Yongyi Hu
Tsinghua University
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Featured researches published by Yongyi Hu.
Materials Processing Fundamentals | 2013
Gang Nie; Jinwu Kang; Yisen Hu; Rui You; Jiyu Ma; Yongyi Hu; Tianyou Huang
Ultrasonic treatment of the melt metals is a hot research topic; however, it is hard to introduce ultrasound into liquid steel because of the requirement of resistance to high temperature and erosion in the melt. In this paper, a new method, unit piece method (UPM), is proposed to introduce ultrasound into liquid steel. The metal to be treated is cast together with amplitude transformer as free end. During the experiment the transformer is placed upward and its free end is melt by induction coils. Then the amplitude transformer powered by ultrasound acts on the melt pool. The effect of ultrasound on the melt of 304 stainless steel is studied. The microstructure of the treated area is significantly modified and equi-axed grains are obtained. The effect of power of ultrasound is discussed. This method is proved to be effective.
International Journal of Materials & Product Technology | 2013
Jinwu Kang; Chao Dong; Xiaokun Hao; Gang Nie; Yongyi Hu; Tianyou Huang
Mould filling is of determining effect on the quality of castings. Numerical simulation is widely used for the study of mould filling, but the result is necessary for validation. Water analogue experiment used to be a main way for mould filling research before, but it was hard to simulate the mould filling of real castings. In this paper, a new water analogue system for real castings was established. The casting cavity was shaped by assembling transparent organic glass slices cut by laser, with each slice exactly representing the geometry of each casting section. Therefore, the shape of the mould cavity is guaranteed. The system was applied to study the filling process of a heavy steam turbine housing casting weighing 70.3 tons. Its filling process was observed and analysed. It is found that there is alternating flow in the gating system because of the height difference of the ingates. That also resulted into the uneven filling during the process. Therefore, the design was improved and it was proved to be more effective through experimental study. This water analogue method is proved to be applicable for research on the filling process of castings.
International Journal of Materials & Product Technology | 2013
Jinwu Kang; Xiaokun Hao; Gang Nie; Haimin Long; Tianjiao Wang; Yongyi Hu; Tianyou Huang
Lost foam casting owns a series of advantages, however, EPS pattern burns while the liquid metal fills, which makes the filling process complicated and directly leads to defects in castings. A measurement system of the liquid metal filling based on a modified contact time method (MCTM) was established. The filling of measured points is illustrated by a LED pattern, and the filling time of all the points is obtained by the analysis of the recorded movie. This method is free of limitation of signal acquisition channels. The system was applied into the experimental study of the filling of a vertical plate-shaped specimen of cast iron. The filling of one hundred positions was measured, and the filling profiles and filling velocity during filling process were obtained, which reflected the features of its filling process. The influence of some parameters including the metastatic head, the density of the EPS pattern, the thickness of coating and the permeability of sand mould on the filling process were investigated.
Isij International | 2014
Jinwu Kang; Xiaopeng Zhang; Yisen Hu; Jiyu Ma; Yongyi Hu; Tianyou Huang
Archive | 2010
Yongyi Hu; Tianyou Huang; Jinwu Kang; Hailiang Yu
The International Journal of Advanced Manufacturing Technology | 2018
Haolong Shangguan; Jinwu Kang; Chengyang Deng; Jihao Yi; Yongyi Hu; Tao Huang
Journal of Materials Processing Technology | 2018
Chengyang Deng; Jinwu Kang; Haolong Shangguan; Yongyi Hu; Tao Huang; Zhiyong Liu
China Foundry | 2018
Chengyang Deng; Jinwu Kang; Haolong Shangguan; Tao Huang; Xiaopeng Zhang; Yongyi Hu; Tianyou Huang
Archive | 2012
Gang Nie; Hailiang Yu; Jinwu Kang; Haimin Long; Xiaokun Hao; Tianyou Huang; Yongyi Hu
China Foundry | 2018
Haolong Shangguan; Jinwu Kang; Jihao Yi; Chengyang Deng; Yongyi Hu; Tao Huang