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| ST10 300N Pneumatic Grip |
| This is a vice grip with pneumatic loading applied to one jaw face. The other side is manually adjustable to centre the sample. The 300N load is the pneumatic clamping force at 7 bar supply pressure. Click for more details... |
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| ST42 5kN Pneumatic Grip |
| This grip is single acting, with manual adjustment of the opposing jaw face. The closing force between the jaws is 5kN with a pressure of 7 Bar. The tensile force that can be applied to the sample will depend on its coefficient of friction with the jaw fa Click for more details... |
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| ST52 30kN Pneumatic Grip |
| This grip is single acting, with manual adjustment of the opposing jaw face. The closing force between the jaws is 28kN with a pressure of 7 Bar. The tensile force that can be applied to the sample will depend on its coefficient of friction with the jaw f Click for more details... |
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| ST53 30kN Pneumatic Grip Wide Opening |
| This grip is single acting, with manual adjustment of the opposing jaw face. The closing force between the jaws is 28kN with a pressure of 7 Bar. The tensile force that can be applied to the sample will depend on its coefficient of friction with the jaw f Click for more details... |
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| ST82 2.5kN Pneumatic Grip |
| A general purpose single acting pneumatic grip with manual adjustment of the opposing face. The closing force between the jaws is 2.5 kN with a pressure of 7 Bar. The tensile force that can be applied will depend on the co-efficient of friction between th Click for more details... |
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| ST83 500N Pneumatic Grip |
| This is a vice grip with pneumatic loading applied to one jaw face. The other side is manually adjustable to centre the sample. The 500N load is the pneumatic clamping force at 7 bar supply pressure. The tensile load that can be applied to the sample wi Click for more details... |
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| ST93 10kN Pneumatic Grip |
| A general purpose single acting pneumatic grip with manual adjustment of the opposing face. The closing force between the jaws is 10 kN with a pressure of 7 Bar. The tensile force that can be applied will depend on the co-efficient of friction between t Click for more details... |
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