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[1]張志杰,蘇聰聰,邵照峰,等.非金屬材料表面冷噴涂金屬化的研究現狀及展望[J].中國材料進展,2024,43(02):102-114.[doi:10.7502/j.issn.1674-3962.202308010]
 ZHANG Zhijie,SU Congcong,SHAO Zhaofeng,et al.Overview: Cold Spray Metallization of Non-Metallic Materials[J].MATERIALS CHINA,2024,43(02):102-114.[doi:10.7502/j.issn.1674-3962.202308010]
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非金屬材料表面冷噴涂金屬化的研究現狀及展望()
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中國材料進展[ISSN:1674-3962/CN:61-1473/TG]

卷:
43
期數:
2024年第02期
頁碼:
102-114
欄目:
出版日期:
2024-02-28

文章信息/Info

Title:
Overview: Cold Spray Metallization of Non-Metallic Materials
文章編號:
1674-3962(2024)02-0102-13
作者:
張志杰蘇聰聰邵照峰廖紅麗丁星星張玲車翰卿
重慶大學材料科學與工程學院 教育部輕合金材料國際合作聯合實驗室,重慶 400044
Author(s):
ZHANG Zhijie SU Congcong SHAO Zhaofeng LIAO HongliDING Xingxing ZHANG Ling CHE Hanqing
International Joint Laboratory for Light Alloys (MOE), College of Materials Science and Engineering,Chongqing University, Chongqing 400044, China
關鍵詞:
冷噴涂金屬涂層非金屬基體表面金屬化結合機理
Keywords:
cold spray metallic coatings non-metallic substrates surface metallization bonding mechanism
分類號:
TG174
DOI:
10.7502/j.issn.1674-3962.202308010
文獻標志碼:
A
摘要:
冷噴涂是一種快速發展的固態粉末沉積技術,具有噴涂溫度低、沉積效率高、制造速度快等特點,在金屬涂層制備、受損零部件修復、增材制造等方面已有廣泛的研究與應用。傳統冷噴涂工藝的基體材料一般是金屬材料,其沉積過程的機理研究也較為成熟。近年來,隨著眾多工業領域對復合材料的需求進一步提升,通過冷噴涂技術在非金屬材料表面制備金屬涂層(表面金屬化)受到了不同領域眾多研究者的關注?偨Y了目前已報道的使用冷噴涂工藝在高分子和陶瓷等非金屬材料表面制備金屬涂層的相關結果,圍繞幾種常用的高分子和陶瓷基體材料,分析了非金屬基體材料上冷噴涂沉積金屬涂層的結合機理,并在此基礎上討論了冷噴涂工藝參數和材料參數對非金屬材料表面冷噴涂金屬化的影響。
Abstract:
Cold spray is a rapidly developing, solid-state powder deposition technology that features low spraying temperature, high deposition efficiency, and high building rate. It has been widely studied and has broad applications in areas including metal coating fabrication, damaged parts repairing, and additive manufacturing. Conventionally, the substrate materials for cold spray are usually metallic materials, and the corresponding bonding mechanism has been well investigated. In recent years, as the demands for composite materials are increasing in a wide range of industries, depositing metallic coatings onto nonmetallic substrates (also known as surface metallization) using cold spray has attracted attention. This review summarizes previous research results on cold spray metallization of polymers and ceramics. Based on various commonly used polymeric and ceramic materials, the mechanisms of cold spraying metals onto non-metallic substrate materials are discussed, and the influence of process parameters and material parameters on cold spray metallization is analyzed.

參考文獻/References:

\[1\]雷瑤.造紙裝備及材料\[J\], 2020, 49(5):82-84. LEI Y. Papermaking Equipment & Materials\[J\], 2020, 49(5): 82-84. \[2\]關婷玉. 工程技術\[J\], 2022(5): 0190-0193. GUAN T Y. Engineering Technology\[J\], 2022(5): 0190-0193. \[3\]CHE H, VO P, YUE S.Surface and Coatings Technology\[J\], 2017, 313: 236-247. \[4\]KRUSE K, WALCZAK K, THOMAS N, et al. Proceedings of SPIEThe International Society for Optical Engineering\[J\], 2014, 8988: 898811. \[5\]包文麗, 畢軍權, 羅蕙敏,等. 染整技術\[J\], 2020, 42(1): 7-12. BAO W L, BI J Q, LUO H M,et al. Textile Dyeing and Finishing Journal\[J\], 2020, 42(1): 7-12. \[6\]孫偉福,陳國華. 材料導報\[J\], 2007(5): 59-64. SUN W F, CHEN G H. Materials Reports\[J\], 2007(5): 59-64. \[7\]姚衛國, 魯姍姍, 竇艷麗,等. 化工進展\[J\], 2018, 37(5): 1852-1859. YAO W G, LU S S, DOU Y L,et al. Chemical Industry and Engineering Progress\[J\], 2018, 37(5): 1852-1859. \[8\]丁朝剛,徐杰,單德彬,等. 中國材料進展\[J\], 2022, 41(10): 808-818. DING C G, XU J, SHAN D B, et al. Materials China\[J\], 2022, 41(10): 808-818. \[9\]GONZALEZ R, ASHRAFIZADEH H, LOPERA A,et al. Journal of Thermal Spray Technology\[J\], 2016, 25(5): 897-919. \[10\]REZZOUG A, ABDI S, KACI A,et al. Surface & Coatings Technology\[J\], 2018,333:13-23. \[11\]WYPYCH A, SIWAK P, ANDRZEJEWSKI D,et al. Materials\[J\], 2018, 11(12):2536. \[12\]PARMAR H, TUCCI F, CARLONE P,et al. International Materials Reviews\[J\], 2022,67(4): 385-409. \[13\]彭啟清, 劉明, 黃艷斐, 等. 表面技術\[J\], 2022, 51(2): 86-107. PENG Q Q, LIU M, HUANG Y F, et al. Surface Technology\[J\], 2022, 51(2): 86-107. \[14\]黃春杰, 殷碩, 李文亞, 等. 表面技術\[J\], 2021, 50(7): 1-23. HUANG C J, YIN S, LI W Y, et al. Surface Technology\[J\], 2021, 50(7): 1-23. \[15\]許康威, 雒曉濤, 武笑宇, 等. 材料保護\[J\], 2022,55(1):86-94. XU K W, LUO X T, WU X Y, et al. Materials Protection\[J\], 2022, 55(1): 86-94. \[16\]LUO X T, GE Y, XIE Y C, et al. Journal of Materials Science & Technology\[J\], 2021, 67: 105-115. \[17\]STEENKISTE T H V, SMITH J R, TEETS R E.Surface & Coatings Technology\[J\], 2002, 154(2-3): 237-252. \[18\]MORIDI A, HASSANIGANGARAJ S M, GUAGLIANO M,et al. Surface Engineering\[J\], 2014, 30(6): 369-395. \[19\]CHEN M X, CHE H Q, YUE S P.Surface & Coatings Technology\[J\], 2022, 450:128993. \[20\]CHEN C Y, XIE X L, XIE Y C,et al. Surface & Coatings Technology\[J\], 2018, 342: 209-219. \[21\]FALLAH P, RAJAGOPALAN S, MCDONALD A,et al. Surface & Coatings Technology\[J\], 2020, 400(1):126231. \[22\]LIBERATI A C, CHE H Q, VO P,et al. Journal of Thermal Spray Technology\[J\], 2021, 30(5): 1239-1253. \[23\]CHE H Q, CHU X, VO P,et al. Journal of Thermal Spray Technology\[J\], 2018, 27(1-2): 169-178. \[24\]劉雪輝, 徐世美, 張帆,等. 高分子學報\[J\], 2022, 53(9): 1005-1022. LIU X H, XU S M, ZHANG F, et al. Acta Polymerica Sinica\[J\], 2022, 53(9): 1005-1022. \[25\]朱長春, 谷金河.化學推進劑與高分子材料\[J\], 2005(2): 40-45. ZHU C C, GU J H. Chemical Propellants & Polymeric Materials\[J\], 2005(2): 40-45. \[26\]CHANDA M. Introduction to Polymer Science and Chemistry: A ProblemSolving Approach\[M\]. Boca Raton : CRC Press, Taylor & Francis Group, 2013. \[27\]GANESAN A, YAMADA M, FUKUMOTO M.Journal of Thermal Spray Technology\[J\], 2013, 22(8): 1275-1282. \[28\]GARDON M, LATORRE A, TORRELL M,et al. Materials Letters\[J\], 2013, 106: 97-99. \[29\]李偉, 張濤, 蔣小軍,等. 廣東化工\[J\], 2020, 47(19): 94-96. LI W, ZHANG T, JIANG X J,et al. Guangdong Chemical Industry\[J\], 2020, 47(19): 94-96. \[30\]PAWLAK A M, GRNY T, PACZOS P. Metals\[J\], 2022, 12(9): 1470. \[31\]LIAO T Y, KING P C, ZHU D, et al. ACS Biomaterials Science & Engineering\[J\], 2023, 9(3): 1402-1421. \[32\]VUCKO M J, KING P C, POOLE A J,et al. Biofouling\[J\], 2012, 28(3): 239-248. \[33\]VUCKO M J, KING P C, POOLE A J,et al. Biofouling\[J\], 2013, 29(1): 1-9. \[34\]KING P C, POOLE A J, HORNE S,et al. Surface and Coatings Technology\[J\], 2013, 216(3): 60-67. \[35\]ROKNI M R, FENG P, WIDENER C A,et al. Journal of Thermal Spray Technology\[J\], 2019, 28(7): 1699-1708. \[36\]KROMER R, DANLOS Y, AUBIGNAT E,et al. Materials and Manufacturing Processes\[J\], 2017, 32(14): 1642-1652. \[37\]LIU H H, TARIQ N U, REN Y P,et al. Surface & Coatings Technology\[J\], 2022, 429:127972. \[38\]KOITHARA L L, RAOELISON R N, COSTIL S,et al. The International Journal of Advanced Manufacturing Technology\[J\], 2020, 107(11-12):4427-4436. \[39\]GANESAN A, AFFI J, YAMADA M,et al. Surface & Coatings Technology\[J\], 2012, 207: 262-269. \[40\]ZHOU X L, CHEN A F, LIU J C,et al. Surface and Coatings Technology\[J\], 2011, 206(1): 132-136. \[41\]FENG P, ROKNI M R, NUTT S R.Journal of Thermal Spray Technology\[J\], 2021, 30(1-2): 385-393. \[42\]ZHANG D, SHIPWAY P H, MCCARTNEY D G.Journal of Thermal Spray Technology\[J\], 2005, 14(1): 109-116. \[43\]LUPOI R, ONEILL W.Surface and Coatings Technology\[J\], 2010, 205(7): 2167-2173. \[44\]MAlACHOWSKA A, WINNICKI M, KONAT U,et al. Surface and Coatings Technology\[J\], 2017, 318: 82-89. \[45\]RUBINO F, TUCCI F, ESPERTO V,et al. Procedia Manufacturing\[J\], 2020, 47: 1084-1088. \[46\]ZHOU X L, CHEN A F, LIU J C, et al. Surface & Coatings Technology\[J\], 2011, 206(1): 132-136. \[47\]CUI Y J, GUO M Q, WANG C L,et al. Journal of Thermal Spray Technology\[J\], 2019, 28(7): 1730-1738. \[48\]FALLAH P, CHAKRABARTY R, SONG J,et al. Journal of Thermal Spray Technology\[J\], 2022, 31(3): 559-573. \[49\]ROBITAILLE F, YANDOUZI M, HIND S,et al. Surface & Coatings Technology\[J\], 2009, 203(19): 2954-2960. \[50\]XIN C L, LIU W B, LI N,et al. Ceramics International\[J\], 2016, 42(8): 9599-9604. \[51\]CHE H Q, LIBERATI A C, CHU X,et al. Surface & Coatings Technology\[J\], 2021, 418:127229. \[52\]LIU H, TARIQ N U H, REN Y,et al. Surface & Coatings Technology\[J\], 2022, 446:128752. \[53\]LIU H H, TARIQ N U, ZHAO F,et al. Journal of Materials Engineering and Performance\[J\], 2023,33:79-93. \[54\]PAWLOWSKI L, MALACHOWSKA A, WINNICKI M, et al. Bonding Behavior Studies of Aluminum Coatings Deposited by LowPressure Cold Spraying on the Polymer Substrates\[C\]// Tagungsband zum 17. Werkstofftechnischen Kolloquium in Chemnitz, 11. und 12, Chemnitz: Eigenverlag, 2014, 19: 24-35. \[55\]PAWLOWSKI L, MALACHOWSKA A, WINNICKI M, et al. The Possibility of Cold Spray Process Application to Obtain Electrically Conductive Coatings on Polymers\[C\]// Proceedings of the International Thermal Spray Conference, 2015: 1159-1164. \[56\]TSAI J T, JUN M B G, BAHR D F.Surface Engineering\[J\], 2023, 39(2): 161-173. \[57\]GIRAUD D, BORIT F, GUIPONT V, et al. Metallization of a Polymer Using Cold Spray: Application to Aluminum Coating of Polyamide 66\[C\]// Proceedings of the International Thermal Spray Conference, 2012: 265-270. \[58\]YE H, WANG J.Materials Letters\[J\], 2014, 137: 21-24. \[59\]AKIN S, KIM Y W, XU S,et al. Journal of Manufacturing Processes\[J\], 2023, 100: 27-33. \[60\]AKIN S, JO S, JUN M B G.Journal of Manufacturing Processes\[J\], 2023, 86: 98-108. \[61\]SUN J Y, ZHOU S Y, YAMANAKA K,et al. Journal of Thermal Spray Technology\[J\], 2021, 30(5): 1254-1261. \[62\]SUN J Y, YAMANAKA K, ZHOU S Y,et al. Applied Surface Science\[J\], 2022, 579:151873. \[63\]LIBERATI A C, CHE H Q, VO P,et al. Journal of Thermal Spray Technology\[J\], 2020, 29(1-2): 134-146. \[64\]CHE H, CHU X, VO P,et al. Surface and Coatings Technology\[J\], 2017, 329: 232-243. \[65\]LIBERATI A C, CHE H Q, AGHASIBEIG M,et al. Journal of Thermal Spray Technology\[J\], 2022, 31(1-2): 159-175. \[66\]PERNA A S, VISCUSI A, GATTA R D,et al. International Journal of Material Forming\[J\], 2022,15:15. \[67\]GATTA R D, VISCUSI A, PERNA A S,et al. Materials and Manufacturing Processes\[J\], 2020,36:106-121. \[68\]GATTA R D, VISCUSI A, PERNA A S, et al. Materials and Manufacturing Processes\[J\], 2021, 36(3): 281-291. \[69\]HUSSAIN T, MCCARTNEY D G, SHIPWAY P H,et al. Journal of Thermal Spray Technology\[J\], 2009, 18(3): 364-379. \[70\]CHE H Q, VO P, YUE S.Journal of Thermal Spray Technology\[J\], 2019, 28(1-2): 135-143. \[71\]TANG W, ZHANG J, LI Y,et al. Journal of Thermal Spray Technology\[J\], 2021, 30(7): 1792-1809. \[72\]MENG X M, ZHANG J B, LIANG Y L, et al. Materials Science Forum\[J\], 2011, 675-677: 1295-1298. \[73\]黃群, 秦加浩, 余敏, 等. 江西科學\[J\], 2020, 38(1): 7-15+27. HUANG Q, QIN J H, YU M,et al. Jiangxi Science\[J\], 2020, 38(1): 7-15+27. \[74\]FADDOUL R, REVERDYBRUAS N, BLAYO A.Materials Science and Engineering BAdvanced Functional SolidState Materials\[J\], 2012, 177(13): 1053-1066. \[75\]XU L, WANG M C, ZHOU Y, et al. Microelectronics Reliability\[J\], 2016, 56: 101-108. \[76\]鄒勇明,吳金嶺,鄭宏宇. 真空電子技術\[J\],2004(4): 20-23. ZOU Y M, WU J L, ZHENG H Y. Vacuum Electronics\[J\], 2004(4): 20-23. \[77\]CAO Y, YAN J, LI N, et al. Journal of Alloys & Compounds\[J\], 2015, 650: 30-36. \[78\]劉娟娟, ?烧, 韓璐, 等. 硅酸鹽學報\[J\], 2014, 42(3): 397-401. LIU J J, SANG K Z, HAN L, et al. Journal of the Chinese Ceramic Society\[J\], 2014, 42(3): 397-401. \[79\]DREHMANN R, GRUND T, LAMPKE T, et al. Journal of Thermal Spray Technology\[J\], 2018, 27(3): 446-455. \[80\]高隴橋, 劉征. 山東陶瓷\[J\], 2019, 42(2): 7-12. GAO L Q, LIU Z.Shandong Ceramics\[J\], 2019, 42(2): 7-12. \[81\]王玲, 康文濤, 高朋召, 等. 陶瓷學報\[J\], 2019, 40(4): 411-417. WANG L, KANG W T, GAO P Z, et al. Journal of Ceramics\[J\], 2019, 40(4): 411-417. \[82\]HAN C, WANG Z Z, MA L, et al. Advances in Applied Ceramics\[J\], 2021, 120(5-8): 358-380. \[83\]HENCH L L, BEST S M. Biomaterials Science, 3rd ed\[M\]. Kidlington: Academic Press, 2013: 128-151. \[84\]HENCH L L, BEST S M.Biomaterials Science\[J\], 2013: 128-151. \[85\]BAE G, XIONG Y, KUMAR S, et al. Acta Materialia\[J\], 2008, 56(17): 4858-4868. \[86\]KROMER R, DANLOS Y, COSTIL S.Journal of Thermal Spray Technology\[J\], 2018, 27(5): 809-817. \[87\]RAFAJA D, SCHUCKNECHT T, KLEMM V, et al. Surface and Coatings Technology\[J\], 2009, 203(20-21): 3206-3213. \[88\]DREHMANN R, GRUND T, LAMPKE T, et al. Journal of Thermal Spray Technology\[J\], 2013, 23(1-2): 68-75. \[89\]KO K H, CHOI J O, LEE H.Materials Letters\[J\], 2016, 175: 13-15. \[90\]秦加浩, 方凱, 連信宇, 等. 粉末冶金技術\[J\], 2022, 40(2): 118-125+130. QIN J H, FANG K, LIAN X Y, et al. Powder Metallurgy Technology\[J\], 2022, 40(2): 118-125+130. \[91\]WIELAGE B, GRUND T, RUPPRECHT C, et al. Surface & Coatings Technology\[J\], 2010, 205(4): 1115-1118. \[92\]IMBRIGLIO S I, HASSANIGANGARAJ M, VEYSSET D, et al. Surface and Coatings Technology\[J\], 2019, 361: 403-412. \[93\]KING P C, ZAHIRI S, JAHEDI M, et al. Surface & Coatings Technology\[J\], 2010, 205(7): 2016-2022. \[94\]TILLMANN W, KHALIL O, BAUMANN I, et al. Surface & Coatings Technology\[J\], 2023, 458:129322. \[95\]DICKINSON M E, YAMADA M.Nanoscience and Nanotechnology Letters\[J\], 2010, 2(4): 348-351. \[96\]IMBRIGLIO S I, BRODUSCH N, AGHASIBEIG M, et al. Journal of Thermal Spray Technology\[J\], 2018, 27(6): 1011-1024. \[97\]李文亞, 樊檸松, 殷碩.中國表面工程\[J\], 2020, 33(4): 82-101. LI W Y, FAN N S, YIN S. China Surface Engineering\[J\], 2020, 33(4): 82-101. \[98\]ERNST K R, BRAEUTIGAM J, GAERTNER F, et al. Journal of Thermal Spray Technology\[J\], 2013, 22(2-3): 422-432. \[99\]DONNER K R, GAERTNER F, KLASSEN T.Journal of Thermal Spray Technology\[J\], 2011, 20(1-2): 299-306. \[100\]QIN J, HUANG Q, WANG X, et al. Journal of Materials Processing Technology\[J\], 2021, 288:116845. \[101\]DIETRICH D, WIELAGE B, LAMPKE T, et al. Advanced Engineering Materials\[J\], 2012, 14(4): 275-278. \[102\]KOSAREV V F, KLINKOV S V, MELAMED B M, et al. Cold Spraying for Power Electronics: Deposition of Thick Topologically Patterned Copper Layers on Ceramics\[C\]// AIP Conference Proceedings, 2018, 2027(1): 030047. \[103\]HUANG G, MA L, XING L, et al. Materials Science\[J\], 2021, 27(4): 407-415. \[104\]RAFAJA D, SCHUCKNECHT T, KLEMM V, et al. Surface & Coatings Technology\[J\], 2009, 203(20-21): 3206-3213. \[105\]WUSTEFELD C, RAFAJA D, MOTYLENKO M, et al. Acta Materialia\[J\], 2017, 128: 418-427.

備注/Memo

備注/Memo:
收稿日期:2023-08-07修回日期:2023-10-27 第一作者:張志杰,男,1998年生,碩士研究生 通訊作者:車翰卿,男,1986 年生,教授,博士生導師, Email:hanqing.che@cqu.edu.cn
更新日期/Last Update: 2024-01-29
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