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High-quality manufacturing method of complicated castings based on multi-material hybrid moulding process

机译:基于多材料混合成型工艺的复杂铸件的高质量制造方法

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A multi-material hybrid patternless moulding process for complicated castings has been proposed.Moulding sands used in the hybrid moulding process include silica sand, ceramic sand, chromite sand, zircon sand, and steel shot sand. Experimental method was used to study the effects of moulding sands on the temperature fi eld, mechanical properties, and dimensional precision of the iron castings. Under the condition that the wall thickness on different sides of the casting is the same, when the wall thickness is greater than 10 mm, the heat storage capacity of the moulding sands from strong to weak is steel shot sand, zircon sand, chromite sand, ceramic foundry sand, and silica sand. Tensile strength of the obtained castings from high to low is zircon sand, chromite sand, steel shot sand, ceramic sand, and silica sand. Contraction rate of the obtained castings from high to low is steel shot sand, zircon sand, chromite sand, silica sand, and ceramic sand. Therefore,steel shot sand and zircon sand can be used as chilled sand, and even can be used instead of cold iron when the casting wall thickness is greater than 10 mm. Zircon sand and chromite sand can be used to obtain high mechanical properties, and silica sand and ceramic sand can be selected to obtain high dimensional precision of the castings. Finally, a typical iron casting piece was tested by experiment using the hybrid moulding process.Excellent performances of iron castings confi rm the feasibility of the hybrid moulding process.
机译:提出了一种用于复杂铸件的多材料混合无模成型工艺,混合成型工艺中使用的型砂包括硅砂,陶瓷砂,铬铁矿砂,锆石砂和钢丸砂。实验方法用于研究型砂对铸铁的温度场,力学性能和尺寸精度的影响。在铸件两侧的壁厚相同的条件下,当壁厚大于10 mm时,型砂的储热能力由强到弱分别是钢喷砂,锆英砂,铬铁矿砂,陶瓷铸造砂和硅砂。所得铸件的拉伸强度由高到低依次为锆英砂,铬铁矿砂,钢丸砂,陶瓷砂和硅砂。所得铸件的收缩率从高到低是钢丸砂,锆石砂,铬铁矿砂,硅砂和陶瓷砂。因此,铸钢砂和锆石砂可用作冷硬砂,当铸件壁厚大于10 mm时甚至可以代替冷铁使用。锆石砂和铬铁矿砂可用于获得较高的机械性能,而硅砂和陶瓷砂可用于获得铸件的高尺寸精度。最后,使用混合成型工艺通过实验测试了典型的铸铁件。铸铁件的优异性能证实了混合成型工艺的可行性。

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