發(fā)明專利:
[1]王延相,崔博文,王成國,王成娟,岳陽,姚志強,魏化震,王啟芬,陳剛. 一種超聲輔助均勻化連續(xù)纖維表面熱氣流反應的方法及裝置[P]. CN113622183B,2022-08-23.
[2]于美杰,鐘思佳,王成國,梁學琛,董玉情. 一種鋁離子摻雜的片狀氮化鐵材料及其制備方法與應用[P]. CN114920216A,2022-08-19.
[3]王延相,徐小丹,王成國,王成娟,吳思蒙,王亞鵬,許鎮(zhèn)豪,栗孟帆,蔣浩天. 一種梯度加熱的褶皺MXene/TiO-2/石蠟的制備方法及其電磁屏蔽應用[P]. CN114874751A,2022-08-09.
[4]于美杰,劉似玉,王成國,梁學琛,馮元君,王妍妍. 一種表面改性抗靜電碳化纖維的方法[P]. CN114775277A,2022-07-22.
[5]于美杰,王成國,周海平,王巖君,高月欣,王妍妍. 一種低介電低紅外發(fā)射率涂料及其制備方法與應用[P]. CN114752263A,2022-07-15.
[6]王成國,梁學琛,于美杰,姚志強,張燁,劉似玉. 基于鐵基金屬有機框架材料的電磁吸波劑及其制備方法[P]. CN114554819A,2022-05-27.
[7]于美杰,王成國,王巖君,周海平,高月欣,王妍妍. 一種復合鋁粉及其制備方法與應用[P]. CN114381193A,2022-04-22.
[8]王成國,姚志強,王延相,王成娟,許鎮(zhèn)豪,栗孟帆,蔣浩天,岳陽,魏化震,陳剛,王啟芬. 一種在碳纖維表面沉積螺旋碳納米管的制備方法及應用[P]. CN113753877A,2021-12-07.
[9]王延相,崔博文,王成國,姚志強,岳陽,王永博,王玉霞,徐小丹. 一種碳納米管-碳纖維多尺度增強體及其制備方法與應用[P]. CN111876999B,2021-11-30.
[10]王延相,崔博文,王成國,王成娟,岳陽,姚志強,魏化震,王啟芬,陳剛. 一種超聲輔助均勻化連續(xù)纖維表面熱氣流反應的方法及裝置[P]. CN113622183A,2021-11-09.
[11]王延相,馬子明,王成國,魏化震,秦建杰,姚志強,崔軒豪,王啟芬. 一種碳納米管/碳纖維增強體及其制備方法與應用[P]. CN111876997B,2021-09-17.
[12]高權,王成國,王玉霞. 一種纖維超薄切片的制備方法及其應用[P]. CN112985938A,2021-06-18.
[13]王延相,姚志強,王成國,魏化震,秦建杰,崔博文,馬子明,岳陽,王永博. 一種低溫下在碳布表面快速生長碳納米管的制備方法[P]. CN110745810B,2021-03-26.
[14]于美杰,鄭奇,王成國,劉似玉,梁學琛. 一種基于天然絲瓜絡的碳基多孔復合吸波劑及其制備方法[P]. CN112537764A,2021-03-23.
[15]王成國,秦建杰,王延相,魏化震,陳剛,王啟芬,姚志強,馬子明,崔博文,岳陽,王永博. 一種基于解耦聯(lián)熱處理控制碳納米管生長狀態(tài)的裝置和方法及其應用[P]. CN111960405A,2020-11-20.
[16]王延相,馬子明,王成國,魏化震,秦建杰,姚志強,崔軒豪,王啟芬. 一種碳納米管/碳纖維增強體及其制備方法與應用[P]. CN111876997A,2020-11-03.
[17]王延相,崔博文,王成國,姚志強,岳陽,王永博,王玉霞,徐小丹. 一種碳納米管-碳纖維多尺度增強體及其制備方法與應用[P]. CN111876999A,2020-11-03.
[18]王延相,秦建杰,王成國,魏化震,路瑞佼,蘇順生. 一種碳纖維表面在線連續(xù)生長碳納米管的制備方法[P]. CN109797540B,2020-10-30.
[19]王延相,馬子明,王成國,魏化震,崔博文,王永博,岳陽. 一種使用木質素磺酸鈉與雙金屬催化劑共同作用在碳纖維上生長碳納米管的方法[P]. CN110820322B,2020-10-09.
[20]王成國,姚志強,王延相,魏化震,秦建杰,馬子明. 一種使用雙金屬催化劑在碳纖維織物表面催化生長碳納米管的制備方法[P]. CN109610159B,2020-03-20.
[21]王成國,路瑞佼,王延相,魏化震,秦建杰,姚志強. 一種碳布表面均勻生長碳納米管前期的表面處理方法[P]. CN109750492B,2020-03-20.
[22]王延相,馬子明,王成國,魏化震,崔博文,王永博,岳陽. 一種使用木質素與雙金屬催化劑共同作用在碳纖維上生長碳納米管的方法[P]. CN110820322A,2020-02-21.
[23]王延相,秦建杰,魏化震,王成國,王啟芬,馬子明,岳陽,崔博文,王永博. 一種在石墨纖維薄膜布表面均勻生長碳納米管的控制方法[P]. CN110777532A,2020-02-11.
[24]王延相,姚志強,王成國,魏化震,秦建杰,崔博文,馬子明,岳陽,王永博. 一種低溫下在碳布表面快速生長碳納米管的制備方法[P]. CN110745810A,2020-02-04.
[25]王延相,蘇順生,王成國,魏化震,秦建杰,姚志強. 一種基于硫摻雜改性催化劑在PAN基碳纖維表面催化生長碳納米管的工藝方法[P]. CN109763319B,2020-01-17.
[26]王延相,牛芳旭,王成國,劉群,馬連茹,鄭林寶. 重結晶硅碳棒表面高溫抗氧化涂層的制備方法[P]. CN106220245B,2019-11-08.
[27]王成國,王延相,陳紀強,鄭林寶,王興輝,秦建杰. 用于表面生長碳納米管的碳纖維電化學處理方法[P]. CN106319933B,2019-06-07.
[28]王延相,秦建杰,王成國,魏化震,路瑞佼,蘇順生. 一種碳纖維表面在線連續(xù)生長碳納米管的制備方法[P]. CN109797540A,2019-05-24.
[29]王延相,蘇順生,王成國,魏化震,秦建杰,姚志強. 一種基于硫摻雜改性催化劑在PAN基碳纖維表面催化生長碳納米管的工藝方法[P]. CN109763319A,2019-05-17.
[30]王成國,路瑞佼,王延相,魏化震,秦建杰,姚志強. 一種碳布表面均勻生長碳納米管前期的表面處理方法[P]. CN109750492A,2019-05-14.
[31]王成國,姚志強,王延相,魏化震,秦建杰,馬子明. 一種使用雙金屬催化劑在碳纖維織物表面催化生長碳納米管的制備方法[P]. CN109610159A,2019-04-12.
[32]于美杰,王成國,謝勝坤,黃朝暉. 一種復合吸波劑、制備方法及其應用[P]. CN107033842B,2019-03-01.
[33]朱波,王成國,曹偉偉,王永偉,劉玉蘭,趙圣堯. 一種多層功能預浸織物[P]. CN208020879U,2018-10-30.
[34]王延相,牛芳旭,王成國,瞿策,劉群,馬連茹. 碳化硅電熱元件表面抗氧化涂層及其制備方法[P]. CN108620298A,2018-10-09.
[35]王延相,王興輝,王成國,鄭林寶,秦建杰,瞿策,路瑞佼. 用于碳纖維布表面均勻生長碳納米管的裝置及方法[P]. CN108625159A,2018-10-09.
[36]朱波,王成國,曹偉偉,王永偉,劉玉蘭,趙圣堯. 一種輻射加熱制備熱塑性預浸織物的方法[P]. CN108422587A,2018-08-21.
[37]朱波,王成國,曹偉偉,王永偉,劉玉蘭,趙圣堯. 一種多層功能預浸織物及其制備方法和應用[P]. CN108274858A,2018-07-13.
[38]王延相,鄭林寶,王成國,王興輝,秦建杰,路瑞佼. 在連續(xù)化碳纖維表面生長碳納米管的裝置及方法[P]. CN108221361A,2018-06-29.
[39]于美杰,王成國,謝勝坤,黃朝暉. 一種新型復合吸波劑、制備方法及其應用[P]. CN107033842A,2017-08-11.
[40]王延相,鄭林寶,王成國,王興輝,秦建杰,路瑞佼. 在連續(xù)化碳纖維表面生長碳納米管的裝置[P]. CN206396529U,2017-08-11.
[41]王成國,王延相,秦建杰,鄭林寶,陳紀強,王興輝. 用于碳纖維表面生長碳納米管的表面連續(xù)處理裝置[P]. CN206052450U,2017-03-29.
[42]王延相,牛芳旭,王成國,鄭林寶,馬連茹,劉群. 高致密性碳化硅陶瓷的制備方法[P]. CN106336218A,2017-01-18.
[43]王成國,王延相,陳紀強,鄭林寶,王興輝,秦建杰. 用于表面生長碳納米管的碳纖維電化學處理方法[P]. CN106319933A,2017-01-11.
[44]王延相,牛芳旭,王成國,劉群,馬連茹,鄭林寶. 重結晶硅碳棒表面高溫抗氧化涂層的制備方法[P]. CN106220245A,2016-12-14.
[45]于美杰,王成國,朱波,王賢明,寧亮,韓建軍. 一種透波抗靜電涂料及其制備方法與應用[P]. CN105623490A,2016-06-01.
[46]于美杰,王成國,許文花,毛瓊,李發(fā)展. 一種枝狀氮化鐵粉末及其制備方法[P]. CN104192815B,2015-08-05.
[47]于美杰,王成國,許文花,毛瓊,李發(fā)展. 一種枝狀氮化鐵粉末及其制備方法[P]. CN104192815A,2014-12-10.
[48]王成國,于美杰,朱波,張姍,馬婕. 一種防靜電碳基纖維及其制備方法與應用[P]. CN102839448B,2014-06-18.
[49]朱波,蔡珣,王成國. 一種新型碳纖維風力發(fā)電機及其制備方法[P]. CN102644554B,2014-03-12.
[50]王成國,王雯,于美杰,朱波,王延相,劉建軍,李斌鵬. 一種碳基復合吸波材料的制備方法[P]. CN102382623B,2013-12-18.
[51]于美杰,王成國,呂宇鵬,白玉俊,高瑞. 一種無需氨氣的碳包覆氮化鐵納米粉末的制備方法[P]. CN103101892B,2013-10-23.
[52]于美杰,王成國,呂宇鵬,白玉俊,高瑞. 一種無需氨氣的碳包覆氮化鐵納米粉末的制備方法[P]. CN103101892A,2013-05-15.
[53]朱波,蔡珣,王成國,喬琨,徐文勝. 一種絕緣型碳纖維復合芯導線[P]. CN202711808U,2013-01-30.
[54]朱波,蔡珣,王成國. 一種新型碳纖維風力發(fā)電機[P]. CN202673568U,2013-01-16.
[55]王成國,于美杰,朱波,張姍,馬婕. 一種防靜電碳基纖維及其制備方法與應用[P]. CN102839448A,2012-12-26.
[56]朱波,蔡珣,王成國. 一種新型碳纖維風力發(fā)電機及其制備方法[P]. CN102644554A,2012-08-22.
[57]朱波,王成國,蔡珣,蔡菲,高學平,喬琨. 一種高溫高壓塑化裝置[P]. CN202247052U,2012-05-30.
[58]王延相,王彥明,莊光山,王成國,謝奔,劉玉蘭. 一種截面形狀為“一”字型的石墨烯薄膜帶的制備方法[P]. CN101787589B,2012-04-25.
[59]朱波,王成國,蔡珣,蔡菲,曹偉偉. 一種高效螺桿溶解設備[P]. CN202181374U,2012-04-04.
[60]王成國,王雯,于美杰,朱波,王延相,劉建軍,李斌鵬. 一種碳基復合吸波材料的制備方法[P]. CN102382623A,2012-03-21.
[61]朱波,蔡珣,王成國,蔡華甦. 熱塑性樹脂基體復合材料導線芯棒及其制備模具和方法[P]. CN102024518B,2012-03-07.
[62]朱波,王成國,蔡珣,蔡菲,高學平,喬琨. 一種高溫高壓塑化裝置[P]. CN102304775A,2012-01-04.
[63]朱波,王成國,蔡珣,蔡菲,曹偉偉. 一種高效螺桿溶解設備[P]. CN102260917A,2011-11-30.
[64]朱波,蔡珣,王成國,蔡華甦. 熱塑性樹脂基體復合材料導線芯棒[P]. CN201838372U,2011-05-18.
[65]朱波,蔡珣,王成國,蔡華甦. 制備熱塑性樹脂基體復合材料導線芯棒的模具[P]. CN201838406U,2011-05-18.
[66]朱波,王成國,于寬,蔡菲,高學平,于美杰. 一種新型復合高溫碳化爐[P]. CN101451279B,2011-05-11.
[67]朱波,蔡珣,王成國,蔡華甦. 熱塑性樹脂基體復合材料導線芯棒及其制備模具和方法[P]. CN102024518A,2011-04-20.
[68]王延相,王彥明,莊光山,王成國,謝奔,劉玉蘭. 一種截面形狀為“一”字型的石墨烯薄膜帶的制備方法[P]. CN101787589A,2010-07-28.
[69]朱波,王成國,蔡華甦,王延相,曹偉偉. 一種無芯碳纖維螺旋體電熱元件的制備方法[P]. CN1809224B,2010-06-23.
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[71]朱波,王成國,于寬,蔡菲,高學平,于美杰. 一種新型復合高溫碳化爐[P]. CN101451279,2009-06-10.
[72]朱波,邵登山,王成國,蔡華甦,辛虹霓. 一種煉鐵高爐冷卻壁冷卻管道內堵漏方法[P]. CN100425705C,2008-10-15.
[73]于美杰,王成國,朱波,馬婕. 碳纖維增強硅酸鈣保溫隔熱材料及其制備方法[P]. CN101219879,2008-07-16.
[74]于美杰,王成國,朱波,馬婕. 碳素纖維靜電耗散包裝材料及其制備方法[P]. CN101220204,2008-07-16.
[75]王成國,于美杰,朱波,馬婕. 防靜電用碳纖維及其制備方法[P]. CN101220535,2008-07-16.
[76]朱波,王成國,蔡華甦,王延相,劉建軍. 一種高耐磨性碳纖維增強尼龍與橡膠復合的輪襯及其制造工藝[P]. CN100357095C,2007-12-26.
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[78]王成國,朱波,劉建軍,蔡華蘇. 混雜纖維增強復合材料受電弓滑板及其制備方法[P]. CN1326152C,2007-07-11.
[79]朱波,蔡華甦,王成國,王延相. 水相懸浮二步法制備碳纖維用聚丙烯腈原絲新方法[P]. CN1986923,2007-06-27.
[80]朱波,王成國,蔡華甦,王延相,劉建軍. 新型聚丙烯腈原絲流態(tài)化預氧爐[P]. CN1283856C,2006-11-08.
[81]朱波,邵登山,王成國,蔡華甦,辛虹霓. 一種煉鐵高爐冷卻壁冷卻管道內堵漏方法[P]. CN1858263,2006-11-08.
[82]王成國,朱波,劉建軍,崔金祎,王延相,張亞平,王國勝,李麟強,蔡華蘇,孫乃武. 一種受電弓滑板及其制備方法[P]. CN1281431C,2006-10-25.
[83]朱波,王成國,蔡華甦,王延相,曹偉偉. 一種無芯碳纖維螺旋體電熱元件的制備方法[P]. CN1809224,2006-07-26.
[84]白玉俊,王成國,王正博,李木森,亓永新,朱波,王延相. 一種β-氮化硅粉體材料的一步反應低溫制備方法[P]. CN1799993,2006-07-12.
[85]朱波,王成國,蔡華甦,劉建軍,王延相. 一種新型超聲波清洗機[P]. CN2785728,2006-06-07.
[86]白玉俊,王成國,李木森,王正博,亓永新,朱波,王延相. 一種低溫制備氮化硅粉體材料的方法[P]. CN1239384C,2006-02-01.
[87]白玉俊,馮欣,王成國,呂波,王正博. 碳氮化鈦三元化合物粉體材料的制備方法[P]. CN1239397C,2006-02-01.
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論文專著:
發(fā)表在國內外學術刊物上的論文180余篇,出版著作3部。
出版專著:
1、《聚丙烯腈基碳纖維》,王成國、朱波,科學出版社 2011
2、《材料分析測試方法》,王成國,上海交通大學出版社,1994
3、《工程材料學》,王成國,機械工業(yè)出版社,1999
發(fā)表英文論文:
[1]Gao, Bo; Zhang, Ruliang*; He, Maoshuai; Wang, Chengguo; Liu, Lei; Zhao, Lifen; Wen, Zhijie*; Ding, Zhipeng. Interfacial microstructure and mechanical properties of carbon fiber composites by fiber surface modification with poly(amidoamine)/polyhedral oligomeric silsesquioxane .Composites Part A: Applied Science and Manufacturing , 2016, 90: 653-661.
[2]Gao, Bo; Zhang, Ruliang*; He, Maoshuai; Sun, Lingchao; Wang, Chengguo*; Liu, Lei; Zhao, Lifen; Cui, Hongzhi; Cao, Aiping. Effect of a multiscale reinforcement by carbon fiber surface treatment with graphene oxide/carbon nanotubes on the mechanical properties of reinforced carbon/carbon composites .Composites Part A: Applied Science and Manufacturing , 2016, 90: 433-440.
[3]Shi, Guo-pu*; Wang, Zhi; Wu, Chao; Wang, Cheng-guo.Effects of sintering temperature on mechanical properties of Ti/Al2O3 composites .Emerging Materials Research, 2016, 5(1): 141-146.
[4]Zhang, R. L.*; Gao, B.*; Du, W. T.; Zhang, J.; Cui, H. Z.; Liu, L.; Wang, C. G.; Li, F. H.Enhanced mechanical properties of multiscale carbon fiber/epoxy composites by fiber surface treatment with graphene oxide/polyhedral oligomeric silsesquioxane .Composites Part A: Applied Science and Manufacturing , 2016, 84: 455-463.
[5]Cui, Xiaochen; Yu, Meijie*; Wang, Chengguo; Li, Fazhan; Mao, Qiong.The morphology and crystalline region distribution of polyacrylonitrile nanofibers prepared by electrospinning .Polymer Science - Series A, 2016, 58(3): 357-367.
[6]Zhu, Mengna; Yu, Meijie*; Mao, Qiong; Li, Fazhan; Wang, Chengguo.Synthesis and electromagnetic properties of nanodendritic gamma '-Fe4N .Functional Materials Letters, 2016, 9(2): 1650021.
[7]Yu, Meijie*; Xu, Yong; Mao, Qiong; Li, Fazhan; Wang, Chengguo.Electromagnetic and absorption properties of nano-sized and micro-sized Fe4N particles .Journal of Alloys and Compounds, 2016, 656: 362-367.
[8]R. L. Zhang; J. Zhang; C. G. Wang.ormationof a Hierarchical Reinforcing Carbon Fiber through Co-Grafting Graphene Oxideand Carbon Nanotube .ECS J. Solid State Sci. Technol, 2016, 5(6).
[9]B. Gao; R. L. Zhang; C. G. Wang*.Enhancedmechanical properties of carbon fiber composites by grafting differentstructural poly(amido amine) onto fiber surface .Polymer Testing, 2016, (56): 192-199.
[10]B. Gao; R. L. Zhang; F. C. Gao; M. S. He; C. G. Wang*; L. Liu; L. F. Zhao; H. Z. Cui.Interfacialmicrostructure and enhanced mechanical properties of carbon fiber composites bygrowing generation 1-4 dendritic poly(amidoamine) on fiber surface .Langmuir, 2016, (32): 8339-8349.
[11]王成國*.Highefficient preparation of carbon nanotube-grafted carbon fibers with theimproved tensile strength .Applied Surface Science, 2016, 364: 539-551.
[12]Fan, Wenxin*; Wang, Yanxiang; Wang, Chengguo; Chen, Jiqiang; Yuan, Yan.Communication-Catalyst Study on the Large-Scale Preparation of Carbon Nanotube-Grafted Carbon Fibers with High Tensile Strength .ECS Journal of Solid State Science and Technology, 2016, 5(6).
[13]Zhu, Mengna; Yu, Meijie*; Mao, Qiong; Wang, Chengguo.Comparison of Structure and Electrical Properties between Carbon Nanofibers and Microfibers .ECS Journal of Solid State Science and Technology, 2016, 5(7).
[14]Wenxin Fan, Yanxiang Wang, Jiqiang Chen, Yan Yuan, Aiguo L; Qifen Wang and Chengguo Wang*.Controllable growth ofuniform carbon nanotubes carbon nanofibers on the surface of carbon fibers .RSC Advances, 2015, 5: 75735-75741.
[15]Bin Peng Li, Cheng Guo Wang, Wen Wang, Mei Jie Yu.Electromagnetic Wave Absorption Properties of Composites with Micro-sized Magnetic Particles Dispersed in Amorphous Carbon .Journal of Magnetism and Magnetic Materials, 2014, 365(-): 40-44.
[16]Li, Bin Peng; Wang, Cheng Guo*; Wang, Wen; Yu, Mei Jie; Gao, Rui; Chen, Yang.Electromagnetic wave absorption properties of composites with micro-sized magnetic particles dispersed in amorphous carbon .Journal of Magnetism and Magnetic Materials, 2014, 365: 40-44.
[17]Liu, Jianjun; Huang, Yuxia; Yuan, Yan; Zhang, Xiang; Wang, Yanxiang*; Wang, Chengguo.Synthesis and Properties of Acrylonitrile-Methyl Itaconate Copolymers as Spun Carbon Fiber Precursors .Fibers and Polymers, 2014, 15(8): 1583-1588.
[18]Hua Yuan, Chengguo Wang, Shan Zhang, Xue Lin, Mei.Densification treatment and properties of carbon fiber reinforced contact strip .Science and Engineering of Composite Matrial, 2014, 21(1): 49-58.
[19]Shan Zhang; Chengguo Wang; Hua Yuan; Bingming Zhang; Xue Lin; Zhitao Lin.Antistatic behavior of PAN-based low-temperature carbonaceous fibers .Journal of Electrostatics, 2013, 71(6): 1036-1040.
[20]Dong, Shuhua; He, Haidong; Jia, Yuxi*; Wang, Chengguo; Jiao, Xuejian.A new structure-related model to predict the permeability of non-crimp fabric preform .Journal of Composite Materials, 2013, 47(24): 3053-3064.
[21]Xue Lin, Chengguo Wang, Meijie Yu, Zhitao Lin.The effect of molecular weights on the structure and properties of PAN precursor .Advanced Materials Research, 2013, 781-784(-): 2209-2613.
[22]Shi, Zhi-cheng*; Fan, Run-hua; Yan, Ke-lan; Sun, Kai; Zhang, Meng; Wang, Cheng-guo; Liu, Xiang-fa; Zhang, Xi-hua.Preparation of Iron Networks Hosted in Porous Alumina with Tunable Negative Permittivity and Permeability .Advanced Functional Materials, 2013, 23(33): 4123-4132.
[23]Chen Yang*; Wang Cheng-Guo; Gao Ran-Ran; Zhu Bo.Research of the Preparation Technology for the SiC Whisker .Journal of Inorganic Materials, 2013, 28(7): 757-762.
[24]Xue Lin, Chengguo Wang, Meijie Yu, Zhitao Lin, Sh.Study on the local structure of PAN-based carbon fiber using radial distribution function based on XRD .Advanced Materials Research, 2013, 664(-): 614-619.
[25]Xuegang Wang; Xingeng Li; Chengguo Wang.Effect of two-step heating process on joint microstructure and properties during transient liquid phase bonding of dissimilar materials .Materials Science and Engineering A, 2013, 560: 711-716.
[26]Yuan, Hua; Wang, Chengguo*; Zhang, Shan; Lin, Xue.Effect of surface modification on carbon fiber and its reinforced phenolic matrix composite (vol 259, pg 288, 2012) .APPLIED SURFACE SCIENCE, 2013, 264: 902-902.
[27]Shi, Zhi-cheng*; Fan, Run-hua; Zhang, Zi-dong; Yan, Ke-lan; Zhang, Xi-hua; Sun, Kai; Liu, Xiang-fa; Wang, Cheng-guo.Experimental realization of simultaneous negative permittivity and permeability in Ag/Y3Fe5O12 random composites .JOURNAL OF MATERIALS CHEMISTRY C, 2013, 1(8): 1633-1637.
[28]Yuan, Hua; Wang, Chengguo*; Zhang, Shan; Lin, Xue. Effect of surface modification on carbon fiber and its reinforced phenolic matrix composite .APPLIED SURFACE SCIENCE, 2012, 259: 288-293.
[29]Chen, Yang; Wang, Chengguo*; Zhu, Bo; Wang, Yanxiang; Liu, Yuzhen; Tan, Tingting; Gao, Ranran; Lin, Xue; Meng, Fei.Growth of SiC whiskers from hydrogen silicone oil .Journal of Crystal Growth, 2012, 357: 42-47.
[30]Wang, Xiaoxia; Wang, Chengguo; Jia, Yuxi*; Luo, Ling; Li, Pan.Cure-volume-temperature relationships of epoxy resin and graphite/epoxy composites .Polymer, 2012, 53(19): 4152-4156.
[31]Wang, X. G.; Li, X. G.; Wang, C. G.*.Transient liquid phase bonding of aluminium alloy using two-step heating process .Science and Technology of Welding and Joining, 2012, 17(5): 414-418.
[32]Meijie Yu, Yong Xu, Chengguo Wang, Bo Zhu, Yanxia.Structure and property relations between the polyacrylonitrile-based prestabilized fibers and the partially carbonized fibers .Journal of Applied Polymer Science, 2012, 124(6): 5172-5179.
[33]MeijieYu, Yong Xu, Chengguo Wang, Xiuying Hu, Bo.Heredity and difference of multiple-scale microstructures in PAN-based carbon fibers and their precursor fibers .Journal of Applied Polymer Science, 2012, 125(4): 3159-3166.
[34]Chen, Yang; Wang, Chengguo*; Zhao, Wei; Lu, Wenbo; Chen, Anting; Tan, Tingting.Fabrication of a SiC/Si/MoSi2 multi-coating on graphite materials by a two-step technique .Ceramics International, 2012, 38(3): 2165-2170.
[35]Shan Zhang, Chengguo Wang, Hua Yun, Xue Lin.Preparation and research of short carbon fibers network structure antistatic composites .Advanced Materials Research, 2012, 490-495(-): 3459-3463.
[36]Yuan Hua, Wang Cheng-Guo, Lu Wen-Bo, Zhang Shan,.Liquid-phase oxidation modification of PAN-based carbon fiber surface .Journal of Aeronautical Materials, 2012, 32(2): 65-68.
[37]Wang Xiaoxia, Jia Yuxi, Wang Chengguo.Thermal curing induced deformation of fiber composite laminates .Polymers and Polymer Composites, 2012, 20(1-2): 171-176.
[38]Wen Wang, Chengguo Wang, Yu guo.Fabrication and microwave characteristics of Fe3O4/C composites .Advanced Materials Research, 2012, 430-432(-): 146-149.
[39]Xiuying Hu, Chengguo Wang, Qifen Wang,Wenbo Lu, M.The effect of ultrasonic etching on the structure of stabilized PAN fibers .Advanced Materials Research, 2012, 430-432(-): 592-597.
[40]Chen Yang; Wang Cheng-Guo*; Zhao Wei.Fabrication of a Self-Healing Pure SiC Coating by a Two-Step Technique .Acta Physico - Chimica Sinica, 2012, 28(1): 239-244.
[41]Wang, Xiaoxia*; Jia, Yuxi; Wang, Chengguo.Correlation Analysis of Heat Transfer, Cure and Mechanical Behavior of Fiber Composite Laminates .Polymers and Polymer Composites, 2012, 20(1-2): 89-93.
[42]Wang, Xiaoxia*; Jia, Yuxi; Wang, Chengguo.Thermal Curing Induced Deformation of Fiber Composite Laminates .Polymers and Polymer Composites, 2012, 20(1-2): 171-175.
[43]Wang, Yan-xiang*; Liu, Yu-lan; Wang, Guo-li; Wang, Li-min; Wang, Cheng-guo.Aqueous deposited copolymerization of acrylonitrile with ammonium itaconate under magnetic field .JOURNAL OF POLYMER RESEARCH, 2011, 18(6): 1323-1329.
[44]Hu Xiu-Ying, Wang Cheng-Guo, Yu Mei-Jie, Wang Wen.Studies on skin-core structure of stabilized PAN fibers by ultrasonic etching method .Journal of Functional Materials, 2011, 42(10): 1825-1828.
[45]Wang, Haiqing*; Zhuang, Guangshan; Wang, Chengguo; Zheng, Shuwei.Practical Application Study of Hybrid Fibers Reinforced Organic Brake Pad for Railroad Passenger-Coach Braking .JOURNAL OF MACROMOLECULAR SCIENCE PART A-PURE AND APPLIED CHEMISTRY, 2011, 48(7): 531-537.
[46]Wang Yan Xiang*; Liu Yulan; Wang Limin; Yang Yizhen; Wang Chengguo.Characterization of copolymerization of acrylonitrile with the functionalized comonomers in dimethyl sulfoxide solvent and copolymers suitable for carbon fibers .E-POLYMERS, 2010, 135.
[47]WANG Qifen; WANG Chengguo; YU Meijie; MA Jie; HUXiuying; Zhubo.Microstructure of fibrils separated from polyacrylonitrile fibers by ultrasonic etching .SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2010, 53(6): 1489-1494.
[48]Yu, Meijie; Wang, Chengguo; Zhao, Yaqi; Zhang, Min; Wang, Weiqiang.Thermal Properties of Acrylonitrile/Itaconic Acid Polymers in Oxidative and Nonoxidative Atmospheres .JOURNAL OF APPLIED POLYMER SCIENCE, 2010, 116(2): 1207-1212.
[49]Chen Juan; Ge Heyi; Liu Huashi; Li Guozhong; Wang Chengguo.The Coagulation Process of Nascent Fibers in PAN Wet-spinning .Journal of Wuhan University of Technology-Materials Science Edition, 2010, 25(2): 200-205.
[50]Wang, Qifen; Wang, Chengguo; Bai, Yujun; Yu, Meijie; Wang, Yanxiang; Zhu, Bo; Jing, Min; Ma, Jie; Hu, Xiuying; Zhao, Yaqi; Zhang, Min.Fibrils Separated from Polyacrylonitrile Fiber by Ultrasonic Etching in Dimethylsulphoxide Solution .JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS, 2010, 48(5): 617-619.
[51]Qifen Wang, Chengguo Wang, Yujun Bai, Meijie Yu,.Fibrils separated from polyacrylonitrile fiber by ultrasonic etching in dimethyl sulphoxide solution .Journal of Polymer Science Part B: Polymer Physics , 2010, 48(-): 617-619.
[52]Zhang Min; Zhu Bo; Wang Cheng-guo; Wei Han-xing.Raman Spectra of Carbon Fibers during Electrochemical Treatment .Spectroscopy and Spectral Analysis, 2010, 30(1): 105-108.
[53]Zhu Bo; Cao Wei-wei; Jing Min; Dong Xing-guang; Wang Cheng-guo.Study on Spectral Emissivity of C/C Composites .Spectroscopy and Spectral Analysis, 2009, 29(11): 2909-2913.
[54]Wang, Cheng-Guo; Dong, Xing-Guang; Wang, Qi-Fen.Effect of coagulation on the structure and property of PAN nascent fibers during dry jet wet-spinning .Journal of Polymer Research, 2009, 16(6): 719-724.
[55]Ge, Heyi; Liu, Huashi; Chen, Juan; Wang, Chengguo.The Microstructure of Polyacrylonitrile-Stabilized Fibers .Journal of Applied Polymer Science, 2009, 113(4): 2413-2417.
[56]Zhao, Yaqi; Wang, Chengguo; Yu, Meijie; Cui, Chuansheng; Wang, Qifen; Zhu, Bo.Study on monomer reactivity ratios of acrylonitrile/itaconic acid in aqueous deposited copolymerization system initiated by ammonium persulfate .Journal of Polymer Research, 2009, 16(4): 437-442.
[57]Zhao, Yaqi; Wang, Chengguo; Wang, Yanxiang; Zhu, Bo.Aqueous Deposited Copolymerization of Acrylonitrile and Itaconic Acid .Journal of Applied Polymer Science, 2009, 111(6): 3163-3169.
[58]Zhu, Hui-Ling; Han, Fu-Dong; Bi, Jian-Qiang; Bai, Yu-Jun; Qi, Yong-Xin; Pang, Lin-Lin; Wang, Cheng-Guo; Li, Shao-Jie; Lu, Cheng-Wei.Facile Synthesis of Si3N4 Nanocrystals Via an Organic-Inorganic Reaction Route .Journal of the American Ceramic Society, 2009, 92(2): 535-538.
[59]Zhao, Ya-qi; Wang, Cheng-guo; Bai, Yu-jun; Chen, Guo-wen; Jing, Min; Zhu, Bo.Property changes of powdery polyacrylonitrile synthesized by aqueous suspension polymerization during heat-treatment process under air atmosphere .Journal of Colloid and Interface Science, 2009, 329(1): 48-53.
[60]Li, Zhonghao; Luan, Yuxia; Wang, Qingzhong; Zhuang, Guangshan; Qi, Yongxin; Wang, Yuan; Wang, Chengguo.ZnO nanostructure construction on zinc foil: the concept from an ionic liquid precursor aqueous solution .Chemical Communications, 2009, (41): 6273-6275.
[61]Li, Zhonghao; Yu, Qian; Luan, Yuxia; Zhuang, Guangshan; Fan, Runhua; Li, Rui; Wang, Chengguo.Morphology-controlled ZnO particles from an ionic liquid precursor .CrystEngComm, 2009, 11(12): 2683-2687.
[62]Chen, Juan; Ge, He-Yi; Liu, Hua-Shi; Li, Guo-Zhong; Wang, Cheng-Guo.The phase separation mechanism during coagulation process in PAN wet-spinning .Journal of Functional Materials, 2009, 40(3): 523-526.
[63]Wang, Rui-Hua; Yu, Mei-Jie; He, Dong-Xin; Wang, Cheng-Guo.Study on thermal stabilization of polyacrylonitrile fibers .Transactions of Materials and Heat Treatment, 2009, 30(5): 5-9.
[64]Wang, Yan-Xiang; Wang, Cheng-Guo; Wang, Guo-Li; Wu, Ji-Wei.Effect of collapse process conditions in wetting on polyacrylonitrile precursors .Journal of Functional Materials, 2009, 40(3): 379-381.
[65]Cao, Wei-Wei; Zhu, Bo; Wang, Cheng-Guo.Investigation on correlation between microstructure and thermal radiation property for carbon fiber .Journal of Materials Engineering, 2009, (1): 55-58.
[66]Ge, Heyi; Chen, Juan; Liu, Huashi; Wang, Chengguo.Structural evolvement of PAN oxidized fiber during carbonization and microstructure of carbon fiber .Journal of Chemical Industry and Engineering (China), 2009, 61(1): 238-243.
[67]Pang, Lin-Lin; Bi, Jian-Qiang; Bai, Yu-Jun; Qi, Yong-Xin; Zhu, Hui-Ling; Wang, Cheng-Guo; Wu, Ji-Wei; Lu, Cheng-Wei.Rapid synthesis of graphitic carbon nitride powders by metathesis reaction between CaCN2 and C2Cl6 .MATERIALS CHEMISTRY AND PHYSICS, 2008, 112(3): 1124-1128.
[68]Cao Wei-wei; Zhu Bo; Jing Min; Wang Cheng-guo.Raman Spectra of PAN-Based Carbon Fibers during Surface Treatment .Spectroscopy and Spectral Analysis, 2008, 28(12): 2885-2889.
[69]Pang, Lin-Lin; Bi, Jian-Qiang; Bai, Yu-Jun; Zhu, Hui-Ling; Qi, Yong-Xin; Wang, Cheng-Guo; Han, Fu-Dong; Li, Shao-Jie.Synthesis of carbon spheres via a low-temperature metathesis reaction .Journal of Physical Chemistry C, 2008, 112(32): 12134-12137.
[70]Ge, Heyi; Liu, Huashi; Chen, Juan; Wang, Chengguo.The skin-core structure of poly(acrylonitrile-itaconic acid) precursor fibers in wet-spinning .Journal of Applied Polymer Science, 2008, 108(2): 947-952.
[71]Jing, Min; Wang, Cheng-Guo; Zhu, Bo; Wang, Yan-Xiang; Gao, Xue-Ping; Chen, Wei-Ning.Effects of preoxidation and carbonization technologies on tensile strength of PAN-based carbon fiber .Journal of Applied Polymer Science, 2008, 108(2): 1259-1264.
[72]Ji, Bao-Hua; Wang, Ji-Hua; Wang, Cheng-Guo; Wang, Yan-Xiang.Study on the formation process of polyacrylonitrile as-spun fiber .Journal of Applied Polymer Science, 2008, 108(1): 328-333.
[73]Yu, Meijie; Wang, Chengguo; Bai, Yujun; Zhu, Bo; Ji, Minxia; Xu, Yong.Microstructural evolution in polyacrylonitrile fibers during oxidative stabilization .Journal of Polymer Science Part B: Polymer Physics , 2008, 46(7): 759-765.
[74]Dong, Xing-guang; Wang, Cheng-guo; Chen, Juan; Cao, Wei-wei.Crystallinity development in polyacrylonitrile nascent fibers during coagulation .Journal of Polymer Research, 2008, 15(2): 125-130.
[75]Wang, Yan-Xiang; Wang, Cheng-Guo; Jing, Min.Effect of deaeration processing on the behavior of an acrylonitrile-acrylamide copolymer and carbon fiber precursors .Journal of Applied Polymer Science, 2008, 107(3): 1616-1620.
[76]Yu, Mei-Jie; Wang, Cheng-Guo; Bai, Yu-Jun; Xu, Yong; Zhu, Bo.Effect of oxygen uptake and aromatization on the skin-core morphology during the oxidative stabilization of polyacrylonitrile fibers .Journal of Applied Polymer Science, 2008, 107(3): 1939-1945.
[77]Wang, Yan-Xiang; Wang, Cheng-Guo; Wu, Ji-Wei; Jing, Min.High-temperature DSC study of polyacrylonitrile precursors during their conversion to carbon fibers .Journal of Applied Polymer Science, 2007, 106(3): 1787-1792.
[78]Wang, Yanxiang; Wang, Chengguo; Ji, Minxia; Gao, Xueping; Jing, Min. Evaluation of the fluidized preoxidation for producing high behavior PAN based carbon fiber .Polymer Bulletin, 2007, 59(4): 555-565.
[79]Ji, Minxia; Wang, Chengguo; Bai, Yujun; Yu, Meijie; Wang, Yanxiang.Structural evolution of polyacrylonitrile precursor fibers during preoxidation and carbonization .Polymer Bulletin, 2007, 59(4): 527-536.
[80]Chen, Juan; Ge, He-Yi; Dong, Xing-Guang; Wang, Cheng-Guo.The formation of polyacrylonitrile nascent fibers in wet-spinning process .Journal of Applied Polymer Science, 2007, 106(1): 692-696.
[81]Ji, Minxia; Wang, Chengguo; Bai, Yujun; Yu, Meijie; Wang, Yanxiang.Comparison of tensile fracture morphologies among various polyacrylonitrile-based carbon fibers .Polymer Bulletin, 2007, 59(3): 381-389.
[82]Wang, Yan-Xiang; Wang, Cheng-Guo.Effect of adding sulphur to the dope on properties of modified polyacrylonitrile fibers .Journal of Applied Polymer Science, 2007, 105(6): 3773-3779.
[83]Jing, Min; Wang, Cheng-Guo; Wang, Qiang; Bai, Yu-Jun; Zhu, Bo.Chemical structure evolution and mechanism during pre-carbonization of PAN-based stabilized fiber in the temperature range of 350-600 degrees C .Polymer Degradation and Stability, 2007, 92(9): 1737-1742.
[84]He, Dong-Xin; Wang, Cheng-Guo; Bai, Yu-Jun; Lun, Ning; Zhu, Bo; Wang, Yan-Xiang.Microstructural evolution during thermal stabilization of PAN fibers .Journal of Materials Science, 2007, 42(17): 7402-7407.
[85]Dong, Xing-Guang; Wang, Cheng-Guo; Bai, Yu-Jun; Cao, Wei-Wei.Effect of DMSO/H2O coagulation bath on the structure and property of polyacrylonitrile fibers during wet-spinning .Journal of Applied Polymer Science, 2007, 105(3): 1221-1227.
[86]Wang, Yan-Xiang; Wang, Cheng-Guo; Yu, Mei-Jie.Effects of different coagulation conditions on polyacrylonitrile fibers wet spun in a system of dimethylsulphoxide and water .Journal of Applied Polymer Science, 2007, 104(6): 3723-3729.
[87]Chen, Juan; Wang, Chengguo; Ge, Heyi; Bai, Yujun; Wang, Yanxiang.Effect of coagulation temperature on the properties of poly(acrylonitrile-itaconic acid) fibers in wet spinning .Journal of Polymer Research, 2007, 14(3): 223-228.
[88]Dong, Xing-guang; Wang, Cheng-guo; Juan, Chen.Study on the coagulation process of polyacrylonitrile nascent fibers during wet-spinning .Polymer Bulletin, 2007, 58(5-6): 1005-1012.
[89]Yu, Mei-Jie; Bai, Yu-Jun; Wang, Cheng-Guo; Xu, Yong; Guo, Peng-Zong.A new method for the evaluation of stabilization index of polyacrylonitrile fibers .Materials Letters, 2007, 61(11-12): 2292-2294.
[90]Yu, Mei-Jie; Wang, Cheng-Guo; Bai, Yu-Jun; Ji, Min-Xia; Xu, Yong.SEM and OM study on the microstructure of oxidative stabilized polyacrylonitrile fibers .Polymer Bulletin, 2007, 58(5-6): 933-940.
[91]Wang, Yan-Xiang; Wang, Cheng-Guo; Bai, Yu-Jun; Bo, Zhu.Effect of the drawing process on the wet spinning of polyacrylonitrile fibers in a system of dimethyl sulfoxide and water .Journal of Applied Polymer Science, 2007, 104(2): 1026-1037. (SCI收錄)
[92]Ge, He-yi; Liu, Jian-jun; Chen, Juan; Wang, Cheng-guo.Texture and properties of acrylonitrile-ammonium itaconate copolymer precursor fibers and carbon fibers .Journal of Polymer Research, 2007, 14(2): 91-97.
[93]Ji, Bao-Hua; Wang, Cheng-Guo; Wang, Yan-Xiang.Effect of jet stretch on polyacrylonitrile as-spun fiber formation .Journal of Applied Polymer Science, 2007, 103(5): 3348-3352. (SCI收錄)
[94]Jing, Min; Wang, Cheng-guo; Bai, Yu-jun; Zhu, Bo; Wang, Yan-xiang.Effect of temperatures in the rearmost stabilization zone on structure and properties of PAN-based oxidized fibers .Polymer Bulletin, 2007, 58(3): 541-551. (SCI收錄)
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[217]何東新,王成國,王海慶.汽車用摩阻材料的研究狀況[J].工程塑料應用,2002(02):54-57.
[218]王成國,王瑞華,齊寶森,姚新.球磨過程中的涂層形成與粉末細化[J].兵器材料科學與工程,2002(01):24-26+52.DOI:10.14024/j.cnki.1004-244x.2002.01.007.
[219]董抒華,王成國,李士同.纖維增強摩阻材料的沖擊性能研究[J].工程塑料應用,2002(01):9-11.
[220]王艷芝,朱波,張旺璽,王成國.聚丙烯腈原絲紡絲溶液的合成[J].合成技術及應用,2001(04):7-9.
[221]王海慶,王成國,莊光山,李麗,孫毅,姚永強.混雜纖維增強酚醛閘片在提速列車上的應用研究[J].工程塑料應用,2001(12):16-18.
[222]王海慶,莊光山,王成國,孫毅.一種克服少金屬制動襯片熱衰退性的措施[J].非金屬礦,2001(06):52-54.
[223]張旺璽,王艷芝,王成國,朱波,蔡華蘇.聚丙烯腈基碳纖維的制備工藝過程和纖維結構研究[J].化工科技,2001(05):12-15.DOI:10.16664/j.cnki.issn1008-0511.2001.05.006.
[224]陳海燕,王成國,王海慶.纖維增強摩阻材料中樹脂含量的確定[J].材料開發(fā)與應用,2001(04):10-12+37.DOI:10.19515/j.cnki.1003-1545.2001.04.003.
[225]齊寶森,姚新,王成國,徐英.高能球磨法制備磨球表面鋁涂層的研究[J].材料工程,2001(03):39-41+44.
[226]齊寶森,王成國,姚新,徐英.高能球磨金屬鉻、鋁粉末的特征[J].稀有金屬,2000(05):325-329.DOI:10.13373/j.cnki.cjrm.2000.05.002.
[227]陳方生,王成國,劉玉先,龐國華,高致遠.稀土對38CrMoAl鋼離子滲氮層結構和性能的影響[J].鋼鐵,2000(08):48-50+55.DOI:10.13228/j.boyuan.issn0449-749x.2000.08.015.
[228]陳方生,王成國,亓永新,莊緒峰.稀土在離子滲氮中的氧化對催滲效果的影響[J].熱加工工藝,2000(03):17-19.DOI:10.14158/j.cnki.1001-3814.2000.03.008.
[229]魏化震,高永忠,李乃春,王成國.抗燒蝕復合材料用新型燒蝕樹脂的研究[J].工程塑料應用,2000(05):4-7.
[230]李麗,王海慶,莊光山,王成國.優(yōu)化螺桿組合提高CFRPA性能的研究[J].工程塑料應用,2000(05):12-15.
[231]王海慶,李麗,王成國,姚永強.列車制動用摩阻材料的發(fā)展趨勢[J].工程塑料應用,2000(05):16-18.
[232]齊寶森,姚新,王成國,徐英.高能球磨中鋼球表面鉻涂層的研究[J].金屬熱處理,1999(11):6-7.DOI:10.13251/j.issn.0254-6051.1999.11.004.
[233]王成國,齊寶森,楊俊法,劉玉先.Cu-C-Ti系和Cu-CuO-Al系合金粉末的機械合金化[J].粉末冶金技術,1999(03):182-185.DOI:10.19591/j.cnki.cn11-1974/tf.1999.03.004.
[234]王成國,孫希泰,朱靜,蔡其鞏.層壓減振復合鋼板的結構設計[J].機械工程學報,1999(04):103-106.
[235]王海慶,李麗,孫毅,楊淑靜,孫玉璞,王成國,姚永強.低摩擦系數(shù)摩阻材料研制[J].非金屬礦,1999(03):47-48+42.
[236]王成國,邢莉燕.層壓減振復合鋼板的杯突成形性[J].兵器材料科學與工程,1999(01):26-29+60.DOI:10.14024/j.cnki.1004-244x.1999.01.006.
[237]王海慶,李麗,孫毅,楊淑靜,孫玉林,王成國,姚永強.改性酚醛基混雜纖維復合摩阻材料的研制[J].塑料工業(yè),1998(06):24-26.
[238]李維學,范潤華,王成國,尹衍升,劉瑞芳,孫文君,張;,徐德書.陰極滲金屬應用[J].山東工業(yè)大學學報,1998(03):88-92.
[239]邢莉燕,王成國,鄒力平.高聚物夾層材料對減振復合鋼板拉伸剪切性能的影響[J].工程塑料應用,1998(03):15-17+21.
[240]李維學,王成國,孫希泰.高聚物夾層材料的選擇及其減振特性[J].山東工業(yè)大學學報,1998(01):74-78.
[241]王成國,吳軍,劉玉先,楊俊法.Fe-C-Ti機械合金化粉末的電子顯微試樣制備及分析[J].粉末冶金技術,1998(01):52-56+4.DOI:10.19591/j.cnki.cn11-1974/tf.1998.01.009.
[242]楊俊法,王成國,孫康寧.用機械合金化方法合成銅基過飽和固溶體[J].物理測試,1998(01):15-18.DOI:10.13228/j.boyuan.issn1001-0777.1998.01.005.
[243]王成國,吳軍,劉玉先,楊俊法.過程控制劑對Fe-C-Ti粉末機械合金化的影響[J].粉末冶金技術,1997(04):18-21+3.DOI:10.19591/j.cnki.cn11-1974/tf.1997.04.004.
[244]姚永強,王成國.Fe-C-Ti 混合粉末的機械合金化[J].鐵道學報,1997(04):133-137.
[245]吳軍,王成國,孫康寧.TiC彌散強化鐵基合金粉末的研究[J].金屬熱處理學報,1996(04):57-60.
[246]劉如偉,王成國,趙連生.1986~1995年國內外離子轟擊表面化學熱處理文獻分布分析[J].表面技術,1996(05):1-4.DOI:10.16490/j.cnki.issn.1001-3660.1996.05.001.
[247]劉勇,王成國,孫希泰.層壓減振復合鋼板用高聚物夾層的減振特性[J].噪聲與振動控制,1996(02):36-41.
[248]王成國,孫希泰,彭其鳳,朱靜,蔡其鞏.層壓減振復合鋼板減振性能的溫度依存性[J].金屬學報,1995(22):451-454.
[249]張茂仁,郭小燕,王成國,劉玉先.滲鋁件焊接熔合區(qū)的組織與性能[J].理化檢驗(物理分冊),1995(05):16-17.
[250]王成國,于曉強,孫希泰,朱靜,蔡其鞏.層壓減振復合鋼板的拉伸剪切特性[J].復合材料學報,1995(03):36-40.
[251]王成國,孫希泰,劉旭剛,朱靜,蔡其鞏.層壓減振復合鋼板拉伸剪切破斷區(qū)的XPS分析[J].山東工業(yè)大學學報,1995(02):114-118+141.
[252]王成國,丁洪太,耿貴立.Ni_3Al-Mo復合材料氧化層的結構分析[J].金屬熱處理學報,1995(02):41-46.
[253]王成國,彭其鳳,孫希泰.高聚物夾層材料對層壓減振復合鋼板減振性能的影響[J].工程塑料應用,1994(06):23-25+59.
[254]王成國,亓永新,彭其鳳.機械合金化法在制造ODS、CDS合金中的應用[J].粉末冶金技術,1994(03):225-231.DOI:10.19591/j.cnki.cn11-1974/tf.1994.03.016.
[255]王成國,耿遵敏,李木森,孫希泰,朱靜,蔡其鞏.鋼板─高聚物─鋼板層壓復合材料的減振特性[J].材料科學與工藝,1994(02):85-90.
[256]王成國,郭小燕,李木森,孫希泰,朱靜.鋼板-高聚物-鋼板層壓復合材料的成形性研究[J].機械工程材料,1994(03):6-8.
[257]王成國,孫希泰.層壓減振復合鋼板的性能及其用途[J].材料科學與工程,1993(04):47-52.
[258]王成國,耿貴立,彭其風,李士同,劉雯.Mo/Ni_3Al復合材料的抗氧化性能的研究[J].復合材料學報,1993(04):123-126+114.DOI:10.13801/j.cnki.fhclxb.1993.04.019.
[259]王成國,彭其風,劉如偉,朱瑞富,陳方生.稀土元素對38CrMoAl鋼離子滲氮層組織結構的影響[J].金屬熱處理學報,1992(04):65-68.
[260]王成國,菊池潮美.Ni_3Al單晶體和Ni_3Al-Mo復合材料的拉伸形變組織[J].山東工業(yè)大學學報,1992(01):80-83+79.
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[263]王成國,王世清,王立鐸,張寶榮.稀土催滲離子滲氮的研究[J].金屬熱處理,1991(03):12-14.DOI:10.13251/j.issn.0254-6051.1991.03.003.
[264]王成國,菊池潮美.Ni_3Al-Mo高溫復合材料的拉伸特性[J].金屬學報,1991(02):135-139.
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發(fā)表中文會議論文:
[1]張姍,王成國,袁華,高瑞,劉瑜真. 碳化纖維/氟碳涂料抗靜電涂層的電性能和介電性能研究[C]. 第十九屆玻璃鋼/復合材料學術交流會論文集.2012:126-130.
[2]高瑞,王成國,李斌鵬,于美杰,高孟,董琪. 聚丙烯腈基多孔無定形炭吸波材料的制備和性能研究[C]. 第十九屆玻璃鋼/復合材料學術交流會論文集.2012:117-120.
[3]袁華,王成國,張珊,高瑞,張丙明. 碳纖維增強受電弓滑板制備及其摩擦磨損性能[C]. 第十九屆玻璃鋼/復合材料學術交流會論文集. 2012:121-125.
[4]于美杰,王成國,李斌鵬,高瑞,董琪,王雯. 聚丙烯腈前驅體原位合成納米(氮化鐵+四氧化三鐵)/碳基復合材料及其電磁性能研究[C]. 第17屆全國復合材料學術會議(納米復合材料與界面分論壇)論文集. 2012:8-12.
[5]于美杰,王啟芬,胡秀穎,朱波,王成國. 原纖結構在聚丙烯腈原絲-預氧絲-碳纖維中的遺傳與演變[C]. 第十四屆中國科協(xié)年會第11分會場:低成本、高性能復合材料發(fā)展論壇論文集. 2012:284-289.
[6]于美杰,王成國,林雪,朱波,張姍. 400~900℃碳化纖維微觀結構與力學性能的相關性[C]. 第十屆中日復合材料學術會議論文集. 2012:121-125.
[7]林雪,王成國,于美杰,林治濤,張姍. 碳化溫度和牽伸比對碳纖維結構缺陷的影響[C]. 第十屆中日復合材料學術會議論文集. 2012:132-135.
[8]王延相,王成國. 山東省高性能碳纖維及復合材料制品發(fā)展報告[C]. 山東省材料發(fā)展報告2010~2011. 2012:178-184.
[9]Wang, Wen*; Wang, Chengguo; Guo, Yu.Fabrication and microwave characteristics of Fe3O4/C composites .International Conference on Frontiers of Advanced Materials and Engineering Technology (FEMET 2012), 2012 to 2012-01-05.
[10]Chen, Yang*; Wang, Chengguo; Zhao, Wei.Influence of SiC whisker on formation and oxidation resistance of coating for C/C composite .International Conference on Frontiers of Advanced Materials and Engineering Technology (FEMET 2012), 2012 to 2012-01-05.
[11]Lu, Wenbo*; Wang, Chengguo; Yuan, Hue; Hu, Xiuying.Liquid-phase oxidation modification of carbon fiber surface .International Conference on Frontiers of Advanced Materials and Engineering Technology (FEMET 2012), 2012 to 2012-01-05.
[12]Hu, Xiuying*; Wang, Chengguo; Wang, Qifen; Lu, Wenbo; Yu, Meijie.The Effect of Ultrasonic Etching on the Structure of Stabilized PAN Fibers .International Conference on Frontiers of Advanced Materials and Engineering Technology (FEMET 2012), 2012 to 2012-01-05.
[13]Di, Chengrui*; Wang, Chengguo; Qiao, Kun; Yin, Xiangyu; Gao, Xiaodong..Study on the densification process of the high density graphite materials .2nd International Conference on Advances in Materials and Manufacturing Processes (ICAMMP 2011), 2011 to 2011-12-18.
[14]Zhang, Shan*; Wang, Chengguo; Yuan, Hua; Lin, Xue.Preparation and research of short carbon fibers network structure antistatic composites .2nd International Conference on Mechatronics and Intelligent Materials (MIM 2012), 2012 to 2012-05-19.
[15]Yuan, Hua*; Wang, Chengguo; Lu, Wenbo; Zhang, Shan.Preparation and Tribological Behavior of Carbon Fiber Reinforced Pantograph Slide Plate .International Conference on Frontiers of Advanced Materials and Engineering Technology (FEMET 2012), 2012 to 2012-01-05.
[16]王曉霞,賈玉璽,王成國. 纖維復合材料固化成型過程中的變形分析[C]. 2010年全國高分子材料科學與工程研討會學術論文集(下冊). 2010:326-327.
[17]王延相,王成國. 山東省碳纖維行業(yè)科技發(fā)展報告[C]. 山東省材料發(fā)展報告(2007-2008). 2008:224-231.
[18]張敏,朱波,王成國,王啟芬,于美杰,曹偉偉. 羥基硅油改性酚醛樹脂基碳纖維復合材料特性研究[C]. 第六屆中國功能材料及其應用學術會議論文集(9). 2007:346-348.
[19]張晨,王成國. 高分子化學教學改革中的幾點體會[C]. 2007年全國高分子學術論文報告會論文摘要集(下冊). 2007:406.
[20]王成國,白玉俊,于美杰,朱波. 預氧化PAN纖維的微觀組織結構研究[C]. 復合材料——基礎、創(chuàng)新、高效:第十四屆全國復合材料學術會議論文集(上). 2006:125-128.
[21]于美杰,王成國,朱波,白玉俊,王延相. 聚丙烯腈纖維預氧化過程中張力變化的研究[C]. 復合材料——基礎、創(chuàng)新、高效:第十四屆全國復合材料學術會議論文集(上). 2006:157-160.
[22]莊光山,王成國,王海慶,孫毅,姚永強. 橡膠改性酚醛樹脂的研究[C]. 2002年中國工程塑料加工應用技術研討會論文集. 2002:120-123.
[23]陳海燕,王成國,王海慶. 樹脂含量對摩擦材料的性能影響[C]. 復合材料:生命、環(huán)境與高技術——第十二屆全國復合材料學術會議論文集. 2002:260-263.
[24]陳海燕,王成國. 分形理論及其在摩擦學研究中的應用[C]. 第七屆全國摩擦學大會論文集(二). 2002:239-242.
[25]李士同,王成國,倫寧,馬勇,溫樹林. Ni60(WC)涂層顯微組織的電子探針分析[C]. 第十二屆全國電子顯微學會議論文集. 2002:259-260.
[26]李麗; 王海慶; 莊光山; 王成國. 優(yōu)化螺桿組合提高CFRPA性能的研究[C]//.’2000中國工程塑料加工應用技術研討會論文集.[出版者不詳],2000:206-208.
[27]王成國. 機械合金化合成彌散強化合金的研究[C]//.面向21世紀的科技進步與社會經濟發(fā)展(下冊).,1999:332-333.
[28]郭小燕; 王成國. Ni_3Al-Mo復合材料的顯微特征及拉伸特性[C]//.第六次全國電子顯微學會議論文摘要集.,1990:205.