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今天是:

取斷絲錐原理

作者:admin  來源:本站  發表時間:2013-10-21 10:45:46  熱度:9343℃

 

(取斷絲(si)錐(zhui))攻牙(也稱“攻絲(si)”)是機(ji)械行(xing)業不可或缺的工(gong)序(xu),自誕(dan)生(sheng)以來,幾乎沒(mei)有任何(he)一(yi)家(jia)企業和個人擺(bai)脫過絲(si)錐(zhui)折斷在工(gong)件中(zhong)的困擾(rao),更多機(ji)床附件廠家(jia)和研究(jiu)機(ji)構一(yi)直(zhi)致力于(yu)(yu)減少這(zhe)種事故的發生(sheng),受各種原因(yin)的和條件的影響,這(zhe)一(yi)問題(ti)一(yi)直(zhi)沒(mei)有得到(dao)根本的解決。問題(ti)的產生(sheng)不僅僅影響了我們(men)(men)的生(sheng)產合格率,更使我們(men)(men)的操(cao)作者因(yin)為這(zhe)一(yi)問題(ti)不可完全(quan)杜絕,因(yin)此(ci)影響到(dao)我們(men)(men)操(cao)作者的操(cao)作行(xing)為,以至于(yu)(yu)表現(xian)到(dao)生(sheng)產效率的降(jiang)低。

問題的(de)產(chan)生,讓我們開始尋(xun)求彌補(bu)此(ci)類(lei)問題產(chan)生后的(de)解(jie)決(jue)方法。

我們嘗試通(tong)過不同的(de)方法(fa)(fa)來(lai)取出折(zhe)斷在工件中(zhong)(zhong)的(de)絲錐,最簡單的(de)是(shi)(shi)采用普(pu)通(tong)機械方法(fa)(fa),慢(man)慢(man)破碎折(zhe)斷在其中(zhong)(zhong)的(de)絲錐,分小(xiao)塊依(yi)次取出。在較淺的(de)螺(luo)孔(kong)中(zhong)(zhong),是(shi)(shi)極其便捷簡單的(de)方法(fa)(fa),操作(zuo)的(de)不可(ke)控性也常常會對本體產生損(sun)傷,然(ran)(ran)而對于較深的(de)螺(luo)孔(kong),依(yi)然(ran)(ran)會受到局限。我們也嘗試著用其他的(de)方法(fa)(fa)去解(jie)決,然(ran)(ran)而事與愿違,不盡人意。

     萬群機電多年來一(yi)直致力于此(ci)類的問(wen)題(ti)的解決(jue)方(fang)法,嘗試過(guo)不同的解決(jue)途徑,我們的解決(jue)方(fang)案得(de)益于蘇聯學者拉(la)扎(zha)連科夫(fu)婦研(yan)究發明電(dian)火(huo)花(hua)加(jia)(jia)(jia)(jia)工(gong),電(dian)火(huo)花(hua)加(jia)(jia)(jia)(jia)工(gong)能加(jia)(jia)(jia)(jia)工(gong)普通切削(xue)加(jia)(jia)(jia)(jia)工(gong)方法(fa)難以切削(xue)的材料和(he)復雜形狀工(gong)件;加(jia)(jia)(jia)(jia)工(gong)時無切削(xue)力;不產生毛刺和(he)刀痕溝紋等缺陷,最終采用電火(huo)花的(de)(de)腐蝕的(de)(de)原理來處理這一(yi)問題。

電(dian)火(huo)花加(jia)(jia)(jia)工(gong)(gong)(gong)(gong)是與機(ji)械(xie)(xie)加(jia)(jia)(jia)工(gong)(gong)(gong)(gong)完全不(bu)(bu)同的(de)(de)一種新工(gong)(gong)(gong)(gong)藝(yi)。 隨著工(gong)(gong)(gong)(gong)業生產的(de)(de)發展(zhan)(zhan)和(he)科學技(ji)術的(de)(de)進步,具有(you)高(gao)熔點、高(gao)硬度、高(gao)強(qiang)度、高(gao)脆(cui)性(xing)(xing),高(gao)粘性(xing)(xing)和(he)高(gao)純(chun)度等性(xing)(xing)能的(de)(de)新材(cai)料不(bu)(bu)斷出(chu)現。具有(you)各(ge)種復雜結構與特殊(shu)工(gong)(gong)(gong)(gong)藝(yi)要求的(de)(de)工(gong)(gong)(gong)(gong)件越來越多(duo),這就(jiu)使得(de)傳統的(de)(de)機(ji)械(xie)(xie)加(jia)(jia)(jia)工(gong)(gong)(gong)(gong)方(fang)法(fa)不(bu)(bu)能加(jia)(jia)(jia)工(gong)(gong)(gong)(gong)或難于加(jia)(jia)(jia)工(gong)(gong)(gong)(gong)。因此,人們除了進一步發展(zhan)(zhan)和(he)完善機(ji)械(xie)(xie)加(jia)(jia)(jia)工(gong)(gong)(gong)(gong)法(fa)之外,還努力尋(xun)求新的(de)(de)加(jia)(jia)(jia)工(gong)(gong)(gong)(gong)方(fang)法(fa)。電(dian)火(huo)花加(jia)(jia)(jia)工(gong)(gong)(gong)(gong)法(fa)能夠適(shi)應(ying)生產發展(zhan)(zhan)的(de)(de)需要,并在應(ying)用中顯(xian)示出(chu)很多(duo)優異(yi)性(xing)(xing)能,因此,得(de)到(dao)了迅速發展(zhan)(zhan)和(he)日(ri)益廣泛(fan)的(de)(de)應(ying)用。

         我(wo)們很大一部分企(qi)業(ye)或個人已經用到這(zhe)(zhe)種方式來處理(li),然而,采用電火(huo)花機床加(jia)工(gong)去除折斷(duan)在零(ling)件中的絲(si)錐,這(zhe)(zhe)僅僅只能加(jia)工(gong)體積(ji)較小的零(ling)件,對于大型(xing)的零(ling)件根(gen)本無法(fa)裝夾,望塵(chen)莫及。

其次,傳統電火花(hua)機(ji)床(chuang)屬(shu)于(yu)精細加工(gong),加工(gong)速度(du)相對于(yu)普通(tong)的(de)切削加工(gong),速度(du)慢、效率低。對于(yu)批量加工(gong)處(chu)理往(wang)往(wang)力(li)不從心。

針對上述各種(zhong)情(qing)況(kuang),我們的(de)(de)工程(cheng)師進(jin)行(xing)了成千上萬(wan)次的(de)(de)實驗(yan),開發出能(neng)滿(man)足(zu)以上要(yao)求的(de)(de)一(yi)系(xi)列便攜式電(dian)(dian)(dian)(dian)火(huo)花(hua)機(ji)(取斷絲錐機(ji)),進(jin)行(xing)電(dian)(dian)(dian)(dian)火(huo)花(hua)加工時(shi)(shi),工具電(dian)(dian)(dian)(dian)極和工件分(fen)別接脈沖電(dian)(dian)(dian)(dian)源的(de)(de)兩極,并浸入工作液中,或將(jiang)(jiang)工作液充入放(fang)電(dian)(dian)(dian)(dian)間(jian)隙。通(tong)過間(jian)隙自動控制(zhi)系(xi)統控制(zhi)工具電(dian)(dian)(dian)(dian)極向工件進(jin)給,當兩電(dian)(dian)(dian)(dian)極間(jian)的(de)(de)間(jian)隙達到一(yi)定(ding)距離時(shi)(shi),兩電(dian)(dian)(dian)(dian)極上施加的(de)(de)脈沖電(dian)(dian)(dian)(dian)壓(ya)將(jiang)(jiang)工作液擊穿(chuan),產生火(huo)花(hua)放(fang)電(dian)(dian)(dian)(dian)。

在放(fang)電的(de)微(wei)細通(tong)道中瞬時集中大(da)量的(de)熱能,高達一萬攝氏度以上(shang)的(de)溫度使這一點工(gong)(gong)作(zuo)(zuo)(zuo)表面(mian)局部微(wei)量的(de)金屬(shu)材料立刻熔化、氣化,并(bing)爆炸式地飛濺到(dao)工(gong)(gong)作(zuo)(zuo)(zuo)液中,迅速(su)冷凝,形成固體的(de)金屬(shu)微(wei)粒,被工(gong)(gong)作(zuo)(zuo)(zuo)液帶走。這時在工(gong)(gong)件(jian)表面(mian)上(shang)便留下(xia)一個微(wei)小(xiao)的(de)凹坑痕跡(ji),放(fang)電短暫(zan)停(ting)歇,兩電極間工(gong)(gong)作(zuo)(zuo)(zuo)液恢復絕緣(yuan)狀態。

  緊(jin)接著,下(xia)一個脈(mo)沖(chong)(chong)電(dian)(dian)壓又在(zai)兩(liang)電(dian)(dian)極相對接近的(de)另一點處擊(ji)穿,產生火花放電(dian)(dian),重復上(shang)述過(guo)程。這樣,雖(sui)然每個脈(mo)沖(chong)(chong)放電(dian)(dian)蝕(shi)除的(de)金屬(shu)量極少,但因每秒有(you)成千上(shang)萬次脈(mo)沖(chong)(chong)放電(dian)(dian)作用,便(bian)能蝕(shi)除更多(duo)的(de)金屬(shu),大(da)大(da)提(ti)高了(le)生產率。

在保持工(gong)(gong)(gong)具電極(ji)(ji)與工(gong)(gong)(gong)件(jian)(jian)之間(jian)恒定(ding)放電間(jian)隙的(de)條件(jian)(jian)下,一邊(bian)蝕除工(gong)(gong)(gong)件(jian)(jian)金屬,一邊(bian)使工(gong)(gong)(gong)具電極(ji)(ji)不斷地向(xiang)工(gong)(gong)(gong)件(jian)(jian)進給,最后便加工(gong)(gong)(gong)出與工(gong)(gong)(gong)具電極(ji)(ji)形(xing)狀(zhuang)相對應的(de)形(xing)狀(zhuang)來。因此,只(zhi)要改變工(gong)(gong)(gong)具電極(ji)(ji)的(de)形(xing)狀(zhuang)和工(gong)(gong)(gong)具電極(ji)(ji)與工(gong)(gong)(gong)件(jian)(jian)之間(jian)的(de)相對運動(dong)方式,就能加工(gong)(gong)(gong)出各種復雜的(de)型面。    同樣,我們(men)把(ba)連接絲(si)錐(zhui)中間的(de)(de)部分(fen)(fen)通過電火花腐(fu)蝕(shi)之后,有牙的(de)(de)部位就會分(fen)(fen)離脫(tuo)落,這就是取(qu)絲(si)錐(zhui)的(de)(de)基(ji)(ji)本(ben)原理(li)或者說取(qu)斷絲(si)錐(zhui)的(de)(de)基(ji)(ji)本(ben)原理(li)。

    因此不僅(jin)可以取(qu)(qu)斷絲攻(gong),而(er)且可以取(qu)(qu)斷鉆(zhan)頭、斷螺絲、穿孔等。 

 

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