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首页> 外文期刊>HTM: Zeitschrift fur Werkstoffe Warmebehandlung Fertigung >Ceramic Coatings via MOCVD in Injection Molding Tools to Influence Thermal and Demolding Properties
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Ceramic Coatings via MOCVD in Injection Molding Tools to Influence Thermal and Demolding Properties

机译:通过MOCVD在注塑工具中通过MOCVD陶瓷涂层,以影响热和脱模性能

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摘要

Tool surfaces can be protected against corrosion and wear by thin film coatings. In addition to the protective properties, ceramic materials with low thermal conductivity, such as yttrium-stabilized zirconium oxide, can thermally insulate tool surfaces. In an injection molding process, the thermal insulation enables a more precise partial tempering and can thus be used to reduce surface defects on the plastic parts produced. Furthermore, the coating can have a positive effect on the demolding of the plastic parts. The coatings are applied in a hot wall reactor by metal organic chemical vapor deposition (MOCVD). This enables a homogeneous application of zirconium oxide based thin films on steel tools with complex 3D surfaces. The performance of the coatings was evaluated in various injection molding tests and assessed by the quality of the manufactured parts.
机译:可以通过薄膜涂层保护刀具表面免受腐蚀和磨损。 除了保护性能外,具有低导热率的陶瓷材料,例如钇稳定的氧化锆,可以热绝缘工具表面。 在注射成型工艺中,热绝缘能够更精确的部分回火,因此可以用于减少所产生的塑料部件上的表面缺陷。 此外,涂层可以对塑料部件的脱模具有积极影响。 通过金属有机化学气相沉积(MOCVD)在热壁反应器中施加涂层。 这使得在具有复杂的3D表面的钢工具上均匀地应用氧化锆的薄膜。 在各种注射成型试验中评价涂层的性能,并通过制造部件的质量评估。

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