废气涡轮增压器涡轮结构及工艺设计

废气涡轮增压器涡轮结构及工艺设计

ID:9043307

大小:218.60 KB

页数:10页

时间:2018-04-15

废气涡轮增压器涡轮结构及工艺设计_第1页
废气涡轮增压器涡轮结构及工艺设计_第2页
废气涡轮增压器涡轮结构及工艺设计_第3页
废气涡轮增压器涡轮结构及工艺设计_第4页
废气涡轮增压器涡轮结构及工艺设计_第5页
资源描述:

《废气涡轮增压器涡轮结构及工艺设计》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库

1、目录前.言·······················································································································11废气涡轮结构设计····························································································21.1工作轮结构设计·····························

2、································································21.1.1工作轮结构·································································································21.2相关参数计算····················································································

3、··············21.2.1设计原始数据····························································································21.2.2废气在单级涡轮内的膨胀过程及效率······················································22废气涡轮工艺设计······························································

4、······························72.1叶轮的材料·····································································································72.2材料的获得……····························································································72.3造型材料和造型方法……········

5、······································································72.4零件的获得……······························································································73结论·······················································································

6、····························8参考文献················································································································9前言废气涡轮增压器涡轮结构及工艺设计1905年瑞士工程师波希(AlfredBuchi)首先提出涡轮增压柴油机概念,这是一件对内燃机发展具有深远意义的大事,五十年代以来,涡轮增压技术在国内外均得到飞速的发展,它已经成为增加内燃机功率,降低单位

7、功率重量,降低制造成本的最有效方法。自从20世纪70年代涡轮增压在车用发动机上得到推广以后,更有了突飞猛进的发展。目前,己被世人公认为内燃机技术的发展方向之一,迄今仍保持着方兴未艾的发展势头。涡轮增压是一项新技术,几十年的发展历史有力地表明,涡轮增压是提高发动机功率和改善经济性的最有效措施,也是发动机强化的必然途径,它已成为当前内燃机发展的重要方向。涡轮增压是使柴油机动力装置降低成本、缩小体积、减轻重量最成功的方法。实践证明,对于安装尺寸受限制的应用(如船舶、机车、卡车等)上是最受欢迎的,涡轮增压在降低比油[10]耗、减少噪声

8、以及高原性能等方面胜过非增压发动机。60年代增压技术在中速柴油机上得到普遍应用,使强化指标有了很大提高;70年代的石油危机,又促使经济性指标(包括降低燃油耗率和使用劣质燃油)得到很大改善:80年代各国对环境污染的限制更为严格,制定了极为苛刻的环保法规,迫使柴油机制造厂商各自寻

当前文档最多预览五页,下载文档查看全文

此文档下载收益归作者所有

当前文档最多预览五页,下载文档查看全文
温馨提示:
1. 部分包含数学公式或PPT动画的文件,查看预览时可能会显示错乱或异常,文件下载后无此问题,请放心下载。
2. 本文档由用户上传,版权归属用户,天天文库负责整理代发布。如果您对本文档版权有争议请及时联系客服。
3. 下载前请仔细阅读文档内容,确认文档内容符合您的需求后进行下载,若出现内容与标题不符可向本站投诉处理。
4. 下载文档时可能由于网络波动等原因无法下载或下载错误,付费完成后未能成功下载的用户请联系客服处理。