单柱微控拉力试验机为工程设计和材料选择提供可靠的数据支持

The single-column micro-controlled tensile testing machine uses a servo motor drive system to drive the cross beam up and down to realize the test loading process. The loading speed and force measurement range have higher accuracy and sensitivity to the measurement and control of load, deformation and displacement, and can also carry out automatic control tests of constant speed loading, constant speed deformation and constant speed displacement, and have functions of low cycle load cycle, deformation cycle and displacement cycle. It is equipped with a sophisticated micro-control system for automated control and data acquisition. Users can control the test process and monitor load changes and displacement in real time by setting specific pull or pressure values.

The single-column microcontrolled tensile testing machine can select different load ranges according to different test requirements. It usually has a large measurement range, ranging from a few cattle to hundreds of thousands of cattle, to adapt to the testing needs of different materials. Equipped with high-precision sensors and measuring devices, it can measure the load, 移位, deformation and other parameters of the test sample in real time. These data can be used for mechanical properties analysis and curve drawing to evaluate the properties of the material. A variety of test modes can be carried out, such as constant speed tensile, constant load tensile, cyclic tensile, ETC. Users can choose the appropriate test mode according to the specific test requirements.

单柱微控拉力试验机为工程设计和材料选择提供可靠的数据支持

应用行业: Metallurgical industry, 石油化学工业, 航天, shipbuilding industry, machinery casting, automobile manufacturing, rubber plastics, 复合材料, 电线电缆, wind power generation, photovoltaic energy, 设备, biomedicine, doors and Windows building materials, wood industry construction, 纺织品, paper packaging, electronics and electrical, 电线电缆, 设备, electric power nuclear energy, 学院和大学, 科研单位, supervision, commodity inspection arbitration departments and other fields. It is a device used to measure the mechanical properties of materials. It has the features of single column design, microcontrol system, multiple load ranges, high precision measurement and multiple test modes. Through this equipment, we can accurately measure and analyze the performance of materials under stress, and provide reliable data support for engineering design and material selection.

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