Road Vehicle Wire or Cable Bending Tester

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(max file size 512 MB)

Specifications:-

Customized support:-OEM, ODM

Test speed:-10 – 60 times/min

Application:-Wire or Cable Bending Tester

Model Number:-D545

Wire current:-100 mA

Power supply:-AC220V, 50Hz

Surface dealing:-Baking finish

Fixture curvature:-R4.5mm, R5.6mm, R6.9mm

Bending angle:-30°, 45°, 60°, 90°

Power:-Electronic

Standard:-UL 817

Test sample:-6 sets

Product Description

Road Vehicle Wire or Cable Bending Tester

 

  1. Application

    it is suitable for shielded bending, rocking test of round, sheathed cables and unshielded multi-core for road vehicles.2. Standards

    Meet the requirements of GB/T25087-2010 standard.
3. Technical parameters
Working power supply AC220V 50Hz
Test speed 10-60 times/minute Adjustable
Bending angle 30°, 45°, 60°, 90° can be set
Test sample 6 sets of wire tests are performed at the same time.
The total number of swings is 7 counters One of swings 0-999999 can be preset, the is the total number of the other 6 counts the number of times is one per sample of the test to the time work piece from the start of the piece, used to each of the bends.
Weight 36 pcs for each of 12.5N, 20N, 30N, 50N, 80N, and 125N
Conductor continuity detection Wire current 100mA, voltage 12V
Fixture curvature R4.5mm, R5.6mm, R6.9mm, R10mm, R12.75, R16mm

 

Frequently Asked Questions:-

What is the purpose of bending?

A bending tool (DIN 8586) Its purpose is to assemble is tool during a linear or manufactured by using a bending machine is a forming machine a bend on a workpiece.

What is meant by the bend test?

A bend test is a yield property of certain materials. Bend tests for methods for measuring stiffness and evaluating the quality ability to resist one of the materials by ductility cracking or other surface irregularities provide a simple way for their continuous bend.

What is bending stress?

Bending stress is When a beam experiences load like that shown of the beam undergoing a horizontal plane more specific type of normal stress in figure one is the normal bottom fibers of the beam compressive stress. The stress at the top fibers of the neutral is zero. They undergo normal tensile stress.