Learning Center

FAQs

Q

1 Can I get your directory and data sheet?

A

You can obtain product information in our downloads or on each product detail page

Q

2 Can I get a quote?

A

Of course! Please confirm the model(Part number) and quantity ,If you have any special requirements, please keep listing them to us, and we will provide you with a timely quotation based on all your requirements,

Q

3 What kind of payment do you accept? How about the delivery?

A

Normally you can pay through our T/T account, But for some trial order,which has a small amount, we suport West Uion and Alipay.

Q

4 Can l get a sample? ls that free?

A

Samples are available, but the cost and freight should be covered by your side.

Q

5 What type of shapes are available for ZP series vacuum pads? Also, what are the different applications?

A

Vacuum Pad Shapes & Applications:
Flat: Ideal for flat, even-surfaced workpieces.
Flat with Ribs: Suited for deformable workpieces or those requiring secure release.
Deep:Designed for curved workpieces.
Bellows:Used when space is limited for buffers or for inclined surfaces.
Oval : Best for long workpieces or those with small contact areas needing precise positioning.
Ball Joint : For workpieces with non-horizontal surfaces.
High Load : Designed for heavy workpieces.
Semiconductive Silicone Rubber : Provides electrostatic discharge protection (low surface resistance).
Buffer : For workpieces with varying heights or requiring impact absorption.

Q

6 What should be done when the vacuum pressure in a ZH series vacuum generator decreases?

A

ZH Series (Body Ported Type):
1. lf multiple units share a common exhaust line, vacuum levels may not rise as expected due tointerference.Ensure the exhaust pipe is generously sized to eliminate backpressure.
2. When using a silencer, inspect the acoustic material for contamination or reassess its sizing ifnecessany.
ZH series (Box Type):
1. Verify if the sound-absorbing material is dirty and replace it if requiredAll ZH Series Models:
1. Inspect for any foreign objects (e.g., debris, moisture) entering from the vacuum pad side, asthese can obstruct the internal diffuser and impair performance. Always install a vacuum filteron the intake side.
2. Confirm that the supply pressure to the unit remains stable and has not dropped.

Q

7 How do I find the lifting force of a ZP series vacuum suction cups?

A

The lifting force of a vacuum suction cups can be obtained from the calculation formula as well as from the theoretical lifting force table.
Calculation formula:
W = P x S x 0.1 x 1/t
(W: Lifting force(N), P: Vacuum pressure(Kpa), S: Area of the pad(cm²), and t: Safety factor of 4 or more for horizontal lifting and 8 or more for vertical lifting)
Theoretical lifting force table:
The theoretical lifting force can be found using the pad diameter and vacuum pressure.
It does not include the safety factor, so divide the theoretical lifting force by the safety factor “t” to obtain the lifting force.
Lifting force = theoretical lifting force ÷ t
The theoretical lifting force table (theoretical lifting force = P x S x 0.1) is shown below.



Theoretical Lifting Force (Theoretical Lifting Force=P×S×0.1)
Pad/Suction Cup Diameter(ø1.5 to ø50) (N)
Pad/Suction Cup diameter(mm) ø1.5 ø2 03.5 ø4 ø6 ø8 ø10 ø13 ø16 ø20 ø25 ø32 ø40 ø50
Pad/Suction Cup area S(cm2) 0.02 0.03 0.10 0.13 0.28 0.50 0.79 1.33 2.01 3.14 4.91 8.04 12.6 19.6
Vacuum pressure (kPa) -85 0.15 0.27 0.82 1.07 2.40 4.2 6.6 11 17 26 41 68 106 166
-80 0.14 0.25 0.77 1.00 2.26 4.0 6.2 10 16 25 39 64 100 157
-75 0.13 0.24 0.72 0.94 2.12 3.7 5.8 10 15 23 36 60 94 147
-70 0.12 0.22 0.67 0.88 1.98 3.5 5.5 9.3 14 22 34 56 87 137
-65 0.11 0.20 0.63 0.82 1.84 3.2 5.1 8.6 13 20 31 52 81 127
-60 0.11 0.19 0.58 0.75 1.70 3.0 4.7 8.0 12 18 29 48 75 117
-55 0.10 0.17 0.53 0.69 1.55 2.7 4.3 7.3 11 17 27 44 69 107
-50 0.09 0.16 0.48 0.63 1.41 2.5 3.9 6.7 10 15 24 40 62 98
-45 0.08 0.14 0.43 0.57 1.27 2.2 3.5 6.0 9 14 22 36 56 88
-40 0.07 0.13 0.38 0.50 1.13 2.0 3.1 5.3 8 12 19 32 50 78
Pad/Suction Cup Diameter(ø63 to ø340) (N)
Pad/Suction Cup diameter(mm) ø63 ø80 ø100 ø125 ø150 ø200 ø250 ø300 ø340
Pad/Suction Cup area S(cm2) 31.2 50.2 78.5 122.7 176.6 314.0 490.6 706.5 907.5
Vacuum pressure (kPa) -85 265 427 667 1043 1501 2669 4170 6005 7714
-80 250 402 628 982 1413 2512 3925 5652 7260
-75 234 377 589 920 1325 2355 3680 5299 6806
-70 218 351 550 859 1236 2198 3434 4946 6353
-65 203 326 510 798 1148 2041 3189 4592 5899
-60 187 301 471 736 1060 1884 2944 4239 5445
-55 172 276 432 675 971 1727 2698 3886 4991
-50 156 251 393 614 883 1570 2453 3533 4538
-45 140 226 353 552 795 1413 2208 3179 4084
-40 125 201 314 491 706 1256 1962 2826 3630
Oval Pad/Suction Cup(2×4 to 8x30,30x50) (N)
Pad/Suction Cup diameter(mm) 2×4 3.5×7 4x10 5×10 6x10 4x20 5×20 6×20 8x20 4x30 5×30 6×30 8×30 30×50
Pad/Suction Cup area S(cm2) 0.07 0.21 0.36 0.44 0.52 0.76 0.94 1.12 1.46 1.16 1.44 1.72 2.26 13.07
Vacuum pressure (kPa) -85 0.60 1.79 3.0 3.7 4.4 6.4 7.9 9.5 12.4 9.8 12.2 14.6 19.2 112
-80 0.56 1.68 2.8 3.5 4.1 6.0 7.5 8.9 11.6 9.2 11.5 13.7 18.0 105
-75 0.53 1.58 2.7 3.3 3.9 5.7 7.0 8.4 10.9 8.7 10.8 12.9 16.9 98
-70 0.49 1.47 2.5 3.0 3.6 5.3 6.5 7.8 10.2 8.1 10.0 12.0 15.8 92
-65 0.46 1.37 2.3 2.8 3.3 4.9 6.1 7.2 9.4 7.5 9.3 11.1 14.6 85
-60 0.42 1.26 2.1 2.6 3.1 4.5 5.6 6.7 8.7 6.9 8.6 10.3 13.5 79
-55 0.39 1.16 1.9 2.4 2.8 4.1 5.1 6.1 8.0 6.3 7.9 9.4 12.4 72
-50 0.35 1.05 1.8 2.2 2.6 3.8 4.7 5.6 7.3 5.8 7.2 8.6 11.3 66
-45 0.32 0.95 1.6 1.9 2.3 3.4 4.2 5.0 6.5 5.2 6.4 7.7 10.1 59
-40 0.28 0.84 1.4 1.7 2.0 3.0 3.7 4.4 5.8 4.6 5.7 6.8 9.0 53
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