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Drawing method test principle [with schematic diagram]

Abstract: 划格法测试用于测量涂层的附着力,通过锋利的刀子在薄膜和基材之间施加精确的力来实现。尽管这种方法看起来简单,但实际上涉及复杂的剥离过程,包括剪切应力和拉伸应力,最终导致薄膜的解体。测试过程中,杠杆效应和各种力的角度也会影响结果。在刀切法中,多个因素如刀具前角、涂层厚度、摩擦力和能量损失等都会影响结果。为了确保准确性,所有相关参数需严格控制或准确估计。

There are two specific methods for testing adhesion, and the procedure for loosening the bond between the paint film and the substrate is fairly similar (Figure 6.6). In one approach, film separation is achieved with a sharp knife, pushed along the interface with precisely measured force.

While this seems like a simple test method, the peeling process is actually complex, involving shear stress and tensile stress, which eventually lead to the disintegration of the film. In addition, a leverage effect plays a role in the detachment of the coating, and the strength of this effect can be characterized by the angle at which the force acts on the film.

Cross-cut test principle [attached schematic diagram] with Figure 1

Figure 6.6 Adhesion measurement setup based on the layering procedure.

Cross-cut method test principle [attached schematic diagram] with Figure 2

Figure 6.7 Effect of Mechanical Paint Film Properties on Knife Cut Test Results

In knife cutting, the principle of removing paint film is similar to machining metal on a lathe. A specific power system becomes effective here. It consists of the rake angle of the knife, the thickness of the coating, the friction between the knife and the coating and the substrate, the energy stored elastically in the film and the energy loss caused by plastic deformation, the fracture energy that occurs during the decomposition process in the film, and other secondary factors. desired impact.

To obtain meaningful results, all of these parameters should be tightly controlled, or at least their impact estimated as accurately as possible. In many cases, however, the details of the separation process show.


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