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Adapted diffusion processes for effective forging dies

机译:适用于有效锻造的扩散过程

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Hot forging is an effective production method producing safety relevant parts with excellent mechanical properties. The economic efficiency directly depends on the occurring wear of the tools, which limits service lifetime. Several approaches of the presenting research group aim at minimizing the wear caused by interacting mechanical and thermal loads by using enhanced nitriding technology. Thus, by modifying the surface zone layer it is possible to create a resistance against thermal softening provoking plastic deformation and pronounced abrasive wear. As a disadvantage, intensely ni-trided surfaces may possibly include the risk of increased crack sensitivity and therefore feature the chipping of material at the treated surface. Recent projects (evaluated in several industrial applications) show the high technological potential of adapted treatments: A first approach evaluated localized treatments by preventing areas from nitrogen diffusion with applied pastes or other coverages. Now, further ideas are to use this principle to structure the surface with differently designed patterns generating smaller ductile zones beneath nitrided ones. The selection of suitable designs is subject to certain geometrical requirements though. The intention of this approach is to prevent the formation and propagation of cracks under thermal shock conditions. Analytical characterization methods for crack sensitivity of surface zone layers and an accurate system of testing rigs for thermal shock conditions verified the treatment concepts. Additionally, serial forging tests using adapted testing geometries and finally, tests in the industrial production field were performed. Besides stabilizing the service lifetime and decreasing specific wear mechanisms caused by thermal influences, the crack behavior was influenced positively. This leads to a higher efficiency of the industrial production process and enables higher output in forging campaigns of industrial partners.
机译:热锻是一种有效的生产方法,生产出具有优异的机械性能的相关部件。经济效率直接取决于工具的发生磨损,限制了服务寿命。呈现研究组的几种方法旨在通过使用增强的氮化技术来最小化通过使用增强的机械和热负荷引起的磨损。因此,通过改变表面区域层,可以产生抗热软化挑衅塑性变形和发音磨损的电阻。作为缺点,强烈的Ni闪电表面可能包括增加裂缝敏感性的风险,因此在处理过的表面处具有材料的碎裂。最近的项目(在若干工业应用中评估)显示了适应治疗的高工艺潜力:首先通过防止氮气扩散与施加的糊剂或其他覆盖范围来评估局部处理。现在,进一步的想法是利用该原理用不同设计的图案来构造表面,不同设计的图案产生较小的延性区域。虽然,选择合适的设计受到某些几何要求。这种方法的目的是防止在热冲击条件下形成和传播裂缝。用于热冲击条件的表面区层裂纹敏感性的分析表征方法及其测试钻机的精确系统验证了治疗概念。此外,使用适应性测试几何形状的串行锻造测试,最后进行了工业生产领域的测试。除了稳定服务寿命和减少由热影响引起的特定磨损机制之外,裂纹行为是积极影响的。这导致工业生产过程的更高效率,并使工业伙伴的锻造活动更高。

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