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Surface adhesion between ceramic injection molding feedstocks and processing tools

机译:陶瓷注射成型原料和加工工具之间的表面附着力

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Interfacial adhesion between highly filled aluminum and zirconium oxides ceramic compounds and CIM (Ceramic Injection Molding) processing tools was investigated from contact angle measurement. Polymers considered as binder components were low density polyethylene, paraffin wax, polyethylene glycol, camauba wax, acrawax, and stearic acid. Channel walls of the mold were constructed from hardened, TiN hardened, nitridized and heat-treated steels. From the calculated surface energies, the superiority of heat-treated steel as well as acrawax and especially polyethylene glycol as binders is derived. Carnauba wax shows similar wettability as stearic acid, thus becoming promising substitute for the role of processing aid. Concerning tested ceramic powders, Al2O3 revealed somewhat higher polar component of the surface energy than ZrO2. The differences in total surface energies of powders and binders are all about 3 J/m(2) lower (PEG) or higher (PW, LDPE, AW, CW, SA) for Al2O3 powder than for ZrO2. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:从接触角测量研究了高度填充的氧化铝和锆氧化物陶瓷化合物与CIM(陶瓷注射成型)加工工具之间的界面粘附性。被认为是粘合剂组分的聚合物是低密度聚乙烯,石蜡,聚乙二醇,巴西棕榈蜡、,蜡和硬脂酸。模具的通道壁由硬化,TiN硬化,氮化和热处理钢制成。根据计算出的表面能,可以得出热处理钢以及金刚砂,尤其是聚乙二醇作为粘结剂的优越性。巴西棕榈蜡显示出与硬脂酸相似的润湿性,因此成为加工助剂作用的有前途的替代品。关于测试的陶瓷粉末,Al2O3的表面能极性成分比ZrO2略高。与ZrO2相比,Al2O3粉末的粉末和粘合剂的总表面能的差异都低约3 J / m(2)(PEG)或更高(PW,LDPE,AW,CW,SA)。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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