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A study of PVD coatings and die materials for extended die-casting die life

机译:PVD涂层和模具材料的研究,以延长压铸模具的使用寿命

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There have been some applications of PVD coatings to extend die-casting die life, mainly by reducing molten metal corrosion and erosion to the die. However, die steel heat checking (or thermal cycling induced cracking) resistance is affected significantly by the PVD coatings. This paper presents the results of a systematic study involving three H series and two maraging hot work tool steels with and without TiN, TiAlN and CrN PVD coatings, in terms of heat checking resistance, hardness and impact toughness changes, as well as molten aluminum corrosion resistance. TiN, TiAlN, and CrN PVD coatings can provide significant corrosion and erosion resistance to molten aluminum. However, TiN coating does nor last long because of its lower oxidation temperature. The influence of a coating on heat checking resistance is determined by the substrate material and coating variables. Of H10, H13, H19, Marlok and HWM steels, only H19 steel has a significant reduction in heat checking resistance because of the coatings, H19 and HWM steels have much lower impact toughness than WIG, H13 and Marlok steels. However, HWM and uncoated H19 steels have much higher heat checking resistance than other steels. HWM has the smallest change in impact toughness and hardness after thermal cycling. The applications of a specific die steel in combination with a PVD coating to address specific problems are also discussed. This die-life extension and cost saving approach is very important because different failure mechanisms occur in different areas in the same die cavity. It is especially true for large and complex automotive dies. Published by Elsevier Science S.A.
机译:PVD涂层在延长压铸模具寿命方面有一些应用,主要是通过减少熔融金属对模具的腐蚀和侵蚀。但是,PVD涂层会显着影响模具钢的耐热检查(或热循环诱发的开裂)性能。本文介绍了系统研究的结果,涉及耐热性,硬度和冲击韧性变化以及铝熔液腐蚀方面的研究,该研究涉及三种H系列和两种具有和不具有TiN,TiAlN和CrN PVD涂层的马氏体时效热作工具钢。抵抗性。 TiN,TiAlN和CrN PVD涂层可为熔融铝提供显着的抗腐蚀和抗腐蚀性能。但是,TiN涂层的氧化温度较低,因此使用寿命不长。涂层对耐热检查性的影响由基材材料和涂层变量决定。在H10,H13,H19,Marlok和HWM钢中,只有H19钢由于涂层而使耐热检查性显着降低,H19和HWM钢的冲击韧性比WIG,H13和Marlok钢低得多。但是,HWM和未涂层的H19钢具有比其他钢更高的耐热检查性。在热循环后,HWM的冲击韧性和硬度变化最小。还讨论了将特定的模具钢与PVD涂层结合以解决特定问题的应用。延长模具寿命和节省成本的方法非常重要,因为在同一模具腔体的不同区域会出现不同的失效机制。对于大型和复杂的汽车模具尤其如此。由Elsevier Science S.A.发布

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