{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"Cold-working and its effect on heat cracking of Monel alloy K-500 were investigated. The results showed that cold-working hardening is limited for its strong effect on heat cracking, although Monel alloy K-500 has good cold workability. It was revealed that the main reasons of heat cracking, which initiates on the surface of the specimens and propagates intergranularly into the inner during aging, are the residual stress due to cold working, the heat stress due to aging and the surface brittleness occuring in early aging stage. It was proved that mechanical straightening is a beneficial and economical method to prevent Monel alloy K-500 from heat cracking.","authors":[],"categoryName":"|","doi":"","fpage":"41195","id":"c7fa10a9-992f-4528-a19b-acfcf01e4879","issue":"1","journal":{"abbrevTitle":"TONMSOC","id":"9449c409-0c62-400e-a51e-429b454dce51","issnPpub":"1003-6326","publisherId":"TONMSOC","title":"Transactions of Nonferrous Metals Society of China"},"keywords":[{"id":"a0d38d6a-395f-4133-b4a4-a0d7eee06695","keyword":"Monel alloy K-500;cold-working;heat cracking;mechanical straightening","originalKeyword":"Monel alloy K-500;cold-working;heat cracking;mechanical straightening"}],"language":"en","publisherId":"1003-6326_1998_1_2","title":"Cold-working and heat-cracking in Ni-Cu-base Monel alloy K-500","volume":"8","year":"1998"},{"abstractinfo":"Grain boundary microstructure, strain distribution and stress corrosion cracking (SCC) in one dimensional (1D), two dimensional (2D) and three dimensional (3D) cold worked Alloy 600 were investigated. The cold working decreased the annealing twins and increased low angle boundaries. 2D cold working caused lower strain concentration at grain boundaries than 1D and 3D cold working. The intergranular SCC (IGSCC) susceptibility was the highest in 1D cold worked alloy while lowest in 2D cold worked alloy. The IGSCC susceptibility displayed a strong correlation with the grain boundary strain concentration and the grain boundary microstructure. (C) 2011 Elsevier Ltd. All rights reserved.","authors":[],"categoryName":"|","doi":"","fpage":"2956","id":"b845aabb-a6db-4bfc-b3ac-417f345ad60a","issue":"9","journal":{"abbrevTitle":"CS","id":"36011533-0ced-443e-899a-7c7323dae3b5","issnPpub":"0010-938X","publisherId":"CS","title":"Corrosion Science"},"keywords":[{"id":"b77e9256-d390-43b0-aa1f-6fd7a93ee211","keyword":"Nickel;Intergranular corrosion;Effects of strain;Stress corrosion;high-temperature water;stainless-steels;misorientation;dislocations;character;690tt","originalKeyword":"Nickel;Intergranular corrosion;Effects of strain;Stress corrosion;high-temperature water;stainless-steels;misorientation;dislocations;character;690tt"}],"language":"en","publisherId":"0010-938X_2011_9_1","title":"Effects of cold working path on strain concentration, grain boundary microstructure and stress corrosion cracking in Alloy 600","volume":"53","year":"2011"},{"abstractinfo":"A developmental research has been carried out to deal with the high performance of Cu-Cr-Zr-Mg lead frame alloy by artificial neural network (ANN). 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Excluding the annealing twin boundaries, the base and 20% cold worked alloys exhibited higher random grain boundary fractions than the 8% and 40% cold worked alloys. An increased low angle boundaries and decreased annealing twins were observed with deformation. The 20% cold worked alloy displayed a maximum strain concentration at grain boundaries. The stress corrosion cracking growth in cold worked Alloy 600 in high temperature water showed a strong correlation with the strain concentration at grain boundaries. (C) 2010 Elsevier Ltd. All rights reserved.","authors":[],"categoryName":"|","doi":"","fpage":"1137","id":"d6ee4b7f-3ff5-4129-b903-726706b6c8b6","issue":"3","journal":{"abbrevTitle":"CS","id":"36011533-0ced-443e-899a-7c7323dae3b5","issnPpub":"0010-938X","publisherId":"CS","title":"Corrosion Science"},"keywords":[{"id":"2f058a28-953c-48cd-840f-ec6a1f089239","keyword":"Nickel-base Alloy 600;Electron backscatter diffraction;Cold working;Grain boundary character;Strain concentration at grain boundary;Stress;corrosion cracking;stress-corrosion cracking;mechanical-properties;primary water;microstructure;deformation;temperature;evolution;metals;copper;igscc","originalKeyword":"Nickel-base Alloy 600;Electron backscatter diffraction;Cold working;Grain boundary character;Strain concentration at grain boundary;Stress;corrosion cracking;stress-corrosion cracking;mechanical-properties;primary water;microstructure;deformation;temperature;evolution;metals;copper;igscc"}],"language":"en","publisherId":"0010-938X_2011_3_1","title":"Effects of cold working degrees on grain boundary characters and strain concentration at grain boundaries in Alloy 600","volume":"53","year":"2011"},{"abstractinfo":"The elastic limit of single-phase alloy Nb-2Mo-2Zr-1Ti is higher as recovered state in comparison with as cold-rolled or recrystallized one.For Nb-40Ti-5.5AI alloy of age-hardening type,the elastic limit is lower as cold-rolled state,but increases considerably after proper aging{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"Cold-working and its effect on heat cracking of Monel alloy K-500 were investigated. The results showed that cold-working hardening is limited for its strong effect on heat cracking, although Monel alloy K-500 has good cold workability. It was revealed that the main reasons of heat cracking, which initiates on the surface of the specimens and propagates intergranularly into the inner during aging, are the residual stress due to cold working, the heat stress due to aging and the surface brittleness occuring in early aging stage. It was proved that mechanical straightening is a beneficial and economical method to prevent Monel alloy K-500 from heat cracking.","authors":[],"categoryName":"|","doi":"","fpage":"41195","id":"c7fa10a9-992f-4528-a19b-acfcf01e4879","issue":"1","journal":{"abbrevTitle":"TONMSOC","id":"9449c409-0c62-400e-a51e-429b454dce51","issnPpub":"1003-6326","publisherId":"TONMSOC","title":"Transactions of Nonferrous Metals Society of China"},"keywords":[{"id":"a0d38d6a-395f-4133-b4a4-a0d7eee06695","keyword":"Monel alloy K-500;cold-working;heat cracking;mechanical straightening","originalKeyword":"Monel alloy K-500;cold-working;heat cracking;mechanical straightening"}],"language":"en","publisherId":"1003-6326_1998_1_2","title":"Cold-working and heat-cracking in Ni-Cu-base Monel alloy K-500","volume":"8","year":"1998"},{"abstractinfo":"Grain boundary microstructure, strain distribution and stress corrosion cracking (SCC) in one dimensional (1D), two dimensional (2D) and three dimensional (3D) cold worked Alloy 600 were investigated. The cold working decreased the annealing twins and increased low angle boundaries. 2D cold working caused lower strain concentration at grain boundaries than 1D and 3D cold working. The intergranular SCC (IGSCC) susceptibility was the highest in 1D cold worked alloy while lowest in 2D cold worked alloy. The IGSCC susceptibility displayed a strong correlation with the grain boundary strain concentration and the grain boundary microstructure. (C) 2011 Elsevier Ltd. All rights reserved.","authors":[],"categoryName":"|","doi":"","fpage":"2956","id":"b845aabb-a6db-4bfc-b3ac-417f345ad60a","issue":"9","journal":{"abbrevTitle":"CS","id":"36011533-0ced-443e-899a-7c7323dae3b5","issnPpub":"0010-938X","publisherId":"CS","title":"Corrosion Science"},"keywords":[{"id":"b77e9256-d390-43b0-aa1f-6fd7a93ee211","keyword":"Nickel;Intergranular corrosion;Effects of strain;Stress corrosion;high-temperature water;stainless-steels;misorientation;dislocations;character;690tt","originalKeyword":"Nickel;Intergranular corrosion;Effects of strain;Stress corrosion;high-temperature water;stainless-steels;misorientation;dislocations;character;690tt"}],"language":"en","publisherId":"0010-938X_2011_9_1","title":"Effects of cold working path on strain concentration, grain boundary microstructure and stress corrosion cracking in Alloy 600","volume":"53","year":"2011"},{"abstractinfo":"A developmental research has been carried out to deal with the high performance of Cu-Cr-Zr-Mg lead frame alloy by artificial neural network (ANN). Using the cold working to assist in the aging hardening can improve the the hardness and electrical conductivity properties of Cu-Cr-Zr-Mg lead frame alloy. This paper studies the effect of different extent of cold working on the aging properties by a supervised ANN to model the non-linear relationship between processing parameters and the properties. The back-propagation (BP) training algorithm is improved by Levenberg-Marquardt algorithm. A basic repository on the domain knowledge of cold worked aging processes is established via sufficient data mining by the network. The predicted values of the ANN coincide well with the tested data.So an important foundation has been laid for prediction and optimum controlling the rolling and aging properties of Cu-Cr-Zr-Mg alloy.","authors":[{"authorName":"J.H.Su","id":"8cb83431-5378-4ff9-9f59-98771c0c3085","originalAuthorName":"J.H.Su"}],"categoryName":"|","doi":"","fpage":"741","id":"ea28e14b-27ee-4b71-817a-0fa8f748b941","issue":"5","journal":{"abbrevTitle":"JSXBYWB","coverImgSrc":"journal/img/cover/amse.jpg","id":"49","issnPpub":"1006-7191","publisherId":"JSXBYWB","title":"金属学报(英文版)"},"keywords":[{"id":"9bc6ad58-f8c9-4c4b-a19b-f744eb678cbf","keyword":"Cu-Cr-Zr-Mg alloy","originalKeyword":"Cu-Cr-Zr-Mg alloy"},{"id":"3ed391b5-c4c0-42fc-8bee-6863405d3818","keyword":"null","originalKeyword":"null"},{"id":"04511430-3430-4791-8f7f-66eee3f1b4cc","keyword":"null","originalKeyword":"null"}],"language":"en","publisherId":"1006-7191_2004_5_16","title":"EFFECT OF COLD WORKING ON THE AGING PROPERTIES OF Cu-Cr-Zr-Mg ALLOY BY ARTIFICIAL NEURAL NETWORK","volume":"17","year":"2004"},{"abstractinfo":"Strain concentration at grain boundaries and grain boundary microstructure in cold worked Alloy 600 were characterized. Excluding the annealing twin boundaries, the base and 20% cold worked alloys exhibited higher random grain boundary fractions than the 8% and 40% cold worked alloys. An increased low angle boundaries and decreased annealing twins were observed with deformation. The 20% cold worked alloy displayed a maximum strain concentration at grain boundaries. The stress corrosion cracking growth in cold worked Alloy 600 in high temperature water showed a strong correlation with the strain concentration at grain boundaries. (C) 2010 Elsevier Ltd. All rights reserved.","authors":[],"categoryName":"|","doi":"","fpage":"1137","id":"d6ee4b7f-3ff5-4129-b903-726706b6c8b6","issue":"3","journal":{"abbrevTitle":"CS","id":"36011533-0ced-443e-899a-7c7323dae3b5","issnPpub":"0010-938X","publisherId":"CS","title":"Corrosion Science"},"keywords":[{"id":"2f058a28-953c-48cd-840f-ec6a1f089239","keyword":"Nickel-base Alloy 600;Electron backscatter diffraction;Cold working;Grain boundary character;Strain concentration at grain boundary;Stress;corrosion cracking;stress-corrosion cracking;mechanical-properties;primary water;microstructure;deformation;temperature;evolution;metals;copper;igscc","originalKeyword":"Nickel-base Alloy 600;Electron backscatter diffraction;Cold working;Grain boundary character;Strain concentration at grain boundary;Stress;corrosion cracking;stress-corrosion cracking;mechanical-properties;primary 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e{"currentpage":1,"firstResult":0,"maxresult":10,"pagecode":5,"pageindex":{"endPagecode":5,"startPagecode":1},"records":[{"abstractinfo":"","authors":[{"authorName":"","id":"2ad03011-b7da-436a-a011-4bde3a091b41","originalAuthorName":""}],"doi":"","fpage":"19","id":"de41e133-2cb8-4dad-810c-7c063102f44c","issue":"6","journal":{"abbrevTitle":"GTYJXBYWB","coverImgSrc":"journal/img/cover/GTYJXBEN.jpg","id":"1","issnPpub":"1006-706X","publisherId":"GTYJXBYWB","title":"钢铁研究学报(英文版)"},"keywords":[{"id":"a0a3b7e0-1463-4e88-98b3-675e503a597c","keyword":"应力变化","originalKeyword":"应力变化"},{"id":"554122cd-8285-4789-9d57-4e6e2ed8dba1","keyword":"冷轧带钢","originalKeyword":"冷轧带钢"},{"id":"f48c21cb-1925-4bf8-8c31-da76c30aca74","keyword":"出入境","originalKeyword":"出入境"},{"id":"7869e5aa-f58a-4646-9258-ac782f39c3cb","keyword":"出口速度","originalKeyword":"出口速度"},{"id":"fd3e03ca-d0bb-429e-b980-f6d3f203ab07","keyword":"计算结果","originalKeyword":"计算结果"},{"id":"25e67cc9-07ca-4ec6-b102-f65207faa5e3","keyword":"速度变化","originalKeyword":"速度变化"},{"id":"360546aa-ed3a-45bd-9bfe-e6c896798d42","keyword":"压力变化","originalKeyword":"压力变化"},{"id":"4d6dd52d-d1f2-46d0-a2d3-d27607eb8995","keyword":"断裂伸长率","originalKeyword":"断裂伸长率"}],"language":"zh","publisherId":"gtyjxb-e201206005","title":"Entry and Exit Stress Variation of Cold Rolling Strip","volume":"19","year":"2012"},{"abstractinfo":"采用具有实用意义的浮法玻璃熔窑内物料运动和传热过程的三维数学模型,通过实例计算,研究卡脖开度变化对玻璃液流温度场和速度场的影响.","authors":[{"authorName":"沈锦林","id":"8c499c49-56f7-4d46-b540-ff46573f5f6f","originalAuthorName":"沈锦林"},{"authorName":"颜晖","id":"00dff6c4-1ce8-45fa-a1bd-b8c23e7a62e1","originalAuthorName":"颜晖"},{"authorName":"宋晨路","id":"f28cd2c5-f256-4bd2-b9c5-337e2337534a","originalAuthorName":"宋晨路"},{"authorName":"吴勇","id":"9c86a5bc-52a6-48d2-acb4-119e1e86dce8","originalAuthorName":"吴勇"}],"doi":"10.3969/j.issn.1673-2812.2005.03.005","fpage":"331","id":"82253938-52e8-4bc7-8464-ee3664313485","issue":"3","journal":{"abbrevTitle":"CLKXYGCXB","coverImgSrc":"journal/img/cover/CLKXYGCXB.jpg","id":"13","issnPpub":"1673-2812","publisherId":"CLKXYGCXB","title":"材料科学与工程学报"},"keywords":[{"id":"c7e351de-46a3-454f-a4a3-2b21517a1d73","keyword":"玻璃熔窑","originalKeyword":"玻璃熔窑"},{"id":"7b7ee761-f6a7-4904-bc11-12c21674d9f1","keyword":"卡脖","originalKeyword":"卡脖"},{"id":"0e6e6a79-11c8-4f99-b9e2-09e16dcbff00","keyword":"流场","originalKeyword":"流场"},{"id":"7d2c4903-97c9-40fa-8f30-4532c800721c","keyword":"温度场","originalKeyword":"温度场"}],"language":"zh","publisherId":"clkxygc200503005","title":"卡脖开度变化对玻璃池窑液流温度场和速度场的影响","volume":"23","year":"2005"},{"abstractinfo":"针对93W长杆弹垂直侵彻半无限4340钢靶的准稳定阶段进行研究,根据弹尾和弹体平均速度时程曲线分析准稳定阶段的速度特性和时间分布,并对不同长径比不同入射速度条件下冲击速度与侵彻速度之间的关系进行研究.研究表明,不同条件下侵彻速度与冲击速度发生较大的变化,但两者之间的关系不变且满足线性关系.这种关系与利用流体动力学模型所推导出的线性关系明显不同.","authors":[{"authorName":"高光发","id":"30f48855-8a06-4faa-851c-97820478c671","originalAuthorName":"高光发"},{"authorName":"李永池","id":"6bb7c144-64fd-4a79-ac27-a45a8629c0fb","originalAuthorName":"李永池"},{"authorName":"段士伟","id":"2f20fcc5-8a80-4821-b80c-6abbfd85eb21","originalAuthorName":"段士伟"},{"authorName":"魏磊","id":"f7ca38c8-c239-46f1-8560-9d9aa1dbf452","originalAuthorName":"魏磊"}],"doi":"10.3969/j.issn.1004-244X.2011.01.004","fpage":"13","id":"ecd905f7-f146-421e-9969-56f4b7580c2e","issue":"1","journal":{"abbrevTitle":"BQCLKXYGC","coverImgSrc":"journal/img/cover/BQCLKXYGC.jpg","id":"4","issnPpub":"1004-244X","publisherId":"BQCLKXYGC","title":"兵器材料科学与工程 "},"keywords":[{"id":"7b7bbafd-0942-4d62-bb13-e2d19f8311a2","keyword":"侵彻力学","originalKeyword":"侵彻力学"},{"id":"72aafe6d-1676-49da-ac06-a83150258f26","keyword":"准稳定状态","originalKeyword":"准稳定状态"},{"id":"d5607d97-0142-45e9-9a9e-195c4bd34e89","keyword":"冲击速度","originalKeyword":"冲击速度"},{"id":"7c8f32d7-63a2-4924-8d82-68b55df3b0d7","keyword":"侵彻速度","originalKeyword":"侵彻速度"}],"language":"zh","publisherId":"bqclkxygc201101004","title":"侵彻准稳定过程中冲击速度与侵彻速度的关系","volume":"34","year":"2011"},{"abstractinfo":"通过论述鼓风速度与风口回旋区长度的关系,提出了合理风速的概念,分析了合理风速的理论依据和影响因素,并进一步给出了判断风速是否合理的各种直观现象以及调节风速的有效方法.明确指出合理风速不是一个具体数值,而是一个合理的范围,根据高炉生产条件的变化而变化,确定合理风速需要足够时间的尝试与探索.实践证明,高炉只有在合理风速条件下生产才能保证炉缸的正常工作,才能实现高炉生产长期的稳定与顺行.","authors":[{"authorName":"代兵","id":"353dc2a6-4834-4a2b-ae5e-5cde5fda3ef4","originalAuthorName":"代兵"},{"authorName":"刘云彩","id":"8ead78eb-748e-4448-91b0-791bc19ba674","originalAuthorName":"刘云彩"}],"doi":"10.13228/j.b0yuan.issn1001-0963.20130430","fpage":"9","id":"06d570ed-4282-443b-8840-19661755a796","issue":"3","journal":{"abbrevTitle":"GTYJ","coverImgSrc":"journal/img/cover/GTYJ.jpg","id":"29","issnPpub":"1001-1447","publisherId":"GTYJ","title":"钢铁研究"},"keywords":[{"id":"dc22ab21-77d3-4ac6-85ce-a187e0df5c01","keyword":"高炉","originalKeyword":"高炉"},{"id":"a5c56c36-25b2-4320-9de4-f3dcae031da2","keyword":"炉缸","originalKeyword":"炉缸"},{"id":"23b0a915-1305-49ff-ad9d-4eb0b3717696","keyword":"风口回旋区","originalKeyword":"风口回旋区"},{"id":"145dd43e-6c7b-4c98-9f90-06a9c522b918","keyword":"风速","originalKeyword":"风速"},{"id":"cef46202-9031-46d6-b29a-55874a63bb13","keyword":"风口面积","originalKeyword":"风口面积"}],"language":"zh","publisherId":"gtyjxb201503003","title":"高炉的合理鼓风速度","volume":"27","year":"2015"},{"abstractinfo":"使用盛有水或砂浆的小面积方盘对平板砂浆蒸发速度进行了模拟测定计算,研究了小面积砂浆与平板砂浆蒸发速度之间的关系,得到了其在试件成型90min~6h之间平板砂浆与方盘砂浆蒸发速度的比值随时间变化的线性方程.通过测量小面积方盘砂浆的蒸发速度可以计算出实际平板砂浆的蒸发速度,由此可进一步研究蒸发速度对水泥基材料抗裂指数K的影响.","authors":[{"authorName":"马一平","id":"172f341e-4280-490c-9787-3a67741554a7","originalAuthorName":"马一平"},{"authorName":"张乐","id":"6d145df8-b85b-4a24-91ea-22fcd5b51581","originalAuthorName":"张乐"},{"authorName":"杨晓杰","id":"daf0cabd-2c71-4170-ba4d-baa0c033feca","originalAuthorName":"杨晓杰"}],"doi":"","fpage":"284","id":"e641f535-0799-40d7-823f-cda63a574099","issue":"z2","journal":{"abbrevTitle":"CLDB","coverImgSrc":"journal/img/cover/CLDB.jpg","id":"8","issnPpub":"1005-023X","publisherId":"CLDB","title":"材料导报"},"keywords":[{"id":"d026af4c-a9a2-4f05-84b3-d75d8ba6719f","keyword":"砂浆","originalKeyword":"砂浆"},{"id":"fa473cfd-e17a-4e26-a814-4bf778609f31","keyword":"蒸发速度","originalKeyword":"蒸发速度"},{"id":"06f7cc30-722c-4c94-a3f9-b33ef485c795","keyword":"线性关系","originalKeyword":"线性关系"}],"language":"zh","publisherId":"cldb2009z2086","title":"水泥基材料蒸发速度模拟测定计算研究","volume":"23","year":"2009"},{"abstractinfo":"讨论了冷却速度对42CrMo钢组织的影响,重点测试了随着冷却速度的提高,42CrMo钢组织变化依次是多边形铁素体组织、针状铁素体组织、上贝氏体和板条马氏体的混合组织,对生产具有很好的指导作用。","authors":[{"authorName":"刘静","id":"431b9bc2-6f31-414e-973c-333ee5d5b288","originalAuthorName":"刘静"},{"authorName":"赵胜男","id":"42b86666-0dfd-4acf-97c2-212060e244e3","originalAuthorName":"赵胜男"},{"authorName":"王兆存","id":"28a24b22-db74-42c5-abf1-66236e528837","originalAuthorName":"王兆存"}],"doi":"","fpage":"14","id":"6368c538-6dfa-4056-a621-8a0f2478bc73","issue":"4","journal":{"abbrevTitle":"WLCS","coverImgSrc":"journal/img/cover/WLCS.jpg","id":"64","issnPpub":"1001-0777","publisherId":"WLCS","title":"物理测试"},"keywords":[{"id":"c1e7f9e5-7732-4b1e-af49-e20d0529961a","keyword":"42CrMo钢","originalKeyword":"42CrMo钢"},{"id":"29247772-9175-483a-8dcf-32b8520bc23e","keyword":"冷却速度","originalKeyword":"冷却速度"},{"id":"521c1dda-16f4-4d97-a3da-5e250200fcd1","keyword":"组织","originalKeyword":"组织"}],"language":"zh","publisherId":"wlcs201104004","title":"冷却速度对42CrMo钢组织的影响","volume":"","year":"2011"},{"abstractinfo":"以不同的速度对高纯铝箔进行轧制试验,用非接触式三维表面轮廓仪观测了铝箔表面形貌,并从润滑状态、表面轮廓自协方差函数及功率谱密度等方面研究了轧制速度对铝箔表面形貌的影响。结果表明:在轧制过程中,摩擦主要是由轧辊表面微凸体压入高纯铝表面产生的塑性变形及犁沟作用所致;铝箔的表面粗糙度主要取决于轧辊的表面粗糙度,轧制速度的变化不会影响铝箔表面轮廓的主要特征;轧制速度从5m·s^-1提高到7m·s^-1后,铝箔横向表面粗糙度无明显变化,而轧向表面粗糙度下降,表面微观形貌得到了改善;轧制速度的变化不影响铝箔表面轮廓的自相关性,铝箔的表面轮廓以空间波长较长的空间随机分量为主。","authors":[{"authorName":"周亚军","id":"ebdba35f-ea90-406f-b5ea-13ea5dd0d1d0","originalAuthorName":"周亚军"},{"authorName":"何小龙","id":"8f4b6b16-9b7c-433d-ae40-dfb25dfee8f8","originalAuthorName":"何小龙"},{"authorName":"程峰","id":"d99f0c2c-1518-4a83-b7a0-e67f1012f00e","originalAuthorName":"程峰"}],"doi":"","fpage":"13","id":"b129ceff-2b5d-4b4a-82e8-9dc70991b86e","issue":"6","journal":{"abbrevTitle":"JXGCCL","coverImgSrc":"journal/img/cover/JXGCCL.jpg","id":"45","issnPpub":"1000-3738","publisherId":"JXGCCL","title":"机械工程材料"},"keywords":[{"id":"0accf34a-855d-4fd1-80cd-0c8521d7de16","keyword":"高纯铝箔","originalKeyword":"高纯铝箔"},{"id":"5197651f-3d66-49bf-bda2-f758dee711c6","keyword":"轧制速度","originalKeyword":"轧制速度"},{"id":"bedc9d02-4a21-40fd-90a2-2d8afbe769d0","keyword":"表面粗糙度","originalKeyword":"表面粗糙度"},{"id":"a54145f5-c75d-47e1-8dcb-e70e84ff03ed","keyword":"表面形貌","originalKeyword":"表面形貌"}],"language":"zh","publisherId":"jxgccl201206004","title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