KRD15 pneumatic horizontal shock response spectrum tester is the special equipment for spectrum specification shock test, so it can also be called spectrum specification shock machine. The advantages of this equipment are convenient energy adjustment, simple and compact structure, easy operation, and a good repeatability of test results. It is the state-of-the-art shock response spectrum tester, using compressed gas energy to provide impact energy, and the shock hammer is pushed to impact the resonance plate to produce high-energy impact. It can meet the requirements of various spectrum specifications established by the current aerospace system, mainly applied in the industries of aerospace, aviation, and ships.
FEATURES OF KRD15 PNEUMATIC HORIZONTAL SHOCK RESPONSE SPECTRUM TESTING SYSTEM
Adopts pneumatic energy storage to drive the shock hammer, with a large driving force, reliable structure, and fast response speed
Adjust the driving shock energy by adjusting the air pressure, which is easy to operate and high in efficiency
Two-level safety switch is designed to fully protect the safety of operators
Designed with a special base, is mainly to raise the installation position of the response plate, which is convenient for users to install the specimen and adjust the gasket operation
All operations are completed on the integrated measurement and control software, which is easy to use and has a high degree of automation
TECHNICAL SPECIFICATIONS OF KRD15 PNEUMATIC HORIZONTAL srs shock response spectrum TEST SYSTEM
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TABLE OF KRD15 PNEUMATIC HORIZONTAL SHOCK RESPONSE SPECTRUM TEST SYSTEM
The main structure of the shock response spectrum tester mainly includes a test machine table, a shock response spectrum control measurement analysis system, etc.
KRD15 pneumatic horizontal shock response spectrum tester mechanical system consists of a shock table, a response plate, a pneumatic self-locking mechanism, a pneumatic return device, etc.
The specimen is installed on the response plate of the horizontal shock response spectrum tester. When the shock hammer shocks the response plate, the specimen on the response plate produces the corresponding move after the shock is applied. The acceleration sensor collects the acceleration on the response plate and performs the response spectrum analysis.
ACTUAL PHYSICAL SYSTEM IS DIVIDED INTO MULTIPLE SINGLE DOF SYSTEM PHYSICAL MODELS
An actual physical system can be decomposed into multiple different single-DOF systems. For each single-degree-of-freedom system, analyze and calculate the shock response spectrum, and finally synthesize it to get the shock response spectrum of the entire system, as shown in Figure 1 below.
Location : No.3 Upgrade Demonstration Base, West of Yongchang Rd., High-tech Zone, Xianyang City, Shaanxi Province, 712023 China, 712023 High-tech,
Contact : chnology cmete, 029 38128695