The standard C0055-M1 unit can measure Static COF (peak) from a resting position and continue to move testing surfaces in a relative motion to give an accurate kinetic COF (dynamic) result. This model features a stationary sled with a moving plane and also comes with the option of a computer software to record data.
Introduction: Understanding and managing the coefficient of friction (COF) is vital in optimizing packaging processes across various industries. The COF-01 Coefficient of Friction Tester provides comprehensive solutions for precisely measuring COF, ensuring efficient performance and quality control throughout packaging operations. Background: The COF signifies the degree of friction between surfaces, influencing the ease of sliding between materials. In packaging, maintaining an optimal COF is crucial for smooth processing and minimizing issues during packaging creation, transportation, and storage. Various factors such as additives, treatments, and materials composition affect COF. Application: The COF-01 Coefficient of Friction Tester is versatile, catering to a wide range of materials including plastics, rubber, paper, and more. It adheres to industry standards such as ASTM D1894, ISO 8295, TAPPI T816, and GB 10006, ensuring accurate and reliable results. Formula: COF is calculated by dividing the force required for sliding by the perpendicular force between surfaces. The tester measures both static (�¼s) and kinetic (�¼d) COF, crucial for assessing stacking, cartoning, machinery processing, and other packaging scenarios. Technical Features: 1. Advanced PLC control and HMI touch screen interface ensure user-friendly operation and stability. 2. Precision stepper motor and ball lead screw drive mechanism guarantee accurate testing. 3. Real-time test curve display and automatic result recording enhance efficiency. 4. Measures both static and kinetic COF for comprehensive analysis. 5. Compliance with multiple industry standards ensures reliability. 6. Integrated dot matrix microprinter for convenient data output. 7. Aluminum construction of the test plane ensures durability. 8. Optional professional software and RS232 output for enhanced functionality. 9. Customizable local language display for user convenience. Main Parameters Load Cell 5 N(or as required) Accuracy 0.5 F.S. Sled 200 ±1g (or as required) Sled Size 63.5mm*63.5mm (or as required) Test Speed 100mm/min (ISO), 150mm/min (ASTM) Dimensions 540mm(L)*380mm(W)*240mm(H) Weight NW 21kg Power 110~220V 50/60Hz
Coefficient of Friction Tester measures the static and kinetic friction coefficient of plastic films, sheets, rubber, paper and paper board, medical device, thread, wires etc. The COF tester can also be customized for many types of materials as well. COF Test Standards ASTM D1894, ISO 8295, TAPPI T816, GB10006
Background Given the extensive applications of mop materials in diverse settings, including homes, offices, and industries, rigorous quality testing is essential. While their ease of washing and high absorbency are valuable traits, consistent performance over time is vital. Quality testing ensures mops retain their absorbency and durability, upholding their effectiveness in tasks such as cleaning kitchen surfaces, windows, and furniture. This process identifies and addresses potential issues, maintaining the reliability and functionality of mops across various uses. Application COF-S1 is a specialized coefficient of friction tester for mop and cleaning materials like microfiber mop pads, sponge mops with foam blocks (cellulosic, rubber, or plastic). Friction varies based on usage for liquids, dust, and dry surfaces. The mop's friction coefficient affects its cleaning efficiency and usability. Excessive friction raises labor intensity, while too little hampers cleaning, thus requiring a balanced coefficient for optimal performance. Formula COF is determined by dividing the force needed to move one surface across another by the force perpendicular to the surfaces. It has two kinds: Static and Kinetic. Static COF �µs is measure of force required to begin movement. Kinetic COF �µd is measure of force required to maintain movement. Test Method Fix the sample cloth to its aluminum or plastic frame, then the total assembled part is placed under a certain weight. The block, together with the sample and its frame, is pulled at a speed of 500mm/min, for 500mm distance. The static and kinetic coefficient of friction are recorded. Technical Features COF-S1 Mop Cloth Coefficient of Friction Tester is a PLC controlled and HMI screen operated equipment with industrial level stability. Equipped with user designated test range, and with variable test speed, itâ??s ideal for mop manufacturers to control quality and develop new product. Key Parameters (customization Available) Force Range 100N Resolution 0.5%FS Speed Adjustable 1~1000mm/min Speed Accuracy 0.1mm/min Sled 100*100mm Sled Weight 225g�±1g Total Sample Weight 520g�±1g Stroke 500mm Loadcell Height 50mm Test Mode 5 groups Power 110~220V
Product description The current booster is used on checking current transformer,to be the power source supply once current for current transformer or to be other 50Hz single phase current source device. Technical index Temperature Humidit Capacity: 20kVA Specification Weight: 75Kg Allow long-term work on the rated current Allowable overload 1.5 times,30 minutes of continuous work. Feature This PSLLQ is make up of input Winding(220V), output winding below 100A and CXRZ. Output current indicated on the nameplate is defined the rated current that through winding allow to pass.When CX many circles, the rated current its permitted to pass through will inversely decline. The value which ouput capcity divided by product of output current and each circle voltage was the biggest circle number allowing. The current booster is designed to provide the primary current power supply for the current transformer when verifying the current transformer or as other 50HZ single-phase power equipment. The current booster for transformer verification is suitable for power departments such as power testing, power measurement, and power maintenance. The current booster is developed and produced according to the industry standard of transformer error testing, and is used as a current transformer to verify the primary current of the current transformer. The output current can be customized according to customer requirements. The lifter is equipped with casters for easy on-site movement.
Coefficient of Friction Tester is specialized in measuring the static and dynamic coefficients of friction of plastic film and sheet, rubber, paper, cardboard, woven bag, fabric style, metal material composite belt for communication cable and optical cable, conveyor belt. By measuring the smoothness of materials, the quality of materials can be controlled and adjusted. In addition, it can be used to determine the smoothness of cosmetics, eye drops and other daily chemical products. Features The dynamic and static coefficient of friction of the samples can be measured simultaneously in one test. The speed can be adjusted to support different sliders. The instrument can meet the requirements of GB, ISO and ASTM and the testing method can be selected according to the demands of customers. The table and slide block are degaussed and processed by remanence , which effectively reduces the testing error. The tester is equipped with touch interface and controlled by micro-computer, which is convenient for users to carry out operation and view data. With professional software it can automatically process statistical analysis and reanalysis of original data of single and group results. In addition,superimposed comparison in group curves and multiple reports which can directly show the testing results to customers are obtained. Micro-printer and standard USB interface facilitate the external connection and transmission between the instrument and data sharing system of laboratory. Principle The two experimental surfaces are placed flat together. Under a certain contact pressure, the two planes move relatively to each other and the required force is recorded. The weight of the slider divided by the test force is the friction coefficient. Standards GB/T 10006, ISO 8295, ASTM D1894, TAPPI T816, HG/T 2729. Applications Basic Applications Plastic Films and Sheets, Paper and Paperboard, Textiles, Non-woven Fabrics and Woven Bags, Rubber, Aluminum Foils, Aluminum Foil Composite Films, Metal Products, Printing Matters. Extended Applications Wood and Flooring, Photographic Films, Grains, Hair, Pipes, Ball Shaped Materials, Medical Tubes, Lacquered Wires. Technical Specifications Test Range 0 ~ 5N (Optional: 0 ~ 10N) Accuracy 0.5%FS Stroke 70 mm, 150 mm Weight of Slider 200g (Note: sliders can be customized) Test Speed 100mm/min, 150mm/min (Adjustable) Dimension 630 mm (L) 360 mm (W) 230 mm (H) Power Supply AC 220V 50Hz Net Weight 33 kg Configurations Standard: Instrument, Micro Printer, Slider of 200g. Optional: Communication Cable, Professional Software, Non-standard Slider, Sliders of 1000g and 500g
Film Shrinkage Test Equipment Film Shrinkage Tester GBK-D1 Film Shrinkage test, known as linear thermal shrink test or free shrink test, is used for analyzing the effect of temperature on heat shrinkable films made from polyethylene, ethylene copolymers and their mixtures. Basically, shrinking force, contracting force and shrinking ratio can be measured in such determination. GBPI Film Shrinkage tester conforms to the multiple national and international standards: ASTM D2732 - Standard Test Method for Unrestrained Linear Thermal Shrinkage of Plastic Film and Sheeting ISO 14616 - Plastics Heatshrinkable films of polyethylene, ethylene copolymers and their mixtures Determination of shrinkage stress and contraction stress DIN 53369 - Testing of plastic films determination of the shrinking stress Film Shrinkage Test Equipment GBK-D1 is used to determination of the degree of unrestrained linear thermal shrinkage and dimensional stability at different temperatures. Widely used in industries of plastic material, plastic products, petroleum, chemicals, research institute, inspection agency and so on. Principle This tester uses the principle of air heating to connect the tested sample to the tension sensor and displacement sensor. After reaching the maximum shrinkage force, it is placed in an external test environment with an ambient temperature of 23 to cool down. The reference temperature, shrinkage force and displacement are recorded, and the recorded data can be used to determine the optimal shrinkage conditions of the film. Standards ISO 14616, ASTM D2732, DIN 53369
KRD32 series non-standard centrifugal constant acceleration testing machine is test equipment for military products to simulate dynamic centrifugal motion, dual-environmental force centrifugal motion and central high-speed rotating motion, so as to assess the anti-load performance of electronic components, small components and other electrical and electronic products and detect the anti-load performance specifications. It is mainly used for routine dynamic structural integrity and adaptability tests of components, small parts and small complete machine on aircraft. The acceleration rising rate is large Computer centralized control and measurement Fully digital network closed-loop remote control, high control accuracy Complete safety protection functions Technical Specifications Model KRD32-1 KRD32-2 KRD32-3 KRD32-4 KRD32-5 Dual-environment centrifugal constant acceleration tester High-speed spin tester Centrifugal dynamic overload tester Spin shock compound tester Centrifugal vibration compound tester Max. Load (kg) 5 5 50 3 1000 Max Acceleration (g) 150 / 20 Shock 10000g--1ms 50g Loading Rate (g/s) Customized / 10 / Standard Electro-Dynamic Shakers specifications Installation Radius (mm) Customized / 1500 / Customized Max. Rotating Speed (R/Min) 0-3000 0-100000 / 0-10000 / Collector Ring Optional according to user requirements Control Method Fully closed-loop digital network (remote) automatic control + manual control Power Supply AC 380V ± 10 50Hz Working Environment Temperature range 0 40, humidity 80% no condense)
The FPT-01 Friction and Peel Tester is a versatile and multifunctional device designed for various applications: Measurement of Coefficient of Friction: It accurately measures both static and kinetic coefficients of friction for a wide range of materials, including plastic films, sheets, rubber, paper, paperboard, PP woven bags, fabrics, composites, and more. This capability is valuable for understanding how materials interact with each other and with various surfaces. Delicate Peeling Force Test: The tester can perform delicate peeling force tests on materials such as release paper, adhesive tape, medical adhesives, composite films, and protective films. This feature is essential for assessing the ease of separation between different layers of materials, ensuring product quality and performance. The FPT-01 Friction and Peel Tester is a versatile instrument that serves as a valuable tool for quality control, product development, and research in industries dealing with a wide range of materials, from packaging to medical applications. System Description FPT-01 Friction and peel tester has a fixed loadcell position, with a protection cover. A movable plane is installed firmly to ball lead screw. The sled is to put on sample sticking to the plane, which is then connected to loadcell, with a filament. When performing peeling test, as the force is small, the right sample clamp is stuck to plane, using double side type. Then a separation action is performed to peel the sample and force is recorded during the process. Technical Features FPT-01 Friction and peel tester is a PLC-controlled unit with industrial-grade stability and operates through an intuitive HMI touch screen interface. The precision ball lead screw mechanism ensures consistent speed and displacement control. The system offers two distinct testing methods: one for measuring the coefficient of friction (COF) and another for assessing peeling forces. In COF tests, precise free speed settings are available, while peeling tests consider parameters that influence peeling results, such as initial and tail portions. Other features 1. Real-time data analysis and display, including results and graphical curves. 2. Compliance with various test standards. 3. Integration of a dot matrix micro printer. 4. Inclusion of an advanced peeling program. 5. Optional RS232 and software. Major Standards ISO 8295, ASTM D1894, TAPPI T816, ISO 8510-2, ASTM D4917, ASTM D3330, TAPPI T549 Main Parameters Force Range 5N, 10N, or 30N (or others) Accuracy 0.5 F.S. Sled 200�±1g (or as required) Stroke 500mm Test Speed 1~500mm/min Power 110~220V 50/60Hz
Product Introduction SF6 intelligent micro water quality tester is developed and designed according to the national power industry standard DL t506 2007 insulation gas humidity measurement method for sulfur hexafluoride electrical equipment and adopts the imported high precision dew point sensor and new digital circuit control technology. It is a high-precision intelligent instrument to measure the trace moisture content in SF6 gas. This instrument adopts intelligent self calibration technology wide measurement range fast response high accuracy good linearity dynamic display of measurement curve. At the same time the instrument also has an automatic dryer which can greatly reduce the measurement time. Technical Parameters Measuring range Dew point value 80 20 Moisture content 0 19999uLL Accuracy of measurement 0.5 60 20 1.0 80 60 The resolution of the Dew point value 0.1 Moisture content 1uLL Response time 20 0.1mpa 63 needs 5s 90 needs 45s 60 20 63 needs 10s 90 needs 240s 20 60 Sampling flow 0.6L min 20 Pressure range 01.0Mpa The use of temperature 20 60 Environmental humidity 0 100 RH Storage temperature 20 80 Charging time 4 hours The whole machine size 250 150 300mm3 The weight of The machine 3.5kg