Lecture Notes in Mechanical Engineering (LNME)publishes the latest developments in Mechanical Engineering—quickly, informally and with high quality. Original research or contributions reported in proceedings an
Lecture Notes in Mechanical Engineering (LNME) publishes the latest developments in Mechanical Engineering - quickly, informally and with high quality. Original research reported in proceedings and post-proceedings represents the core of LNME. Volumes published in LNME embrace all aspects, subfields ...
Lecture Notes in Mechanical Engineering ISSN: 2195-4356Lecture Notes in Mechanical Engineering ISSN: 2195-4356Published By : 施普林格出版社 (Springer) Website:https://link.springer.com/bookseries/1…
Lecture Notes in Mechanical Engineering 是由施普林格出版社出版的一本专业书籍,ISSN号为2195-4356。该书籍的主题涵盖了机械工程的所有方面,包括工程设计、机械和机器元件、机械结构和应力分析、汽车工程、发动机技术、航空航天技术与航天、纳米技术和微工程、控制、机器人、机电一体化、微机电系统、理论与应...
期刊全称 Lecture Notes in Mechanical Engineering 0.6 CiteScore 6974 过去四年文献总数 4517 过去四年引用总数 27 % 被引用比率 Print ISSN 2195-4356 出版社 Springer Nature Scopus链接 https://www.scopus.com/sourceid/21100431311 开放出版 Open Access 否...
Therefore, a mechanistic modelling approach will be presented, which allows to calculate the feed forces in an unsteady drilling process. Thereby, the relative position between work piece and drilling tool can be known at any time. The model allows the consideration of the tool geometry, whereby ...
内容提示: Lecture Notes in Mechanical EngineeringMounir Ben Amar · Anas Bouguecha · Elhem Ghorbel · Aberrahim El Mahi · Fakher Chaari · Mohamed Haddar EditorsAdvances in Materials, Mechanics and Manufacturing IIProceedings of the Third International Conference on Advanced Materials, Mechanics and...
“Lecture Notes on Multidisciplinary Industrial Engineering” publishes special volumes of conferences, workshops and symposia in interdisciplinary topics of interest. Disciplines such as materials science, nanosciences, sustainability science, management sciences, computational sciences, mechanical engineering, indus...
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The volume fractions of product phases in the end are calculated at node using a well-known self-dependent metallurgical algorithm. Two tensile models using extended finite element method (XFEM) are established to analyze the crack growth. One model assumes uniform properties of base material in ...