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Tube compression - Import export

Germany

Germany

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To ensure safe transport and enable an easy handover of the products during later industrial processes and assembly, we ship our springs and sub-assemblies in special packaging. Any conceivable special packaging is adapted precisely to the product in question, e.g. blister or polyethylene packaging. Tube packaging: Compression springs are transported in tube packaging. Tube packaging ensures that they can be inserted without problems, down to the last spring. Sub-assemblies, bent strip parts and laser-generated samples are transported in blister or polyethylene packaging to protect them during transport and storage. Modifying specific extraction mechanisms: We would also be pleased to assist you with our expertise regarding the modification of specific extraction mechanisms. This eliminates downtime of highly complex assembly equipment caused by springs getting caught up in one another.

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Germany

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Probably the most hygienic way of isolating a flow of media is for the valve not to touch the media at all. The endless tube pinch valve operates according to this principle. The medium is channelled through a tube and the valve compresses or releases the tube pneumatically. The built in stroke limitation prevents the tube from being overloaded.

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Germany

Verified by Europages

Probably the most hygienic way of controlling a flow of media is for the valve not to touch the media at all. The endless tube pinch valve operates according to this principle. The medium is channelled through a tube and the valve compresses the tube pneumatically. This constriction of the hose adjusts the flow. This principle means the valve is suitable for lots of critical applications in the chemicals, food and pharmaceuticals industries.

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Germany

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The GEMÜ Q40 2/2-way pinch valve has a stainless steel piston actuator and is pneumatically operated. The valve guides a tube which is compressed from above by a compressor to control and regulate media. The compressor's specially developed contour and the inserts' contour minimise the strain on the tube and thus increase the tubes' service life. Tubes can be safely inserted and removed in simple steps and without tools. The available control functions are "normally closed (NC)" and "normally open (NO)". An integral optical position indicator is standard

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Germany

- Made of polyether-polyurethane - Color black (red, blue, green, white) - External calibration; for use with Eisele plug connectors - Operating temperature -31 to 194 °F (-35 to +90 °C) - Suitable for compressed air, water - Free of plasticizers, PWIS, halogen, copper and PTFE - Impervious to buckling and drag chain compliant - Resistant to UV, hydrolysis and microbes - Flame-retardant according to UL94 V0 to V2 - Suitable for employment in welding - Suitable for vacuum

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Germany

- Made of polyester-polyurethane (PU) - Color black (red, blue, green, yellow, natural, brown, orange and grey: specify when placing order; subject to extra charge) - External calibration; for use with Eisele plug connectors - Temperature range -31 to 158 °F (-35 to +70 °C) - Free of plasticizers, PWIS, copper and PTFE - Impervious to buckling and drag chain compliant - Suitable for vacuum

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Germany

The hydraulic industrial shock absorber of the C-series (COMPENSER®) is the ideal hydraulic buffer for storage and retrieval machines or smaller conveyor systems, crane systems, test stands etc. in light to medium mechanical engineering. Due to its short design, this hydraulic buffer (COMPENSER®) can be used in a spacesaving manner as limitation of the end position (as emergency end stop) in industrial applications. In addition, the low reset force allow operational pushin cycles at creep speed. Design & Function: The piston rod 2 enters the metering tube 3. The damping medium flows from the pressure chamber 6 through the throttle orifices 4 of the metering tube 3 into the volume balance chamber 5. The nitrogen gas between the outer tube 7 and the metering tube 3 is compressed and stores the energy required for the reset of the piston rod. When the piston rod 2 returns to the initial position, the damping medium flows back into the pressure chamber 6.

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