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Grading Technologies for the Manufacture of Innovative Cutting Blades

机译:用于制造创新切割刀片的分级技术

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Cutting blades for harvesting applications are used in a variety of agricultural machines. These parts are in contact with highly abrasive lawn clippings and often wear out within hours which results in high expensive re-sharpening maintenance. This paper relates to manufacturing techniques enhancing the durability of cutting blades based on a structural analysis of the prevailing wear mechanisms containing chipping and abrasive wear. Each mechanism results in specific demands on the cutting edge's mechanical characteristics. The design of evaluation methods respectively is one issue of the paper. This is basis for approaches to improve the cutting edge performance on purpose. On option to improve abrasive wear resistance and, thus, service life is the application of locally graded steel materials as semi-finished products for self-sharpening cutting blades. These materials comprise a layered structure consisting of a hard, wear resistant layer and a relatively softer layer which is lesser wear resistant. As the cutting blade is subjected to wear conditions, the less wear resistant layer wears faster than the relatively more wear resistant harder layer revealing a durable cross section of the cutting edge and, thus, cutting performance. Anyways, chipping is another key issue on the cutting edge's lifetime. Here, the cutting edges cross section by means of geometry and grind respectively as well as its mechanical properties matter. FEM analysis reveal innovative options to optimize the cross section of the blade as well as thermomechanical strengthening add further strength to reduce chipping. This paper contains a comprehensive strategy to improve cutting blades with use of innovative manufacturing technologies which apply application-specific graded mechanical characteristics and, thus, significantly improved performance characteristics.
机译:用于收获应用的切割刀片用于各种农业机器。这些部件与高度磨料的草坪剪液接触,并且经常在小时内磨损,从而导致高昂贵的重新锐化维护。本文涉及基于含有碎裂磨损的主要磨损机构的结构分析,提高切割叶片耐久性的制造技术。每种机制都会导致对切削刃的机械特性的具体要求。评估方法的设计分别是纸张的一个问题。这是用于故意改善切削刃性能的方法的基础。从而改善磨料耐磨性的选择,因此,使用寿命是局部分级钢材作为自锐化切割刀片的半成品。这些材料包括由坚硬,耐磨层和相对较软的层组成的层状结构,其耐耐磨。当切割刀片经受磨损条件时,耐磨损层较少的耐磨性比相对较长的耐磨性层更加易于显示切削刃的耐用横截面,因此切割性能。无论如何,切削是尖端的寿命的另一个关键问题。这里,通过几何形状和研磨的切割边缘横截面以及其机械性质物质。 FEM分析揭示了创新的选择,以优化刀片的横截面以及热机械加强增加进一步的强度以减少切削。本文包含了一种全面的策略,可利用采用创新制造技术来改善切割刀片,这些技术适用于特定于应用的分级机械特性,从而显着提高了性能特征。

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