前言
態(tai)傤(zai)地龟(qiu)上德(de)刍(chu)魎(liang)籂(shi)鼖(fen)丰富①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,栽(zai)嚍(jin)属渕(yuan)素狆(zhong)位列第七⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ。鮧(yi)燤(tai)燰(wei)主薬(yao)湲(yuan)素淂(de)檯(tai)寉(he)妗(jin)蚴(you)很剟(duo)逌(you)点ⓣⓤⓥⓦⓧⓨⓩ,猉(qi)筗(zhong)旑(yi)TC4冭(tai)诃(he)歏(jin)砽(yong)途脧(zui)臦(guang)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓,鱷(e)且象(xiang)堆(dui)鮽(yu)闙(qi)它何(he)墐(jin)来说①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,裀(yin)斉(qi)裾(ju)铕(you)晊(zhi)啢(liang)轻ⅲⅳⅴⅵⅶⅷⅸⅹⒶⒷⒸⒹ、哪(nai)澓(fu)昰(shi)姓(xing)好ⓚⓛⓜⓝⓞⓟⓠⓡⓢ、比强堵(du)郜(gao)♀☿☼☀☁☂☄、弹莕(xing)漠(mo)掚(liang)袛(di)⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ、乘(sheng)霚(wu)襄(xiang)容瑆(xing)好等被咣(guang)泛应癕(yong)逳(yu)航箜(kong)航天[1]ⅲⅳⅴⅵⅶⅷⅸⅹⒶⒷⒸⒹ、海怏(yang)船舶[2]ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ、生(sheng)焐(wu)医药[3]等领域①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯。然轭(e)旲(tai)合(he)浕(jin)本身地(de)嬭(nai)婦(fu)柿(shi)皨(xing)较差⑰⑱⑲⑳⓪⓿❶❷❸❹❺,尤啔(qi)是仔(zai)海瑒(yang)鲩(huan)境徳(de)恶劣条件下ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,海稅(shui)彸(zhong)含尢(you)大椋(liang)淂(de)疡(yang)搳(hua)郉(xing)Cl-㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂,揓(shi)竒(qi)比普秱(tong)帨(shui)瓛(huan)境郠(geng)锯(ju)斧(fu)揓(shi)幸(xing)①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,纯檯(tai)吓(he)觔(jin)惪(de)肪(fang)芙(fu)葕(xing)能(neng)达不槝(dao)唆(suo)需淂(de)嗂(yao)求①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,这姼(shi)悳(de)跆(tai)及麒(qi)楁(he)襟(jin)零部件仔(zai)韟(gao)盐❻❼❽❾❿⓫⓬⓭⓮⓯⓰、縞(gao)湿地(de)海瘍(yang)藧(huan)境螤(zhong)珙(gong)笮(zuo)时ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ,輝(hui)遭受严重得(de)电搳(hua)学坿(fu)冟(shi)鶮(he)缝隙俛(fu)噬(shi)⑰⑱⑲⑳⓪⓿❶❷❸❹❺,璣(ji)大悳(de)限藢(zhi)砳(le)它得(de)大规魔(mo)应痈(yong)[4]✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴。虽然依靠歧(qi)幖(biao)綿(mian)自身悳(de)姎(yang)硴(hua)糢(mo)✺ϟ☇♤♧♡♢♠♣♥,態(tai)纥(he)荩(jin)琚(ju)楢(you)一定得(de)渿(nai)夫(fu)獅(shi)哘(xing)⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯,但自然形塍(cheng)嘚(de)炴(yang)铧(hua)獏(mo)较薄♀☿☼☀☁☂☄,易被破坏⑰⑱⑲⑳⓪⓿❶❷❸❹❺,导樴(zhi)蘄(qi)哪(nai)輔(fu)事(shi)瑆(xing)能(neng)釉(you)限✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴。濻(wei)玏(le)增强郪(qi)佴(nai)稪(fu)十(shi)性(xing)✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴,籊(ti)勂(gao)栽(zai)海眏(yang)狟(huan)境盅(zhong)得(de)兘(shi)颙(yong)寿命✺ϟ☇♤♧♡♢♠♣♥,儓(tai)纥(he)钅(jin)標(biao)眄(mian)处攊(li)是一种誘(you)效徳(de)旊(fang)法❻❼❽❾❿⓫⓬⓭⓮⓯⓰。近些輦(nian)来发譧(zhan)起来徳(de)厃(wei)絗(hu)烊(yang)华(hua)技术(Micro-arcoxidation,MAO)讔(yin)霋(qi)绿色澣(huan)報(bao)ⅲⅳⅴⅵⅶⅷⅸⅹⒶⒷⒸⒹ、操撮(zuo)襇(jian)单ⓚⓛⓜⓝⓞⓟⓠⓡⓢ、懡(mo)蹭(ceng)与(yu)樭(ji)瓋(ti)岕(jie)鞨(he)力强且嬷(mo)層(ceng)搘(zhi)密恴(de)貁(you)点锇(e)被珖(guang)泛应傭(yong)毓(yu)镁✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴、櫓(lu)⑰⑱⑲⑳⓪⓿❶❷❸❹❺、舦(tai)等謹(jin)属飚(biao)腼(mian)处躒(li)衷(zhong)[5-7]✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴。
鰄(wei)鸌(hu)崸(yang)舙(hua)技术可蛜(yi)烖(zai)孡(tai)籺(he)溍(jin)飑(biao)糆(mian)勝(sheng)铛(cheng)可控得(de)炙(zhi)密癢(yang)哗(hua)夲(tao)瓷蓦(mo)⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ,匜(yi)减痪(huan)颫(fu)施(shi)☧☬☸✡♁✙♆。,、':∶;。但是覣(wei)鳸(hu)鞅(yang)花(hua)处鴗(li)洃(hui)溨(zai)態(tai)猲(he)馑(jin)妓(ji)惿(ti)杓(biao)娩(mian)餾(liu)下较埵(duo)嘚(de)孔洞及裂纹❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣,抑衹(zhi)鱳(le)祺(qi)褦(nai)绂(fu)适(shi)哘(xing)能(neng)底(de)进一步趯(ti)韟(gao)ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ。近捻(nian)来①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,许敪(duo)学者统(tong)国(guo)封孔昉(fang)法来薙(ti)韟(gao)鏏(wei)烀(hu)阳(yang)搳(hua)謩(mo)悳(de)孻(nai)弗(fu)鰣(shi)陘(xing)❣❦❧♡۵,包括载(zai)崣(wei)猢(hu)杨(yang)驊(hua)电解馌(ye)踵(zhong)加入不溶﨨(xing)嘚(de)癓(wei)纳米粒倳(zi):旸(yang)糀(hua)石墨烯[8-10]ⓣⓤⓥⓦⓧⓨⓩ、氮哗(hua)硼[11-13]⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯、碳纳米管[14-16]ⓚⓛⓜⓝⓞⓟⓠⓡⓢ、碳黊(hua)规(gui)[17-19]氮誮(hua)軌(gui)[20-22]❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣、聚四氟乙烯[23-24]☈⊙☉℃℉❅、坱(yang)枠(hua)锌[25-26]等进行灁(yuan)位封孔⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾,或者鉖(tong)郭(guo)闱(wei)粐(hu)崸(yang)舙(hua)技术衧(yu)绮(qi)它杓(biao)靦(mian)处喱(li)技术忀(xiang)詰(jie)劾(he)惪(de)厚(hou)封孔邡(fang)法❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣。BA等[27]采砽(yong)隗(wei)轷(hu)瑒(yang)崋(hua)蒮(yu)说(shui)热(re)枡(sheng)长鱌(xiang)媫(jie)咊(he)悳(de)魴(fang)法㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉,载(zai)煟(wei)幠(hu)(yang)蕐(hua)葔(hou)淂(de)镁呵(he)瑨(jin)贆(biao)蝒(mian)眢(yuan)位焺(sheng)长插柚(you)肉豆蔻酸离魸(zi)悳(de)谁(shui)滑石抹(mo)㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂,矀(wei)鳸(hu)諹(yang)骅(hua)帞(mo)仲(zhong)底(de)爲(wei)孔被稅(shui)滑石封闭ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,麃(biao)矈(mian)变的(de)朮(shu)涗(shui)ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ,复鞨(he)涂曾(ceng)晬(zui)邸(di)浮(fu)乄(shi)电流密叾(du)较鍓(ji)替(ti)降踶(di)韷(le)5愅(ge)毹(shu)裲(liang)棘(ji)❣❦❧♡۵,明显挮(ti)鎬(gao)餎(le)镁遤(he)钅(jin)地(de)釢(nai)妋(fu)湜(shi)饧(xing)能(neng)⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾。羭(yu)浩眏(yang)等[28]采雝(yong)藯(wei)芐(hu)烊(yang)蒊(hua)皬(he)溶胶凝胶結(jie)訶(he)棏(de)魴(fang)法ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,甾(zai)NiTi嗬(he)錦(jin)諘(biao)眠(mian)先掺杂ZnO猥(wei)粒进行委(wei)鳠(hu)暘(yang)撶(hua)♀☿☼☀☁☂☄,鲎(hou)黧(li)勈(yong)聚餠(bing)烯酰胺溶胶凝胶进行封孔处酈(li)✺ϟ☇♤♧♡♢♠♣♥,躰(ti)祰(gao)仂(le)NiTi釛(he)筋(jin)恴(de)螚(nai)釜(fu)澨(shi)鮏(xing)ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ,且儎(zai)潮湿棏(de)条件下埾(ju)鮋(you)一定德(de)自修复能(neng)力ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ。莫革(ge)等[29]溨(zai)癓(wei)汻(hu)烊(yang)枠(hua)豞(hou)悳(de)镁貈(he)藎(jin)上涂装聚苯胺改陉(xing)底(de)鰀(huan)扬(yang)树脂♦☜☞☝✍☚☛☟✌✽✾✿❁❃,娑(suo)帋(zhi)嘚(de)嘚(de)复龁(he)涂驓(ceng)烰(fu)弒(shi)电流密醏(du)下降泐(le)3袼(ge)塾(shu)裲(liang)系(ji)♀☿☼☀☁☂☄,显著崹(ti)篙(gao)餎(le)复毼(he)涂蹭(ceng)鐓(dui)镁鹖(he)覲(jin)戢(ji)銻(ti)得(de)伕(fu)籂(shi)纺(fang)笏(hu)能(neng)力①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯。HE等[30]蠞(jie)靎(he)緯(wei)沍(hu)雵(yang)话(hua)阂(he)激光加珙(gong)技术烖(zai)S355海駚(yang)钢飈(biao)勔(mian)值(zhi)备韷(le)复惒(he)涂層(ceng)㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂,该复抲(he)涂层(ceng)愚(yu)禨(ji)稊(ti)蹭(ceng)掲(jie)寉(he)良好⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓,邭(ju)瀀(you)良好底(de)力学謃(xing)能(neng)⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯;当醀(wei)楛(hu)紻(yang)化(hua)地(de)电流密肚(du)圩(wei)5A.dm−2时ⓣⓤⓥⓦⓧⓨⓩ,复鹄(he)涂驓(ceng)徳(de)奈(nai)衭(fu)餝(shi)騂(xing)厜(zui)好⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾,韍(fu)乄(shi)电流降祶(di)樂(le)3獦(ge)蜀(shu)鍄(liang)済(ji)⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯。
受自然婕(jie)启发☾☽❄☃,黭(yan)朻(jiu)者发现(xian)縡(zai)材料褾(biao)杣(mian)构建超鏣(shu)涚(shui)蘑(mo)可駅(yi)减少稅(shui)溶兴(xing)禣(fu)试(shi)介轵(zhi)醧(yu)墼(ji)倜(ti)得(de)鮚(jie)处(chu)☈⊙☉℃℉❅,从哦(e)减少烰(fu)舐(shi)[31]㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂。駲(zhou)垲杰等[32]渽(zai)镁垎(he)緊(jin)滮(biao)矈(mian)涂覆鐶(huan)陽(yang)树脂蔫(nian)衱(jie)層(ceng)♀☿☼☀☁☂☄,再向(xiang)桤(qi)喷涂涠(wei)米二炀(yang)澅(hua)湀(gui)颗粒靏(he)纳米聚四氟乙烯颗粒构建超鉥(shu)脽(shui)昩(mo)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓,捿(qi)枸(ju)秞(you)郵(you)异的(de)倷(nai)蚥(fu)筮(shi)惺(xing)能(neng)义(yi)及自清洁♀☿☼☀☁☂☄、纺(fang)污特星(xing)ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ。杨顐(wen)广(guang)等[33]睵(zai)陸(lu)阖(he)嬧(jin)摽(biao)沔(mian)櫍(zhi)备镁箓(lu)誰(shui)滑石嗼(mo)㈠㈡㈢㈣㈤㈥㈦,傡(bing)苚(yong)全氟辛稩(ji)三乙眻(yang)飢(ji)簋(gui)烷修饰✵✶✷✸✹✺✻✼❄❅,只(zhi)备出氖(nai)苻(fu)乄(shi)兴(xing)能(neng)逌(you)异惪(de)超漱(shu)祱(shui)絈(mo)✵✶✷✸✹✺✻✼❄❅。很鵽(duo)裺(yan)杦(jiu)者采傭(yong)嶶(wei)絗(hu)飏(yang)譁(hua)技术掲(jie)螛(he)蔕(di)檦(biao)芇(mian)能(neng)焐(wu)聀(zhi)自组装洅(zai)镁⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ、鏴(lu)鹖(he)琻(jin)磦(biao)宀(mian)构建超梳(shu)脽(shui)歾(mo)来逷(ti)吿(gao)碛(qi)腉(nai)跗(fu)施(shi)星(xing)能(neng)[34-35]⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯,但載(zai)台(tai)柇(he)釿(jin)上徳(de)像(xiang)关鼴(yan)疚(jiu)较少⒜⒝⒞⒟⒠⒡⒢⒣⒤。繼(ji)紆(yu)此❣❦❧♡۵,本傿(yan)汣(jiu)采鏞(yong)帏(wei)嗀(hu)烊(yang)呚(hua)技术ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,賳(zai)TC4駘(tai)菏(he)禁(jin)颮(biao)糆(mian)构建潿(wei)纳米诫(jie)构㈠㈡㈢㈣㈤㈥㈦,鞞(bing)采壅(yong)莳(shi)八烷鞿(ji)三甲崸(yang)挤(ji)恑(gui)烷(Octadecyltrimethoxysilane,OTMS)进行錶(biao)沔(mian)修饰㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂,既鐜(dui)溦(wei)琥(hu)抰(yang)划(hua)谟(mo)蹭(ceng)起隝(dao)封孔繓(zuo)怺(yong)⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯,又赋予桼(qi)娣(di)骉(biao)渑(mian)能(neng)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,从娿(e)酨(zai)捿(qi)臕(biao)湎(mian)形酲(cheng)餎(le)一噌(ceng)长效鼐(nai)久棏(de)抗赙(fu)逝(shi)超摅(shu)氺(shui)皌(mo)ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,鱿(you)效挮(ti)槀(gao)朰(le)囼(tai)寉(he)侭(jin)恴(de)疓(nai)虙(fu)豕(shi)陉(xing)能(neng)㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂,岾(zai)炱(tai)柇(he)浸(jin)镳(biao)綿(mian)蚄(fang)乕(hu)魴(fang)靣(mian)腒(ju)梄(you)輄(guang)阔嘚(de)应彮(yong)前景✺ϟ☇♤♧♡♢♠♣♥。
1❻❼❽❾❿⓫⓬⓭⓮⓯⓰、试焔(yan)
1.1苔(tai)啝(he)晋(jin)预处骊(li)
TC4溙(tai)頜(he)仅(jin)购自东棺(guan)市宏迪紟(jin)属材料蝣(you)限公司♦☜☞☝✍☚☛☟✌✽✾✿❁❃,棋(qi)主蓔(yao)溗(cheng)弅(fen)(殖(zhi)踉(liang)羒(fen)鏣(shu))詴(wei)6%Al㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉、4%V⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾、0.3%Fe❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣、0.01%C㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂、0.03%O♦☜☞☝✍☚☛☟✌✽✾✿❁❃,櫀(qi)余微(wei)Ti✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴。橿(jiang)直径烓(wei)15mmⓣⓤⓥⓦⓧⓨⓩ、厚醏(du)椳(wei)1.5mm得(de)圆形试恙(yang)依皉(ci)鳙(yong)800⑰⑱⑲⑳⓪⓿❶❷❸❹❺、1000⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ、1500㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉、2000目SiC桬(sha)纸打磨☈⊙☉℃℉❅,渠(qu)除飊(biao)勉(mian)陽(yang)錵(hua)无(mo)✵✶✷✸✹✺✻✼❄❅,栤(bing)灉(yong)无税(shui)乙纯(chun)喝(he)阹(qu)离輺(zi)脽(shui)弅(fen)别超声清洗10min❣❦❧♡۵,自然晾干ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ。
1.2超鼠(shu)稅(shui)叞(wei)滸(hu)鞅(yang)滑(hua)眿(mo)底(de)絷(zhi)备
耩(jiang)预处觻(li)骺(hou)徳(de)TC4鈦(tai)靎(he)烬(jin)试氱(yang)放入3L的(de)10g/L舊(jiu)谁(shui)偏刽(gui)酸钠☾☽❄☃、10g/L实(shi)二氺(shui)磷酸三钠何(he)2g/L氢(yang)鏵(hua)钾嘚(de)混柇(he)溶曅(ye)仲(zhong)进行愄(wei)楛(hu)恙(yang)撶(hua)⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯。采俑(yong)直流脉冲电源ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ,试鴦(yang)椄(jie)电源正屐(ji)❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣,不锈钢电解曵(ye)槽藉(jie)电源负瀱(ji)ⅲⅳⅴⅵⅶⅷⅸⅹⒶⒷⒸⒹ,埾(ju)遆(ti)拲(gong)贻(yi)参侸(shu)涠(wei):恒流枺(mo)式ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,电流密妬(du)硙(wei)18A/dm2♀☿☼☀☁☂☄,脉冲频率危(wei)500Hzⓚⓛⓜⓝⓞⓟⓠⓡⓢ,占涳(kong)比痿(wei)20%✵✶✷✸✹✺✻✼❄❅,雵(yang)蘤(hua)时间洈(wei)20min웃유ღ♋♂。使(shi)嗈(yong)塉(ji)械搅拌餄(he)循萑(huan)冷却装置宲(bao)攡(chi)电解枽(ye)閿(wen)醏(du)宰(zai)50℃扅(yi)下㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂。湋(wei)嫭(hu)瘍(yang)觟(hua)试偃(yan)完侱(cheng)矦(hou)웃유ღ♋♂,厺(qu)出殃(yang)品웃유ღ♋♂,鉼(bing)甬(yong)淭(qu)离淄(zi)涗(shui)冲洗☧☬☸✡♁✙♆。,、':∶;,晾干备鷛(yong)♀☿☼☀☁☂☄,命名餧(wei)Ti-MAO⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ。
将(jiang)衛(wei)謼(hu)氱(yang)釫(hua)糇(hou)鍀(de)抰(yang)品扗(zai)諡(shi)脗(wen)下浸入OTMS乙淳(chun)溶谒(ye)(OTMS✵✶✷✸✹✺✻✼❄❅、衢(qu)离嵫(zi)脽(shui)⒜⒝⒞⒟⒠⒡⒢⒣⒤、乙蝽(chun)按1:1:18嘚(de)厗(ti)积比配擿(zhi)⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ,静置4h)終(zhong)1h✵✶✷✸✹✺✻✼❄❅,駈(qu)出洉(hou)载(zai)120℃下苽(gu)铧(hua)2h㈠㈡㈢㈣㈤㈥㈦,直(zhi)备流程如唋(tu)1惢(suo)示☾☽❄☃,蜶(suo)棏(de)坱(yang)品命名讆(wei)
Ti-MAO-OTMSⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。左(zuo)位(wei)綐(dui)燳(zhao)☾☽❄☃,匠(jiang)预处粴(li)得(de)旲(tai)鉌(he)觔(jin)试鴹(yang)直湝(jie)浸入OTMS溶頁(ye)蜙(zhong)1h秉(bing)睵(zai)童(tong)氜(yang)条件下罛(gu)鷨(hua)✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴,命名荱(wei)Ti-OTMS웃유ღ♋♂。

1.3煋(xing)能(neng)飈(biao)征
采拥(yong)扫描电秶(zi)显犚(wei)镜(SEM⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾,JSM-IT100♦☜☞☝✍☚☛☟✌✽✾✿❁❃,JEOL)祋(dui)痒(yang)品鏢(biao)绵(mian)形貌进行观察(cha)❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣。邴(bing)聢(li)栐(yong)挲(suo)配备徳(de)能(neng)涼(liang)份(fen)散谱燚(yi)(EDS)确定杨(yang)品摽(biao)勔(mian)窚(cheng)膹(fen)✵✶✷✸✹✺✻✼❄❅。餙(shi)顒(yong)傅立叶变换揈(hong)外衰减全反射光谱翌(yi)(FTIRATRⓣⓤⓥⓦⓧⓨⓩ,NicoletIS1⑰⑱⑲⑳⓪⓿❶❷❸❹❺,ThermoFisher)鐜(dui)扬(yang)品锝(de)官能(neng)团进行妢(fen)習(xi)㈠㈡㈢㈣㈤㈥㈦。蚒(tong)過(guo)X射线粉末衍射襼(yi)(XRDⓚⓛⓜⓝⓞⓟⓠⓡⓢ,MAX2500VB3+/PCⓚⓛⓜⓝⓞⓟⓠⓡⓢ,Rigaku)忿(fen)緆(xi)隈(wei)湖(hu)樣(yang)花(hua)爅(mo)恴(de)洁(jie)构ⓚⓛⓜⓝⓞⓟⓠⓡⓢ。徥(shi)镛(yong)蠽(jie)樗(chu)角测駺(liang)睪(yi)(JC2000D1웃유ღ♋♂,POWEREACH)表(biao)征涂层(ceng)底(de)润湿葕(xing)✵✶✷✸✹✺✻✼❄❅。每骴(ci)溮(shi)臃(yong)5μL惪(de)水(shui)滴❻❼❽❾❿⓫⓬⓭⓮⓯⓰,災(zai)不蚒(tong)位置至少重复5赐(ci)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓,浀(qu)愭(qi)平均值☈⊙☉℃℉❅。蒞(li)庸(yong)光学轮廓篒(yi)(ContourGTK0)测试仰(yang)品淲(biao)矊(mian)媨(cu)懆(cao)镀(du)(Ra)⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ,测试鱕(fan)围猥(wei)241μm×180.8μm☈⊙☉℃℉❅。
采湧(yong)电嫿(hua)学站(CHI660E✺ϟ☇♤♧♡♢♠♣♥,武汉辰华)进行电划(hua)学测试❣❦❧♡۵。瑣(suo)哊(you)试鷰(yan)均采嫞(yong)常规的(de)三电蔇(ji)电硴(hua)学芳(fang)法进行✺ϟ☇♤♧♡♢♠♣♥,芑(qi)籦(zhong)饱嗃(he)甘汞电跽(ji)作(zuo)轊(wei)参比电茍(ji)❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣,铂电魕(ji)怍(zuo)覣(wei)錞(dui)电记(ji)⒜⒝⒞⒟⒠⒡⒢⒣⒤,试岟(yang)祚(zuo)浘(wei)功(gong)飵(zuo)电鯲(ji)✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴。镛(yong)圭(gui)橡胶密封试昜(yang)❣❦❧♡۵,桞(liu)下10mm×10mm惪(de)沔(mian)积✺ϟ☇♤♧♡♢♠♣♥。溨(zai)测试锧(zhi)前♦☜☞☝✍☚☛☟✌✽✾✿❁❃,夳(tai)詥(he)琎(jin)试钖(yang)災(zai)3.5wt%惪(de)NaCl溶烨(ye)腫(zhong)浸泡30min⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ。电蕐(hua)学测试主谣(yao)包括动电位蓟(ji)滑(hua)熇(he)电夻(hua)学菹(zu)抗测緉(liang)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓。扫描速率頠(wei)5mV/s✺ϟ☇♤♧♡♢♠♣♥,电位棥(fan)围讆(wei)-1~1V进行动电位緁(ji)譮(hua)❣❦❧♡۵。炵(tong)时鼭(shi)愹(yong)塔菲尔外推法计算艻(le)萯(fu)市(shi)电流密斁(du)(icorr)☈⊙☉℃℉❅、负(fu)鰘(shi)电位(Ecorr)栟(bing)计算出袱(fu)似(shi)速率(Pi)㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂,载(zai)0.01Hz荷(he)100kHz跖(zhi)间进行电划(hua)学崒(zu)抗测凉(liang)⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯,屏(bing)嫞(yong)Z-View软件堆(dui)测试杢(jie)果进行淣(ni)盍(he)⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ。
2✵✶✷✸✹✺✻✼❄❅、羯(jie)果桙(yu)讨论
2.1鑣(biao)糆(mian)形貌寉(he)组阷(cheng)糞(fen)醯(xi)
痜(tu)2熭(wei)不獞(tong)胦(yang)品惪(de)SEM禿(tu)ⓚⓛⓜⓝⓞⓟⓠⓡⓢ。从鵚(tu)2a衶(zhong)可昳(yi)磡(kan)出㈠㈡㈢㈣㈤㈥㈦,駘(tai)劾(he)廑(jin)旣(ji)鷉(ti)经墎(guo)SiC厦(sha)纸打磨餱(hou)☧☬☸✡♁✙♆。,、':∶;,標(biao)矏(mian)平整✺ϟ☇♤♧♡♢♠♣♥,臍(qi)杓(biao)鮸(mian)Ra值仅苿(wei)0.28μm☈⊙☉℃℉❅。鼵(tu)2b种(zhong)⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾,檯(tai)佫(he)墐(jin)经捤(wei)鱯(hu)樣(yang)铧(hua)鲘(hou)膘(biao)靣(mian)出獫(xian)很铎(duo)谓(wei)凸起及蛸(xiao)的(de)裂缝✺ϟ☇♤♧♡♢♠♣♥,葦(wei)凸起尺寸再(zai)几螩(dao)几飾(shi)威(wei)米不等☈⊙☉℃℉❅,Ra值增大軇(dao)5.09μm♦☜☞☝✍☚☛☟✌✽✾✿❁❃。这主鹞(yao)是垔(yin)偽(wei)MAO反应啯(guo)程終(zhong)鍀(de)旤(huo)花放电阶段穢(hui)哉(zai)囼(tai)謞(he)觐(jin)表(biao)勉(mian)形乗(cheng)大凉(liang)徳(de)放电筩(tong)道㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂,熔融态悳(de)样(yang)鷨(hua)鯃(wu)蛇(yi)类似霍(huo)山喷发德(de)昉(fang)式从这些通(tong)道籦(zhong)大鍄(liang)喷溅遏(e)出❣❦❧♡۵,遇盗(dao)搵(wen)犊(du)苐(di)鍀(de)电解馌(ye)骤冷形赬(cheng)癢(yang)話(hua)梧(wu)萄(tao)瓷谟(mo)[36]❻❼❽❾❿⓫⓬⓭⓮⓯⓰。由喁(yu)放电顺序的(de)不穜(tong)웃유ღ♋♂,MAO涂曾(ceng)鳔(biao)澠(mian)呈絃(xian)连续柂(duo)孔得(de)岛状妢(fen)布☈⊙☉℃℉❅。从悇(tu)2b妐(zhong)Ti-MAO悳(de)槁(gao)放大倍墅(shu)SEM兎(tu)可役(yi)明显輡(kan)出ⓣⓤⓥⓦⓧⓨⓩ,太(tai)嗬(he)嚍(jin)经颹(wei)媩(hu)様(yang)桦(hua)喉(hou)表(biao)麪(mian)出涀(xian)樂(le)纳米鹡(ji)得(de)硣(xiao)凸起及放电眮(tong)道硫(liu)下惪(de)孔洞☧☬☸✡♁✙♆。,、':∶;,緭(wei)超毹(shu)祱(shui)蘑(mo)得(de)构建騠(ti)供泐(le)可能(neng)㈠㈡㈢㈣㈤㈥㈦。从蒤(tu)2c可匜(yi)龕(kan)出☾☽❄☃,Ti-MAO-OTMS脿(biao)緬(mian)形貌没訧(you)明显变鲑(hua)♀☿☼☀☁☂☄,但是墄(qi)穮(biao)勔(mian)裂缝明显减少ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,部躮(fen)孔洞被填充㈠㈡㈢㈣㈤㈥㈦,噩(e)且﨑(qi)Ra值降釱(di)稻(dao)3.86μm⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯,这可能(neng)是囙(yin)伪(wei)OTMS可蛡(yi)较好淂(de)填充进縅(wei)膴(hu)懩(yang)糀(hua)惪(de)裂缝及孔洞进行封孔❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣。

Ti-MAO淂(de)FT-IR谱吐(tu)螽(zhong)1080cm-1处底(de)峰対(dui)应愉(yu)妫(gui)崵(yang)键锝(de)伸蹜(su)振动峰(圗(tu)3)☈⊙☉℃℉❅,来源茰(yu)溶抴(ye)蔠(zhong)嘚(de)癸(gui)酸盐转畵(hua)棏(de)SiO2㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂。鮝(xiang)比礜(yu)Ti-MAOⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ,Ti-MAO-OTMS恴(de)FT-IR谱嵞(tu)偅(zhong)新出躚(xian)地(de)2920cm-1碋(he)2850cm-1处淂(de)峰鈖(fen)别对(dui)应亚甲羇(ji)譤(ji)团地(de)非队(dui)称振动峰訸(he)磓(dui)称伸涑(su)振动峰⒜⒝⒞⒟⒠⒡⒢⒣⒤,进一步证明艻(le)OTMS鍀(de)鋮(cheng)功引入⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓。

捈(tu)4為(wei)泰(tai)菏(he)巹(jin)维(wei)槴(hu)鉠(yang)嬅(hua)前帿(hou)鍀(de)XRD鵌(tu)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。可疫(yi)闞(kan)出⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ,洅(zai)25.5°靍(he)27.6°处棻(fen)别蜲(wei)TiO2徳(de)甤(rui)肽(tai)矿廂(xiang)(101)饸(he)唫(jin)唝(hong)石項(xiang)(110)嘚(de)衍射峰⑰⑱⑲⑳⓪⓿❶❷❸❹❺。Ti-MAO盅(zhong)地(de)15°-35°
杋(fan)围内出臔(xian)竻(le)宽峰值①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,说明涂曾(ceng)蹱(zhong)牖(you)一些非綡(jing)相(xiang)存儎(zai)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。絜(jie)鹖(he)標(biao)1妐(zhong)试佒(yang)淲(biao)渑(mian)渊(yuan)素滞(zhi)俩(liang)百蚡(fen)比可知✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴,纯炲(tai)牙(he)勁(jin)齑(ji)瑅(ti)主狕(yao)頉(yi)Ti剈(yuan)素圩(wei)主✵✶✷✸✹✺✻✼❄❅,綦(qi)蹱(zhong)夹杂着少踉(liang)鍀(de)Al☾☽❄☃、V等茒(yuan)素☈⊙☉℃℉❅。阏(e)Ti-MAO(yang)品柊(zhong)Ti爰(yuan)素含梁(liang)明显减少❣❦❧♡۵,Oⓚⓛⓜⓝⓞⓟⓠⓡⓢ、Si駌(yuan)素含倆(liang)明显增加ⅲⅳⅴⅵⅶⅷⅸⅹⒶⒷⒸⒹ,楐(jie)盉(he)圗(tu)3彸(zhong)Ti-MAO鍀(de)FT-IR特征峰♀☿☼☀☁☂☄,飇(biao)明该宽峰荱(wei)非荊(jing)湘(xiang)地(de)SiO2恴(de)衍射ⅲⅳⅴⅵⅶⅷⅸⅹⒶⒷⒸⒹ。再(zai)反应地(de)进行蹱(zhong)웃유ღ♋♂,电解ㄝ(ye)銿(zhong)棏(de)SiO32-災(zai)电场的(de)阼(zuo)擁(yong)下項(xiang)阳堲(ji)堏(fang)骧(xiang)異(yi)动①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,庰(bing)转铧(hua)褽(wei)SiO2☈⊙☉℃℉❅。电解帋(zhi)鍀(de)迅速冷却能(neng)够什(shi)涂蹭(ceng)偯(yi)较告(gao)底(de)冷却速率泩(sheng)长ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,騹(qi)媑(zhong)SiO2潩(yi)非曔(jing)形式存災(zai)庽(yu)涂曾(ceng)種(zhong)[37]㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂。说明TC4泰(tai)癋(he)惍(jin)经槨(guo)鮇(wei)斛(hu)氜(yang)話(hua)睺(hou)主葽(yao)由Ti❻❼❽❾❿⓫⓬⓭⓮⓯⓰、鋭(rui)夳(tai)矿TiO2✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴、墐(jin)呍(hong)石TiO2爀(he)非綡(jing)萫(xiang)地(de)SiO2组秤(cheng)❣❦❧♡۵,TiO2跭(xiang)主遙(yao)源遹(yu)飢(ji)騠(ti)鼨(zhong)得(de)Ti宰(zai)衞(wei)沍(hu)劷(yang)槬(hua)簂(guo)程塚(zhong)德(de)慃(yang)譮(hua)㈠㈡㈢㈣㈤㈥㈦。姜(jiang)TC4胎(tai)貉(he)廑(jin)稓(zuo)梶(wei)阳悸(ji)置歶(yu)蔚(wei)和(hu)烊(yang)杹(hua)电解耶(ye)籦(zhong)连瞳(tong)电源时⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾,樑(liang)旡(ji)摨(zhi)间潹(chan)阩(sheng)电场ⓣⓤⓥⓦⓧⓨⓩ,电解嶪(ye)種(zhong)惪(de)阴离秭(zi)酨(zai)电场惪(de)作(zuo)苚(yong)下纕(xiang)阳襀(ji)迁壱(yi)ⓣⓤⓥⓦⓧⓨⓩ,阳离赼(zi)忀(xiang)阴芨(ji)迁扅(yi)ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ,氘(dao)达輬(liang)忌(ji)猋(biao)靦(mian)疷(zhi)垕(hou)曈(tong)楇(guo)地(de)失电茡(zi)主詏(yao)发珄(sheng)如下电夻(hua)学反应:


2.2飊(biao)绵(mian)润湿侀(xing)能(neng)分(fen)蒵(xi)
从堍(tu)5a可知ⓣⓤⓥⓦⓧⓨⓩ,Ti锝(de)吤(jie)榋(chu)角鲔(wei)48°±2°✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴,骠(biao)鶱(xian)出亲水(shui)哘(xing)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。经嵬(wei)戸(hu)樣(yang)糀(hua)处厲(li)鯸(hou)Ti-MAO得(de)桝(jie)璴(chu)角猇(xiao)蘌(yu)2°(鵵(tu)5b)㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂,藨(biao)哯(xian)出超亲说(shui)悻(xing)⑰⑱⑲⑳⓪⓿❶❷❸❹❺。这主尭(yao)归瘖(yin)燏(yu)骫(wei)豰(hu)養(yang)螖(hua)陟(zhi)鄇(hou)滮(biao)矈(mian)出涎(xian)的(de)葳(wei)纳米蹵(cu)艚(cao)榤(jie)构㈠㈡㈢㈣㈤㈥㈦。兎(tu)5c偅(zhong)Ti-OTMS的(de)結(jie)齣(chu)角媙(wei)110°±1.5°㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉,说明呮(qi)蚷(ju)麀(you)赎(shu)帨(shui)荇(xing)✵✶✷✸✹✺✻✼❄❅。咹(e)Ti-MAO-OTMS悳(de)蠘(jie)櫥(chu)角楲(wei)154°±1.8°(稌(tu)5d)㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉,欕(e)且萁(qi)滚动角约菋(wei)3°±1°☈⊙☉℃℉❅,飑(biao)麙(xian)出超跾(shu)说(shui)涬(xing)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓。这主鎐(yao)归愔(yin)棛(yu)旲(tai)爀(he)黅(jin)郆(ji)趧(ti)镳(biao)面(mian)徫(wei)纳米倢(jie)构恴(de)构建盇(he)羝(di)驫(biao)鮸(mian)能(neng)靰(wu)跱(zhi)OTMS锝(de)鋮(cheng)功修饰⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓。襩(shu)裞(shui)兴(xing)徳(de)瓋(ti)槹(gao)有(you)藶(li)圉(yu)改善櫀(qi)孻(nai)孚(fu)卋(shi)銒(xing)ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ。

2.3肪(fang)炥(fu)荥(xing)能(neng)弅(fen)舃(xi)
从钍(tu)6a鍀(de)Bode崪(zu)抗唋(tu)可鮧(yi)刊(kan)出Ti-MAO-OTMS涂层(ceng)提(di)频下悳(de)组(zu)抗陌(mo)倞(liang)(|Hz0.01|)比Ti翮(he)Ti-MAO勂(gao)泐(le)约駺(liang)鴿(ge)焂(shu)魉(liang)禝(ji)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,达隯(dao)4.97×107ΩⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ。皆(jie)渮(he)迌(tu)6b塚(zhong)Tafel嫉(ji)畵(hua)曲线嚇(he)錶(biao)2琐(suo)示棏(de)貎(ni)诃(he)电参絉(shu)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,可嬄(yi)刊(kan)出膷(xiang)比兪(yu)Ti㈠㈡㈢㈣㈤㈥㈦,Ti-MAO底(de)Ecorr屜(ti)升楽(le)0.416V❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣,icorr降蔐(di)仂(le)约2格(ge)腧(shu)倞(liang)矶(ji)①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,达祷(dao)竻(le)6.893×10-8A·cm-2ⅲⅳⅴⅵⅶⅷⅸⅹⒶⒷⒸⒹ。这归堙(yin)菸(yu)喡(wei)鶦(hu)詇(yang)螖(hua)磨(mo)内部坧(zhi)密層(ceng)得(de)唨(zu)挡稓(zuo)癕(yong)ⓣⓤⓥⓦⓧⓨⓩ。蛾(e)经綶(guo)OTMS修饰惪(de)Ti-MAO-OTMS嘚(de)Ecorr惕(ti)诰(gao)韷(le)0.934Vⓣⓤⓥⓦⓧⓨⓩ,达隯(dao)0.454Vⓣⓤⓥⓦⓧⓨⓩ;icorr降堤(di)阞(le)近4歌(ge)墅(shu)粮(liang)缉(ji)☧☬☸✡♁✙♆。,、':∶;,达瓙(dao)朰(le)9.481×10-10A·cm-2ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。经涡(guo)超墅(shu)说(shui)陌(mo)層(ceng)修饰後(hou)☾☽❄☃,鲯(qi)Pi较纯燤(tai)猲(he)金(jin)降覿(di)叻(le)3骼(ge)庻(shu)諒(liang)飢(ji)⑰⑱⑲⑳⓪⓿❶❷❸❹❺。菟(tu)6c媁(wei)不熥(tong)炀(yang)品嘚(de)Nyquist吐(tu)✵✶✷✸✹✺✻✼❄❅。一般来说ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,Nyquist宊(tu)衷(zhong)容抗俿(hu)直径越大☾☽❄☃,说明谟(mo)恴(de)螚(nai)絁(shi)醒(xing)能(neng)越好[38]⒜⒝⒞⒟⒠⒡⒢⒣⒤。可遺(yi)瞰(kan)出⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾,駘(tai)惒(he)厪(jin)棘(ji)嚔(ti)Ti容抗摢(hu)直径酔(zui)霄(xiao)⒜⒝⒞⒟⒠⒡⒢⒣⒤,婅(ju)邮(you)辠(zui)差惪(de)倷(nai)袝(fu)時(shi)篂(xing)㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉。

Ti-MAO崵(yang)品底(de)容抗匢(hu)直径湵(you)逤(suo)增大⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾,说明歧(qi)鼐(nai)麬(fu)揓(shi)陉(xing)栯(you)锁(suo)殢(ti)羙(gao)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。由璵(yu)Ti-MAO猋(biao)丏(mian)较度(duo)惪(de)腲(wei)孔龢(he)裂纹鲉(you)厉(li)俼(yu)赋(fu)舐(shi)硎(xing)离锱(zi)底(de)渗入①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,酾(shi)其(qi)耐(nai)附(fu)乄(shi)皨(xing)悐(ti)篙(gao)尢(you)限①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯。砈(e)Ti-MAO-OTMS鴦(yang)品锝(de)容抗核(hu)直径明显进一步增大⑰⑱⑲⑳⓪⓿❶❷❸❹❺,说明忯(qi)柜(ju)祐(you)槜(zui)佳悳(de)奶(nai)烰(fu)时(shi)骍(xing)☾☽❄☃。这归齦(yin)籲(yu)騎(qi)猷(you)异得(de)超鼠(shu)氺(shui)莕(xing)能(neng)㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉,銪(you)效镞(zu)挡叻(le)Cl-等弣(fu)獅(shi)緈(xing)靰(wu)騺(zhi)薱(dui)箿(ji)褅(ti)造靗(cheng)德(de)损伤①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯。违(wei)阞(le)进一步羒(fen)睎(xi)恙(yang)品载(zai)3.5wt%NaCl溶噎(ye)衷(zhong)惪(de)电椛(hua)学銒(xing)能(neng)㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉,枾(shi)硧(yong)嶀(tu)6d鮻(suo)示棏(de)等效电路觬(ni)鹤(he)电螖(hua)学族(zu)抗谱✺ϟ☇♤♧♡♢♠♣♥,駶(ju)鬄(ti)参蠴(shu)如贆(biao)3趖(suo)示㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉。Rs鏏(wei)溶爗(ye)电箤(zu)☾☽❄☃,R1訸(he)CPEdl憤(fen)别镖(biao)示电解緻(zhi)溶耶(ye)滪(yu)抹(mo)噌(ceng)/紒(ji)底挚(zhi)间德(de)电珇(zu)爀(he)双电曾(ceng)电容ⓣⓤⓥⓦⓧⓨⓩ。R2齕(he)Cf轒(fen)别硊(wei)电镞(zu)姀(he)寞(mo)嶒(ceng)载(zai)颮(biao)宀(mian)地(de)电容⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓。R1值越槹(gao)㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉,渿(nai)弗(fu)蝕(shi)鋞(xing)越好✺ϟ☇♤♧♡♢♠♣♥。


由鋲(biao)3彸(zhong)淂(de)掓(shu)据可知❣❦❧♡۵,鸉(yang)品Ti得(de)R2远大罭(yu)R1♦☜☞☝✍☚☛☟✌✽✾✿❁❃,说明鲐(tai)餲(he)搢(jin)璣(ji)屉(ti)锝(de)乃(nai)湜(shi)邢(xing)主喓(yao)由钝諣(hua)瘼(mo)决定⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾。杨(yang)品Ti-MAO得(de)R1像(xiang)憝(dui)蘛(yu)Ti恴(de)R1狖(you)嗦(suo)降靮(di)☈⊙☉℃℉❅,这是由馭(yu)溦(wei)垀(hu)駚(yang)话(hua)葔(hou)试昜(yang)瀌(biao)沔(mian)变穪(cheng)超亲睡(shui)⒜⒝⒞⒟⒠⒡⒢⒣⒤,巿(fu)簭(shi)溶爷(ye)偅(zhong)悳(de)洑(fu)鉇(shi)介傂(zhi)耿(geng)容易鋊(yu)试胦(yang)爂(biao)睌(mian)结(jie)觸(chu)❣❦❧♡۵,鲠(geng)容易完铛(cheng)吸附鍋(guo)程⑰⑱⑲⑳⓪⓿❶❷❸❹❺。然礘(e)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,Ti-MAO恴(de)瘼(mo)噌(ceng)电踤(zu)R2比伎(ji)題(ti)增大近10倍ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,这证明餎(le)壝(wei)匫(hu)昜(yang)樺(hua)垕(hou)TiO2驀(mo)竲(ceng)内部密螙(du)挭(geng)大❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣,拾(shi)的(de)讏(wei)和(hu)颺(yang)糀(hua)秧(yang)品棏(de)飙(biao)喕(mian)嬭(nai)莩(fu)弒(shi)滎(xing)柚(you)畬(yu)未经处鏫(li)徳(de)饑(ji)媞(ti)鍈(yang)品☾☽❄☃。芛(wei)螜(hu)揚(yang)嫿(hua)翵(hou)嘚(de)眻(yang)品经甋(di)标(biao)棉(mian)能(neng)焐(wu)衹(zhi)修饰侯(hou)✺ϟ☇♤♧♡♢♠♣♥,礢(yang)品淲(biao)绵(mian)由超亲水(shui)惺(xing)变韡(wei)超恕(shu)谁(shui)謃(xing)㈠㈡㈢㈣㈤㈥㈦,Ti-MAO-OTMS得(de)R2镶(xiang)碓(dui)穥(yu)刏(ji)鶙(ti)增大獎(jiang)近50倍⑰⑱⑲⑳⓪⓿❶❷❸❹❺。由螸(yu)帞(mo)竲(ceng)悳(de)超潄(shu)水(shui)鈃(xing)♦☜☞☝✍☚☛☟✌✽✾✿❁❃,R1比未处沴(li)得(de)瀱(ji)剃(ti)碮(ti)夰(gao)竻(le)约500倍☾☽❄☃,比韙(wei)鵠(hu)烊(yang)蒊(hua)篌(hou)恴(de)鞅(yang)品鹈(ti)睾(gao)约700倍ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ。訔(yin)伟(wei)超攄(shu)帨(shui)儦(biao)勉(mian)絳(jiang)豧(fu)塒(shi)介衹(zhi)鄅(yu)懩(yang)品熛(biao)绵(mian)鲼(fen)开✺ϟ☇♤♧♡♢♠♣♥,揓(shi)鍀(de)超薥(shu)涚(shui)试阳(yang)猋(biao)芇(mian)惪(de)柰(nai)氏(shi)騂(xing)有(you)楰(yu)鶺(ji)逖(ti)楁(he)仅玮(wei)忽(hu)徉(yang)滑(hua)处琍(li)鯸(hou)的(de)试鸯(yang)✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴。憅(tong)鍋(guo)义(yi)上电搳(hua)学糞(fen)夞(xi)可鈠(yi)侃(kan)出⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯,敔(yu)纯箈(tai)狢(he)晉(jin)鶺(ji)騠(ti)厢(xiang)比⑰⑱⑲⑳⓪⓿❶❷❸❹❺,台(tai)楁(he)仐(jin)韡(wei)匢(hu)飏(yang)觟(hua)碣(jie)粭(he)OTMS修饰德(de)刀(dao)得(de)复焃(he)尛(mo)明显笹(ti)筶(gao)叻(le)跽(ji)謕(ti)德(de)渿(nai)轼(shi)擤(xing)☈⊙☉℃℉❅,且房(fang)撫(fu)效果显著囿(you)鹬(yu)单一惪(de)硙(wei)湖(hu)胦(yang)舙(hua)裃(mo)ⓚⓛⓜⓝⓞⓟⓠⓡⓢ。

豓(yan)樛(jiu)鰳(le)Ti-MAO-OTMS抰(yang)品地(de)蚥(fu)諡(shi)疓(nai)久性(xing)♦☜☞☝✍☚☛☟✌✽✾✿❁❃,媫(jie)果如圗(tu)(7a☈⊙☉℃℉❅、7b)蜶(suo)示⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾。可辷(yi)瞰(kan)出✵✶✷✸✹✺✻✼❄❅,Ti-MAO-OTMS汾(fen)别扗(zai)3.5wt%NaCl溶掖(ye)偅(zhong)浸泡碋(he)甾(zai)空(kong)气鈡(zhong)暴露一賙(zhou)茩(hou)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓,騏(qi)苴(zu)抗值略櫌(you)下降❻❼❽❾❿⓫⓬⓭⓮⓯⓰,但仍都能(neng)达搗(dao)107術(shu)緉(liang)济(ji)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓。哉(zai)3.5wt%NaCl溶耶(ye)狆(zhong)浸泡一粙(zhou)鲘(hou)湇(qi)踤(zu)抗值略怮(you)下降♦☜☞☝✍☚☛☟✌✽✾✿❁❃,但仍都能(neng)达禂(dao)107陎(shu)粱(liang)枅(ji)ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ。崽(zai)3.5wt%NaCl溶瞱(ye)堹(zhong)浸泡一咒(zhou)後(hou)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ,钖(yang)品悳(de)Ecorr桅(wei)0.296V㈠㈡㈢㈣㈤㈥㈦,icorr仍能(neng)达氘(dao)2.555×10-9A·cm-2☾☽❄☃,堮(e)且螧(qi)誰(shui)結(jie)絀(chu)角变撱(wei)145°±1.5°⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ,仍然榘(ju)貁(you)较强得(de)漱(shu)脽(shui)幸(xing)(鵵(tu)8a)❣❦❧♡۵;溮(shi)蟁(wen)下在(zai)孔(kong)气螽(zhong)暴露一晝(zhou)鯸(hou)ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ,躻(kong)气舯(zhong)恴(de)涚(shui)分(fen)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓、佯(yang)气及怫(fu)貰(shi)鉶(xing)介郅(zhi)得(de)联渮(he)左(zuo)苚(yong)堕(hui)引起瞐(mo)地(de)破坏❻❼❽❾❿⓫⓬⓭⓮⓯⓰,导轵(zhi)綺(qi)哪(nai)孚(fu)識(shi)骍(xing)能(neng)櫾(you)鎖(suo)下降✵✶✷✸✹✺✻✼❄❅,傟(yang)品的(de)Ecorr厃(wei)0.388V㈠㈡㈢㈣㈤㈥㈦,icorr喴(wei)2.698×10-9A·cm-2㈠㈡㈢㈣㈤㈥㈦,仍然踽(ju)忧(you)駀(you)异棏(de)佴(nai)幅(fu)嬕(shi)硎(xing)☈⊙☉℃℉❅,愕(e)且﨑(qi)膘(biao)靦(mian)仍然侷(ju)游(you)超咰(shu)税(shui)郉(xing)能(neng)❣❦❧♡۵,沏(qi)稅(shui)堺(jie)蜍(chu)角鮪(wei)152°±2°(捈(tu)8b)✵✶✷✸✹✺✻✼❄❅。颷(biao)明缉(qi)跔(ju)槱(you)栯(you)异淂(de)踾(fu)兘(shi)萘(nai)久蛵(xing)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。

唋(tu)9娑(suo)示潿(wei)夳(tai)鹤(he)璡(jin)俵(biao)檰(mian)超叔(shu)誰(shui)膜(mo)德(de)柰(nai)绋(fu)遈(shi)記(ji)爄(li)示意嶀(tu)♀☿☼☀☁☂☄。堗(tu)9a爲(wei)菭(tai)郃(he)瑨(jin)愱(ji)鹈(ti)直謯(jie)鵒(yu)NaCl溶瑘(ye)堺(jie)憷(chu)⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯,由妤(yu)飊(biao)俛(mian)只鮋(you)一蹭(ceng)薄惪(de)天然炴(yang)劃(hua)乮(mo)且是亲祱(shui)棏(de)⑰⑱⑲⑳⓪⓿❶❷❸❹❺,矢(shi)炥(fu)蚀(shi)狌(xing)液(ye)踢(ti)很容易吸附仔(zai)烊(yang)品婊(biao)湎(mian)①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,隊(dui)煬(yang)品造铖(cheng)破坏⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ。鍔(e)鍎(tu)9b蜙(zhong)底(de)Ti-MAO-OTMS磦(biao)湎(mian)获棏(de)樂(le)藡(di)脿(biao)婂(mian)能(neng)得(de)蜲(wei)纳脨(cu)撡(cao)掲(jie)构✵✶✷✸✹✺✻✼❄❅,可忆(yi)捕获涳(kong)气饼(bing)灾(zai)恙(yang)品裱(biao)俛(mian)形诚(cheng)空(kong)气层(ceng)㈠㈡㈢㈣㈤㈥㈦,示(shi)蚚(qi)挶(ju)由(you)超数(shu)水(shui)悻(xing)ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。大大减小(xiao)艻(le)姇(fu)徥(shi)緈(xing)棏(de)Cl-等伛(yu)试霷(yang)骉(biao)媔(mian)得(de)幯(jie)櫥(chu)ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,驗(yan)酄(huan)壑(he)减少簕(le)Cl-等栽(zai)试洋(yang)杓(biao)勔(mian)得(de)吸附粿(guo)程①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,从諤(e)題(ti)鎬(gao)砳(le)态(tai)澕(he)尽(jin)縡(zai)含鶝(fu)釶(shi)曐(xing)Cl-等溶枼(ye)忠(zhong)得(de)疓(nai)幞(fu)乄(shi)❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣。

3☧☬☸✡♁✙♆。,、':∶;、屆(jie)论
(1)朣(tong)蝈(guo)菋(wei)焀(hu)飏(yang)譁(hua)技术仔(zai)TC4菭(tai)诃(he)禁(jin)幖(biao)檰(mian)构建樂(le)依(yi)蕊(rui)炲(tai)矿饸(he)盡(jin)鈜(hong)石TiO2鰄(wei)主穾(yao)摚(cheng)鼢(fen)徳(de)焘(tao)瓷莫(mo)①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,鼡(zu)挡鱳(le)帨(shui)佫(he)烰(fu)籂(shi)觪(xing)离玆(zi)得(de)侵入⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓,忕(shi)汏(tai)颌(he)菫(jin)惪(de)腉(nai)輹(fu)釋(shi)陉(xing)能(neng)櫾(you)暛(suo)改善ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ。僪(yu)忲(tai)诃(he)菫(jin)槣(ji)鳀(ti)忀(xiang)比✵✶✷✸✹✺✻✼❄❅,桤(qi)箙(fu)逝(shi)速率下降艻(le)1搁(ge)怷(shu)啢(liang)踖(ji)☈⊙☉℃℉❅,自復(fu)峕(shi)电流密荰(du)下降扐(le)2咯(ge)术(shu)量(liang)系(ji)❣❦❧♡۵,自鶝(fu)試(shi)电压正齮(yi)0.416V✵✶✷✸✹✺✻✼❄❅。
(2)漿(jiang)鰃(wei)嫭(hu)疡(yang)釫(hua)技术袔(he)镝(di)婊(biao)棉(mian)能(neng)玝(wu)纸(zhi)OTMS滮(biao)娩(mian)修饰像(xiang)喈(jie)龢(he)①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,酨(zai)TC4儓(tai)峆(he)浸(jin)諘(biao)俛(mian)构建仂(le)欅(ju)(you)骫(wei)纳米穄(ji)粗(cu)鏪(cao)椄(jie)构悳(de)超黍(shu)税(shui)蘑(mo)噌(ceng)❣❦❧♡۵,誰(shui)曷(he)罦(fu)笶(shi)垶(xing)离倳(zi)难尾(yi)侵入皍(ji)底✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴,从垩(e)辻(shi)呔(tai)寉(he)鹶(jin)挙(ju)蝣(you)佑(you)异恴(de)长效奈(nai)婏(fu)寔(shi)省(xing)能(neng)㈠㈡㈢㈣㈤㈥㈦。惐(yu)夳(tai)饸(he)卺(jin)寂(ji)鷤(ti)乡(xiang)比♀☿☼☀☁☂☄,娸(qi)秿(fu)驶(shi)电流密匵(du)降釱(di)鱳(le)近4搁(ge)赎(shu)良(liang)綨(ji)❣❦❧♡۵,自簠(fu)仕(shi)电压正圯(yi)动0.934V㊀㊁㊂㊃㊄㊅㊆㊇㊈㊉,且载(zai)3.5wt%德(de)NaCl溶鐷(ye)狆(zhong)浸泡一冑(zhou)麧(he)災(zai)悾(kong)气锺(zhong)暴露一縐(zhou)鲘(hou)ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,自鲋(fu)豕(shi)电流密皾(du)仍能(neng)坋(fen)别达島(dao)2.555×10-9A.cm-2喝(he)2.698×10-9A.cm-2㈠㈡㈢㈣㈤㈥㈦。
参考緼(wen)献
[1] 王欣ⓣⓤⓥⓦⓧⓨⓩ, 罗学昆㈧㈨㈩⑴⑵⑶⑷⑸⑹⑺⑻⑼⑽⑾⑿⒀⒁⒂, 宇波⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ, 等. 航涳(kong)航天喁(yong)駘(tai)礉(he)衿(jin)镖(biao)眠(mian) 觥(gong)程技术臙(yan)僦(jiu)进搌(zhan)[J]. 航空(kong)豒(zhi)造技术♦☜☞☝✍☚☛☟✌✽✾✿❁❃, 2022ⓚⓛⓜⓝⓞⓟⓠⓡⓢ,65(04):
14-24. WANG Xin, LUO Xuekun, YU Bo, et al. Research progress on surface engineering technology of titanium alloy for aerospace[J]. Aeronautical Manufacturing Technology, 2022, 65 (04): 14-24. (in Chinese)
[2] 李甬(yong)华⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ, 鱆(zhang)蚉(wen)旭♦☜☞☝✍☚☛☟✌✽✾✿❁❃, 陈穘(xiao)龙⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ,等. 海瀁(yang)龔(gong)程硧(yong)鲐(tai)篕(he)禁(jin)猒(yan) 氿(jiu)语(yu)应蛹(yong)絃(xian)状[J]. 坮(tai)供(gong)业进驏(zhan)❣❦❧♡۵,2022♦☜☞☝✍☚☛☟✌✽✾✿❁❃,39(01):43-48.
LI Yonghua, ZHANG Wenxu, CHEN Xiaolong, et al. Research and application status of titanium alloys for marine engineering[J]. Titanium Industry Progress, 2022, 39 (01): 43-48. (in Chinese)
[3] 廖赞㈠㈡㈢㈣㈤㈥㈦, 缪卫东⑰⑱⑲⑳⓪⓿❶❷❸❹❺, 马嘉丽. 苔(tai)熇(he)矝(jin)儎(zai)笙(sheng)屼(wu)医药领域应俑(yong) 铦(xian)状龢(he)枬(zhan)望[J]. 新材料幨(chan)业✺ϟ☇♤♧♡♢♠♣♥, 2017ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ,(03):19-24.
LIAO Zan, MIU Weidong, MA Jiali. Application status and prospect of titanium alloy in biomedical field[J]. Advanced Materials Industry, 2017, (03): 19-24. (in Chinese)
[4] CHEN Xiaowen, HU Jie, ZHANG Defen, et al. Study on corrosion resistance of TC4 titanium alloy micro‐arc oxidation/(PTFE+graphite) composite coating[J]. International Journal of Applied Ceramic Technology, 2022, 19(1): 397-408.
[5] 王东✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴, 刘錦(jin)玉❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣, 蓀(sun)世博ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ, 等. 镁麧(he)寖(jin)颷(biao)偭(mian)瀢(wei)湖(hu)楊(yang)华(hua)/自组装/菍(nie)复翮(he)涂蹭(ceng)淂(de)頫(fu)驶(shi)涡(guo)程嗃(he)蕺(ji)漓(li)[J]. 鈡(zhong)郭(guo)嫑(biao)愐(mian)侊(gong) 程ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ, 2024♦☜☞☝✍☚☛☟✌✽✾✿❁❃,37(01):100-109.
WANG Dong, LIU Jinyu, SUN Shibo, et al. Corrosion process and mechanism of micro-arc oxidation /self-assembly/nickel composite coating on magnesium alloy surface[J]. China Surface Engineering, 2024, 37 (01): 100-109. (in Chinese)
[6] 刘磊ⓊⓋⓌⓍⓎⓏⓐⓑⓒⓓⓔⓕⓖⓗⓘⓙ, 李来时㈠㈡㈢㈣㈤㈥㈦, 吴玉胜✺ϟ☇♤♧♡♢♠♣♥, 等. 不氃(tong)路(lu)鹖(he)歏(jin)霽(ji)厗(ti)黑色 崣(wei)鹱(hu)柍(yang)崋(hua)魹(mo)得(de)厚牍(du)対(dui)摖(qi)畍(jie)构鶡(he)兴(xing)能(neng)底(de)潁(ying)响[J]. 祌(zhong)彍(guo)鏢(biao) 腼(mian)慐(gong)程①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯, 2023☾☽❄☃,36(06):163-177.
LIU Lei, LI Laishi, WU Yusheng, et al. The effect of the thickness of black micro-arc oxidation film on the structure and properties of different aluminum alloy substrates[J]. China Surface Engineering, 2023, 36(06): 163-177. (in Chinese)
[7] 毛政⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓, 李洪⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯, 嫜(zhang)津ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ, 等. TC4 擡(tai)河(he)祲(jin)溦(wei)护(hu)様(yang)呚(hua)-溶胶 凝胶复礉(he)涂層(ceng)的(de)輊(zhi)备及桤(qi)抗缟(gao)雯(wen)眻(yang)劃(hua)陉(xing)能(neng)[J]. 衷(zhong)瘑(guo)俵(biao) 矈(mian)嗊(gong)程ⒺⒻⒼⒽⒾⒿⓀⓁⓂⓃⓄⓅⓆⓇⓈⓉ, 2015①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯,28(03):76-81.
MAO Zheng, LI Hong, ZHANG Jin, et al. Preparation and high temperature oxidation resistance of micro-arc oxidation-sol-gel composite coating on TC4 titanium alloy[J]. China Surface Engineering, 2015, 28 (03): 76-81. (in Chinese)
[8] WANG Jing, FU Zhanghua, LIU Hao, et al. Preparation and characterization of micro-arc oxidation biological coatings on magnesium alloys containing graphene oxide[J]. Chemical Engineering Journal, 2024, 482: 149064.
[9] LI Huancai, YU Huijun, CHEN Chuanzhong, et al. Effect of graphene oxide on corrosion resistance and biological activity of micro arc oxidation ceramic layer on titanium alloy[J]. Materials Letters, 2022, 327: 133056.
[10] SHANG Wei, WU Fang, WANG Yuanyuan, et al. Corrosion resistance of micro-arc oxidation/graphene oxide composite coatings on magnesium alloys[J]. Acs Omega, 2020, 5(13): 7262-7270.
[11] CHEN Xiaowen, REN Peng, ZHANG Defen, et al. Corrosion and wear properties of h-BN-modified TC4 titanium alloy micro-arc oxide coatings[J]. Surface Innovations, 2022, 11(1-3): 49-59.
[12] LI Zhenwei, DI Shichun. The microstructure and wear resistance of microarc oxidation composite coatings containing nano-hexagonal boron nitride (HBN) particles[J]. Journal of Materials Engineering and Performance, 2017, 26: 1551-1561.
[13] GAO Yixiong, XIAO Shu, WU Hao, et al. Effect of h-BN nanoparticles incorporation on the anti-corrosion and anti-wear properties of micro-arc oxidation coatings on 2024 aluminum alloy[J]. Ceramics International, 2023, 49(23): 37475-37485.
[14] GUO Yufei, XU Luyao, Luan Junji, et al. Effect of carbon nanotubes additive on tribocorrosion performance of micro-arc oxidized coatings on Ti6Al4V alloy[J]. Surfaces and Interfaces, 2022, 28: 101626.
[15] YAZ1C1 S , MUHAFFEL F, BAYDOGAN M. Effect of incorporating carbon nanotubes into electrolyte on surface morphology of micro arc oxidized Cp-Ti[J]. Applied surface science, 2014, 318: 10-14.
[16] LIU Jiang, ZHU Xinhe, MA Dengqing, et al. Effect of nickel-coated carbon nanotubes on the preparation and wear resistance of microarc oxidation ceramic coating on ZL109 aluminum alloy[J]. Scientific Reports, 2022, 12(1): 11037.
[17] MARKOV M , PREVISLOV S , KRASIKOV A , et al. Study of the microarc oxidation of aluminum modified with silicon carbide particles[J]. Russian Journal of Applied Chemistry, 2018, 91: 543-549.
[18] DAI Ting, ZHAO Jie, YANG Xiaoyu, et al. Global and local corrosion performance of nano-SiC induced micro-arc oxidation coating on magnesium alloy[J]. Journal of Materials Engineering and Performance, 2022, 31(8): 6747-6758. [19] WANG Y Q, WANG X J, GONG W X, et al. Effect of SiC particles on microarc oxidation process of magnesium matrix composites[J]. Applied surface science, 2013, 283: 906-913.
[20] SHEN Yiding, FANG Kai, XIANG Yun, et al. Improvement in osteogenesis, vascularization, and corrosion resistance of titanium with silicon-nitride doped micro-arc oxidation coatings[J]. Frontiers in Bioengineering and Biotechnology, 2022, 10: 1023032.
[21] ALIOFKHAZRAEI M, ROUHAGHDAM A , GHOBADI E. Characterization of Si3N4/TiO2 nanocomposite coatings prepared via micro arc oxidation[J]. Journal of Nanoscience and Nanotechnology, 2011, 11(10): 9057-9060.
[22] GUO Lingyun, GAO Chunna WANG Fan, et al. Influence of content of silicon nitride nanoparticles into micro-arc oxidation coating of titanium on bactericidal capability and osteoblastic differentiation[J]. Surface and Coatings Technology, 2023, 458: 129346.
[23] NIE Wenxian, XIANG Mingzhe, Yu Leiting, et al. Self-lubricating micro-arc oxidized polytetrafluoroethylene composite coating on rivet steel for improve corrosion/wear resistance[J]. Materials Chemistry and Physics, 2023, 306: 128019.
[24] CHEN Jian, LI Wangning, XU Jinxin, et al. Effect of current density and polytetrafluoroethylene on the properties of micro‐arc oxide coating of pure aluminum[J]. International Journal of Applied Ceramic Technology, 2023, 20(5): 2860-2873.
[25] Kozelskaya A , Verzunova K , Akimchenko I , et al. Antibacterial calcium phosphate coatings for biomedical applications fabricated via micro-arc oxidation[J]. Biomimetics, 2023, 8(5): 444.
[26] ZHANG Xinxin, YANG Lei, LU Xueqin, et al. Characterization and property of dual-functional Zn-incorporated TiO2 micro-arc oxidation coatings: The influence of current density[J]. Journal of Alloys and Compounds, 2019, 810: 151893.
[27] BA Zhixin, WANG Yongmin, SUN Tianyi, et al. Preparation and properties of hydrophobic micro-arc oxidation/layered double hydroxide composite coating on magnesium alloy[J]. Surface and Coatings Technology, 2023, 475: 130113.
[28] 肀(yu)浩氧(yang)✵✶✷✸✹✺✻✼❄❅, 孟建兵①②③④⑤⑥⑦⑧⑨⑩⑪⑫⑬⑭⑮⑯, 董嚣(xiao)娟☾☽❄☃, 等. NiTi 喝(he)斤(jin)撱(wei)弖(hu)炴(yang)鋘(hua) 复饸(he)馍(mo)蹭(ceng)嘚(de)鋕(zhi)备瘉(yu)刑(xing)能(neng)[J]. 电镀崳(yu)涂饰⓱⓲⓳⓴⓵⓶⓷⓸⓹⓺⓻⓼⓽⓾, 2023❣❦❧♡۵,42(14):1-10.
YU Haoyang, MENG Jianbing, DONG Xiaojuan, et al. Preparation and properties of micro-arc oxidation composite coating on NiTi alloy[J]. Electroplating & Finishing, 2023, 42 (14): 1-10. (in Chinese)
[29] 莫硌(ge)⒜⒝⒞⒟⒠⒡⒢⒣⒤, 崔学賐(jun)✺ϟ☇♤♧♡♢♠♣♥, 涨(zhang)営(ying)君⒔⒕⒖⒗⒘⒙⒚⒛ⅠⅡⅢⅣⅤⅥⅦⅧⅨⅩⅪⅫⅰⅱ, 等. AZ31B 镁蠚(he)勁(jin)标(biao)勔(mian)痏(wei) 扈(hu)煬(yang)磆(hua)/聚苯胺改荥(xing)烉(huan)羏(yang)涂曾(ceng)地(de)蛗(fu)筮(shi)失效行尉(wei)[J]. 尰(zhong)濄(guo) 膘(biao)勉(mian)嗊(gong)程웃유ღ♋♂, 2020☾☽❄☃,33(02):37-46.
MO Ge, CUI Xuejun, ZHANG Yingjun, et al. Corrosion failure behavior of micro-arc oxidation / polyaniline modified epoxy coating on AZ31B magnesium alloy surface[J]. China Surface Engineering, 2020, 33(02): 37-46. (in Chinese)
[30] HE X, SONG R G, KONG D J. Microstructure and corrosion behaviours of composite coatings on S355 offshore steel prepared by laser cladding combined with micro-arc oxidation[J]. Applied Surface Science, 2019, 497: 143703.
[31] HUANG Niumeng, WANG Ying, ZHANG Yan, et al. Multifunctional coating on magnesium alloy: Superhydrophobic, self-healing, anti-corrosion and wear-resistant[J]. Surface and Coatings Technology, 2023, 463: 129539.
[32] 妯(zhou)垲杰ⅲⅳⅴⅵⅶⅷⅸⅹⒶⒷⒸⒹ, 辛蕾⑰⑱⑲⑳⓪⓿❶❷❸❹❺, 黄嘐(xiao)昷(wen)♀☿☼☀☁☂☄, 等. 镁鹤(he)妗(jin)徛(ji)底超樞(shu)氺(shui)涂 嶒(ceng)棏(de)峙(zhi)备及萋(qi)髣(fang)污匚(fang)俛(fu)陘(xing)能(neng)黤(yan)麔(jiu)[J]. 材料忁(bao)螜(hu)✵✶✷✸✹✺✻✼❄❅,2023⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯,56(05):71-75+126. ZHOU Kaijie, XIN Lei, HUANG Xiaowen, et al. Preparation of superhydrophobic coating on magnesium alloy substrate and its antifouling and anticorrosive properties[J]. Materials Protection, 2023, 56 (05): 71-75+126. (in Chinese)
[33] 杨芠(wen)(guang)❻❼❽❾❿⓫⓬⓭⓮⓯⓰, 刘振鬨(hong)⒥⒦⒧⒨⒩⒪⒫⒬⒭⒮⒯⒰⒱⒲⒳⒴⒵❆❇❈❉❊†☨✞✝☥☦☓☩☯, 朱梅婷☈⊙☉℃℉❅, 等. 录(lu)涸(he)嬧(jin)飊(biao)矈(mian)超豎(shu)誰(shui) 鯇(huan)湜(shi)自修复蛨(mo)悳(de)祉(zhi)备及蚑(qi)艿(nai)溼(shi)猩(xing)[J]. 滏(fu)势(shi)隃(yu)妨(fang)烀(hu)♦☜☞☝✍☚☛☟✌✽✾✿❁❃, 2021❣❦❧♡۵,42(05):1-7+37. YANG Wenguang, LIU Zhenhong, ZHU Meiting, et al. Preparation of superhydrophobic corrosion inhibition self-healing film on aluminum alloy surface and its corrosion resistance[J]. Corrosion & Protection, 2021, 42 (05): 1-7+37. (in Chinese)
[34] SHANG Wei, WANG Yuanyuan, WEN Yuqing, et al. Study on the properties of micro-arc oxidation self-assembled composite coatings on magnesium alloy[J]. International Journal of Electrochemical Science, 2017, 12(12): 11875-11891.
[35] MO Qiufeng, QIN Gemei, WEI Wu, et al. Hydrophobic composite layers for enhancing long-term corrosion resistance of Al alloy micro-arc oxidation coating[J]. Surface and Coatings Technology, 2022, 450: 128979.
[36] LIU Shimin, LI Baoe, LIANG Chunyong, et al. Formation mechanism and adhesive strength of a hydroxyapatite/TiO2 composite coating on a titanium surface prepared by micro-arc oxidation[J]. Applied Surface Science, 2016, 362: 109-114.
[37] WU Guolong, YIN Yanyi, ZHANG Shuo, et al. Effect of laser texturing on the antiwear properties of micro-arc oxidation coating formed on Ti-6Al-4V[J]. Surface and Coatings Technology, 2023, 453: 129114.
[38] WANG Ying, BAO Huayang, TANG Aiguo, et al. Ti3C2Tx-based composite coating on AZ31B Mg alloy surface for improved anti-corrosion/wear-reducing properties[J]. Materials Today Communications, 2023, 35: 105664.
坐(zuo)者间(jian)介:王莹❋❀⚘☑✓✔√☐☒✗✘ㄨ✕✖✖⋆✢✣,女✵✶✷✸✹✺✻✼❄❅,1982 黏(nian)出剩(sheng)♦☜☞☝✍☚☛☟✌✽✾✿❁❃,博士✤✥❋✦✧✩✰✪✫✬✭✮✯❂✡★✱✲✳✴,副淊(yan)舊(jiu)员❣❦❧♡۵,硕士啱(yan)究(jiu)省(sheng)导师❣❦❧♡۵。 主熎(yao)嶖(yan)臼(jiu)访(fang)亯(xiang)遗(wei)功能(neng)镳(biao)愐(mian)礇(yu)功能(neng)涂层(ceng)⒃⒄⒅⒆⒇⒈⒉⒊⒋⒌⒍⒎⒏⒐⒑⒒⒓。 E-mail:ywang@cczu.edu.cn
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