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模具高速銑削加工技術(shù)-wenkub.com

2025-07-11 00:30 本頁(yè)面
   

【正文】 ~30176。 Extremely short straight line electrical machinery sampling time. B. Speed and acceleration feedforward control (Feed forward control)。 mold processingFirst, forewordIn the modern mold production, along with to models artistic and the function must obtain more and more high, models the internal structure to design more and more plex, the mold contour design day by day is also plex, the free curved surface accounts for the proportion to increase unceasingly, the corresponding mold structure also designs more and more plex. These all set a higher request to the mold processing technology, not only should guarantee the high manufacture precision and the surface quality, moreover must pursue the processing surface artistic. Along with is unceasingly thorough to the high speed processing engineering research, is processing the engine bed, the numerical control system, the cutting tool system, CAD/ especially Correlation technology and so on CAM software develops unceasingly under the impetus, high speed processes the technology more and more many to apply in the mold cavity processing and the manufacture.The numerical control highspeed cutting processing took in the mold manufacture a most important advanced manufacture technology, is the collection is highly effective, high quality, the low consumption in a body advanced manufacture technology. Is opposite in the traditional machining, its cutting speed, entered to the speed had the very big enhancement, moreover cut the mechanism not to be same. The highspeed cutting caused the machining to have the leap, its specific power metal excision rate enhanced 30%~40%, the cutting force reduced 30%, the cutting tool working durability enhanced 70%, remained hotly large scale reduces in the work piece cutting, the low step shudder vanished nearly. Along with the cutting speed enhancement, unit time semifinished materials material removing rate increased, the cutting time reduced, the processing efficiency enhanced, thus reduced the product manufacture cycle, enhanced the product market petitive power. At the same time, the high speed processing small amount entered quickly causes the cutting force to reduce, the scrap high speed discharged reduced the work piece cutting force and the thermal load distorts, enhances the rigidity to be bad and the thin wall ponents machining possibility. Because cutting force reducing, the rotational speed enhancement causes the cutting system the operating frequency to be far away the engine bed the low step natural frequency, but the work piece surface roughness is most sensitive to the low step frequency, from this reduced the surface roughness. In mold high hard steel stock (HRC45~HRC65) in the processing process, uses the highspeed cutting to be possible to substitute for the working procedure which the electrical finishing and rubs truncates polishes, thus has avoided the electrode manufacture and the timeconsuming electrical finishing, large scale reduced fitter39。在模具的高速精加工中,在每次切入、切出工件時(shí),進(jìn)給方向的改變應(yīng)盡量采用圓弧或曲線轉(zhuǎn)接,避免采用直線轉(zhuǎn)接,以保持切削過(guò)程的平穩(wěn)性。3. 精加工模具的高速精加工策略取決于刀具與工件的接觸點(diǎn),而刀具與工件的接觸點(diǎn)隨著加工表面的曲面斜率和刀具有效半徑的變化而變化。因此應(yīng)對(duì)半精加工策略進(jìn)行優(yōu)化以保證半精加工后工件表面具有均勻的剩余加工余量。采用攀爬式切削可降低切削熱,減小刀具受力和加工硬化程度,提高加工質(zhì)量。~30176。螺旋等高方式的特點(diǎn)是,沒(méi)有等高層之間的刀路移動(dòng),可避免頻繁抬刀、進(jìn)刀對(duì)零件表面質(zhì)量的影響及機(jī)械設(shè)備不必要的耗損。1. 粗加工模具粗加工的主要目標(biāo)是追求單位時(shí)間內(nèi)的材料去除率,并為半精加工準(zhǔn)備工件的幾何輪廓。刀柄要比刀具直徑粗壯,連接柄呈倒錐狀,以增加其剛性。刀具的前角比常規(guī)刀具的前角要小,后角略大。切削鑄鐵,應(yīng)選用細(xì)晶粒的K類硬質(zhì)合金進(jìn)行粗加工,選用復(fù)合氮化硅陶瓷或聚晶立方氮化硼(PCNB)復(fù)合刀具進(jìn)行精加工。為提高硬度和表面光潔度,采用刀具涂層技術(shù),涂層材料為氮化鈦(TiN)、氮化鋁鈦(TiALN)等。刀具在高速加工過(guò)程中要承受高溫、高壓、摩擦、沖擊和振動(dòng)等載荷,高速切削刀具應(yīng)具有良好的機(jī)械性能和熱穩(wěn)定性,即具有良好的抗沖擊、耐磨損和抗熱疲勞的特性。5. 冷卻潤(rùn)滑高速加工采用帶涂層的硬質(zhì)合金刀具,在高速、高溫的情況下不用切削液,切削效率更高。要求具有大容量緩沖寄存器,可預(yù)先閱讀和檢查多個(gè)程序段(如DMG機(jī)床可多達(dá)500個(gè)程序段,Simens系統(tǒng)可達(dá)1000~2000個(gè)程序段),以便在被加工表面形狀(曲率)發(fā)生變化時(shí)可及時(shí)采取改變進(jìn)給速度等措施以避免過(guò)切等。4. 數(shù)控系統(tǒng)先進(jìn)的數(shù)控系統(tǒng)是保證模具復(fù)雜曲面高速加工質(zhì)量和效率的關(guān)鍵因素,模具高速切削加工對(duì)數(shù)控系統(tǒng)的基本要求為: a. 高速的數(shù)字控制回路(Digital control loop),包括:;極短的直線電機(jī)采樣時(shí)間。對(duì)三維復(fù)雜曲面廓形的高速加工要求驅(qū)動(dòng)系統(tǒng)具有良好的加速度特性,要求提供高速進(jìn)給的驅(qū)動(dòng)器(快進(jìn)速度約40m/min,3D輪廓加工速度為10m/min)。3. 機(jī)床驅(qū)動(dòng)系統(tǒng)為滿足模具高速加工的需要,高速加工機(jī)床的驅(qū)動(dòng)系統(tǒng)應(yīng)具有下列特性:(1) 高的進(jìn)給速度。高速切削機(jī)床主軸的轉(zhuǎn)速范圍為10000~100000m/min,主軸功率大于15kW。大部分機(jī)床都采用高質(zhì)量、高剛性和高抗張性的灰鑄鐵作為支撐部件材料,有的機(jī)床公司還在底座中添加高阻尼特性的聚合物混凝土,以增加其抗振性和熱穩(wěn)定性,這不但可保證機(jī)床精度穩(wěn)定,也可防止切削時(shí)刀具振顫。大量生產(chǎn)實(shí)踐表明,應(yīng)用高速切削技術(shù)可節(jié)省模具后續(xù)加工中約80%的手工研磨時(shí)間,節(jié)約加工成本費(fèi)用近30%,模具表面加工精度可達(dá)1 m,刀具切削效率可提高1倍。在模具的高淬硬鋼件(HRC45~HRC65)的加工過(guò)程中,采用高速切削可以取代電加工和磨削拋光的工序,從而避免了電極的制造和費(fèi)時(shí)的電加工,大幅度減少了鉗工的打磨與拋光量。高速切削使切削加工發(fā)生了本質(zhì)性的飛躍,其單位功率的金屬切除率提高了30%~40%,切削力降低了30%,刀具的切削壽命提高了70%,留于工件的切削熱大幅度降低,低階切削振動(dòng)幾乎消失。這些都對(duì)模具加工技術(shù)提出了更高要求,不僅應(yīng)保證高的制造精度和表面質(zhì)量,而且要追求加工表面的美觀。附件:模具高速銑削加工技術(shù)摘 要 介紹了高速銑削在模具加工中的應(yīng)用以及影響,并簡(jiǎn)要的介紹了高速銑削機(jī)床的結(jié)構(gòu)、控制系統(tǒng)和刀具。隨著對(duì)高速加工技術(shù)研究的不斷深入,尤其在加工機(jī)床、數(shù)控系統(tǒng)、刀具系統(tǒng)、CAD/CAM軟件等相關(guān)技術(shù)不斷發(fā)展的推動(dòng)下,高速加工技術(shù)已越來(lái)越多地應(yīng)用于模具型腔的加工與制造中。隨著切削速度的提高,單位時(shí)間毛坯材料的去除率增加了,切削時(shí)間減少了,加工效率提高了,從而縮短了產(chǎn)品的制造周期,提高了產(chǎn)品的市場(chǎng)競(jìng)爭(zhēng)力。對(duì)于一些市場(chǎng)上越來(lái)越需要的薄壁模具工件,高速銑削也可順利完成,而且在高速銑削CNC加工中心上,模具一次裝夾可完成多工步加工。二、 高速銑削加工機(jī)床高速切削技術(shù)是切削加工技術(shù)的主要發(fā)展方向之一,它隨著CNC技術(shù)、微電子技術(shù)、新材料和新結(jié)構(gòu)等基礎(chǔ)技術(shù)的發(fā)展而邁上更高的臺(tái)階。采用封閉式床身設(shè)計(jì),整體鑄造床身,對(duì)稱床身結(jié)構(gòu)并配有密布的加強(qiáng)筋等也是提高機(jī)床穩(wěn)定性的重要措施。還要求主軸具有快速升速、在指定位置快速準(zhǔn)停的性能(即具有極高的角加減速度),因此高速主軸常采用液體靜壓軸承式、空氣靜壓軸承式、熱壓氮化硅(Si3N4)陶瓷軸承磁懸浮軸承式等結(jié)構(gòu)形式。研究表明,對(duì)于小直徑刀具,提高轉(zhuǎn)速和每齒進(jìn)給量有利于降低刀具磨損。機(jī)床制造商大多采用全閉環(huán)位置伺服控制的小導(dǎo)程、大尺寸、高質(zhì)量的滾珠絲杠或大導(dǎo)程多頭絲杠。 b. 速度和加速度的前饋控制(Feed forward control);數(shù)字驅(qū)動(dòng)系統(tǒng)的爬行控制(Jerk control)。 e. 誤差補(bǔ)償功能,包括因直線電機(jī)、主軸等發(fā)熱導(dǎo)致的熱誤差補(bǔ)償、象限誤差補(bǔ)償、測(cè)量系統(tǒng)誤差補(bǔ)償?shù)裙δ?。這是因?yàn)椋恒娤髦鬏S高速旋轉(zhuǎn),切削液若要達(dá)到切削區(qū),首先要克服極大的離心力;即使它克服了離心力進(jìn)入切削區(qū),也可能由于切削區(qū)的高溫而立即蒸發(fā),冷卻效果很小甚至沒(méi)有;同時(shí)切削液會(huì)使刀具刃部的溫度激烈變化,容易導(dǎo)致裂紋的產(chǎn)生,所以要采用油/氣冷卻潤(rùn)滑的干式切削方式。高速切削加工的刀具技術(shù)發(fā)展速度很快,應(yīng)用較多的如金剛石(PCD)、立方氮化硼(CBN)、陶瓷刀具、涂層硬質(zhì)合金、(碳)氮化鈦硬質(zhì)合金TIC(N)等。涂層技術(shù)使涂層由單一涂層發(fā)展為多層、多種涂層材料的涂層,已成為提高高速切削能力的關(guān)鍵技術(shù)之一。精密加工有色金屬或非金屬材料時(shí),應(yīng)選用聚晶金剛石PCD或CVD金剛石涂層刀具。主副切削刃連接處應(yīng)修圓或?qū)Ы?,?lái)增大刀尖角,防止刀尖處熱磨損。盡量在刀具及刀具系統(tǒng)中央留有冷卻液孔。高速加工中的粗加工所應(yīng)采取的工藝方案是高切削速度、高進(jìn)給率和小切削用量的組合。對(duì)陡峭和平坦區(qū)域分別處理,計(jì)算適合等高及適合使用類似3D偏置的區(qū)域,并且可以使用螺旋方式,在很少抬刀的情況下生成優(yōu)化的刀具路徑,獲得更好的表面質(zhì)量。),最好采用螺旋式下刀以降低刀具載荷。2. 半精加工模具半精加工的主要目標(biāo)是使工件輪廓形狀平整,表面精加工余量均勻,這對(duì)于工具鋼模具尤為重要,因?yàn)樗鼘⒂绊懢庸r(shí)刀具切削層面積的變化及刀具載荷的變化,從而影響切削過(guò)程的穩(wěn)定性及精加工表面質(zhì)量。優(yōu)化過(guò)程包括:粗加工后輪廓的計(jì)算、最大剩余加工余量的計(jì)算、最大允許加工余量的
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