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Thermomechanical properties and fracture of resin-bonded-sand cores – Experimental study and application in aluminium foundry

机译:树脂砂芯的热力学性能和断裂-铝铸造厂的实验研究与应用

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Sand cores are used to produce internal cavities of metallic cast parts with complex shapes like automotive cylinder heads. Foundry cores are granular materials made of sand grains aggregated with binder bridges. In the cold box coring process, the binder is a polyurethane resin. It is noteworthy that during the casting of the liquid metal, the polymer binder is seriously damaged. This kind of materials has been poorly investigated so far. This study aims for a better understanding of the mechanical behaviour and fracture of cores subjected to various loads and thermal ageing. Particularly, the focus is on the decoring step, which consists in removing the sand by hammering and vibration of the metallic part after casting. This major project, generated from the collaboration of the aluminum casting company Montupet, and two laboratories Centre des Matériaux (CdM) and MATEIS, includes both experimental and numerical activities in order to model the decoring step of cylinder heads based on empiric data. Here, the experimental part of the work is presented.
机译:砂芯用于制造具有复杂形状的金属铸件(例如汽车汽缸盖)的内腔。铸造芯是由砂粒与粘结剂桥聚集而成的颗粒状材料。在冷箱取芯过程中,粘合剂是聚氨酯树脂。值得注意的是,在液态金属的铸造过程中,聚合物粘合剂受到严重破坏。到目前为止,这种材料尚未得到充分研究。这项研究旨在更好地了解承受各种载荷和热老化的铁心的机械性能和断裂。特别地,重点在于装饰步骤,该步骤包括通过在铸造后通过锤击和振动金属部件来去除砂子。这个重大项目是由铝铸造公司Montupet与两个实验室Matériaux中心(CdM)和MATEIS合作开发的,包括实验和数字活动,以便根据经验数据对气缸盖的装饰步骤进行建模。在这里,介绍了工作的实验部分。

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