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Thermal Stress Analysis for Ceramics Stalk in the Low Pressure Die Casting Machine

机译:低压压铸机中陶瓷秸秆的热应力分析。

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摘要

Low pressure die casting (LPDC) is defined as a net shape casting technology in which the molten metal is injected at high speeds and pressure into a metallic die. The LPDC process is playing an increasingly important role in the foundry industry as a low-cost and high-efficiency precision forming technique. The LPDC process is that the permanent die and filling systems are placed over the furnace containing the molten alloy. The filling of the cavity is obtained by forcing the molten metal by means of a pressurized gas in order to rise into a ceramic tube, which connects the die to the furnace. The ceramics tube called stalk has high temperature resistance and high corrosion resistance. However, attention should be paid to the thermal stress when the stalk is dipped into the molten aluminum. It is important to develop the design of the stalk to reduce the risk of fracture because of low fracture toughness of ceramics. In this paper, therefore, the finite element method is applied to calculate the thermal stresses when the stalk is dipped into the crucible by varying the dipping speeds and dipping directions. It is found that the thermal stress can be reduced by dipping slowly if the stalk is dipped into the crucible vertically, while the thermal stress can be reduced by dipping fast if it is dipped horizontally.
机译:低压压铸(LPDC)被定义为一种净形铸造技术,其中将熔融金属以高速和高压注入到金属模具中。 LPDC工艺作为低成本和高效的精密成型技术在铸造行业中扮演着越来越重要的角色。 LPDC工艺是将永久性模具和填充系统放置在装有熔融合金的熔炉上方。腔体的填充是通过借助加压气体迫使熔融金属上升到陶瓷管中而实现的,该陶瓷管将模具连接到熔炉。称为茎的陶瓷管具有耐高温性和高耐腐蚀性。但是,当将茎浸入熔融铝中时应注意热应力。由于陶瓷的断裂韧性低,因此开发柄的设计以降低断裂的风险很重要。因此,在本文中,通过改变浸入速度和浸入方向,应用有限元方法来计算将杆浸入坩埚时的热应力。已经发现,如果将杆竖直地浸入坩埚中,则可以通过缓慢地浸入来减小热应力,而如果将杆水平地浸入,则可以通过快速浸入来减小热应力。

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