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Titlebook: Engineering Design Applications III; Structures, Material Andreas Öchsner,Holm Altenbach Book 2020 Springer Nature Switzerland AG 2020 proc

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Technologie-Praxis „Angepaßte Technologie“ear variation of the cross section. The objective of the present investigation is to express the fundamental axial angular vibration frequency . by a closed-form equation that takes account of the taper degree. For this purpose, the first mode shape function of the axial vibration of a uniform rod i
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Softwaregestütztes Technologie-Roadmappingy an infinitely rigid beam supported by two columns is used to establish the dynamic equilibrium equation. The analyzed single degree of freedom noted 1-DOF in this contribution considers different heights for the columns while a torsion spring is disposed at the first column base. Thus, the lateral
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Grundlagen des Technologie-Roadmappingstudy the particular case of a uniform beam fixed at its left end and elastically restrained at the right end by two springs . and .. The latter are relative to the vertical translation and the rotation. The investigation consists of analyzing the influence of . and . on the uniform beam vibration b
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Stahlsorten, Stahl- und Eisenwerkstoffeubjected to axial tensile forces. When analysing such structures, the application of detailed 2D or 3D finite element meshes is undoubtedly the best solutions possible. However, in inverse identification of potential cracks such comprehensive models are actually not the most suitable solutions. Ther
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Halbzeug- und Preformtechnologien,imum manufacturing conditions and the mechanical properties of the sandwich panels were predicted by finite element analysis. Sandwich panels were subjected to room temperature tensile test, bend test, formability test (stretching test) and tensile computer simulation to obtain basic data for applic
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https://doi.org/10.1007/978-3-322-86322-5 are conducted to investigate the effect of four process parameters, i.e., peak current (.), pulse on-time (.), polarity, and electrode material, on the machining process. The machining process is evaluated by the material removal rate (MRR), electrode wear ratio (EW%), and surface roughness (SR) as
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