MHI Bevel Shock Test System

MHI Bevel Shock Test System

The MHI series bevel shock test machine is a new testing system designed for bevel tests under varying conditions. It is primarily used to simulate a product's ability to withstand shocks during transportation, such as those caused by carrying, handling, replacing, or emergency braking. This environmental testing machine is suitable for bevel shock tests in industries related to packaging technology, package manufacturing, and transportation.

TMC offers standard models of 200, 500, 1000, and 2000kg.

  • Maximum velocity 2.7 m/sec.

  • The table can be adjusted to a level state, making it easier to install the specimen.

  • Remote control fully guarantees personal safety.

FEATURES

The MHI shock test machine is designed to meet the basic test criteria for package transportation. The guide rail on the machine has a 10° angle between its surface and the horizon and is 7 meters long. To complete the test, you need to pull the small analog trolley on the test table to the upper part of the ramp, release the trolley, and let it hit the dam-board after sliding down. The shock dam-board squares to the guide rail with high precision to conform to the shock that occurs in an actual environment.

The MHI shock test machine is equipped with a variety of useful features to facilitate testing procedures. One notable feature is its flexible positioned electric sliding trolley, which can be easily fixed in place and achieve the desired speed test value with precision. Additionally, its low sliding height simplifies the installation of products to be tested, while the adjustable sliding board further enhances the ease of product installation by offering a horizontal configuration. The machine's remote control operation adds a layer of safety and convenience for test operators, ensuring a secure testing environment. Moreover, the machine's straightforward installation process involves simply fixing it to the floor without the need for complex procedures, streamlining the testing process.

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