Cao Hanxue, Luo Ziwei, Wang Chengcheng, Wang Jing, Hu Tao, Xiao Lang, Che Junqi
College of Materials Science and Engineering, Chongqing University, Chongqing 400030, China.
National Engineering Research Center for Magnesium Alloys, Chongqing University, Chongqing 400030, China.
Materials (Basel). 2020 Jul 6;13(13):3019. doi: 10.3390/ma13133019.
The absolute pressure strongly affects the porosity and mechanical properties of castings produced by vacuum high-pressure die casting (V-HPDC) technology. The pore size, quantity and distribution of AlSiCu samples under three absolute pressures were evaluated by X-ray tomography and optical and electron microscopy. The paper presents an elaboration the stress concentration mechanism of pores affecting the tensile properties. According to a mathematical analysis of a sample under uniaxial stress, the greater the radius of the pore, the higher the stress value is at the pore perimeter. When the absolute pressure drops from 1013 mbar to 100 mbar, the porosity decreases from 6.8% to 2.8%, and the pore number and mean size decreases. In tensile tests, the pore sizes of the fracture surface decrease with decreasing absolute pressure, and the pore distribution becomes uniform. The tensile properties and extensibility of the sample are improved, and the microscopic fracture surface of the sample changes from cleavage fracture to quasi-cleavage fracture. The number, size and distribution of pores in die casting collectively affect the properties of the sample. Large-size or complex pores or pores with concentrated distributions produce large stress concentrations, decreasing the strength of the metal.
绝对压力对真空高压压铸(V-HPDC)技术生产的铸件的孔隙率和力学性能有很大影响。通过X射线断层扫描、光学显微镜和电子显微镜对三种绝对压力下AlSiCu样品的孔径、数量和分布进行了评估。本文阐述了孔隙影响拉伸性能的应力集中机制。根据单轴应力下样品的数学分析,孔隙半径越大,孔隙周边的应力值越高。当绝对压力从1013毫巴降至100毫巴时,孔隙率从6.8%降至2.8%,孔隙数量和平均尺寸减小。在拉伸试验中,断口表面的孔径随绝对压力的降低而减小,孔隙分布变得均匀。样品的拉伸性能和延伸率得到改善,样品的微观断口表面从解理断裂转变为准解理断裂。压铸中孔隙的数量、尺寸和分布共同影响样品的性能。大尺寸或复杂孔隙或分布集中的孔隙会产生较大的应力集中,降低金属强度。