6 companies for Stress Screening Test Chambers ✓ B2B manufacturers, distributors & suppliers from 2 countries ✓ With special service for fast information and prices ✓
CHONGQING YINHE EXPERIMENTAL EQUIPMENT CO., LTD.
- Rapid temperature change test chamber - "Hi" series of products:compared with the same cooling rate requirements, the machine effi...
- Lithium cell high and low temperature test chamber - Workroom size:1000×1000×700mm(D×W×H) Temperature range: -40℃~150℃ Tempera...
- Lithium cell high and low temperature test chamber - Workroom size:800×1200×600mm(D×W×H) Temperature range: -40℃~150℃ Temperat...
- Lithium cell high and low temperature test chamber - Workroom size:700×1000×700mm(D×W×H) Temperature range: -40℃~150℃ Temperat...
- Lithium cell high and low temperature test chamber - Workroom size:800×850×600mm(D×W×H) Temperature range: -40℃~150℃ Temperatu...
- Lithium cell high and low temperature test chamber - Workroom size:600×1000×600mm(D×W×H) Temperature range: -40℃~150℃ Temperat...
Guangdong Zhongzhi Testing Instrument Co., Ltd.
- Servo Carton Compression Tester - Features Imported servo motor, imported ball screw. Test of compressive strength, maximum crus...
Pressure tension test equipment is used to test the performance and strength of materials, components or structures under pressure or tension. The following are its features and advantages:
Versatility: The pressure tension test equipment can perform many types of tests, including static tension, static compression, dynamic fatigue, yield point determination, etc. This makes them suitable for a wide range of applications, including materials science, engineering, manufacturing and more.
High precision: These devices usually have a high precision measurement system that can accurately measure and record the deformation, stress, strain and other parameters of the material when it is stressed. This provides reliable test data for analyzing the properties and strength of the material.
Safety: Pressure tension test equipment is usually designed with safety protection measures to ensure the safety of operators and equipment. For example, equipment may be equipped with emergency stop buttons, overload protection devices, shields, etc.
Programmable control: These devices are often equipped with advanced control systems that allow automated testing and have programmable test procedures. This makes the testing process more convenient, efficient, and enables the realization of complex testing requirements.
Data analysis and report generation: Tension test equipment is usually equipped with data analysis software, which can process and analyze test data and generate test reports. This makes it easy to assess the properties, strength and durability of the material, and to carry out quality control and improvement.
High reliability and durability: These devices are usually made of high-quality materials and components with good durability and reliability. They are able to withstand long periods of testing and reuse without compromising performance or accuracy.
Customizability: Pressure tension test equipment can often be customized to meet specific test needs. You can adjust test parameters, add additional functions, or modify the device structure to meet the requirements of different applications.
In short, tension test equipment offers the advantages of versatility, high accuracy, safety, programmable control, data analysis and report generation, high reliability and durability, and customizability. These characteristics make it an important tool for evaluating the properties and strength of materials, and it is widely used in various engineering and scientific fields.
A pressure tension tester is a device used to test the mechanical properties of materials and products. Its parameters can vary depending on the specific model and manufacturer, but here are some possible parameters:
Maximum pressure/load: The maximum pressure or load that the test machine can apply. It is usually expressed in Newtons (N) or kilograms of force (kgf).
Maximum tensile force: The maximum tensile force that the test machine can apply. Again in Newtons (N) or kilograms of force (kgf).
Test speed: The speed at which the test machine applies or applies force. It is usually measured in millimeters per minute (mm/min) or inches per minute (in/min).
Test travel: The maximum distance or displacement that the test machine can move. Measured in millimeters (mm) or inches (in).
Control mode: The control mode of the test machine, which can be manual operation, electronic control or computer control.
Test method: The pressure tension test machine can usually be used for different test methods, such as tensile, compression, bending, etc.
Sensor/Measuring range: The range of sensors or measuring equipment equipped with the test machine. These sensors can measure force, displacement, deformation and other parameters.
Sample size: The sample size range applicable to the tester. This can cover different lengths, widths, thicknesses and other dimensions.
Data recording and analysis: Whether the test machine has data recording and analysis functions for subsequent processing and analysis of test results.
Please note that these parameters are for reference only and actual pressure tension testing machines may have additional parameters depending on the model and manufacturer of the equipment.
Pressure tension is a test method used to assess the strength, elasticity and deformation behavior of a material. It has a wide range of applications, covering many industrial and scientific fields, including the following main areas:
Materials Science and Engineering: Pressure tension testing is one of the common test methods in the field of materials science and engineering. It is used to evaluate the mechanical properties of materials, including the strength, ductility, toughness, rigidity, etc. This is very important for the selection, design and quality control of materials, and can be applied to the research and application of various materials such as metals, plastics, rubber, and composite materials.
Manufacturing and Engineering applications: Pressure tension testing has a wide range of applications in manufacturing and engineering. It is used to assess the strength and reliability of parts, assemblies or assemblies to ensure product quality and safety. For example, in the automotive industry, pressure tension testing is used to assess the strength and rigidity of body structures and vehicle components. In the aerospace industry, it is used to assess the strength and durability of aircraft components.
Material development and performance evaluation: Pressure tension testing plays an important role in the development and performance evaluation of new materials. It can help researchers understand the mechanical behavior of materials, evaluate the performance characteristics of new materials, and compare them with existing materials. This is crucial for developing new materials, improving material properties and optimizing material design.
Medical devices and biomedical fields: Pressure tension testing is also widely used in medical devices and biomedical fields. It is used to assess the strength and reliability of medical devices such as implants, prosthetics and medical devices. In addition, it is used to evaluate the performance of biological materials, such as artificial joints, tissue engineering scaffolds, etc.
Material durability and fatigue assessment: Pressure tension testing can also be used to assess the durability and fatigue behavior of materials. By applying dynamic loading and cyclic stress, it is possible to simulate the stress change of the material under actual use conditions, and evaluate the fatigue life and anti-fatigue properties of the material. This is important for designing and evaluating structures and equipment with high durability requirements.
In general, pressure tension testing has a wide range of applications in materials science and engineering, manufacturing, materials research and development, medical devices and biomedical fields, and material durability and fatigue assessment. It is an important tool for assessing the strength and properties of materials, helping to improve product design, optimize material selection, and improve product quality and reliability.
Weiss Umwelttechnik is one of the most innovative and significant manufacturers of environmental simulation systems. With these testing systems, we can simulate all climatic conditions around the globe and beyond, under accelerated conditions. Whether temperature, climate, corrosion, dust or combined shock testing: We have the proper solution. We supply systems in all sizes, from standard versions up to customised, process-integrated facilities – for high reproducibility and precise test results.
Chroma Germany GmbH
Manufacturer ✓ Supplier ✓ Service provider ✓- Stress Screening Test Chambers
Stress screening test chambers for temperature and climate of the TS and CS series
Based on the modular concept of the standard series, our temperature and climatic stress screening test chambers enable very high temperature change rates of up to 30 K/min with conventional refrigeration technology, or up to 70 K/min with liquid nitrogen. These devices enable you to determine the load limits of your test specimen very quickly in fast motion.
Test chamber volume in litres:
Temperature ranges:
-40 °C / +180 °C
-70 °C / +180 °C
Temperature change rates:
5 to 30 K/min
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