Majerník Ján, Gašpár Štefan, Husár Jozef, Paško Ján, Kolínský Jan
Department of Mechanical Engineering, Faculty of Technology, Institute of Technology and Business in České Budějovice, Okružní 517/10, 370 01 České Budějovice, Czech Republic.
Department of Technical Systems Design and Monitoring, Faculty of Manufacturing Technologies with a Seat in Prešov, Technical University of Košice, Štúrova 31, 08001 Prešov, Slovakia.
Materials (Basel). 2021 Apr 27;14(9):2264. doi: 10.3390/ma14092264.
Distribution of gasses to the cast volume and volume of pores can be maintained within the acceptable limits by means of correct setting of technological parameters of casting and by selection of suitable structure and gating system arrangement. The main idea of this paper solves the issue of suitability of die casting adjustment-i.e., change of technological parameters or change of structural solution of the gating system-with regards to inner soundness of casts produced in die casting process. Parameters which were compared included height of a gate and velocity of a piston. The melt velocity in the gate was used as a correlating factor between the gate height and piston velocity. The evaluated parameter was gas entrapment in the cast at the end of the filling phase of die casting cycle and at the same time percentage of porosity in the samples taken from the main runner. On the basis of the performed experiments it was proved that the change of technological parameters, particularly of pressing velocity of the piston, directly influences distribution of gasses to the cast volume.
通过正确设置铸造工艺参数以及选择合适的结构和浇注系统布置,可以将气体在铸件体积和孔隙体积中的分布保持在可接受的范围内。本文的主要思想是解决压铸调整的适用性问题,即关于压铸过程中生产的铸件内部致密性的工艺参数变化或浇注系统结构方案的变化。比较的参数包括浇口高度和活塞速度。浇口中的熔体速度用作浇口高度和活塞速度之间的关联因素。评估的参数是压铸周期填充阶段结束时铸件中的气体截留情况,以及同时从主流道取出的样品中的孔隙率百分比。根据所进行的实验证明,工艺参数的变化,特别是活塞的压制速度的变化,直接影响气体在铸件体积中的分布。