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656 /868 wire fence

To evaluate the strength and durability of 656/868 wire fence, it usually needs to be carried out in accordance with internationally accepted test methods and standards. Among them, commonly used test methods include tensile test, bending test, impact test and weather resistance test. Through these tests, the mechanical properties, corrosion resistance and weather resistance of 656/868 wire fence can be comprehensively evaluated.

Chain link fence
Stretching test
Tensile testing is one of the most commonly used methods to evaluate the strength of 656/868 wire fence. In a tensile test, a wire mesh sample is gradually stretched until it breaks or reaches a predetermined amount of elongation. Through the tensile test, the tensile strength, elongation, elastic modulus and other parameters of 656/868 wire fence can be obtained, and then its strength level and use range can be judged.

Chain link fence

Bending test
The bending test is mainly used to evaluate the bending strength and stiffness of 656/868 wire fence. In a bend test, a wire mesh sample is placed in a bending device and its bending angle is gradually increased until it breaks or reaches a predetermined bending angle. Bending tests can be used to evaluate the structural stability and fatigue resistance of 656/868 wire fence.

Chain link fence
Weather resistance test
Weather resistance test is an important means to evaluate the corrosion resistance and weather resistance of 656/868 wire fence under various environmental conditions. In the weather resistance test, the 656/868 wire fence samples will be exposed to different environmental conditions (such as sunlight, rain, high temperature, low temperature, etc.), and their surface changes, weight loss, and structural integrity will be observed after a period of time. changes to evaluate its weather resistance.

Impact test
The impact test is a method to evaluate the stability and durability of 656/868 wire fence when subjected to external impact. In the impact test, the 656/868 wire fence sample will be impacted at different speeds and energies, and its changes in deformation, cracks and fractures will be observed to evaluate its stability and durability under the action of external forces.

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