Advanced Materials Research
Vol. 1097
Vol. 1097
Advanced Materials Research
Vol. 1096
Vol. 1096
Advanced Materials Research
Vol. 1095
Vol. 1095
Advanced Materials Research
Vol. 1094
Vol. 1094
Advanced Materials Research
Vols. 1092-1093
Vols. 1092-1093
Advanced Materials Research
Vol. 1091
Vol. 1091
Advanced Materials Research
Vol. 1090
Vol. 1090
Advanced Materials Research
Vol. 1089
Vol. 1089
Advanced Materials Research
Vol. 1088
Vol. 1088
Advanced Materials Research
Vol. 1087
Vol. 1087
Advanced Materials Research
Vol. 1086
Vol. 1086
Advanced Materials Research
Vol. 1085
Vol. 1085
Advanced Materials Research
Vol. 1084
Vol. 1084
Advanced Materials Research Vol. 1090
Paper Title Page
Abstract: In this paper, Orthogonal test is used in combination with numerical simulation to get a comprehensive consideration of the effectors of die radius, blank holding force (PHF) and punching velocity on dust shield forming performance. Optimum forming parameters is obtained to optimize die structure. These results will give reference to drawing process.
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Abstract: In order to solve the cracking and poor reliability problems of motor box of Horizontal Roadheader, the static structural FEA (Finite Element Analysis) of cutting arm & motor box of the EBH160 Horizontal Roadheader was conducted, and the stress and strain contours of FEA were obtained. By comparing the calculated results, the safety factor of cutting arm & motor box was 1.36, which provides a reference for the optimal design of cutting arm & motor box.
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Abstract: In order to improve the efficiency of the heavy oil thermal recovery in high temperature and high pressure conditions, a new transformation joint was designed based on the theory of fluid pressure difference. Through the automatic displacement of a one-way valve and a seal tongue under the action of pressure difference, it realized intelligent transformation between the production status and the well testing status. According to the oil recovery requirements about structure size, energy loss, high temperature sealing property and high temperature resistance, thermal expansion of material, designs about structure, key sizes, material model and sealing parts were carried out, and strength of key parts was verified theoretically. Fluent was used to simulate the internal flows of the structure, to analyze and verify the energy loss under the working status. The result shows that the product can meet the requirements of heavy oil exploitation, and its simple structure, high reliability and strong durability can greatly improve the efficiency of crude oil recovery.
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