
速(su)度(du)處理BARKSDALE壓力(li)開(kai)關(guan)CD2H-H2SS
南京惠言(yan)達(da)電(dian)氣(qi)有限公(gong)司(si)成(cheng)立於2019年,座(zuo)落在(zai)南京六(liu)合(he)市商(shang)圈。9年(nian)備(bei)件(jian)銷售(shou)積(ji)累(lei),公司主(zhu)要經(jing)營(ying)歐(ou)、美(mei)等國的(de)閥門、過(guo)濾(lv)設備(bei)、編碼器(qi)、傳感器(qi)、儀器(qi)儀表、及各(ge)種(zhong)自(zi)動(dong)化(hua)產品(pin),公(gong)司全力貫徹“以質(zhi)優價廉(lian)的(de)產品(pin)和完善(shan)到位的(de)技(ji)術(shu)服務客(ke)戶”的(de)經(jing)營(ying)宗(zong)旨(zhi),服務於國內(nei)的(de)流體(ti)控制(zhi)和(he)自(zi)動(dong)化(hua)控制(zhi)領域。節(jie)省(sheng)了(le)中間環節(jie)的(de)流轉費(fei)用(yong),能(neng)夠(gou)把(ba)更(geng)優惠的(de)價格(ge)提(ti)供(gong)給(gei)用(yong)戶(hu)。通過發(fa)展(zhan)我(wo)司(si)已(yi)經(jing)自(zi)動(dong)化(hua)設備(bei)和(he)備件(jian)供(gong)應(ying)商(shang),主(zhu)營產(chan)品(pin)廣泛應(ying)用(yong)於冶金、造紙(zhi)、礦(kuang)山、石(shi)化(hua)、能(neng)源(yuan)、集裝(zhuang)箱(xiang)碼(ma)頭、汽車(che)、水(shui)利(li)、市(shi)政(zheng)工(gong)程(cheng)及(ji)環保以(yi)及(ji)各(ge)類軍(jun)事、航(hang)空(kong)航(hang)天(tian)、科(ke)研等(deng)領域。
圖(tu)片(pian)可(ke)能(neng)與實(shi)物(wu)存在差(cha)異(yi),訂貨前(qian)請(qing)聯(lian)系(xi)本(ben)司確(que)認(ren)
BARKSDALE CD2H-A80SS 壓力(li)開(kai)關(guan)
BARKSDALE CD2H-A150SS 壓力(li)開(kai)關(guan)
BARKSDALE CD2H-H2SS 壓力(li)開(kai)關(guan)
BARKSDALE CD2H-H18SS 壓力(li)開(kai)關(guan)
BARKSDALE VCD2H-A3SS 壓力(li)開(kai)關(guan)
BARKSDALE VCD2H-H18SS 壓力(li)開(kai)關(guan)
BARKSDALE UDS7-202158225+插(cha)頭
BARKSDALE UDS7-202158325+插頭
BARKSDALE UDS7-202154325+插頭
BARKSDALE UTS7-08-5-5-1-07+插頭
BARKSDALE UPA21-250BAR 0-250BAR 4-20MA G1/4
BARKSDALE USD7 0428-043 K310571/019 400bar 12-32v/dc
BARKSDALE USD7 0428-043 K310571/019 40bar 12-32v/dc
BARKSDALE DPD1T-M3SS 0.33-3PST
BARKSDALE DZT-H18SS 0.4-18PSI
BARKSDALE BFS20-0-G3/4-MS-NO-ST8-241/min
BARKSDALE UPA1-040
BARKSDALE UDS7帶(dai)接頭 0-10bar DC24V 2SP
BARKSDALE UTA3-1-08-01-2-06+907-0357+TFS 01-2-200(要求帶(dai)電(dian)插(cha)頭+保護(hu)套(tao))
BARKSDALE UAS3 003-024+0099-001 4-20mA
BARKSDALE UTS7-20-08-3-2-1-03+907-0357 +TFS01-2-050((帶(dai)電(dian)插(cha)頭+保護(hu)套(tao)
BARKSDALE UDS7-2-1-58-5-5-5+907-0185 (要求帶(dai)電(dian)插(cha)頭)
BARKSDALE UDS7-2-1-54-5-5-5+907-0185 (要求帶(dai)電(dian)插(cha)頭)
BARKSDALE UDS7 帶(dai)接頭 0-10bar DC24V 2SP
BARKSDALE UDS-7-2-1-54-5-2-5
BARKSDALE UPA2-58-1-1-2-02
BARKSDALE 8151-PL1-B
BARKSDALE UTA 3-100 PT100 G1/4" d=50MM
BARKSDALE XT-R12/0221-358/8-35V/DC 液位計(ji)
BARKSDALE BNA-S22-DN20-700/K604049 0332-595
BARKSDALE SW2000 K6128229/033/PN 400Bar PM 600Bar/2SP 15-32VDC
BARKSDALE BNA-S22-DN15-XXX-VA30/02-MA- -3GK01
BARKSDALE BNA-S22-DN30-1000/1-VA30/02 -3GKOIL
BARKSDALE USA3+UTA3 P/N:CV68-024
BARKSDALE 0303-011 UMR-GK01-JP67
BARKSDALE UDS7-20-2-1-57-1-2-5 +插頭SW2000
BARKSDALE CP38-050 TS2000 4-20mA/1SP
BARKSDALE 96211-BB1-T2
BARKSDALE UDS7-16-G-2 壓力(li)開(kai)關(guan)
BARKSDALE 8142-PL1-B 壓力(li)繼電(dian)器(qi)
BARKSDALE GK01 ART.NO:0303-016
BARKSDALE D1T-H2SS
BARKSDALE DPD1T-H18SS ADJUTABLE RANGE: 0.4-18PSI,PROOF PRESSURE 60PSI
BARKSDALE 9653-1-WA5-70PSI
BARKSDALE BNA-S22-DN20-800/1-VA30702-MA- 3GK03
BARKSDALE UAS3V3 CU68-024 PT100 探頭帶(dai)1米(mi)長軟連接
BARKSDALE BNA-S22-DN20-30000322-597
BARKSDALE CT108-100 4130481015
BARKSDALE E1H-R90(SWITCH HUMBER) 6.0~90PSI 414~6.21BAR
BARKSDALE BNA-S22-DN20-700/1-VA30/02-MA- AR-4GK01-XT 液位控(kong)制(zhi)器(qi)
BARKSDALE UNS1000-MS/T1-KL6-BN25-L2/1.1 L0=600 L1=350 L2=250
BARKSDALE 8141-PL1-D 壓力(li)傳感器(qi)
BARKSDALE 壓力(li)開(kai)關(guan) B2T-H48SS
BARKSDALE UAS3+UTA3-1-08-1-2-01
BARKSDALE UTS7-20-08-2-2-1-02
BARKSDALE BNA-S22-DN20-750/1-VA30/02-MA- AR-3GK01 L=750
BARKSDALE BFS-20-0-G3/4-MS-NO-ST 10/30L/MIN
BARKSDALE BNA-S22-DN20-750/1-VA30/02-MA- -AR-3GK01
BARKSDALE UDS7-2154225,DC24V,2SP,PN:10BA R,PM:15BAR 含插頭
BARKSDALE UDS7-2-1-57-2-2-5
BARKSDALE BFS-20-0-G3/4-MS-NO-ST 20-60L/MIN
BARKSDALE BNA-S22-DN15-900/1-VA30/02-MA- 3GK01 L=900
BARKSDALE BNA-S22-DN15-1200-VA30/02-MA -3GK01 L=1200
BARKSDALE UNS1000-MS/T1-KL6-BN25-L3/1.1. .1
BARKSDALE BNA-S22-DN25-1100/1-VA30/02-MA -AR-3GK01L-X0 DV24V 4-20MA
BARKSDALE 8141-CA1-B5MK
BARKSDALE BFS-20-0-G1-SS-NO-ST (30-90L/MIN)
BARKSDALE BFS-20-OL-G1/2-MS-NO-ST (2-8L/MIN)
BARKSDALE BFS-20-OL-G1-MS-NO-ST (8-24L/MIN)
BARKSDALE UDS7-2154555 2SP/4-20mA 10-15Bar
BARKSDALE UDS7 4-20MA 2SP 工作(zuo)壓力(li)400BAR 實(shi)驗壓力(li)600BAR
BARKSDALE UAS3V3 CU68-024 4-20MA 24VDC
BARKSDALE 油(you)氣(qi)分(fen)配器(qi)OAD-2-10/6
BARKSDALE 油(you)氣(qi)分(fen)配器(qi)A2500C/3-10S-10S-20T
BARKSDALE 油(you)氣(qi)分(fen)配器(qi)OAD-6-10/6
BARKSDALE 油(you)氣(qi)分(fen)配器(qi)OAD-4-10/6
BARKSDALE 油(you)氣(qi)分(fen)配器(qi)A2500C/3-15S-15S-25T
BARKSDALE D2T-M80SS 0.28-5.5bar 壓力(li)開(kai)關(guan)
BARKSDALE D2T-M80/2S1GA1 MAX M1NWItH 針(zhen)閥
BARKSDALE UTA3 CT08-100 414067//011 TMIN O度 4-20MA
BARKSDALE UAS3R3 CU68-024 414096/011 EINGANG 4-20MA
BARKSDALE 0303-033 FE60679/026
BARKSDALE UDS7-2-1-58-2-2-5
BARKSDALE UDS7-2-1-56-2-2-5
BARKSDALE UNS2000-ABS 230VAC 1A
BARKSDALE UTS7-0855104
BARKSDALE UTA3-1-08-01-2-04+907-0357 +TFS01-2-100
BARKSDALE UPA25811201+插(cha)頭
BARKSDALE UAS3V3 數字式(shi)溫(wen)度表
BARKSDALE UDS3V3 數字式(shi)溫(wen)度表
BARKSDALE UAS3V3 CU68-024 數字式(shi)溫(wen)度表
BARKSDALE SW2000 CP38-001 壓力(li)傳感器(qi)
BARKSDALE SW200 CP38-020 壓力(li)傳感器(qi)
BARKSDALE SW21000 CP38-040 壓力(li)傳感器(qi)
BARKSDALE UAS3V3 CP68-020 數字式(shi)溫(wen)度表
隨(sui)著現代(dai)機械(xie)制(zhi)造行(xing)業(ye)不(bu)斷(duan)發(fa)展(zhan),在(zai)機械(xie)制(zhi)造中(zhong)越(yue)來越多(duo)的(de)新(xin)技(ji)術(shu)及新(xin)工(gong)藝得(de)以(yi)廣泛應(ying)用(yong),並(bing)且發(fa)揮著十(shi)分(fen)重要的(de)作(zuo)用(yong),而(er)金屬(shu)切(qie)削技(ji)術(shu)便是(shi)其中比(bi)較(jiao)重要的(de)壹(yi)種。在當(dang)前(qian)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong),為能(neng)夠(gou)使金屬(shu)切(qie)削技(ji)術(shu)得(de)以(yi)更(geng)好應(ying)用(yong),使(shi)其作(zuo)用(yong)及(ji)價值(zhi)更好發(fa)揮,十分(fen)重要的(de)壹(yi)點就是(shi)應(ying)當(dang)對(dui)金屬(shu)切(qie)削技(ji)術(shu)進(jin)行(xing)創(chuang)新(xin),使(shi)其(qi)更(geng)好滿足工藝要求及(ji)需(xu)求(qiu),為機械(xie)制(zhi)造提(ti)供(gong)更(geng)好支持(chi)。
關鍵詞(ci):機械(xie)制(zhi)造;金屬(shu)切(qie)削技(ji)術(shu);創新(xin)
在(zai)目(mu)前(qian)機械(xie)制(zhi)造行(xing)業(ye)不(bu)斷(duan)發(fa)展(zhan)過(guo)程(cheng)中(zhong),對(dui)於機械(xie)制(zhi)造工(gong)藝水(shui)平(ping)也(ye)有著(zhe)越(yue)來越高的(de)要求,因而(er)提(ti)升(sheng)機械(xie)制(zhi)造工(gong)藝水(shui)平(ping)十(shi)分(fen)必(bi)要。在機械(xie)制(zhi)造中(zhong),為能(neng)夠(gou)使整體(ti)工藝水(shui)平(ping)得(de)以(yi)有(you)效提(ti)升(sheng),應(ying)當(dang)對(dui)相(xiang)關(guan)技(ji)術(shu)進(jin)行(xing)創(chuang)新(xin),其(qi)中(zhong)必(bi)要重要的(de)壹(yi)個方面(mian)就(jiu)是(shi)應(ying)當(dang)對(dui)及技(ji)術(shu)切削技(ji)術(shu)實(shi)行(xing)創(chuang)新(xin)。本(ben)文(wen)主(zhu)要就針(zhen)對(dui)機械(xie)制(zhi)造中(zhong)金屬(shu)切(qie)削技(ji)術(shu)的(de)創新(xin)進(jin)行(xing)簡單分(fen)析,以(yi)便為金屬(shu)切(qie)削技(ji)術(shu)創新(xin)的(de)實(shi)現提(ti)供(gong)更(geng)好依據(ju)及(ji)支持(chi)。
1機械(xie)制(zhi)造中(zhong)金屬(shu)切(qie)削技(ji)術(shu)應(ying)用(yong)現(xian)狀
就目(mu)前(qian)機械(xie)制(zhi)造實(shi)際情況而(er)言(yan),金屬(shu)切(qie)削技(ji)術(shu)應(ying)用(yong)中(zhong)的(de)主(zhu)要問題(ti)就是(shi)其技(ji)術(shu)性能(neng)仍(reng)舊缺(que)乏全(quan)面完善(shan)。對(dui)於傳統(tong)金屬(shu)切(qie)削技(ji)術(shu)而(er)言(yan),主(zhu)要特點(dian)就(jiu)是(shi)穩定操作(zuo),並(bing)不能(neng)使生(sheng)產效率得(de)以(yi)提(ti)升(sheng),其(qi)在實(shi)際應(ying)用(yong)中(zhong)表現出(chu)較(jiao)明(ming)顯壹(yi)般(ban)性,在(zai)對(dui)金屬(shu)蓋(gai)子(zi)切割(ge)過程(cheng)中(zhong),其(qi)轉速為2012m/min,這種速度(du)對(dui)於金屬(shu)生(sheng)產量(liang)較(jiao)大(da)的(de)壹(yi)些(xie)企業(ye)而(er)言(yan),並(bing)不能(neng)產生(sheng)較(jiao)理想的(de)效益(yi)。在傳統(tong)切(qie)削技(ji)術(shu)實(shi)際應(ying)用(yong)過(guo)程(cheng)中(zhong),不(bu)但未能(neng)夠(gou)使生產中的(de)成(cheng)本(ben)得(de)以(yi)減(jian)少(shao),反(fan)而(er)導致產品質(zhi)量(liang)明(ming)顯(xian)降(jiang)低。隨(sui)著細金屬(shu)及(ji)超(chao)細(xi)金屬(shu)材(cai)料不(bu)斷(duan)出現,導致金屬(shu)切(qie)削技(ji)術(shu)在實(shi)際應(ying)用(yong)中(zhong)受到壹(yi)定限制(zhi),無法使(shi)切(qie)割(ge)力度得(de)到較(jiao)好保證(zheng),從(cong)而(er)導致細金屬(shu)及(ji)超(chao)細(xi)金屬(shu)材(cai)料在(zai)切(qie)割過(guo)程(cheng)中(zhong)受(shou)到損害(hai),同(tong)時,對(dui)於規模(mo)較(jiao)小(xiao)的(de)壹(yi)些(xie)金屬(shu),利(li)用(yong)傳統(tong)金屬(shu)切(qie)削技(ji)術(shu)也(ye)無法準(zhun)實(shi)行(xing)切(qie)割(ge)。由(you)於目(mu)前(qian)金屬(shu)種(zhong)類正在(zai)不斷(duan)增(zeng)多(duo),若(ruo)不(bu)能(neng)對(dui)金屬(shu)切(qie)割技(ji)術(shu)實(shi)行(xing)創(chuang)新(xin),則(ze)無法使(shi)實(shi)際需(xu)求(qiu)得(de)到滿足,因而(er)對(dui)金屬(shu)切(qie)割技(ji)術(shu)實(shi)行(xing)創(chuang)新(xin)也(ye)就十(shi)分(fen)必(bi)要。
2機械(xie)制(zhi)造中(zhong)金屬(shu)切(qie)削技(ji)術(shu)創新(xin)機理
2.1金屬(shu)切(qie)削刀(dao)應(ying)用(yong)
在(zai)實(shi)際金屬(shu)切(qie)削過程(cheng)中(zhong),若(ruo)以前(qian)刀(dao)應(ying)對(dui)切削,這種情況下會(hui)有壹(yi)部分(fen)力(li)量(liang)在(zai)較(jiao)短(duan)測(ce)懸梁臂(bi)上產生(sheng)作(zuo)用(yong),從(cong)而(er)導致金屬(shu)切(qie)削設備(bei)會(hui)出(chu)現彎曲狀況,而(er)其(qi)中(zhong)的(de)滑(hua)移(yi)線(xian)會(hui)表現為凸(tu)起狀況,終所(suo)導致的(de)結(jie)果(guo)為切削的(de)頂(ding)部與(yu)底(di)部之(zhi)間會(hui)存在較(jiao)大(da)差異(yi),導致金屬(shu)有(you)彎曲(qu)折(zhe)斷(duan)情況發(fa)生。因此(ci),在金屬(shu)切(qie)削過程(cheng)中(zhong),需(xu)要對(dui)切削刀(dao)進(jin)行(xing)合(he)理應(ying)用(yong),對(dui)於其力(li)度及(ji)方向各個(ge)方面(mian)因素應(ying)當(dang)充(chong)分合(he)理把(ba)握,以避免(mian)出(chu)現上述(shu)情況,也(ye)就能(neng)夠(gou)使金屬(shu)切(qie)削得(de)以(yi)更(geng)好進(jin)行(xing),使(shi)切(qie)削質量(liang)及(ji)水(shui)平(ping)能(neng)夠(gou)得(de)以(yi)有(you)效提(ti)升(sheng)。
2.2金屬(shu)切(qie)削技(ji)術(shu)中塗層應(ying)用(yong)
在(zai)當前(qian)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong),新(xin)型金屬(shu)切(qie)削技(ji)術(shu)的(de)應(ying)用(yong)發(fa)揮著十(shi)分(fen)重要的(de)作(zuo)用(yong)。目(mu)前(qian),被重視(shi)及關(guan)註(zhu)的(de)就是(shi)物(wu)理塗層(ceng),通過對(dui)塗層(ceng)結(jie)構(gou)進(jin)行(xing)創(chuang)新(xin),促(cu)使(shi)工(gong)藝品及爐(lu)子(zi)使用(yong)頻(pin)率增(zeng)加。目(mu)前(qian),金屬(shu)切(qie)削技(ji)術(shu)在汽車(che)及航(hang)空(kong)航(hang)天(tian)工(gong)業(ye)中(zhong)均(jun)有(you)著十分廣泛的(de)應(ying)用(yong),在(zai)現代社會(hui)經(jing)濟(ji)快(kuai)速(su)發(fa)展(zhan)的(de)形勢(shi)下,在金屬(shu)切(qie)割技(ji)術(shu)創新(xin)方面(mian),人(ren)們(men)的(de)要求也(ye)不斷(duan)提(ti)升(sheng)。在(zai)這種情況下,不(bu)同種(zhong)類塗層(ceng)刀(dao)得(de)以(yi)出(chu)現,促使(shi)各(ge)個(ge)行(xing)業(ye)均(jun)得(de)以(yi)較(jiao)快(kuai)發(fa)展(zhan),因而(er)在(zai)金屬(shu)切(qie)削技(ji)術(shu)中塗層的(de)使用(yong),對(dui)於切割(ge)刀(dao)韌(ren)性比(bi)較(jiao)有(you)利(li),並(bing)且在機械(xie)制(zhi)造中(zhong)對(dui)於金屬(shu)切(qie)削技(ji)術(shu)發(fa)展(zhan)起到很好的(de)促進(jin)作(zuo)用(yong),對(dui)於這壹(yi)點,相(xiang)關(guan)工(gong)作(zuo)人(ren)員應(ying)當(dang)加(jia)強註意,並且對(dui)於塗層(ceng)應(ying)當(dang)進(jin)行(xing)合(he)理應(ying)用(yong),從(cong)而(er)使(shi)金屬(shu)切(qie)削技(ji)術(shu)創新(xin)能(neng)夠(gou)得(de)以(yi)更(geng)好實(shi)現。
2.3擴充(chong)金屬(shu)切(qie)斷(duan)界限
對(dui)於金屬(shu)切(qie)削技(ji)術(shu)而(er)言(yan),其(qi)判(pan)斷(duan)依據(ju)為大應(ying)變(bian)理論,主(zhu)要就是(shi)對(dui)金屬(shu)被破(po)壞(huai)時間進(jin)行(xing)判(pan)斷(duan),其計算(suan)公(gong)式(shi)公(gong)式(shi)如(ru)下(xia):在(zai)這壹(yi)公式中(zhong)z(x)表示彎(wan)曲(qu)程(cheng)度(du)值(zhi),MA表示在(zai)Z點(dian)及與X點(dian)所(suo)產生(sheng)力(li)度(du)數值(zhi),AWAC表示半徑長(chang)度(du),利(li)用(yong)這壹(yi)公式可(ke)將(jiang)切割(ge)過程(cheng)中(zhong)所(suo)產生(sheng)剪應(ying)力(li)計(ji)算(suan)出(chu)來,其切(qie)削折(zhe)斷(duan)產生時所(suo)具備(bei)條(tiao)件(jian)就(jiu)是(shi)彎曲弧(hu)度(du)數值(zhi)、剪應(ying)力(li)及(ji)懸臂(bi)梁三者(zhe)之(zhi)間乘(cheng)積(ji)和中(zhong)間點(dian)間距(ju)離(li),利(li)用(yong)以(yi)上計算(suan)所(suo)得(de)出(chu)數值(zhi),還能(neng)夠(gou)將(jiang)背(bei)吃刀(dao)力(li)數值(zhi)計算(suan)出(chu)來。由於高壓力(li)作(zuo)用(yong),切(qie)削刀(dao)卷曲半徑會(hui)有(you)所(suo)減(jian)少(shao),在(zai)切(qie)削刀(dao)卷曲半徑增(zeng)加情況下,大(da)剪應(ying)力(li)以(yi)及小背(bei)吃力均(jun)會(hui)有所(suo)降低(di),使(shi)斷(duan)削性能(neng)得(de)以(yi)有(you)效提(ti)升(sheng),從(cong)而(er)使(shi)切(qie)削刀(dao)卷曲半徑範(fan)圍(wei)會有(you)所(suo)減(jian)少(shao),金屬(shu)很(hen)容易斷(duan)裂,並(bing)且不會(hui)出(chu)現(xian)磨損情況。在高壓力(li)作(zuo)用(yong)之(zhi)下,對(dui)於切削刀(dao)卷曲半徑而(er)言(yan),其(qi)變化(hua)規律(lv)如(ru)下(xia):在(zai)高壓力(li)作(zuo)用(yong)變(bian)大情況下,所(suo)釋放冷卻(que)液體也(ye)會增(zeng)加,在(zai)噴(pen)射刀(dao)具時,其(qi)所(suo)需(xu)要切割(ge)區域也(ye)會增(zeng)加,這種情況下切(qie)削刀(dao)卷曲半徑就(jiu)會(hui)減(jian)少(shao);反(fan)之(zhi)同(tong)樣成(cheng)立。
3機械(xie)制(zhi)造中(zhong)金屬(shu)切(qie)削技(ji)術(shu)創新(xin)
在(zai)當(dang)前(qian)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong),對(dui)於金屬(shu)切(qie)削技(ji)術(shu)創新(xin),其(qi)主(zhu)要就是(shi)綠色切削技(ji)術(shu)的(de)出現(xian),這壹(yi)技(ji)術(shu)的(de)出現(xian),不但能(neng)使成(cheng)本(ben)得(de)以(yi)較(jiao)好節(jie)約(yue),並且可(ke)使(shi)機械(xie)制(zhi)造中(zhong)金屬(shu)汙(wu)染得(de)以(yi)減(jian)少(shao)。對(dui)於綠色(se)切削技(ji)術(shu)而(er)言(yan),目(mu)前(qian)主(zhu)要包括兩種,其(qi)中壹(yi)種就是(shi)幹(gan)式切(qie)削技(ji)術(shu),這壹(yi)技(ji)術(shu)的(de)應(ying)用(yong)在(zai)實(shi)際加工(gong)中可(ke)不(bu)對(dui)切削液體進(jin)行(xing)應(ying)用(yong),有(you)利(li)於環境汙(wu)染的(de)減(jian)輕(qing),其(qi)特(te)點(dian)就是(shi)耐熱及耐(nai)磨(mo),但這壹(yi)技(ji)術(shu)的(de)應(ying)用(yong)需(xu)要具有(you)優良(liang)切削器(qi)具進(jin)行(xing)配合,才(cai)能(neng)夠(gou)使其應(ying)用(yong)更(geng)加合理。另外(wai)壹(yi)種就是(shi)亞幹(gan)式切(qie)削技(ji)術(shu),該(gai)技(ji)術(shu)能(neng)夠(gou)實(shi)現內部冷(leng)卻(que)及外部潤(run)滑(hua),在(zai)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong)可(ke)使(shi)金屬(shu)切(qie)割更(geng)好進(jin)行(xing)潤(run)滑(hua)及(ji)冷(leng)卻(que),且對(dui)於刀(dao)具方面(mian)要求比(bi)較(jiao)低(di),只主(zhu)要使用(yong)塗(tu)層刀(dao)即(ji)可(ke)。在(zai)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong),通過對(dui)金屬(shu)切(qie)削技(ji)術(shu)進(jin)行(xing)創(chuang)新(xin),可(ke)使(shi)企業(ye)生(sheng)產(chan)效(xiao)率得(de)以(yi)提(ti)升(sheng),因而(er)應(ying)當(dang)合(he)理應(ying)用(yong)新(xin)型技(ji)術(shu)。在目(mu)前(qian)機械(xie)制(zhi)造中(zhong),金屬(shu)切(qie)削技(ji)術(shu)已經(jing)成(cheng)為應(ying)用(yong)為廣泛的(de)壹(yi)種技(ji)術(shu),對(dui)於機械(xie)制(zhi)造效(xiao)果(guo)會(hui)產生直(zhi)接影響(xiang),因而(er)對(dui)金屬(shu)切(qie)削技(ji)術(shu)合理應(ying)用(yong)十(shi)分必(bi)要。在金屬(shu)切(qie)削技(ji)術(shu)實(shi)際應(ying)用(yong)過(guo)程(cheng)中(zhong),相(xiang)關(guan)技(ji)術(shu)人員應(ying)當(dang)對(dui)其進(jin)行(xing)創(chuang)新(xin),把(ba)握其創(chuang)新(xin)機理,掌(zhang)握創新(xin)技(ji)術(shu),從而(er)使(shi)金屬(shu)切(qie)削技(ji)術(shu)的(de)應(ying)用(yong)能(neng)夠(gou)取得(de)更(geng)加(jia)理想的(de)效果(guo)。
BARKSDALE BNA-S22-DN25-1600/1-VA30/02 -4GK01 液位控(kong)制(zhi)器(qi)液位開(kai)關(guan)
BARKSDALE UDS7 Pn400bar-Pm600bar 12-32V/DC
BARKSDALE UAS3V3 Pn600bar 4-20mA
BARKSDALE UAS3V3 Pn400bar-Pm600bar 4-20mA 18-30VDC
BARKSDALE UAS3V3+UTA31081024 DC24V 0-100℃ L=100mm 4-20mA
BARKSDALE UTS7-0855103 2SP/4-20mA DC24V 0-100℃ L=50mm 含插頭
BARKSDALE BFS20-0L-G1/2-MS-NO-ST
BARKSDALE BFS-20-0-G1.20...60L/MIN
BARKSDALE BFS30-N 3-10L/MIN G1 MS NO
BARKSDALE CP38-010數顯壓力(li)繼電(dian)器(qi)
BARKSDALE UDS7 0427-327
BARKSDALE B2T-M65S5
BARKSDALE UIA3 0-100℃ 4-20mA 8-30VDC
BARKSDALE SW2000 CP28-100 P010BAR PM15BAR 15-32VDC
BARKSDALE BNA-S22-DN20-900/1-VA30/02-MA- AR-4GK03-XT
BARKSDALE BNA-S22-DN20-900/1-VA30/02-MA- AR-3GK03-XT
BARKSDALE BNA-S22-DN20-1000-1-VA30/02-MA -AR-4GK03-XT
BARKSDALE BNA-S22-DN20-1400/1-VA30/02- MA-AR-3GK03-XT
BARKSDALE BNA-S22-DN20-1600/1-VA30/02- MA-AR-3GK03-XT
BARKSDALE 907-0185 M12*1配螺紋(wen)接口直(zhi)角(jiao)型
BARKSDALE 0332-595 液位開(kai)關(guan)
BARKSDALE 0303-031液位開(kai)關(guan)感(gan)應(ying)棒(bang)
BARKSDALE IG5404-M18X1-3WIRE-PNP-NO 感(gan)應(ying)接近開(kai)關(guan)
BARKSDALE UDS7-G1/2-0427-509/0-10BAR帶(dai)插 頭配件(jian)
BARKSDALE f.pressure switch UDS7 assembly set com, 0499-002
BARKSDALE gauge press;0-400bar;4-20mA EPDM seal 0427-189 UDS7
BARKSDALE BNA-S22-DN25-900/1-4GK03-XT 液位開(kai)關(guan)
BARKSDALE UAS3(0003-031+0099-001) +UTA3-1-02-2-2-05
BARKSDALE SW2000 0-25Mpa 壓力(li)傳感器(qi)
BARKSDALE FE60679/015
BARKSDALE Art No:0405-330 B2TM65SS 壓力(li)開(kai)關(guan)
BARKSDALE BFS-68DN40-PN16 ISOVG320/45 500-4000L/H 報(bao)警點1:2700
BARKSDALE Art No:0332-592 液位計(ji)
BARKSDALE 202157225 G1/4' 200bar 壓力(li)繼電(dian)器(qi)
BARKSDALE BFS-20-0-G1-MS-WE-ST/0712-345 壓力(li)繼電(dian)器(qi)
BARKSDALE BFS10-N4-20-1 G1/2 MSWE30041812/0002 流量(liang)開(kai)關(guan)
BARKSDALE BNA-S22-DN20-1200/1-VA30/02-MA -AR-1 液位控(kong)制(zhi)器(qi)
BARKSDALE BNA-S22-DN20-1000/1-VA30/02-MA -AR-1 液位控(kong)制(zhi)器(qi)
BARKSDALE UAS3+UTA3全套(tao),CU68-024+CT08 -100
BARKSDALE BNA-S22-DN15-1000/1-VA30 液位控(kong)制(zhi)指(zhi)示(shi)器(qi)
BARKSDALE UDS7-2021-54-1-2-5帶(dai)2米(mi)電(dian)纜(lan)
BARKSDALE UDS3.0423-133 帶(dai)2米(mi)電(dian)纜(lan)
BARKSDALE 734S-1S-4V-116F
BARKSDALE BFS30-N 3-90L/MIN G1 MS NO 0703-027 30044502/0001
BARKSDALE UDS3V3-CP68-020 4-20mA 壓力(li)傳感器(qi)
BARKSDALE UPA5-2503-1-1 測(ce)量(liang)範(fan)圍(wei)0-250BAR 輸出4-20MA,電(dian)源(yuan)12-36vdc
BARKSDALE UDS7-2154555 DC24V 2SP/4-20MA PN=10BAR PM:15BAR 含插頭
BARKSDALE UAS3A+UTA3 溫(wen)度控(kong)制(zhi)器(qi)
BARKSDALE UDC3300-KE-203-11-0A0000-00-0
BARKSDALE D2T-H3SS P>-0.8<-19.7KP NO/NC 1/4寸(cun) NPT-F
BARKSDALE BNA-S22-DN20-1200 DN20/PN16 ART NR:0332-591 K6060084 1/001
BARKSDALE TS2000-212-C-N-1
BARKSDALE UPA21H4-15
BARKSDALE SN-NR.FE60249.1/001液位開(kai)關(guan)
BARKSDALE USD7-20-2-1-010-2-2-5全(quan)套(tao)
BARKSDALE BNA-S22-DN20-22000332-597
BARKSDALE BNA-S22-DN20-18000332-597
BARKSDALE MLIH-H203S-S0130 溫(wen)度傳感器(qi)
BARKSDALE A9675-0-AA
BARKSDALE UTA3 414067/049
BARKSDALE UTA3 414067/050
BARKSDALE BNA-S32+VA50/10 (UMR-S103)- FL DN25 ( DN25-PN16)電(dian)磁(ci)液位計(ji)
BARKSDALE UTA3-1-08-1-2-01(0-100℃)-4-20 mA-2wires+DYSPLAY UAS3A(4-20mA
BARKSDALE 壓力(li)繼電(dian)器(qi) UDS 3
BARKSDALE 壓力(li)繼電(dian)器(qi) UDS 7-SWITCH 2000
BARKSDALE BNA-S22-DN20-1100/1-VA30/02-1G K03-XT
BARKSDALE UPS7 pn 600bar pm 1200bar 0472-866 高壓傳感器(qi)
BARKSDALE TYP:UDS3V3ART.NR.:0423-125 壓力(li)開(kai)關(guan)
BARKSDALE BFS-20-0-G1-MS-NO-ST(15-45L/mi n)
BARKSDALE BFS-20-0-G1-MS-NO-ST(8-24l/min )
BARKSDALE BFS-20-0L-G1/2-MS-NO-ST(2.5-8l /min)
BARKSDALE BFS-20-0L-G1-MS-N0 (8-24L/min)
BARKSDALE DIT-M80SS G1/4
BARKSDALE UHZ-10K3-YP BNA-S22 XTR12
BARKSDALE UDS7 0427-509
BARKSDALE UMR-GKU01(SPDT SWITCH) 5m cable
BARKSDALE E1H-H15-P4
BARKSDALE UPA2 ART.NR.0431-081 600BAR 4-20MA
BARKSDALE DPT17-M3SS
BARKSDALE 9675-4 壓力(li)開(kai)關(guan)
BARKSDALE UNS10000-MS
BARKSDALE BFS40-N 0.2-4L/MIN G1/2 MS NO 30041656/0001 K713878A
BARKSDALE E1H-H90-P4
BARKSDALE UNS1000-MS 開(kai)關(guan)
BARKSDALE E1H-H90-P4
速(su)度(du)處理BARKSDALE壓力(li)開(kai)關(guan)CD2H-H2SS
速(su)度(du)處理BARKSDALE壓力(li)開(kai)關(guan)CD2H-H2SS
隨(sui)著現代(dai)機械(xie)制(zhi)造行(xing)業(ye)不(bu)斷(duan)發(fa)展(zhan),在(zai)機械(xie)制(zhi)造中(zhong)越(yue)來越多(duo)的(de)新(xin)技(ji)術(shu)及新(xin)工(gong)藝得(de)以(yi)廣泛應(ying)用(yong),並(bing)且發(fa)揮著十(shi)分(fen)重要的(de)作(zuo)用(yong),而(er)金屬(shu)切(qie)削技(ji)術(shu)便是(shi)其中比(bi)較(jiao)重要的(de)壹(yi)種。在當(dang)前(qian)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong),為能(neng)夠(gou)使金屬(shu)切(qie)削技(ji)術(shu)得(de)以(yi)更(geng)好應(ying)用(yong),使(shi)其作(zuo)用(yong)及(ji)價值(zhi)更好發(fa)揮,十分(fen)重要的(de)壹(yi)點就是(shi)應(ying)當(dang)對(dui)金屬(shu)切(qie)削技(ji)術(shu)進(jin)行(xing)創(chuang)新(xin),使(shi)其(qi)更(geng)好滿足工藝要求及(ji)需(xu)求(qiu),為機械(xie)制(zhi)造提(ti)供(gong)更(geng)好支持(chi)。
關鍵詞(ci):機械(xie)制(zhi)造;金屬(shu)切(qie)削技(ji)術(shu);創新(xin)
在(zai)目(mu)前(qian)機械(xie)制(zhi)造行(xing)業(ye)不(bu)斷(duan)發(fa)展(zhan)過(guo)程(cheng)中(zhong),對(dui)於機械(xie)制(zhi)造工(gong)藝水(shui)平(ping)也(ye)有著(zhe)越(yue)來越高的(de)要求,因而(er)提(ti)升(sheng)機械(xie)制(zhi)造工(gong)藝水(shui)平(ping)十(shi)分(fen)必(bi)要。在機械(xie)制(zhi)造中(zhong),為能(neng)夠(gou)使整體(ti)工藝水(shui)平(ping)得(de)以(yi)有(you)效提(ti)升(sheng),應(ying)當(dang)對(dui)相(xiang)關(guan)技(ji)術(shu)進(jin)行(xing)創(chuang)新(xin),其(qi)中(zhong)必(bi)要重要的(de)壹(yi)個方面(mian)就(jiu)是(shi)應(ying)當(dang)對(dui)及技(ji)術(shu)切削技(ji)術(shu)實(shi)行(xing)創(chuang)新(xin)。本(ben)文(wen)主(zhu)要就針(zhen)對(dui)機械(xie)制(zhi)造中(zhong)金屬(shu)切(qie)削技(ji)術(shu)的(de)創新(xin)進(jin)行(xing)簡單分(fen)析,以(yi)便為金屬(shu)切(qie)削技(ji)術(shu)創新(xin)的(de)實(shi)現提(ti)供(gong)更(geng)好依據(ju)及(ji)支持(chi)。
1機械(xie)制(zhi)造中(zhong)金屬(shu)切(qie)削技(ji)術(shu)應(ying)用(yong)現(xian)狀
就目(mu)前(qian)機械(xie)制(zhi)造實(shi)際情況而(er)言(yan),金屬(shu)切(qie)削技(ji)術(shu)應(ying)用(yong)中(zhong)的(de)主(zhu)要問題(ti)就是(shi)其技(ji)術(shu)性能(neng)仍(reng)舊缺(que)乏全(quan)面完善(shan)。對(dui)於傳統(tong)金屬(shu)切(qie)削技(ji)術(shu)而(er)言(yan),主(zhu)要特點(dian)就(jiu)是(shi)穩定操作(zuo),並(bing)不能(neng)使生(sheng)產效率得(de)以(yi)提(ti)升(sheng),其(qi)在實(shi)際應(ying)用(yong)中(zhong)表現出(chu)較(jiao)明(ming)顯壹(yi)般(ban)性,在(zai)對(dui)金屬(shu)蓋(gai)子(zi)切割(ge)過程(cheng)中(zhong),其(qi)轉速為2012m/min,這種速度(du)對(dui)於金屬(shu)生(sheng)產量(liang)較(jiao)大(da)的(de)壹(yi)些(xie)企業(ye)而(er)言(yan),並(bing)不能(neng)產生(sheng)較(jiao)理想的(de)效益(yi)。在傳統(tong)切(qie)削技(ji)術(shu)實(shi)際應(ying)用(yong)過(guo)程(cheng)中(zhong),不(bu)但未能(neng)夠(gou)使生產中的(de)成(cheng)本(ben)得(de)以(yi)減(jian)少(shao),反(fan)而(er)導致產品質(zhi)量(liang)明(ming)顯(xian)降(jiang)低。隨(sui)著細金屬(shu)及(ji)超(chao)細(xi)金屬(shu)材(cai)料不(bu)斷(duan)出現,導致金屬(shu)切(qie)削技(ji)術(shu)在實(shi)際應(ying)用(yong)中(zhong)受到壹(yi)定限制(zhi),無法使(shi)切(qie)割(ge)力度得(de)到較(jiao)好保證(zheng),從(cong)而(er)導致細金屬(shu)及(ji)超(chao)細(xi)金屬(shu)材(cai)料在(zai)切(qie)割過(guo)程(cheng)中(zhong)受(shou)到損害(hai),同(tong)時,對(dui)於規模(mo)較(jiao)小(xiao)的(de)壹(yi)些(xie)金屬(shu),利(li)用(yong)傳統(tong)金屬(shu)切(qie)削技(ji)術(shu)也(ye)無法準(zhun)實(shi)行(xing)切(qie)割(ge)。由(you)於目(mu)前(qian)金屬(shu)種(zhong)類正在(zai)不斷(duan)增(zeng)多(duo),若(ruo)不(bu)能(neng)對(dui)金屬(shu)切(qie)割技(ji)術(shu)實(shi)行(xing)創(chuang)新(xin),則(ze)無法使(shi)實(shi)際需(xu)求(qiu)得(de)到滿足,因而(er)對(dui)金屬(shu)切(qie)割技(ji)術(shu)實(shi)行(xing)創(chuang)新(xin)也(ye)就十(shi)分(fen)必(bi)要。
2機械(xie)制(zhi)造中(zhong)金屬(shu)切(qie)削技(ji)術(shu)創新(xin)機理
2.1金屬(shu)切(qie)削刀(dao)應(ying)用(yong)
在(zai)實(shi)際金屬(shu)切(qie)削過程(cheng)中(zhong),若(ruo)以前(qian)刀(dao)應(ying)對(dui)切削,這種情況下會(hui)有壹(yi)部分(fen)力(li)量(liang)在(zai)較(jiao)短(duan)測(ce)懸梁臂(bi)上產生(sheng)作(zuo)用(yong),從(cong)而(er)導致金屬(shu)切(qie)削設備(bei)會(hui)出(chu)現彎曲狀況,而(er)其(qi)中(zhong)的(de)滑(hua)移(yi)線(xian)會(hui)表現為凸(tu)起狀況,終所(suo)導致的(de)結(jie)果(guo)為切削的(de)頂(ding)部與(yu)底(di)部之(zhi)間會(hui)存在較(jiao)大(da)差異(yi),導致金屬(shu)有(you)彎曲(qu)折(zhe)斷(duan)情況發(fa)生。因此(ci),在金屬(shu)切(qie)削過程(cheng)中(zhong),需(xu)要對(dui)切削刀(dao)進(jin)行(xing)合(he)理應(ying)用(yong),對(dui)於其力(li)度及(ji)方向各個(ge)方面(mian)因素應(ying)當(dang)充(chong)分合(he)理把(ba)握,以避免(mian)出(chu)現上述(shu)情況,也(ye)就能(neng)夠(gou)使金屬(shu)切(qie)削得(de)以(yi)更(geng)好進(jin)行(xing),使(shi)切(qie)削質量(liang)及(ji)水(shui)平(ping)能(neng)夠(gou)得(de)以(yi)有(you)效提(ti)升(sheng)。
2.2金屬(shu)切(qie)削技(ji)術(shu)中塗層應(ying)用(yong)
在(zai)當前(qian)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong),新(xin)型金屬(shu)切(qie)削技(ji)術(shu)的(de)應(ying)用(yong)發(fa)揮著十(shi)分(fen)重要的(de)作(zuo)用(yong)。目(mu)前(qian),被重視(shi)及關(guan)註(zhu)的(de)就是(shi)物(wu)理塗層(ceng),通過對(dui)塗層(ceng)結(jie)構(gou)進(jin)行(xing)創(chuang)新(xin),促(cu)使(shi)工(gong)藝品及爐(lu)子(zi)使用(yong)頻(pin)率增(zeng)加。目(mu)前(qian),金屬(shu)切(qie)削技(ji)術(shu)在汽車(che)及航(hang)空(kong)航(hang)天(tian)工(gong)業(ye)中(zhong)均(jun)有(you)著十分廣泛的(de)應(ying)用(yong),在(zai)現代社會(hui)經(jing)濟(ji)快(kuai)速(su)發(fa)展(zhan)的(de)形勢(shi)下,在金屬(shu)切(qie)割技(ji)術(shu)創新(xin)方面(mian),人(ren)們(men)的(de)要求也(ye)不斷(duan)提(ti)升(sheng)。在(zai)這種情況下,不(bu)同種(zhong)類塗層(ceng)刀(dao)得(de)以(yi)出(chu)現,促使(shi)各(ge)個(ge)行(xing)業(ye)均(jun)得(de)以(yi)較(jiao)快(kuai)發(fa)展(zhan),因而(er)在(zai)金屬(shu)切(qie)削技(ji)術(shu)中塗層的(de)使用(yong),對(dui)於切割(ge)刀(dao)韌(ren)性比(bi)較(jiao)有(you)利(li),並(bing)且在機械(xie)制(zhi)造中(zhong)對(dui)於金屬(shu)切(qie)削技(ji)術(shu)發(fa)展(zhan)起到很好的(de)促進(jin)作(zuo)用(yong),對(dui)於這壹(yi)點,相(xiang)關(guan)工(gong)作(zuo)人(ren)員應(ying)當(dang)加(jia)強註意,並且對(dui)於塗層(ceng)應(ying)當(dang)進(jin)行(xing)合(he)理應(ying)用(yong),從(cong)而(er)使(shi)金屬(shu)切(qie)削技(ji)術(shu)創新(xin)能(neng)夠(gou)得(de)以(yi)更(geng)好實(shi)現。
2.3擴充(chong)金屬(shu)切(qie)斷(duan)界限
對(dui)於金屬(shu)切(qie)削技(ji)術(shu)而(er)言(yan),其(qi)判(pan)斷(duan)依據(ju)為大應(ying)變(bian)理論,主(zhu)要就是(shi)對(dui)金屬(shu)被破(po)壞(huai)時間進(jin)行(xing)判(pan)斷(duan),其計算(suan)公(gong)式(shi)公(gong)式(shi)如(ru)下(xia):在(zai)這壹(yi)公式中(zhong)z(x)表示彎(wan)曲(qu)程(cheng)度(du)值(zhi),MA表示在(zai)Z點(dian)及與X點(dian)所(suo)產生(sheng)力(li)度(du)數值(zhi),AWAC表示半徑長(chang)度(du),利(li)用(yong)這壹(yi)公式可(ke)將(jiang)切割(ge)過程(cheng)中(zhong)所(suo)產生(sheng)剪應(ying)力(li)計(ji)算(suan)出(chu)來,其切(qie)削折(zhe)斷(duan)產生時所(suo)具備(bei)條(tiao)件(jian)就(jiu)是(shi)彎曲弧(hu)度(du)數值(zhi)、剪應(ying)力(li)及(ji)懸臂(bi)梁三者(zhe)之(zhi)間乘(cheng)積(ji)和中(zhong)間點(dian)間距(ju)離(li),利(li)用(yong)以(yi)上計算(suan)所(suo)得(de)出(chu)數值(zhi),還能(neng)夠(gou)將(jiang)背(bei)吃刀(dao)力(li)數值(zhi)計算(suan)出(chu)來。由於高壓力(li)作(zuo)用(yong),切(qie)削刀(dao)卷曲半徑會(hui)有(you)所(suo)減(jian)少(shao),在(zai)切(qie)削刀(dao)卷曲半徑增(zeng)加情況下,大(da)剪應(ying)力(li)以(yi)及小背(bei)吃力均(jun)會(hui)有所(suo)降低(di),使(shi)斷(duan)削性能(neng)得(de)以(yi)有(you)效提(ti)升(sheng),從(cong)而(er)使(shi)切(qie)削刀(dao)卷曲半徑範(fan)圍(wei)會有(you)所(suo)減(jian)少(shao),金屬(shu)很(hen)容易斷(duan)裂,並(bing)且不會(hui)出(chu)現(xian)磨損情況。在高壓力(li)作(zuo)用(yong)之(zhi)下,對(dui)於切削刀(dao)卷曲半徑而(er)言(yan),其(qi)變化(hua)規律(lv)如(ru)下(xia):在(zai)高壓力(li)作(zuo)用(yong)變(bian)大情況下,所(suo)釋放冷卻(que)液體也(ye)會增(zeng)加,在(zai)噴(pen)射刀(dao)具時,其(qi)所(suo)需(xu)要切割(ge)區域也(ye)會增(zeng)加,這種情況下切(qie)削刀(dao)卷曲半徑就(jiu)會(hui)減(jian)少(shao);反(fan)之(zhi)同(tong)樣成(cheng)立。
3機械(xie)制(zhi)造中(zhong)金屬(shu)切(qie)削技(ji)術(shu)創新(xin)
在(zai)當(dang)前(qian)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong),對(dui)於金屬(shu)切(qie)削技(ji)術(shu)創新(xin),其(qi)主(zhu)要就是(shi)綠色切削技(ji)術(shu)的(de)出現(xian),這壹(yi)技(ji)術(shu)的(de)出現(xian),不但能(neng)使成(cheng)本(ben)得(de)以(yi)較(jiao)好節(jie)約(yue),並且可(ke)使(shi)機械(xie)制(zhi)造中(zhong)金屬(shu)汙(wu)染得(de)以(yi)減(jian)少(shao)。對(dui)於綠色(se)切削技(ji)術(shu)而(er)言(yan),目(mu)前(qian)主(zhu)要包括兩種,其(qi)中壹(yi)種就是(shi)幹(gan)式切(qie)削技(ji)術(shu),這壹(yi)技(ji)術(shu)的(de)應(ying)用(yong)在(zai)實(shi)際加工(gong)中可(ke)不(bu)對(dui)切削液體進(jin)行(xing)應(ying)用(yong),有(you)利(li)於環境汙(wu)染的(de)減(jian)輕(qing),其(qi)特(te)點(dian)就是(shi)耐熱及耐(nai)磨(mo),但這壹(yi)技(ji)術(shu)的(de)應(ying)用(yong)需(xu)要具有(you)優良(liang)切削器(qi)具進(jin)行(xing)配合,才(cai)能(neng)夠(gou)使其應(ying)用(yong)更(geng)加合理。另外(wai)壹(yi)種就是(shi)亞幹(gan)式切(qie)削技(ji)術(shu),該(gai)技(ji)術(shu)能(neng)夠(gou)實(shi)現內部冷(leng)卻(que)及外部潤(run)滑(hua),在(zai)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong)可(ke)使(shi)金屬(shu)切(qie)割更(geng)好進(jin)行(xing)潤(run)滑(hua)及(ji)冷(leng)卻(que),且對(dui)於刀(dao)具方面(mian)要求比(bi)較(jiao)低(di),只主(zhu)要使用(yong)塗(tu)層刀(dao)即(ji)可(ke)。在(zai)機械(xie)制(zhi)造過(guo)程(cheng)中(zhong),通過對(dui)金屬(shu)切(qie)削技(ji)術(shu)進(jin)行(xing)創(chuang)新(xin),可(ke)使(shi)企業(ye)生(sheng)產(chan)效(xiao)率得(de)以(yi)提(ti)升(sheng),因而(er)應(ying)當(dang)合(he)理應(ying)用(yong)新(xin)型技(ji)術(shu)。在目(mu)前(qian)機械(xie)制(zhi)造中(zhong),金屬(shu)切(qie)削技(ji)術(shu)已經(jing)成(cheng)為應(ying)用(yong)為廣泛的(de)壹(yi)種技(ji)術(shu),對(dui)於機械(xie)制(zhi)造效(xiao)果(guo)會(hui)產生直(zhi)接影響(xiang),因而(er)對(dui)金屬(shu)切(qie)削技(ji)術(shu)合理應(ying)用(yong)十(shi)分必(bi)要。在金屬(shu)切(qie)削技(ji)術(shu)實(shi)際應(ying)用(yong)過(guo)程(cheng)中(zhong),相(xiang)關(guan)技(ji)術(shu)人員應(ying)當(dang)對(dui)其進(jin)行(xing)創(chuang)新(xin),把(ba)握其創(chuang)新(xin)機理,掌(zhang)握創新(xin)技(ji)術(shu),從而(er)使(shi)金屬(shu)切(qie)削技(ji)術(shu)的(de)應(ying)用(yong)能(neng)夠(gou)取得(de)更(geng)加(jia)理想的(de)效果(guo)。