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风扇调速旋钮塑料模结构分析及设计【8张CAD图纸和说明书】

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塑料工业是当今世界上增长最快的工业门类之一,而注塑模具是其中发展较快的种类,因此,研究注塑模具对了解塑料产品的生产过程和提高产品质量有很大意义。

本设计介绍了注射成型的基本原理,特别是单分型面注射模具的结构与工作原理,对注塑产品提出了基本的设计原则;详细介绍了塑件工艺的分析过程和注射模具浇注系统的设计过程,并对材料要求做了说明。

通过本设计,可以对注塑模具有一个初步的认识,注意到设计中的某些细节问题,了解模具结构及工作原理;通过对Pro/E、UG的学习,可以建立较简单零件的零件库,从而有效的提高工作效率。


 目    录

1  塑件成型工艺性分析·································7

1.1塑件制品结构分析····························································7

1.2成型工艺的分析·······················································7

1.2.1尺寸精度确定·························································7

1.2.2 脱模斜度确定·································································8

1.3 ABS的性能分析·············································································8

1.4 ABS的注射成型过程工艺参数··························································8

1.4.1注射成型过程···········································································8

1.4.2 ABS的注射工艺参数··································································9

1.5 ABS成型塑件的主要缺陷及消除措施················································9

1.6 确定模具基本结构·········································································9

2  分型面结构设计·········································································10

2.1分型面的选择原则·········································································10  

2.1.1分型面的确定·········································································10

2.2确定型腔数量及排列方式·······························································10

2.2.1一般确定型腔数量的三种方法···················································10

2.2.2确定型腔的排布方式·······························································11

2.3注射机型号的确定·········································································11

2.3.1按风扇调速旋钮的注射量计算···················································11

2.3.2选择注射机············································································12

2.3.3注射机有关参数的校核····························································12

2.4浇注系统形式和浇口设计·······························································13

2.4.1主流道的设计·········································································13

2.4.2主流道尺寸的确定···································································14

2.4.3主流道衬套的形式···································································14

2.4.4主流道冷料穴的设计·······························································15

2.4.5分流道的截面形式···································································16

2.4.6浇口的选择原则及位置····························································16

2.4.7排气系统的设计······································································17

2.5确定顶出方式···············································································17

2.5.1顶出方式的确定······································································17

2.5.2脱模力的计算·········································································17

2.6确定冷却系统···············································································19

2.7注射模选材···················································································19

2.8导向与定位结构的设计···································································20

2.9模具的工作过程············································································20

3  成型零部件的设计···································································· 20

3.1确定型腔、型芯的结构和固定方式····················································20

3.2成型零件的尺寸计算······································································20

3.2.1型腔的径向与深度尺寸计算······················································21

3.2.2型芯的径向与高度尺寸计算······················································21

3.2.3塑件的型芯及型腔的成型尺寸标注图·········································22

4  模架的确定和校核···································································· 22

4.1各模板尺寸的确定·········································································22

4.2模架各尺寸的校核·········································································23

5  绘制模具图················································································ 24

6、总结······························································································ 33

7、参考文献······················································································ 33


1  塑件成型工艺性分析

1.1塑件制品结构分析

本设计记为风扇调速旋钮,如图1.1所示塑件的质量要求不允许有裂纹和变形缺陷的;塑件材料为ABS,生产为大批量,塑件公差按模具设计要求进行转换。


该塑件的结构不算复杂,但是产品外表面带有花纹,产品里面也有凹槽,因为此产品是作为风扇调速旋钮使用,大批量生产。所要求的制造精度不高,所以要求模具的制造精度也不高,因要与手部接触,所以保证塑件表面质量即可。


内容简介:
南昌航空大学本科毕业论文开题报告风扇调速旋钮塑料模结构分析及设计学号2009010201027姓名曾登导师宛强学院江西工业贸易职业技术学院专业模具设计与制造日期2012年4月20日南昌航空大学制2目录一、选题依据、目的和意义3二、国内外研究现状及发展趋势321国内外研究现状322中国模具行业发展前景4三、研究的主要内容及实验方法4四、目标,主要特色及工作进度541目标542主要特色543工作进度5五、主要参考文献63一、选题依据、目的和意义中国17000多个模具生产厂点,从业人数约50多万。1999年中国模具工业总产值已达245亿元人民币。工业总产值中企业自产自用的约占三分之二,作为商品销售的约占三分之一。在中国,人们已经越来越认识到模具在制造中的重要基础地位,认识到模具技术水平的高低,已成为衡量一个国家制造业水平高低的重要标志,并在很大程度上决定着产品质量、效益和新产品的开发能力。许多模具企业十分重视技术发展,加大了用于技术进步的投资力度,将技术进步视为企业发展的重要动力。毕业设计是本专业学生在完成全部课堂教学之后所进行的一项极为重要的实践性教学环节。旨在通过具体的工程实践,进一步深入理解、掌握和综合运用所学的专业理论知识,进行暧通空调设计基本技能的训练,培养分析问题和解决问题的能力,从而全面实现本专业学生的质量管理目标。课题的意义在于对通过对模具的设计、材料的选用、方案比较,为产品寻找到对其合适的模具制造方案,实现“高质量、低费用”的最佳方案。找出目前设计中存在的不合理的因素,对今后的模具设计起个指导作用,为设备的管理人员提供借鉴,配合正在进行的标准化工作,为其提供参考,从而为整个模具生产,特别是塑料模具方面的工作献力。本设计贴近生活,主要是根据教室风扇调速旋钮实物进行设计。二、国内外研究现状及发展趋势21国内外研究现状现代模具工业有“不衰亡工业”之称。世界模具市场总体上供不应求,市场需求量维持在600亿至650亿美元,同时,我国的模具产业也迎来了新一轮的发展机遇。近几年,我国模具产业总产值保持13的年增长率。中国模具行业发展现状在模具工业的总产值中,冲压模具约占50,塑料模具约占33,压铸模具约占6,其它各类模具约占11。许多研究机构和大专院校开展模具技术的研究和开发。虽然中国模具工业在过去十多年中取得了令人瞩目的发展,但许多方面与工业发达国家相比仍有较大的差距。例如,精密加工设备在模具加工设备中的比重还比较低,CAD/CAE/CAM技术的普及率不4高,许多先进的模具技术应用还不够广泛等等。特别在大型、精密、复杂和长寿命模具技术上存在明显差距,这些类型模具的生产能力也不能满足国内需求,因而需要大量从国外进口。22中国模具行业发展前景巨大的市场需求将推动中国模具的工业调整发展。1999年中国大陆制造工业对模具的总市场需求量约为330亿元,今后几年仍将以每年10以上的速度增长。对于大型、精密、复杂、长寿命模具需求的增长将远超过每年10的增幅。汽车、摩托车行业的发展将会大大推动模具工业的高速增长,特别是汽车覆盖件模具、塑料模具和压铸模具的发展。家用电器,如彩电、冰箱、洗衣机、空调等,在国内的市场很大。目前,我国的彩电的年产量已超过3200万台,电冰箱、洗衣机和空调的年产量均超过了1000万台。家用电器行业的发展对模具的需求量也将会很大。其他发展较快的行业,如电子、通讯和建筑材料等行业对模具的需求,都将对中国模具工业和技术的发展产生巨大的推动作用。近年来,中国模具市场对精密、大型、复杂型、长寿命模具的需求量有所增长,预计到2010年,国内模具市场需求量将在1,200亿元人民币左右。综合媒体2008年6月4日报道,中国模具协会企业年报显示近年来,中国模具市场对精密、大型、复杂型、长寿命模具的需求量有所增长,预计到2010年,国内模具市场需求量将在1,200亿元人民币左右。专家分析,从1997年开始,随着汽车、装备制造业、家用电器的高速增长,中国国内模具市场的需求开始显著增长。虽然到2006年中国模具工业总产值已达516亿元,但属“大路货”的冲压模具、压铸模具等约占总量的80。已经进入中国的少量外资模具企业开始生产各种高精大多功能模具,但目前仍供不应求。三、研究的主要内容及实验方法对影响产品生产的因素进行着重分析,利用软件进行模拟分析,对模具设计进行方案比较,探讨优秀模具的设计方法。内容主要包括材料ABS生产批量大批量A塑件成型工艺性分析;5B计算塑件的体积和重量(包含注射机的选用);C塑件注射工艺参数的确定;D注射模的结构设计(分型面、确定型腔数量和排列方式、浇注系统设计、成型零件结构设计等);E模具设计的有关计算和模架的校核;完成这个任务的主要途径是经过参考查询详细专业资料、导师的指导和利用计算机进行数据整理、分析和模拟。四、目标、主要特色及工作进度41目标通过对风扇调速旋钮的注塑模设计,使我对塑料模具又有了进一层次的认知,掌握了单分型面注塑模的结构特点以及设计计算方法,在设计注塑模时所需要注意的一些要点,如材料的收缩率,注射机得选用,模具材料的选用,注射前材料、模具的预处理,以及在注射时对温度的控制等。尤其是试模之后会产生的塑件缺陷也做了介绍及处理方法。本设计中充分利用了UG、PRO/E、CAD设计软件。总之,通过毕业设计又一次锻炼,要充分利用CAD/CAE技术,在模具符合要求的前提下尽量节省模具制造成本,同时在实际中积累经验,以设计出性价比更高的模具。42主要特色本设计主要特色是软件版的模具设计手册的使用,以及PROE/E软件中EMX50模具设计的使用,总装图和零件图的绘制。43工作进度2012年1月8日前完成选题2012年1月进行资料的收集、加工、整理,提出设计方案2012年2月进行并完成毕业论文2012年3月撰写毕业论文6五、主要参考文献1涂序斌主编塑料成型与模具设计北京北京理工大学出版社,20052杨占晓主编模具设计与制造北京人民邮电出版社,20093韩进宏主编互换性与技术测量北京机械工业出版社,20074齐晓杰主编塑料成型工艺与
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