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Force measurement - Import export

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Germany

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Polysorb Disk springs delivery program De [mm]: Di [mm]: disc springs are annulus discs stressable in the axial direction, which are turned over in the shape of a disc in the axial direction. disc springs provide a more favorable space usage than other spring types. They are particularly suitable for designs that demand a small spring deflection. + When not to use Polysorb Disk springs? For the implementation of specially flat load deflection curves that are possible with metal only with considerable complexity and expenditure (slotted versions). For compensation of axial clearance and manufacturing tolerances For vibration compensation For noise dampening When an antimagnetic material is required For electrical and thermal insulation When no corrosion problems should arise When lubrication is not necessary For low weight For low space requirement – When not to use polyserb disk springs? When constant spring forces are necessary over a wide temperature range When high spring forces are required The spring deflection of the disk spring is relatively small. Therefore a number of disk springs are combined in practice. Alternatively layered disk springs enhance the spring deflection in proportion to the number, whereby the overall spring force is as large as the force of the individual disk spring. To increase the force, the disk springs can be layered in parallel as a spring packet. Chemical resistance Polysorb disk springs are resistant to many chemicals. iglidur® A500 has a higher resistance than iglidur® J. Medium Resistance iglidur® J iglidur® A500 Alcohols + + Hydrocarbons + + Fats, oils without additives + + Fuels + + Diluted acids 0 to - + Strong acids - + Diluted bases + + Strong bases + to 0 + Humidity absorption The low humidity absorption allows them to be used in wet or humid environment. Polysorb® disk springs absorb humidity. Thereby their mechanical properties alter. In the worst application that can be thought of - extremely long application in water - Polysorb® disk springs still exhibit high spring force. iglidur® Standard environment saturated in water J 18 15 A500 24 23 Increased operating temperature Increased temperatures lead to the decline of stiffening in polymers. Polysorb® disk springs exhibit a maximum spring force of 8 N even at the maximum permitted temperature of 80° C. See figure for relationship of spring force to ambient temperature. Polysorb Disk springs long-term tests X = downward deflection [%] Y= spring force [N] A = JTEM-10 B = A500TEM-10 Figure 35.1: Spring force depending on the percentage of deflection measured in installation size 10 X= Ambient temperature [°C] Y= Maximum spring force [N] Figure 35.2: Influence of the ambient temperature on the spring force, measured on JTEM-10 Polysorb Disk springs delivery program De [mm]: Di [mm]: Dimensions according to DIN 2093

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Germany

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drylin® W - Advantages Dirt-resistant Weight saving Lubrication-free High speed Silent and light weight drylin® W - Advantages drylin® W - technical properties The technical properties of the drylin® W profile guide system Technical properties drylin® W - configuration Find the right profile guide system in 4 simple steps with the system and life calculation. drylin® W - configuration Single rail and housing bearing - round Sizes: 10 mm, 16 mm, 20 mm and 25 mm DryLin® W single rail and housing bearing - round Single rail and housing bearing - angular Sizes: 6 mm, 10 mm, 16 mm and 20 mm DryLin® W single rail and housing bearing - angular double rail, round Sizes: 10 mm (rail width 40 mm, 74 mm and 120 mm), 16 mm (rail width 58 mm), 20 mm (rail width 82 mm) and 25 mm (rail width 120 mm) DryLin® W double rail Guide carriage, assembled Sizes: 10 mm, 16 mm, 20 mm and 25 mm DryLin® W guide carriage, assembled double rail, square Sizes: 06 mm (rail width 30 mm), 10 mm (rail width 40 mm and 74 mm) and 16 mm (rail width 58 mm) drylin® W double rail, square Mono-slide guide carriage Size: 10 mm Mono-Slide guide Single rail and housing bearing - round, adjustable Sizes: 10 mm, 16 mm and 20 mm Linear Guides with “Turn-To-Fit” Hybrid bearing WJRM drylin® roller bearings - Roll and glide for easy movement. drylin® W hybrid bearing | roller bearing hybrid bearing double WJRM drylin® double roller bearing - Roll and glide for easy movement. drylin® W hybrid bearing double Double rail, reduced weight Sizes: 6 mm (rail width 30 mm), 10 mm (rail width 40 mm and 80 mm) DryLin® W double rail, reduced weight Hybrid carriage with rollers Size: 10, 16 mm DryLin® W hybrid carriage with rollers Stainless steel guide V4A, individual Size: 20 mm DryLin® W stainless steel guide V4A - individual Stainless steel guide V4A - double DryLin® W stainless steel guide V4A - double drylin® W slider rails/carriages drylin® W rail profiles with 3/8" threads, complete rails with Ø 10 mm through bore, with/without hand clamps DryLin® W double rail, square Gliding elements For round and angular rails. DryLin® W - Gliding elements Manual clamp Developed for simple positioning tasks. DryLin® W - Manual clamp Digital measuring system With immediate digital indication of position. DryLin® W - Digital measuring system Hand clamp for higher forces Designed for positioning tasks with higher forces. DryLin® W hand clamp for higher forces DryLin® WKMEX digital measuring system with external output drylin® WKMEX measuring system with external output DryLin® SLW - the compact* Spindle-lift tables The extremely thin unit is based on a DryLin® W profile system, and its entire length is supported. This design offers an extremely high torsional stiffening simultaneously with compact dimensions. DryLin® SLW - Compact DryLin® ZLW Toothed belt axis For quick positioning of small loads. DryLin® ZLW - Toothed belt axis Single rail and housing bearing - round Sizes: 10 mm, 16 mm, 20 mm and 25 mm DryLin® W single rail and housing bearing - round Single rail and housing bearing - angular Sizes: 6 mm, 10 mm, 16 mm and 20 mm DryLin® W single rail and housing bearing - angular double rail, round Sizes: 10 mm (rail width 40 mm, 74 mm and 120 mm), 16 mm (rail width 58 mm), 20 mm (rail width 82 mm) and 25 mm (rail width 120 mm) DryLin® W double rail Guide carriage, assembled Sizes: 10 mm, 16 mm, 20 mm and 25 mm DryLin® W guide carriage, assembled double rail, square Sizes: 06 mm (rail width 30 mm), 10 mm (rail width 40 mm and 74 mm) and 16 mm (rail width 58 mm) drylin® W double rail, square Mono-slide guide carriage Size: 10 mm Mono-Slide guide Single rail and housing bearing - round, adjustable Sizes: 10 mm, 16 mm and 20 mm Linear Guides with “Turn-To-Fit” Hybrid bearing WJRM drylin® roller bearings - Roll and glide for easy movement. drylin® W hybrid bearing | roller bearing hybrid bearing double WJRM drylin® double roller bearing - Roll and glide for easy movement. drylin® W hybrid bearing double Double rail, reduced weight Sizes: 6 mm (rail width 30 mm), 10 mm (rail width 40 mm and 80 mm) DryLin® W double rail, reduced weight Hybrid carriage with rollers Size: 10, 16 mm DryLin® W hybrid carriage with rollers Stainless steel guide V4A, individual Size: 20 mm DryLin® W stainless steel guide V4A - individual Stainless steel guide V4A - double DryLin® W stainless steel guide V4A - double drylin® W slider rails/carriages drylin® W rail profiles with 3/8" threads, complete rails with Ø 10 mm through bore, with/without hand clamps DryLin® W double rail, square Gliding elements For round and angular rails. DryLin® W - Gliding elements Manual clamp Developed for simple positioning tasks. DryLin® W - Manual clamp Digital measuring system With immediate digital indication of position. DryLin® W - Digital measuring system Hand clamp for higher forces Designed for positioning tasks with higher forces. DryLin® W hand clamp for higher forces DryLin® WKMEX digital measuring system with external output drylin® WKMEX measuring system with external output DryLin® SLW - the compact* Spindle-lift tables The extremely thin unit is based on a DryLin® W profile system, and its entire length is supported. This design offers an extremely high torsional stiffening simultaneously with compact dimensions. DryLin® SLW - Compact DryLin® ZLW Toothed belt axis For quick positioning of small loads. DryLin® ZLW - Toothed belt axis drylin® W - Advantages Dirt-resistant Weight saving Lubrication-free High speed Silent and light weight drylin® W - Advantages drylin® W - technical properties The technical properties of the drylin® W profile guide system Technical properties drylin® W - configuration Find the right profile guide system in 4 simple steps with the system and life calculation. drylin® W - configuration

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Germany

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Electric-hydraulic setting tool for stationary automated or hand-held processing of blind rivet nuts and studs. Perfect combination of high setting force, slim design and low weight. The narrow design allows a small centre distance for modular design. — Process monitoring DMSD 2G Displacement encoder with resolution 0.01 mm Sensor technology force measurement via hydraulic pressure — Hydraulic connection for pressure intensifier — Mechanical connection — Tolerance compensation Position offset 1.5 mm Angular misalignment 8° — Electric motor Monitoring of torque and rotationangle during spindle mounting and dismounting — Hydraulic hollow piston cylinder stroke 12 mm setting force up to 58 kN — Quick-change system For fast handling and low-maintenance operation Low tool costs by using DIN screws as mandrel (option)

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France

With the new 8311, PFAFF INDUSTRIAL introduces a new generation of ultrasonic welding machines. With more than 30 years experience in rotary ultrasonic welding, the engineers at PFAFF have successfully developed this process even further. In addition to the regulation of speed and welding energy, the new 8311 allows the force measured during welding to be measured and kept constant - a true world first and a quantum leap in textile ultrasonic welding. Adjusting and handling the machine becomes much easier. The process becomes clearer, more reproducible and easier to understand. In short, the machine is taken to a new level.

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Germany

Why streaming current? The charge potential of particle surfaces of the solids in a disperse system plays an important part in water treatment procedure. Due to the unidirected charge of these particles, an approach is prevented. The particles are stabilized in its solution. A separation of these particles will be easier, if the surface charge can be reduced and the particles can form bigger flakes and bigger units. In order to control this process, it is important to measure the surface potential of the solids. What is streaming current? If you fix two electrodes in a pipe-line carrying a suspension, one in the centre and the other one near the pipe-line wall, you can measure a current. This is caused by the separation of the counter ions from the solids. The counter ions will be carried with the turbulent flow, and the solids tend to stick to the pipe-line wall by adsorption and by 'van-der-Waals' forces. The measured current is named current caused by flow or Streaming-Current.

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Force measurement - Import export

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