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168篇 您的检索式:作者名="Horstemeyer"
    题名 作者 年代 出处 被引量
1Modification Design Method for an Enveloping Hourglass Worm Gear with Consideration of Machining and Misalignment Errors显示文摘The influences of machining and misalignment errors play a very critical role in the performance of the anti-backlash double-roller enveloping hourglass worm gear(ADEHWG).However,a corresponding efficient method for eliminating or reducing these errors on the tooth profile of the ADEHWG is seldom reported.The gear engagement equation and tooth profile equation for considering six different errors that could arise from the machining and gear misalignment are derived from the theories of differential geometry and gear meshing.Also,the tooth contact analysis(TCA) is used to systematically investigate the influence of the machining and misalignment errors on the contact curves and the tooth profile by means of numerical analysis and three-dimensional solid modeling.The research results show that vertical angular misalignment of the worm wheel(Δβ) has the strongest influences while the tooth angle error(Δα) has the weakest influences on the contact curves and the tooth profile.A novel efficient approach is proposed and used to minimize the effect of the errors in manufacturing by changing the radius of the grinding wheel and the approaching point of contact.The results from the TCA and the experiment demonstrate that this tooth profile design modification method can indeed reduce the machining and misalignment errors.This modification design method is helpful in understanding the manufacturing technology of the ADEHWG.DENG Xingqiao WANG Jinge HORSTEMEYER Mark F 2013Chinese Journal of Mechanical Engineering2013,26,5:16
2Microstructure-based Fatigue Modeling of Cast A356- T6 Alloy显示文摘D L McDowell K Gall M F Horstemeyer 2003Engineering Fracture Mechanics2003,70,1:1
3Twin boundaries showing very large deviations from the twinning plane显示文摘X.Y. Zhang B. Li X.L. Wu Y.T. Zhu Q. Ma Q. Liu P.T. Wang M.F. Horstemeyer 2012Scripta Materialia2012,,10:1
4Micxomechanical finite element calculations of temperature and void configuration effects on void growth and coalescence显示文摘Horstemeyer M F Matalanis M M Sieber A M 2000International Journal of Plasticity2000,16,:1
5Multiscale study of dynamic void collapse in single crystals显示文摘Solanki K Horstemeyer M F Baskes M I Fang H 2005Mech Mater2005,37,:1
6On factors affecting localization and void growth in ductile metals: a parametric study显示文摘Horstemeyer M F Ramaswamy S 2000International Journal of Plasticity2000,9,:1
7Atomistic simulations on the tensile debonding of an aluminum-silicon interface显示文摘Gall K Horstemeyer M F Schilfgaarde M V Baskes M I 2000J Mech Phys Solids2000,48,:1
8A molecular dynamics study of void growth and coalescence in single crystal nickel显示文摘Potirniche G P Horstemeyer M F Wagner G J 2006International Journal of Plasticity2006,22,:1
9The influence of modified intermetallics and Si particles on fatigue crack paths in a cast A356 Al alloy显示文摘Gall K Yang N Horstemeyer M 1999Fatigue Fract Eng Mater Struct1999,26,6:1
10Lattice orientation effects on void growth and coalescence in fcc single crystals显示文摘Potirniche G P Hearndon J L Horstemeyer M F Ling X W 2006International Journal of Plasticity2006,22,:1
11Lattice orientation effects on void growth and coalescence in fee single crystals显示文摘Potirniche G P Hearndon J L Horstemeyer M F 2006International Journal of Plasticity2006,22,:1
12The debonding and fracture of Si particle during the fatigue of a cast Al-Si alloy显示文摘Gall K Yang N Horstemeyer M F 1999Metall Trans A1999,30,:1
13Microstructure-based fatigue modeling of cast A356-T6 alloy显示文摘McDowell D L Gall K Horstemeyer M F 2003Engineering Fracture Mechanics2003,70,:1
14Atomistic finite deformation simulations :a discussion on length scale effects in relation to mechanical stresses显示文摘Horstemeyer Mark F Baskes M I 1999Journal of Engineering Materials and Technology1999,121,:1
15On the numerical implementation of 3d rate-dependent single crystal plasticity formulations 显示文摘LING X HORSTEMEYER M F POTIRNICHE G P 2005International Journal for Numerical Methods in Engineering2005,63,4:1
16Atomistic finite deformation simulation: A discussion on length scale effects in relation to mechanical stresses显示文摘Horstemeyer M F Baskes M I 1999Journal of Engineering Materials and Technology T-ASME1999,121,:1
17A study on the structure and mechanical behavior of the Terrapene carolina carapace: a pathway to design bio-inspired synthetic composites显示文摘Rhee H Horstemeyer M Hwang F Y 2009Materials Science and Engineering C2009,29,8:1
18Structure-proper- ty quantification of corrosion pitting under immersion and salt-spray environments on an extruded AZ61 magnesium alloy显示文摘Martin H J Horstemeyer MF Wang P T 2011Corrosion Science2011,53,:1
19Micromechanismof multistage crack growth in high-strength aluminum alloy显示文摘Xue Y Kadiri H E I Horstemeyer M F 2007Acta Mater2007,55,:1
20Identification and modeling of fatigue crack growth mechanisms in a die-cast AMS0 magnesium alloy 显示文摘Kadiri H E Xue Y Horstemeyer M F 2006Acta Mater2006,,54:1
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