{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"为提高双向拉伸聚丙烯( BOPP)簿膜的厚度精度,采用产品自动测厚方法将信息反馈到控制系统、然后指令调节机头螺栓从而调节唇口的方法对双向拉伸簿膜厚度进行控制,结果表明薄膜厚度可控制在± 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建立了基于曲率驱动机制的晶粒正常生长的二维元胞自动机模型. 该模型的一个显著特点是晶粒生长速率和晶界曲率(1/Rc--1/R)之间满足线性关系, 而传统的元胞自动机模型则难以满足这种线性关系. 模拟结果比较全面地反映了等温条件下晶粒正常生长的各种现象:平均晶粒面积与时间的关系, 晶粒尺寸、晶粒边数的分布规律及其时间不变性, 晶粒边数与尺寸的关系, 以及晶粒生长速率与晶粒尺寸和曲率的关系等. 模拟结果与晶粒生长的动力学理论预测相符合.","authors":[{"authorName":"花福安","id":"7d88358c-d49d-4919-8472-356dfc3a25b6","originalAuthorName":"花福安"},{"authorName":"杨院生","id":"cca7c5ac-3bfa-48b6-b109-2d563ccc710b","originalAuthorName":"杨院生"},{"authorName":"郭大勇","id":"178d6240-54cb-4f89-ba14-a468c768edbb","originalAuthorName":"郭大勇"},{"authorName":"童文辉","id":"38d907e8-690b-4d7e-899f-bfea6fee6cd9","originalAuthorName":"童文辉"},{"authorName":"胡壮麒","id":"916c12ce-4321-4a5d-af18-acf6d2bfb95f","originalAuthorName":"胡壮麒"}],"categoryName":"|","doi":"","fpage":"1210","id":"143d2aaf-052e-432c-954d-2127c3c51945","issue":"11","journal":{"abbrevTitle":"JSXB","coverImgSrc":"journal/img/cover/JSXB.jpg","id":"48","issnPpub":"0412-1961","publisherId":"JSXB","title":"金属学报"},"keywords":[{"id":"d4aea072-a8ce-4677-acac-a99fb0a73b18","keyword":"晶粒生长","originalKeyword":"晶粒生长"},{"id":"1c0ec755-4549-49a1-9f1a-64f2ddb687d6","keyword":"null","originalKeyword":"null"},{"id":"372f08b9-89bb-4ff5-ad56-7ade49241973","keyword":"null","originalKeyword":"null"}],"language":"zh","publisherId":"0412-1961_2004_11_3","title":"基于曲率驱动机制的晶粒生长元胞自动机模型","volume":"40","year":"2004"},{"abstractinfo":"结合晶粒生长的统计分析理论和概率性转变规则,建立了基于曲率驱动机制的晶粒正常生长的二维元胞自动机模型.该模型的一个显著特点是晶粒生长速率和晶界曲率(1/Rc-1/R)之间满足线性关系,而传统的元胞自动机模型则难以满足这种线性关系.模拟结果比较全面地反映了等温条件下晶粒正常生长的各种现象:平均晶粒面积与时间的关系,晶粒尺寸、晶粒边数的分布规律及其时间不变性,晶粒边数与尺寸的关系,以及晶粒生长速率与晶粒尺寸和曲率的关系等.模拟结果与晶粒生长的动力学理论预测相符合.","authors":[{"authorName":"花福安","id":"fee77896-0e85-44c9-83f6-700746a04852","originalAuthorName":"花福安"},{"authorName":"杨院生","id":"3b4cf8f9-7655-4437-b6dd-eee6d2694170","originalAuthorName":"杨院生"},{"authorName":"郭大勇","id":"11dea3b3-d29a-4ad0-8ab1-544a1d0d2ab3","originalAuthorName":"郭大勇"},{"authorName":"童文辉","id":"b4937a76-53fc-44f3-9123-224b56c729b7","originalAuthorName":"童文辉"},{"authorName":"胡壮麒","id":"82e377c6-8ffa-45fa-9cfd-8139fb6a63b1","originalAuthorName":"胡壮麒"}],"doi":"10.3321/j.issn:0412-1961.2004.11.017","fpage":"1210","id":"dfb9c6b6-419d-4823-86c3-01c265f2ec74","issue":"11","journal":{"abbrevTitle":"JSXB","coverImgSrc":"journal/img/cover/JSXB.jpg","id":"48","issnPpub":"0412-1961","publisherId":"JSXB","title":"金属学报"},"keywords":[{"id":"1632eb3b-caf6-4c64-9136-92c6af567150","keyword":"晶粒生长","originalKeyword":"晶粒生长"},{"id":"550e5534-a779-4a3f-a017-a8622372b99b","keyword":"元胞自动机","originalKeyword":"元胞自动机"},{"id":"2a92d728-9ec3-43ea-b828-3fcbe76f0c21","keyword":"动力学","originalKeyword":"动力学"},{"id":"647734eb-969c-4952-ad65-ff56c2253957","keyword":"计算机模拟","originalKeyword":"计算机模拟"}],"language":"zh","publisherId":"jsxb200411017","title":"基于曲率驱动机制的晶粒生长元胞自动机模型","volume":"40","year":"2004"},{"abstractinfo":"元胞自动机方法在模拟过程中,必须用特殊的算法对边界进行处理才能避免边界出现杂质及失真.提出了基于Moore型邻接的改进边界条件算法并进行了模拟.通过与随机型边界条件模拟结果的对比,表明改进算法有利于模拟区域四角和四边的处理,可以应用于元胞自动机模拟中.","authors":[{"authorName":"王珉","id":"a77cb65c-4f66-4f4d-b85c-fd28bb177810","originalAuthorName":"王珉"},{"authorName":"赵军","id":"51ae3f20-a9a6-4902-a190-cf774752f903","originalAuthorName":"赵军"},{"authorName":"艾兴","id":"bba08e19-c6e4-4ae8-a087-1c3694206a1a","originalAuthorName":"艾兴"},{"authorName":"郑光明","id":"24de6678-8467-4996-91ae-390bd37d469c","originalAuthorName":"郑光明"}],"doi":"","fpage":"133","id":"8a64a1e1-99e9-4a83-855b-92effc16f716","issue":"22","journal":{"abbrevTitle":"CLDB","coverImgSrc":"journal/img/cover/CLDB.jpg","id":"8","issnPpub":"1005-023X","publisherId":"CLDB","title":"材料导报"},"keywords":[{"id":"09c9f6da-32f1-4ffa-bf54-59a3e569c926","keyword":"元胞自动机","originalKeyword":"元胞自动机"},{"id":"f4f4d264-cc81-4e40-8a4a-90c725fa5346","keyword":"边界条件","originalKeyword":"边界条件"},{"id":"bb9702a3-ac8d-4827-a3ad-fb11651f2562","keyword":"模拟","originalKeyword":"模拟"}],"language":"zh","publisherId":"cldb201122036","title":"基于改进边界条件的元胞自动机模型研究","volume":"25","year":"2011"},{"abstractinfo":"为了深入理解核电蒸汽发生器传热管的点蚀,发展了利用元胞自动机(CA)模型模拟点蚀过程.元胞自动机的4个基本元素由电化学反应,化学反应和扩散过程决定.模拟结果通过定性和定量的方式与试验和已有文献进行了对比.结果显示:元胞自动机模拟能够较好的模拟出点蚀的萌生和亚稳态扩展过程,得到了点蚀坑的形状、腐蚀电流密度和Cr对点蚀的影响,这些结果对蒸汽发生器传热管的结构完整性预测有重要影响.","authors":[{"authorName":"张宵","id":"0ebaa153-18e5-4afe-95e8-ddab4f519720","originalAuthorName":"张宵"},{"authorName":"胡军","id":"b8997f2d-ee24-4b7f-abe5-4996f08d0490","originalAuthorName":"胡军"},{"authorName":"王玉琪","id":"eded6c38-a7a2-43e0-90d8-a6939a100530","originalAuthorName":"王玉琪"},{"authorName":"郑茂盛","id":"4a29c2a9-6cde-4718-9fcc-075ec883c8eb","originalAuthorName":"郑茂盛"},{"authorName":"张早校","id":"52a33bb4-0069-4eb0-94b4-94ce663b20fd","originalAuthorName":"张早校"}],"doi":"","fpage":"2347","id":"4e49ee66-22fb-4341-9641-0c005ef2e51a","issue":"10","journal":{"abbrevTitle":"XYJSCLYGC","coverImgSrc":"journal/img/cover/XYJSCLYGC.jpg","id":"69","issnPpub":"1002-185X","publisherId":"XYJSCLYGC","title":"稀有金属材料与工程"},"keywords":[{"id":"80ec8f17-1dbc-49b6-a94c-1d24251242d1","keyword":"蒸汽发生器管道","originalKeyword":"蒸汽发生器管道"},{"id":"112dfdab-16d0-447b-abb4-83f1295d6575","keyword":"电化学计算","originalKeyword":"电化学计算"},{"id":"9f5a457e-45c4-457e-acae-103516f6e3f4","keyword":"点蚀","originalKeyword":"点蚀"},{"id":"3ea79686-b536-492f-a524-0fe789e9b4f0","keyword":"元胞自动机","originalKeyword":"元胞自动机"}],"language":"zh","publisherId":"xyjsclygc201510002","title":"基于元胞自动机模型的镍基合金点蚀模拟","volume":"44","year":"2015"},{"abstractinfo":"基于元胞自动机模型的框架特性,构建了基于扩展的元胞自动机的模型框架MicrosCA.该模型不是针对某一具体应用的实际模型,而是一个通用的模型框架,阐述了构建微观组织模拟元胞自动机模型的主要思想、微观模型与其它模型间的集成.在此基础上,可以针对不同应用问题,对其进行适当细化和具体化,以适合各种组织演变问题的分析研究.","authors":[{"authorName":"郭洪民","id":"650d390a-f7d5-41cb-aba5-0edd64e2fa81","originalAuthorName":"郭洪民"},{"authorName":"刘旭波","id":"84da0b09-6c90-44e2-aa98-bf81622e147b","originalAuthorName":"刘旭波"},{"authorName":"杨湘杰","id":"c5996ef0-8f29-4996-91fd-a0724fa27755","originalAuthorName":"杨湘杰"}],"doi":"10.3969/j.issn.1001-4381.2003.08.007","fpage":"23","id":"85d0a334-4d9b-4058-8e19-45f05e917692","issue":"8","journal":{"abbrevTitle":"CLGC","coverImgSrc":"journal/img/cover/CLGC.jpg","id":"9","issnPpub":"1001-4381","publisherId":"CLGC","title":"材料工程"},"keywords":[{"id":"aa5f8ca6-fb13-40ae-9fa2-95d1a65620d9","keyword":"微观组织模拟","originalKeyword":"微观组织模拟"},{"id":"b4b80c36-71f9-48a4-800a-e4176a94acd8","keyword":"元胞自动机","originalKeyword":"元胞自动机"},{"id":"3a36470c-8de2-4d32-88f4-44e760d60ab8","keyword":"模型框架","originalKeyword":"模型框架"}],"language":"zh","publisherId":"clgc200308007","title":"元胞自动机方法模拟微观组织演变的建模框架","volume":"","year":"2003"},{"abstractinfo":"基于热加工过程金属学原理,建立了一类改进动态再结晶二维元胞自动机模型,模拟了加工硬化,动态回复、形核及再结晶晶粒长大等一系列过程.利用该模型可得到整个热加工过程流变应力变化,晶粒的形态、晶粒取向及大小.流变应力的大小可由基体与再结晶晶粒位错密度的平均值计算.采用该模型对不同应变,应变率及温度下纯铜动态再结晶过程进行了模拟,模拟结果与相同热变形条件下纯铜实验结果吻合较好.","authors":[{"authorName":"卢瑜","id":"2316873a-5386-43c5-86f5-098f730e365b","originalAuthorName":"卢瑜"},{"authorName":"张立文","id":"9c9a7838-4576-407c-ae06-5e6c407815ae","originalAuthorName":"张立文"},{"authorName":"邓小虎","id":"4bd091d5-c520-43c4-807e-048865470b42","originalAuthorName":"邓小虎"},{"authorName":"裴继斌","id":"11857df0-130d-4ed4-830b-d0780863943a","originalAuthorName":"裴继斌"},{"authorName":"王赛","id":"c6e8b274-3b2d-45ce-a202-078128408131","originalAuthorName":"王赛"},{"authorName":"张国梁","id":"30527a7d-0be9-4b75-84f1-47f2a16fc6a1","originalAuthorName":"张国梁"}],"doi":"10.3321/j.issn:0412-1961.2008.03.007","fpage":"292","id":"4d253b7a-1490-4630-91a6-fe18d51ef381","issue":"3","journal":{"abbrevTitle":"JSXB","coverImgSrc":"journal/img/cover/JSXB.jpg","id":"48","issnPpub":"0412-1961","publisherId":"JSXB","title":"金属学报"},"keywords":[{"id":"70763540-c66b-4001-8e12-63550b4f92c3","keyword":"铜","originalKeyword":"铜"},{"id":"3055837b-b0d5-4aed-b527-5e5b2371ab0a","keyword":"动态再结晶","originalKeyword":"动态再结晶"},{"id":"1d425c0f-823e-47d6-9a96-b8f92253ba54","keyword":"模拟","originalKeyword":"模拟"},{"id":"a37d69ea-bcdb-469c-a2ea-9b00f9d76401","keyword":"微观组织演化","originalKeyword":"微观组织演化"}],"language":"zh","publisherId":"jsxb200803007","title":"纯铜动态再结晶过程的元胞自动机模拟","volume":"44","year":"2008"}],"totalpage":2845,"totalrecord":28443}