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In situ formed TiB2 particle reinforced aluminum matrix composites (TiB2/Al MMCs) have some extraordinary properties which make them be a promising material for high performance aero-engine blade. Due to the influence of TiB2 particles, the machinability is still a problem which restricts the application of TiB2/Al MMCs. In order to meet the industrial requirements, the influence of TiB2 particles on the machinability of TiB2/Al MMCs was investigated experimentally. Moreover, the optimal machining conditions for this kind of MMCs were investigated in this study. The major conclusions are: (1) the machining force of TiB2/Al MMCs is bigger than that of non-reinforced alloy and mainly controlled by feed rate; (2) the residual stress of TiB2/Al MMCs is compressive while that of non-reinforced alloy is nearly neutral; (3) the surface roughness of TiB2/Al MMCs is smaller than that of non-reinforced alloy under the same cutting speed, but reverse result was observed when the feed rate increased; (4) a multi-objective optimization model for surface roughness and material removal rate (MRR) was established, and a set of optimal parameter combinations of the machining was obtained. The results show a great difference from SiC particle reinforced MMCs and provide a useful guide for a better control of machining process of this material. 相似文献
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系留气球在近地面收放过程中存在俯仰角过大的问题,为了更全面地了解收放过程中不同因素对球体俯仰角的影响,采用LMS Virtua1. Lab建立了带滑轮索具系统的系留气球三维动力学模型进行仿真分析,结果表明,仿真结果与理论计算、测量数据都有较高的符合度。进而运用试验设计( DOE)方法,探索典型风速下球体俯仰角的响应区间。最后基于响应面模型的优化技术,对滑轮索具系统设计进行优化,有效改善了球体在收放过程中俯仰角过大的问题。仿真模型对系留气球系统设计及收放控制有一定的指导作用。 相似文献
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EPDM包覆层热解状态下的力学行为及本构模型 总被引:1,自引:0,他引:1
为了准确描述固体火箭发动机三元乙丙(EPDM)包覆层在不同热解状态下的力学特性,通过热重分析的方法得到EPDM的热解温度范围,并采用准静态单轴拉伸实验的方法获得EPDM在不同热解温度下的应力-应变曲线。以Ogden(n=2)模型为基础,分别对不同热解状态下的力学曲线进行建模,并通过对实验数据的拟合获得模型参数。结果表明,在初始热解状态下,材料只发生了少量的失水和气体的逃逸,其力学行为可通过粘超弹本构模型进行描述;随着材料热解程度增加,基体材料和填充纤维均遭到破坏,其力学行为表现为超弹脆性材料特性。 相似文献
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A new turbulent constitutive relation was directly derived from Boussinesq's hypothesis and mixing length theory, and then implemented in the standard k-ε model. The performance of this constitutive relation was validated in zero pressure gradient flat-plate boundary layer flow, fully-developed turbulent channel flow and separated flow in a plane asymmetric diffuser. The investigation demonstrated that, this new constitutive relation gave very accurate results in the former two basic cases and provided significant improvement in prediction of separated and reattachment points in the plane asymmetric diffuser. Separation and reattachment points at x/H=7.5 and 29 were calculated accurately in comparison to experimental results, and the static pressure coefficient of 0.82 was very close to large eddy simulation calculation. These results are very encouraging but further verification and extensive application of the new constitutive relation to other two-equation eddy viscosity model are needed. 相似文献
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为解决发动机点火包线小于飞行包线的实际问题,提供等离子体点火技术在航空发动机中的工程应用新思路,论文设计了一种预燃式等离子体射流点火器,实验研究了放电特性和射流特性。结果表明,预燃式等离子体射流点火器与空气等离子体射流点火器相比,在提升射流能量降低电源功率方面有着较大的优势,电流相同时通入甲烷在较大流量时可减小驱动电源功率,总流量为44L/min时,减幅可达14.99%;同时预燃式等离子体射流较空气等离子体射流稳定,且射流长度增加,扩大了点火面积,有利于点火。 相似文献