In a broad sense, the peeling force test machine can also be said to measure the breaking force. Then, in actual operation, how do we distinguish the Tensile Testing Machine from the peeling force testing machine? What is the difference between them? Today, Cable Detection Equipment Factory shares with you, in addition to the shape, we can also distinguish between the tensile testing machine and the peeling force testing machine:
(1) Different scope of application
Peel force testing machine:
Suitable for plastic film, composite materials, flexible packaging materials, plastic hoses, adhesives, adhesive tapes, stickers, medical patches, protective films, release papers, composite covers, metal foils, separators, backsheet materials, Stretching, peeling, deformation, tearing, heat sealing, bonding, puncture force, opening force, low speed unwinding force, and pulling force of non-woven fabrics, rubber, paper fibers and other products.
Tensile testing machine: It is suitable for testing various physical and mechanical properties of plastic sheet, pipe, profile, plastic film and rubber, wire and cable, waterproof coil, wire and other materials. The tensile machine is used for metal materials and non-metal materials. Mechanical mechanical force for tensile, compression, bending, shearing, peeling, etc.
(2) Different structural principles:
Peel force testing machine:
The horizontal structure is adopted, and the load chuck is driven by the high-precision gear reduction electronic speed regulating motor, and the loading performance is stable. The whole machine is composed of a drag motor, a main body casing, a microcomputer controller, a micro printer, etc., and the force measuring unit is composed of a high-precision force value sensor and a digital control system using a single chip microcomputer as a central processing unit.
Tensile testing machine:
Consisting of one or two vertical load-bearing columns and a liquid crystal display, the load-bearing column is mounted on a fixed horizontal base with a movable horizontal beam at the top. In most of today's electronic tensile machines, the struts are typically driven by a lead screw to determine the position of the moving beam. The specifications of the tensile testing machine are represented by a combination of the large load that the frame can withstand and the large load of the carrying unit.
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