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241.
To optimize cutting control parameters and provide scientific evidence for controlling cutting forces,cutting force modeling and cutting control parameter optimization are researched with one tool adopted to orbital drill holes in aluminum alloy 6061.Firstly,four cutting control parameters(tool rotation speed,tool revolution speed,axial feeding pitch and tool revolution radius)and affecting cutting forces are identified after orbital drilling kinematics analysis.Secondly,hybrid level orthogonal experiment method is utilized in modeling experiment.By nonlinear regression analysis,two quadratic prediction models for axial and radial forces are established,where the above four control parameters are used as input variables.Then,model accuracy and cutting control parameters are analyzed.Upon axial and radial forces models,two optimal combinations of cutting control parameters are obtained for processing a13mm hole,corresponding to the minimum axial force and the radial force respectively.Finally,each optimal combination is applied in verification experiment.The verification experiment results of cutting force are in good agreement with prediction model,which confirms accracy of the research method in practical production. 相似文献
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Kangkang Liu Guozhu Li Baiqi Ning 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(11):3612-3620
The small-scale wave-like structure (SSWS) of F region bottomside plasma density was proposed to be an important seeding for equatorial plasma bubble (EPB) generation, and employed in theoretical simulations of EPBs in recent years. The seeding role of SSWS, however, is waiting to be demonstrated by observation. Here we present two cases of SSWS and EPB observed by the Fuke all-sky airglow imager (19.3°N, 109.1°E; dip latitude 14.3°N). For each case, the results show that two large-scale wave-like structures (LSWSs) initially appeared around sunset in the longitude regions separated by 3–4°, but EPB irregularities were only generated in one of the LSWSs where SSWSs were seen riding on LSWS. For the other LSWS, no SSWS and EPB irregularities were seen. Considering that the two LSWSs were situated closely in longitude where the amplitude of pre-reversal enhancement of background eastward electric field should be similar, the observation that EPB was only generated in the longitude with simultaneous LSWS and SSWS could provide supporting evidence for SSWS seeding of EPB. 相似文献
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The actual boundary conditions of cantilever-like structures might be non-ideally clamped in engineering practice, and they can also vary with time due to damage or aging. Precise modelling of boundary conditions, in which both the boundary stiffness and the boundary mass should be modelled correctly, might be one of the most significant aspects in dynamic analysis and testing for such structures. However, only the boundary stiffness was considered in the most existing methods. In this paper, a boundary condition modelling and identification method for cantilever-like structures is proposed to precisely model both the boundary stiffness and the boundary mass using sensitivity analysis of natural frequencies. The boundary conditions of a cantilever-like structure can be parameterized by constant mass, constant rotational inertia,constant translational stiffness, and constant rotational stiffness. The relationship between natural frequencies and boundary parameters is deduced according to the vibration equation for the lateral vibration of a non-uniform beam. Then, an iterative identification formulation is established using the sensitivity analysis of natural frequencies with respect to the boundary parameters. The regularization technique is also used to solve the potential ill-posed problem in the identification procedure.Numerical simulations and experiments are performed to validate the feasibility and accuracy of the proposed method. Results show that the proposed method can be utilized to precisely model the boundary parameters of a cantilever-like structure. 相似文献
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悬索桥桥塔周围的长吊索自振频率较低,且易受桥塔尾流的干扰从而容易发生振动。吊索的安全直接关系着桥梁结构的安全,以实际工程为背景,采用CFD数值模拟方法并选择SST k-ω湍流模型对二维桥塔断面及吊索断面的非定常绕流进行了分析。首先,计算了桥塔和吊索各自的气动特性,并与相关文献的结果进行了对比。在验证分析方法可靠性的基础上,进一步研究了不同来流风速、风向角下,桥塔尾流对塔周长吊索气动特性的干扰。通过对流场特征及吊索气动力的变化规律进行分析,研究了桥塔尾流作用下塔周长吊索发生涡振的可能性。研究结果表明:在相当大的风向角范围内,桥塔脱落的旋涡会对吊索气动特性产生控制作用,从而导致吊索阻力系数和升力系数的变化频率等于桥塔的旋涡脱落频率,使吊索在低风速下存在发生涡激共振的可能性。 相似文献
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主要介绍了防空型号武器控制系统软件设计的一般要求及特点,并介绍了各种软件设计所需要的操作系统、开发语言及调试环境。最后结合实际型号的工程研制过程给出了武器控制软件设计的一种基本架构。 相似文献
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我国高校教学质量保证体系存在的问题及完善的对策 总被引:1,自引:1,他引:0
黄宁 《沈阳航空工业学院学报》2010,27(6):86-89
教学质量保证体系是高校运行的中心环节,也是形成高校核心竞争力的根本措施。我国高等教育已经进入大众化阶段,开始由教育大国向教育强国迈进。在这个过程中,我们将面临一系列的机遇和挑战,为了实现我国高等教育长久、持续、平稳发展,必须及时解决教学质量保证体系中存在的问题,促进教学质量保证体系的健康发展。 相似文献