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Structural Statics Analysis and Optimization Design of Regulating Device for Air Conveyer Outlet in Coal Mine

机译:煤矿空气输送机出口调节装置的结构静力分析及优化设计

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In view of the enlargement of fully mechanized face excavation and long distance driving, gas emission and dust production increase greatly. However, the current ventilation device direction angle, caliber and front-back distance cannot change dynamically at any time, resulting in the serious accumulation in the dead zone. In this paper, a new device were proposed that can solve above problems. Finite element ANSYS software were used to simulate and optimize the structural safety of the control device' key components. The optimization results showed that the equivalent stress decreases by 49%; after the optimization of deformation and mass are 0.829mm and 0.548kg, which were 21% and 10% lower than before.The quality, safety, reliability and cost of the control device reach the expected standards perfectly, which can meet the requirements of safe ventilation and down-dusting of fully mechanized face.
机译:鉴于综采工作面和长距离掘进的扩大,气体排放量和粉尘产生量大大增加。然而,当前的通风装置的方向角,口径和前后距离不能随时动态变化,从而导致死区中的严重积聚。本文提出了一种可以解决上述问题的新设备。有限元ANSYS软件用于模拟和优化控制设备关键部件的结构安全性。优化结果表明,当量应力降低了49%。优化后的变形量和质量分别为0.829mm和0.548kg,分别比以前降低了21%和10%。控制装置的质量,安全性,可靠性和成本均达到了预期的标准,可以满足安全性的要求。机械化工作面的通风和除尘。

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