机械毕业设计参考文献(大全)

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Part1中文

[1] 巩云鹏、田万禄等主编. 机械设计课程设计 . 沈阳:东北大学出版社 2000 [2] 孙志礼,冷兴聚,魏严刚等主编. 机械设计. 沈阳:东北大学出版社 2000 [3] 刘鸿文主编. 材料力学. 北京:高等教育出版社1991

[4] 哈尔滨工业大学理论力学教研组编. 理论力学. 北京:高等教育出版社 1997 [5] 大连理工大学工程画教研室编. 机械制图. 北京:高等教育出版社 1993 [6] 孙 桓,陈作模主编. 机械原理. 北京:高等教育出版社 2000

[7] 高泽远,王 金主编. 机械设计基础课程设计.沈阳:东北工学院出版社 1987

[8] 喻子建,张磊、邵伟平、喻子建主编. 机械设计习题与解题分析.沈阳:东北大学出版

社 2000

[9] 张 玉,刘 平主编. 几何量公差与测量技术 .沈阳:东北大学出版社 1999 [10] 成大先 主编.机械设计手册(减(变)速器.电机与电器)化学工业出版社

Part2中文

[1]《煤矿总工程师工作指南》编委会编著. 《矿总工程师工作指南》(上). 北京:煤炭工业出版社,1990.7

[2] 严万生等编著.《矿山固定机械手册》..北京:煤炭工业出版社,1986.5,第1版 [3]孙玉蓉等编著.《矿井提升设备》. 北京:煤炭工业出版社,1995.1,第1版

[4] 中国矿业学院主编. 《矿井提升设备》. 北京:煤炭工业出版社,1980.9,第1版 [5] 煤炭工业部制定.《煤矿安全规程》.煤炭工业出版社,1986,第1版

[6] 谢锡纯,李晓豁主编.《矿山机械与设备》.徐州:中国矿业大学出版社,2000 [7] 能源部制定.《煤矿安全规程》.北京:煤炭工业出版社,1992

[8] 王志勇等编.《煤矿专用设备设计计算》.北京:煤炭工业出版社,1984 [9] 彭兆行编.《矿山提升机械设计》.北京:机械工业出版社,1989

[10] 机械设计、机械设计基础课程设计,王昆等主编,北京:高等教育出版社,1996 [11] 机械设计手册/上册,《机械设计手册》联合编写组编,化学工业出版社,1979 [12] 画法几何及工程制图,中国纺织大学工程图学教研室等编,上海科学技术出版社,1984 [13] 机械零件设计手册(第二版)/中册,东北工学院《机械零件设计手册》编写组编,冶金工业出版社,1982

[14] 机械零件课程设计,郭奇亮等主编,贵州人民出版社,1982.1

[15] 机械设计标准应用手册/第二卷,汪恺主编,北京:机械工业出版社, 1997.8 [16] 矿山提升机械设计,潘英编,徐州:中国矿业大学出版社,2000.12

[17] 机械设计(第七版),濮良贵、纪名刚主编,北京:高等教育出版社, 2001

[18] 极限配合与测量技术基础,孔庆华、刘传绍主编,上海:同济大学出版社,2002.2

PART3英文

1、‘‘HOW CAN A BILL OF MATERIALS BE DE?NED SO THAT ALL POSSIBLE PRODUCTS CAN BE BUILT EF?CIENTLY?’’ ONE WAY TO ANSWER IT IS TO DE?NE A SET OF COMPONENTS (CALLED

MODULES), EACH OF WHICH CONTAINS A SET OF PRIMARY FUNCTIONS. AN INDIVIDUAL PRODUCT IS THEN BUILT BY COMBINING SELECTED MODULES.

【1】 BRUNO AGARD,BERNARD PENZ. A SIMULATED ANNEALING METHOD BASED ON A CLUSTERING APPROACH TO DETERMINE BILLS OF MATERIALS FOR A LARGE PRODUCT FAMILY. INT. J. PRODUCTION ECONOMICS 117 (2009) 389–401.

2、IN THIS STUDY, WE PROPOSE A METHODOLOGY FOR BUILDING A SEMANTICALLY ANNOTATED MULTI-FACETED ONTOLOGY FOR PRODUCT FAMILY MODELLING THAT IS ABLE TO AUTOMATICALLY SUGGEST SEMANTICALLY-RELATED ANNOTATIONS BASED ON THE DESIGN AND MANUFACTURING REPOSITORY.

【2】 SOON CHONG JOHNSON LIM,YING LIU,WING BUN LEE.A METHODOLOGY FOR BUILDING A SEMANTICALLY ANNOTATED MULTI-FACETED ONTOLOGY FOR PRODUCT FAMILY MODELLING. ADVANCED ENGINEERING INFORMATICS 25 (2011) 147–161.

3、THE AIM OF THIS WORK IS TO ESTABLISH A METHODOLOGY FOR AN EFFECTIVE WORKING OF RECON?GURABLE MANUFACTURING SYSTEMS (RMSS). THESE SYSTEMS ARE THE NEXT STEP IN MANUFACTURING, ALLOWING THE PRODUCTION OF ANY QUANTITY OF HIGHLY CUSTOMISED AND COMPLEX PRODUCTS TOGETHER WITH THE BENE?TS OF MASS PRODUCTION.

【3】 R.GALAN,J.RACERO,I.EGUIA,J.M.GARCIA. A SYSTEMATIC APPROACH FOR PRODUCT FAMILIES FORMATION IN RECON?GURABLE MANUFACTURING SYSTEMS.ROBOTICS AND COMPUTER-INTEGRATED MANUFACTURING 23 (2007) 489–502.

4、A MIXED INTEGER LINEAR PROGRAMMING MODEL IS INVESTIGATED THAT OPTIMIZES THE OPERATING COST OF THE RESULTING SUPPLY CHAIN WHILE CHOOSING THE PRODUCT VARIANTS AND CAN DE?NE THE PRODUCT FAMILY AND ITS SUPPLY CHAIN SIMULTANEOUSLY.

【4】 JACQUES LAMOTHE,KHALED HADJ-HAMOU,MICHEL ALDANONDO. AN OPTIMIZATION MODEL FOR SELECTING A PRODUCT FAMILY AND DESIGNING ITS SUPPLY CHAIN. EUROPEAN JOURNAL OF OPERATIONAL RESEARCH 169 (2006) 1030–1047.

5、THIS PAPER PRESENTS LCP-FAMILIES, A CONCEPT TO DEVELOP REFERENCE RANGES FOR ENVIRONMENTAL IMPACT OF A NEW PRODUCT. A NEW PRODUCT CAN BE CATALOGUED AS ENVIRONMENTALLY BETTER OR WORSE THAN A PERCENTAGE OF ITS COMPETITORS, DEPENDING ON WHAT POSITION IT OCCUPIES IN ITS LCP-FAMILY.

【5】 DANIEL COLLADO-RUIZ,HESAMEDIN OSTAD-AHMAD-GHORABI. COMPARING LCA RESULTS OUT OF COMPETING PRODUCTS: DEVELOPING REFERENCE RANGES FROM A PRODUCT FAMILY APPROACH.

JOURNAL OF CLEANER PRODUCTION 18 (2010) 355–364.

6、THIS PAPER HAS PROPOSED A COOPERATIVE COEVOLUTIONARY OPTIMIZATION METHOD FOR OPTIMAL DESIGN OF PRODUCT FAMILY WITH MULTI–LEVEL COMMONALITY .

【6】 L.SCHULZE,L.LI. COOPERATIVE COEVOLUTIONARY OPTIMIZATION METHOD FOR PRODUCT FAMILY DESIGN.

7、THIS PAPER CHARACTERIZES A DECISION FRAMEWORK BY WHICH A ?RM CAN MANAGE GENERATIONAL PRODUCT REPLACEMENTS UNDER STOCHASTIC TECHNOLOGICAL CHANGES. 【7】 HENG LIU,OZALP OZER. MANAGING A PRODUCT FAMILY UNDER STOCHASTIC TECHNOLOGICAL CHANGES. INT. J. PRODUCTION ECONOMICS 122 (2009) 567–580.

8、THIS PAPER PROPOSES AN INFORMATION SEARCH AND RETRIEVAL FRAMEWORK BASED ON THE SEMANTICALLY ANNOTATED MULTI-FACET PRODUCT FAMILY ONTOLOGY TO SAVE TIME FOR THE ONTOLOGY DEVELOPMENT IN DESIGN ENGINEERING.

【8】 SOON CHONG JOHNSON LIM,YING LIU,WING BUN LEE. MULTI-FACET PRODUCT INFORMATION SEARCH AND RETRIEVAL USING SEMANTICALLY ANNOTATED PRODUCT FAMILY ONTOLOGY. INFORMATION PROCESSING AND MANAGEMENT 46 (2010) 479–493.

9、THE PURPOSE OF THE PAPER IS TO PRESENT PRODUCT VARIETY ANALYSIS (PVA) APPROACH TO COORDINATED AND SYNCHRONIZED FOWS OF INFORMATION ABOUT PRODUCTS AND PRODUCTION PROCESSES AMONG VARIOUS SUPPLY CHAIN MEMBERS. 【9】 PETRI HELO,QIANLI XU,KRISTIANTO,ROGER JIANXIN JIAO. PRODUCT FAMILY DESIGN AND LOGISTICS DECISION SUPPORT SYSTEM.

10、THE PURPOSE OF THIS PAPER IS TO PROPOSE A PRODUCT FAMILY DESIGN ARCHITECTURE THAT SATISFIES CUSTOMER REQUIREMENTS WITH MINIMAL EFFORTS.

【10】 TAIOUN KIM,HAE KYUNG LEE,EUN MI YOUN. PRODUCT FAMILY DESIGN BASED ON ANALYTIC NETWORK PROCESS.

11、THIS PAPER PRESENTS A CONCEPTUAL FRAMEWORK OF USING SEMANTIC ANNOTATION FOR ONTOLOGY BASED DECISION SUPPORT IN PRODUCT FAMILY DESIGN.

【11】 SOON CHONG JOHNSON LIM,YING LIU,WING BUN LEE. USING SEMANTIC ANNOTATION FOR ONTOLOGY BASED DECISION SUPPORT IN PRODUCT FAMILY DESIGN

Part4中文&英文

[1] 陈维健,齐秀丽,肖林京,张开如. 矿山运输与提升机械. 徐州:中国矿业大学出版社,2007

[2] 王启广,李炳文,黄嘉兴,采掘机械与支护设备,徐州:中国矿业大学出版社,2006 [3] 陶驰东.采掘机械(修订版).北京:煤矿工业出版社,1993 [4] 孙广义,郭忠平.采煤概论.徐州:中国矿业大学出版社,2007

[5] 张景松.流体力学与流体机械之流体机械.徐州:中国矿业大学出版社,2001 [6] 濮良贵,纪名刚.机械设计.北京:高等教育出版社,2006 [7] 李树伟.矿山供电. 徐州:中国矿业大学出版社,2006

[8] 于岩,李维坚.运输机械设计. 徐州:中国矿业大学出版社,1998 [9] 煤矿安全规程, 原国家安监局、煤矿安监局16号令2005年

[10] 机械工业部北京起重运输机械研究所,DTⅡ型固定带式输送机设计选用手册,冶金工业出版社

[11]Tugomir Surina, Clyde Herrick. Semiconductor Electronics. Copyright 1964 by Holt, Rinehart and Winston, Inc., 120~250

[12] Developing Trend of Coal Mining Technology. MA Tong – sheng. Safety and Production Department, Hei longjiang Coal Group, Ha erbin150090,China

Part5中文

[1]北京农业工程大学 农业机械学[M]中国农业机械出版社,1991年 [2]机械设计手册(1—5卷)

[3]邓文英,郭晓鹏.金属工艺学[M],高等教育出版社,2000年

[4]刘品,徐晓希.机械精度设计与检测基础[M],哈尔滨工业大学出版社,2004 [5]王昆,何小柏,汪信远.机械设计课程设计[M],高等教育出版社,1995 [6]濮良贵,纪名刚.机械设计[M],高等教育出版社,2000年

[7]朱冬梅,胥北澜.画法几何及机械制图[M],高等教育出版社,2000年 [8]杨可帧,程光蕴.机械设计基础[M],搞成教育出版社,1999年 [9]孙恒,陈作模.机械原理[M],高等教育出版社,1999年

[10]哈尔滨工业大学理论力学教研组.理论力学[M],高等教育出版社,2002年 [11]张也影,流体力学[M],高等教育出版社,1998年

[12]张学政,李家枢.金属工艺学实习材料[M],高等教育出版社,1999年 [13]史美堂,金属材料[M],上海科学技术出版社,1996年

[14]黄常艺,严晋强.机械工程测试技术基础[M],机械工艺出版社,2005年 [15]齐宝玲.几何精度设计与检测技术,机械工业出版社,1999年

[16]张启先.空间机构的分析与检测技术,机械工业出版社,1999年 [17]史习敏,黎永明.精密机构设计,上海科学技术出版社,1987年 [18]施立亭.仪表机构零件,冶金工业出版社,1984年 [19]农业机械设计手册 2000年 [20]相关产品设计说明书

Part6中文

1、 李运华.机电控制[M].北京航空航天大学出版社,2003.

2、 芮延年.机电一体化系统设计[M].北京机械工业出版社,2004.

3、 王中杰,余章雄,柴天佑.智能控制综述[J].基础自动化,2006(6).

4、 章浩,张西良,周士冲.机电一体化技术的发展与应用[J].农机化研究,2006(7).

5、梁俊彦,李玉翔.机电一体化技术的发展及应用[J].科技资讯,2007(9).

Part7中文&英文

[1] Cole Thompson Associates.“Directory of Intelligent Buildings”1999.

[2] Ester Dyson.Adesign for living in the Digital Age.RELEASE 2.0:1997.

[3] 吴涛、李德杰,彭城职业大学学报,虚拟装配技术,2001,16(2):99-102.

[4] 叶修梓、陈超祥,ProE基础教程:零件与装配体,机械工业出版社,2007.

[5] 邓星钟,机电传动控制(第三版),华中科技大学出版社,2001.

[6] 裴仁清,机电一体化原理,上海大学出版社,1998.

[7] 李庆芬,机电工程专业英语,哈尔滨工程大学出版社,2004.

[8] 朱龙根,简明机械零件设计手册(第二版),机械工业出版社,2005.

[9] 秦曾煌,电工学-电子技术(第五版),高等教育出版社,2004.

[10]朱龙根,机械系统设计(第二版),机械工业出版社,2002.

[11]纪名刚,机械设计(第七版),高等教育出版社,2005.

[12]Charles W. Beardsly, Mechanical Engineering, ASME, Regents Publishing Company,Inc,1998.

[13]李俊卿,陈芳华,李兴林.滚动轴承洁净度及评定方法的商榷.轴承,2004(8):45-46.

[14]梁治齐.实用清洗技术手册.北京:化学工业出版社,2000.

[15]金杏林.精密洗净技术.北京:化学工业出版社,2005.

[16]张剑波,孙良欣等.清洗技术基础教程.北京:中国环境科学出版社,2004.

[17]杨镜明.清洗技术在机械制造行业中的应用和展望.化学清洗,1997(6):29-32.

[18]李久梅,马纯.轴承清洗的发展方向.轴承,1995(8):31-36.

[19]艾小洋.中国工业清洗领域的现状与发展趋势.现代制造,2004(2):58-60.

[20]杨晓蔚.机床主轴轴承最新技术.主轴轴承,2010(1):45-48.

[21]阎昌春.一种柔性轴承研制的关键技术.柔性轴承,2010(3):23-25.

[22]李尧忠.轴承清洗机液压系统的设计.液压系统,2009(7):11-14.

[23]T.Ramayah and Noraini Ismail,Process Planning Concurrent Engineering,Concurrent Engineering,2010.

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