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Evaluating a Ceramic Resin-Coated Sand for Aluminum and Iron Castings

机译:评估铝和铁铸件的陶瓷树脂涂层砂

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摘要

Shell molding technology remains an important part of metal casting technology because it permits precision sand castings. However, there is a lack of information available on shell resin-coated sand (RCS) produced with ceramics. This paper relates the physical, mechanical, and thermo-mechanical properties of disc-shaped shell core specimens made from either silica or ceramic sands. Gravity-filled disc-shaped shell core specimens were fabricated with silica and ceramic sands. Specimens were laboratory tested and evaluated in aluminum and iron casting trials. Testing included density, abrasion, thermal distortion, hot permeability, impact and retained strength. All tests were accomplished according to newly adopted American Foundry Society standards. With a ceramic RCS, it is possible to produce cores and molds having superior abrasion resistance, strength, and thermal stability when compared to a silica RCS. Ceramic RCS shell core specimens showed fewer casting surface issues when compared to silica RCS shell core specimens in aluminum and iron casting trials.
机译:壳牌成型技术仍然是金属铸造技术的重要组成部分,因为它允许精密砂铸件。然而,在用陶瓷生产的壳树脂涂层砂(RCS)上缺乏可提供的信息。本文涉及由二氧化硅或陶瓷砂制成的盘形壳芯样品的物理,机械和热机械性能。用二氧化硅和陶瓷砂制造重力填充的盘状壳芯样品。在铝和铁铸造试验中测试并评估标本的实验室。测试包括密度,磨损,热变形,热渗透率,冲击和保留强度。所有测试均根据新采用的美国铸造协会标准完成。通过陶瓷RCS,与二氧化硅RC相比,可以产生具有优异的耐磨性,强度和热稳定性的芯和模具。与铝和铁铸造试验中的二氧化硅RCS壳核样品相比,陶瓷RCS壳核样品显示出较少的铸造表面问题。

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