal
Rear-to-front bag hooks increase Operator safety
High frequency, high force output vibratory densification tables
Maximum densification within 20 seconds
Designed to fit existing processes
Complete Mechanical/Electrical Engineering staff
A-B, GE, Modicon and Seimens PLCs
Increased Density
More material per container
Requires less warehouse space
Fewer containers to ship
Reduces container damage
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