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Progress in the Characterization of the Cutting Resistance of Protective Materials

机译:保护材料的耐切削性表征研究进展

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A sliding sharp edge that penetrates a material is one of the most dangerous cases of cutting because it requires the smallest applied normal load. This study aims to analyze the cutting mechanics and mechanism of protective rubber materials in the presence of friction and the effect of the material's mechanical behavior and the blade's sliding velocity on the material's cut resistance. The International Standard ISO 13997 cut test method, which consists of measuring the distance that a straight blade slides horizontally to cut through a material under a constant applied normal force, was used to investigate the cutting phenomena. In practice, the cut resistance of a material is given by the contribution of the material's intrinsic strength and the frictional distribution between the material and the blade that slides and penetrates it. This study demonstrates that two types of friction are involved in material cutting: a macroscopic friction induced by the gripping of the material and by the applied normal load on the two sides of the blade; and a sliding friction associated with cut-through of the material that occurs along the face of the blade tip. For rubber materials, commonly used in protective gloves, the adhesion force due to the gripping of the material on the blade edge could be several times greater than the friction due to the applied normal force. Thus, the cutting energy required to break the molecular chains in rubber materials is much smaller than the energy dissipated by friction. For these materials, the elastic modulus, the structure of the material, as well as the sliding velocity, have a significant effect on the friction. Therefore, all of these properties can affect the cutting resistance results. A better understanding of the cutting mechanism in protective materials is a fundamental step in developing better performing protective materials.
机译:穿透材料的滑动锋利边缘是最危险的切割情况之一,因为它需要的外加法向载荷最小。本研究旨在分析在存在摩擦的情况下保护性橡胶材料的切割机理和机理,以及材料的机械性能和刀片的滑动速度对材料的抗切割性的影响。使用国际标准ISO 13997切割测试方法来研究切割现象,该方法包括测量直刀片在恒定法向力下水平滑动以切割材料的距离。在实践中,材料的抗切割性由材料的固有强度以及材料与滑动和穿透它的刀片之间的摩擦分布所决定。这项研究表明,材料切割涉及两种类型的摩擦:由材料的抓握和在刀片两侧施加的法向载荷引起的宏观摩擦。以及与沿着刀片尖端的表面切入材料相关的滑动摩擦。对于通常用于防护手套的橡胶材料,由于材料在刀刃上的夹持而产生的粘附力可能是由于施加法向力而产生的摩擦力的几倍。因此,断裂橡胶材料中的分子链所需的切割能量远小于摩擦耗散的能量。对于这些材料,弹性模量,材料结构以及滑动速度都会对摩擦产生重大影响。因此,所有这些特性都会影响切削阻力的结果。更好地了解保护材料的切割机理是开发性能更好的保护材料的基本步骤。

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