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Address
Building 3, No. 601 Huayu Road, Qianshan Industrial Park, Xiangzhou District, Zhuhai City
Zhuhai Sansi Taijie Electrical Equipment Co., Ltd
Building 3, No. 601 Huayu Road, Qianshan Industrial Park, Xiangzhou District, Zhuhai City
Application of electro-hydraulic servo steel strand testing machine equipment:
This testing machine is mainly used for various standard tests in the national regulations on steel strand tensile testing (such as GB/T5224-2003 regulations on prestressed steel strand tensile testing). The clamping jaws are specially designed for steel strand testing, with a clamping block length of 230mm, which can effectively clamp the ends of metal wrapped or metal cast steel strands, suitable for steel strands with 5 cores, 7 cores or more steel wire cores. The distance between the upper and lower jaws is 1160mm, suitable for the length of standard steel strand specimens.
Microcomputer controlled electro-hydraulic servo steel strand testing machineDetailed information:

Microcomputer controlled electro-hydraulic servo steel strand testing machineUsage and characteristics:
The WAW-G microcomputer controlled electro-hydraulic servo steel strand testing machine is a high-precision material testing equipment that uses hydraulic power source drive, electro-hydraulic servo control technology, computer data acquisition and processing, and can achieve closed-loop control and automatic detection. It consists of four parts: the testing host, oil source (hydraulic power source), measurement and control system, and testing equipment. The maximum testing force is 1000kN, and the accuracy level of the testing machine is level 1.
The mainframe of the testing machine is a six column frame structure, with the main oil cylinder placed below. The main structure consists of a base, oil cylinder, test bench, lower crossbeam, upper crossbeam, screw, light bar and other components. The base is equipped with a screw drive and transmission mechanism, which adjusts the test space by driving the lower crossbeam up and down through the rotation of the screw. The piston rises by moving upwards through high-precision load sensors, test benches, columns, and upper crossbeams to complete stretching, while the same action can complete compression between the test bench and lower crossbeam.