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High precision Polished Shaft Rolling Ring Drive GP3-30 manufacturers Made-in-China
The principle of operation of the folding devices is based on the transformation of the rotational movement of the drive shaft into a linear movement of the folding carriage on a smooth shaft in two directions using the interaction of friction forces between the drive shaft and the collars of the ball bearing mechanism for switching the stroke of the folding carriage.
By changing the angle of the on-clone of ball-clip holders, the speed of movement of the folding carriage on the smooth shaft is regulated.
For advantages
Stepless Adjustment The take up reel transfers a certan speed to the polishes shaft Without changing the rotating speed of the shaft though move the indicator on the scale dial , adjust the travers drive's speed of reciprocating motion on the shaft , range from 0 to the maximum pitch setting .
Instantaneous Reversal With no need to change the shaft speed of rotation , when the reversal trigger roller contacts the end stop , the travel direction of the travers drive will be pivoted to its mirror diresction with reversal time of not more than i second .
Hight Traverse Speed The traverse drive speed of linear motion on the shaft can be up to 0.4m/sec. max., and the applicable speed is Usually 0.3m/sec. So it can meet the requirement of some situations for high traverse speed and very frequent reversal.
Model type | Linear Pitch mm/r | Thrust N | Weight Kg |
---|---|---|---|
GP3-15 | 11 | 110 | 0.9 |
GP3-20 | 16 | 160 | 1.6 |
GP3-22 | 16 | 160 | 2 |
GP3-25 | 25 | 260 | 3 |
GP3-30 | 25 | 260 | 2.7 |
GP3-40 | 32 | 420 | 11.2 |
GP3-50 | 40 | 700 | 33 |
GP3-60 | 48 | 1000 | 42 |
Model type | Linear Pitch mm/r | Trust N | Weight Kg |
GP4-15 | 11 | 220 | 1.5 |
GP4-20 | 16 | 320 | 3 |
GP4-30 | 25 | 520 | 3.7 |
GP4-40 | 32 | 840 | 13 |
GP4-50 | 40 | 1400 | 38 |
GP4-60 | 48 | 2000 | 45 |
Model | GP15 | GP20 | GP30 | GP40 | GP50 | GP60 |
A*B*C ( mm ) | 92*52*66 | 111*68*85 | 135*85*105 | 160*101*129 | 184*119*149 | 220*132*160 |
D | 215 | 215 | 240 | 360 | 360 | |
E | 30-60 | 30-60 | 32-77 | 37-77 | 37-77 | |
F | 25 | 25 | 32 | 38 | 38 | |
G | 14 | 14 | 14 | 17 | 25 | 25 |
H | 38 | 40 | 42 | 50 | 60 | 60 |
I | 16 | 18 | 20 | 22 | 28 | 28 |
J | 24 | 35 | 55 | 60 | 70 | 70 |
K | 48 | 60 | 70 | 85 | 96 | 101 |
M | 50 | 50 | 65 | 65 | 65 | |
S | 40 | 70 | 70 | 76 | 100 | 100 |
N | 32 | 40 | 60 | 70 | 80 | 80 |
4-M | 4-M6 | 4-M6 | 4-M6 | 4-M12 | 4-M12 | 4-M12 |
Thrust N | 100 | 135 | 265 | 420 | 700 | 1000 |
Weight KG | 1.2 | 2.5 | 8.5 | 11.2 | 33 | 42 |
Moving intercept | 0.1-11 | 0.1-16 | 0.1-25 | 0.5-32 | 1-40 | 1.5-48 |
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