{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":1,"startPagecode":1},"records":[{"abstractinfo":"从组分设计出发,详细阐述了弥散颗粒和合金元素的种类、含量及微观结构对材料性能的影响.介绍了机械合金化法、内氧化法、化学沉淀法和溶胶-凝胶法制备弥散强化铜合金的工艺过程和特点.指出了未来弥散强化铜合金组分设计和制备工艺研究中应关注的焦点问题及研究方向.","authors":[{"authorName":"李斌","id":"cfc382c9-8b8a-4f35-88a4-7138e68f07d5","originalAuthorName":"李斌"},{"authorName":"刘贵民","id":"b0a766ff-9b6a-4e5b-9959-2f208780a88b","originalAuthorName":"刘贵民"},{"authorName":"丁华东","id":"1b0be153-5178-495c-8c28-bf93bacc229f","originalAuthorName":"丁华东"},{"authorName":"雍青松","id":"c03484d5-fa37-47e1-a432-fb2621040dc1","originalAuthorName":"雍青松"},{"authorName":"郑晓辉","id":"2cd831f8-9e1c-48b9-ab33-0dc398ea54b4","originalAuthorName":"郑晓辉"}],"doi":"","fpage":"107","id":"213cf29f-f203-47fe-b8ff-45ad9cf873fe","issue":"17","journal":{"abbrevTitle":"CLDB","coverImgSrc":"journal/img/cover/CLDB.jpg","id":"8","issnPpub":"1005-023X","publisherId":"CLDB","title":"材料导报"},"keywords":[{"id":"370ff525-1506-4aaf-a2e2-de886a1414a1","keyword":"弥散强化","originalKeyword":"弥散强化"},{"id":"29eea09a-fb59-442c-8091-da6fe0a6ef3b","keyword":"铜合金","originalKeyword":"铜合金"},{"id":"2e1a1243-202f-44b6-a5bf-f7a6e7937311","keyword":"组分设计","originalKeyword":"组分设计"},{"id":"0cc9a197-2241-4d29-8385-1f214a514a38","keyword":"制备工艺","originalKeyword":"制备工艺"}],"language":"zh","publisherId":"cldb201217022","title":"弥散强化铜合金的研究现状","volume":"26","year":"2012"},{"abstractinfo":"在综述渗硫技术的发展历程和分类的基础上,重点介绍了低温离子渗硫的工艺流程和离子渗硫层的形成机理,总结归纳了低温离子渗硫工艺的技术、经济优势和社会环保效益,概述了低温离子渗硫技术在各类典型的滚动件、滑动件和重载零件上的应用现状以及低温离子渗硫工业化生产设备的研究情况。指出低温离子渗硫技术未来将继续向绿色环保、简单高效等方向发展。","authors":[{"authorName":"雍青松","id":"f69b4960-2b77-4428-a4ad-803ac5743fab","originalAuthorName":"雍青松"},{"authorName":"马国政","id":"dea7a7ba-47f4-4693-9b44-ddc10d3ab5e2","originalAuthorName":"马国政"},{"authorName":"王海斗","id":"56c9fa88-3779-4a71-896c-38f9028527c6","originalAuthorName":"王海斗"},{"authorName":"何鹏飞","id":"7b863b02-f4b2-4b61-8e26-30cb8e1eec23","originalAuthorName":"何鹏飞"}],"doi":"10.11896/j.issn.1005-023X.2016.017.017","fpage":"115","id":"32bcc327-b485-4b73-ba43-997c972b3549","issue":"17","journal":{"abbrevTitle":"CLDB","coverImgSrc":"journal/img/cover/CLDB.jpg","id":"8","issnPpub":"1005-023X","publisherId":"CLDB","title":"材料导报"},"keywords":[{"id":"3b37dc39-1f96-4dd8-8200-bc2998c3363f","keyword":"发展历程","originalKeyword":"发展历程"},{"id":"0671fc8f-2b8b-4512-9875-bc471e241d12","keyword":"低温离子渗硫","originalKeyword":"低温离子渗硫"},{"id":"bfc3b93d-9235-4919-ac32-8db7acff9654","keyword":"工艺优势","originalKeyword":"工艺优势"},{"id":"36fea591-cbbb-4d28-9c3f-a3f14aadfa8b","keyword":"应用现状","originalKeyword":"应用现状"}],"language":"zh","publisherId":"cldb201617017","title":"低温离子渗硫技术的发展历程和研究应用现状","volume":"30","year":"2016"},{"abstractinfo":"针对某支板火焰稳定结构数值研究了二维超音速流动和燃烧规律,提出不同燃料供给方案,比较了采用全氢气、全甲烷和不同比例的混合燃气等情况下的燃烧性能.结果表明:单一燃料时,氢气超燃性能很好,但会出现热量雍塞,而甲烷无法燃烧,两种混合燃料方案均在燃烧室内出现了稳定的火焰,但氧气消耗率不理想,基于上述结论给出了一些提高超燃性能的改进措施.","authors":[{"authorName":"侯凌云","id":"7a4d5b20-a15f-463d-b4ec-6a6770403d99","originalAuthorName":"侯凌云"},{"authorName":"王人杰","id":"2738a3d4-d21f-488a-8702-eb221f6a45f5","originalAuthorName":"王人杰"}],"doi":"","fpage":"714","id":"5125cd84-5308-4ea9-891a-097c4566f4d2","issue":"4","journal":{"abbrevTitle":"GCRWLXB","coverImgSrc":"journal/img/cover/GCRWLXB.jpg","id":"32","issnPpub":"0253-231X","publisherId":"GCRWLXB","title":"工程热物理学报 "},"keywords":[{"id":"781f65fd-3d0d-458c-9fda-640e03f039f0","keyword":"支板","originalKeyword":"支板"},{"id":"372b9333-a6ce-4c2e-bde7-a5a8e62cb568","keyword":"剪切流","originalKeyword":"剪切流"},{"id":"86586073-3310-46f5-98df-1c41ec01611d","keyword":"超音速燃烧","originalKeyword":"超音速燃烧"}],"language":"zh","publisherId":"gcrwlxb200704055","title":"某支板式超音速剪切流燃烧的数值研究","volume":"28","year":"2007"},{"abstractinfo":"环境因素对碳钢和低合金钢大气腐蚀的影响汪轩义,王光雍,屈祖玉,李长荣(北京科技大学北京100083)1前言长期以来,人们在深入研究金属材料的大气腐蚀行为及机理的同时,一直在探索和总结环境因素对金属腐蚀的影响规律l‘,‘-‘1.本工作根据我国大气腐蚀试验网站积累的环境数据和材料腐蚀数据,通过聚类分析和回归分析等数学方法,进一步研究环境因素对碳钢和低合金钢大气腐蚀的影响.2大气腐蚀性综合因子八十?...","authors":[{"authorName":"汪轩义","id":"61ebb87b-2483-4c95-a13a-96fa49a5be7c","originalAuthorName":"汪轩义"},{"authorName":"王光雍","id":"d7369d26-f529-4a35-a466-d8283f3c7a3b","originalAuthorName":"王光雍"},{"authorName":"屈祖玉","id":"c0671a7a-d3ec-4002-bc2d-f61f4f476cd9","originalAuthorName":"屈祖玉"},{"authorName":"李长荣","id":"74aeba61-0624-48ea-b0d5-e55b3b9abbb1","originalAuthorName":"李长荣"}],"categoryName":"|","doi":"","fpage":"124","id":"e71e80e1-21e4-4e45-9bb4-99d655eaa636","issue":"2","journal":{"abbrevTitle":"ZGFSYFHXB","coverImgSrc":"journal/img/cover/中国腐蚀封面19-3期-01.jpg","id":"81","issnPpub":"1005-4537","publisherId":"ZGFSYFHXB","title":"中国腐蚀与防护学报"},"keywords":[{"id":"6bee9975-8a9d-4a7f-87d9-3237c3b62968","keyword":"null","originalKeyword":"null"},{"id":"54ab70a1-0e8b-47c7-b08b-280380b0ec32","keyword":"Environment factor","originalKeyword":"Environment factor"},{"id":"3b036814-8c42-411a-945f-8554081a5d53","keyword":"Cluster analysis","originalKeyword":"Cluster analysis"}],"language":"zh","publisherId":"1005-4537_1995_2_2","title":"环境因素对碳钢和低合金钢大气腐蚀的影响","volume":"15","year":"1995"}],"totalpage":1,"totalrecord":4}