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surface machining造句

"surface machining"是什么意思   

例句與造句

  1. ventilated ribbed surface machine
    機(jī)殼肋片表面冷卻式電機(jī)
  2. mmg multi-axis surface machining
    多軸曲面加工
  3. characterization techniques and methods on single crystal surface machined damages
    機(jī)械合金化與非晶合金材料的研究進(jìn)展
  4. smg 3 axis surface machining
    軸曲面加工
  5. sculptured surface machining is a critical process commonly used in die and mold industries
    摘要復(fù)雜曲面加工廣泛應(yīng)用于模具行業(yè)。
  6. It's difficult to find surface machining in a sentence. 用surface machining造句挺難的
  7. formation process for glossiness on rock surface machined with synthetic diamond abrasives
    人造金剛石加工中巖石表面光澤形成過(guò)程研究
  8. in this paper, application of convex hull is proposed to slove the problem of global tool interference avoidance in 5-axis sculptured surface machining
    本文提出了運(yùn)用凸包法解決在五軸加工中刀具干涉的算法。
  9. compared with cubic splines, quintic splines have more advantages for surface machining . so the generation and processing of nc instructions have become one of the nucleal technologies of cam and cnc
    由于與三次樣條函數(shù)相比,五次樣條函數(shù)具有更大的優(yōu)越性,所以基于五次樣條的nc指令生成與處理技術(shù)已成為cam技術(shù)和cnc技術(shù)的主要發(fā)展趨勢(shì)之一。
  10. this subject aims to develop a relative self-contained numerical control system of large-scale aspheric optical parts ultra-precision machining device, in order to realize the low cost and high efficiency of aspheric surface machining and content the needs of accuracy and surface roughness
    本課題旨在設(shè)計(jì)一種比較完善的大型非球面光學(xué)零件超精密加工裝置的數(shù)控系統(tǒng),以實(shí)現(xiàn)光學(xué)非球面加工的低成本、高效率,并能滿足加工精度和表面質(zhì)量的要求。
  11. with the progress of the information technology and the development of the global manufacturing techniques, enterprises require more efficient and lower cost machine tools by reason of enhancing their competitive ability . but conventional machine tools will encounter many difficulities which are hard to overcome in the future, for instance of high-speed machining ( path speeds exceeding 50 m / min ) and high-efficient space curved surfaces machining as well as flexibility of machines
    隨著信息技術(shù)的進(jìn)步和全球化制造技術(shù)的發(fā)展,企業(yè)為了提高自身的競(jìng)爭(zhēng)力,要求配置效率更高和成本更低的加工設(shè)備,而傳統(tǒng)機(jī)床在未來(lái)的加工業(yè)中會(huì)遇到難以克服的困難,例如在高速加工(軌跡速度達(dá)到50mmin)和高效空間曲面加工及機(jī)床的通用性方面將無(wú)法滿足現(xiàn)代加工技術(shù)的要求。
  12. machining centers, nc cutters, vertical cutters, horizontal cutters, bench drilling machines, tappers, lathes, gun-drill machines, auto benches, internal grinding machines, surface machines, rotary grinding machines, cnc honing machines, surface grinding machines, slit grinding machines, cylindrical grinding machines, vertical axis grinding machines, horizontal slit grinding machines, universal tool grinders, nc insertion machines, caulking machines, precision cutters, barrel machines, shot blast machines, ultrasonic washers
    磨床nc銑床橫銑床縱銑床鉆床攻絲機(jī)車床槍鉆機(jī)械自動(dòng)盤內(nèi)部磨床旋轉(zhuǎn)磨床cnc珩磨正面磨床切口磨床圓筒磨床縱軸磨床橫軸切口磨床萬(wàn)能工具磨床nc壓入機(jī)精密切割機(jī)圓筒部分淬火超聲波凈洗機(jī)等。
  13. in this paper, molecular dynamics simulation is carried on the nanometric cutting of defect-free monocrystalline silicon . based on simulations, a reasonable explanation is given to the forming mechanism of chip and surface machined in the cutting process of monocrystalline silicon . moreover, the feasibility of brittle-ductile transition of monocrystalline silion is studied with the method of first principle stress
    對(duì)內(nèi)部無(wú)缺陷的單晶硅的納米切削過(guò)程進(jìn)行了分子動(dòng)力學(xué)模擬.通過(guò)模擬結(jié)果,對(duì)單晶硅納米切削中的切屑形成過(guò)程和加工表面的形成過(guò)程做出了合理的解釋.并用第一原理應(yīng)力計(jì)算方法對(duì)單晶硅納米切削過(guò)程中的脆塑轉(zhuǎn)變的可行性進(jìn)行了研究
  14. the mathematic model of co-rotating twin-screw machining with milling tool is built . according to this model the tool parameters and theoretical machining error are computed and analyzed . the technique and the approach can effectively aid the designing and choosing of cylinder helical surface machining tools for co-rotating twin-screw
    建立了用圓柱立銑刀加工雙螺桿的數(shù)學(xué)模型,提出了基于接觸線的取點(diǎn)求距優(yōu)化算法,通過(guò)該模型和算法實(shí)現(xiàn)了刀具參數(shù)的優(yōu)化求解以及加工理論誤差的分析計(jì)算。
  15. this paper first researched the general situation of domestic and abroad developments in the field of ultra-precision aspheric surface machining technology and its numerical control system, analyzed the aspheric surface machining principle of ultra-precision machine, and in these bases, founded the kinematics model of ultra-precision machine in ideal condition using the homogeneous coordinate conversion method in robotics
    分析了本實(shí)驗(yàn)室超精密機(jī)床非球面加工原理,在此基礎(chǔ)上應(yīng)用機(jī)器人學(xué)中齊次坐標(biāo)變換的方法建立了理想情況下超精密機(jī)床運(yùn)動(dòng)學(xué)模型,通過(guò)綜合分析超精密機(jī)床的運(yùn)動(dòng)誤差,給出了超精密機(jī)床的誤差補(bǔ)償模型。
  16. this paper first researched the general situation of domestic and abroad developments in the field of ultra-precision aspheric surface machining technology and its numerical control system, analyzed the aspheric surface machining principle of ultra-precision machine, and in these bases, founded the kinematics model of ultra-precision machine in ideal condition using the homogeneous coordinate conversion method in robotics
    分析了本實(shí)驗(yàn)室超精密機(jī)床非球面加工原理,在此基礎(chǔ)上應(yīng)用機(jī)器人學(xué)中齊次坐標(biāo)變換的方法建立了理想情況下超精密機(jī)床運(yùn)動(dòng)學(xué)模型,通過(guò)綜合分析超精密機(jī)床的運(yùn)動(dòng)誤差,給出了超精密機(jī)床的誤差補(bǔ)償模型。
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