齒向誤差 的英文怎麼說

中文拼音 [chǐxiàngchā]
齒向誤差 英文
longitudinal form error
  • : Ⅰ名詞1 (牙; 牙齒) tooth 2 (物體上齒形的部分) a tooth like part of anything 3 [書面語] (年齡...
  • : Ⅰ名詞(錯誤) mistake; error Ⅱ動詞1 (弄錯) mistake; misunderstand 2 (耽誤) miss 3 (使受損害...
  • : 差Ⅰ名詞1 (不相同; 不相合) difference; dissimilarity 2 (差錯) mistake 3 [數學] (差數) differ...
  • 誤差 : error
  1. A measurement error of the tooth profile and tooth trace for the involute cylindrical gear ' s crowned teeth

    漸開線圓柱輪鼓形形和齒向誤差的測量二
  2. Established the system of coordinates of roll testing, getting the parameters of equation of tooth face by solving the non - linear equations set ; according to the differential geometry and meshing principle, deduce the curvature parameters of tooth face and tooth profile, and get the parameters of instantaneous contact ellipse. emulate the contact trace and contact area of the working tooth face, and drawing the instantaneous drive ratio error curve

    建立了克林貝格擺線輪嚙合分析的對滾模型,通過對非線性方程組的迭代求解,得到面方程的各個參數;由微分幾何和切嚙合原理推導了面上廓和線方的曲率參數,得到了瞬時接觸橢圓的參數。根據設計參數和機床調整參數繪制了工作面的接觸軌跡和接觸區圖形,並求得了瞬時傳動比的曲線。
  3. Equations of mesh, shorting contact line, undercutting limit line, meshing limit lines and the existence conditions, angle between the direction of relative speed and the direction of contact line, induced normal curvature about every point on the contact line are established. moreover, the paper also theoretically analyzed the error of the grinded gear surface. on the basis of the theory, the computer program is worked out to automatically produce the contact line and the boundary curves of mesh. analysis of meshing circs under different parameters can be done so that we can gain the best process condition

    首先對漸開面二次包絡理論進行了深入的探討,推導出了兩次嚙合的嚙合方程式、瞬時接觸線方程式、根切界限線方程式、嚙合界限線的方程式及其存在條件,相對運動速度方與接觸線方的夾角及接觸線上各點的誘導法曲率;此外,還對磨后工件的進行了理論分析;並在理論基礎上編制了相應的計算機程序,自動生成接觸線族及嚙合界限線,對不同參數條件下的嚙合情況進行分析,可以使工藝條件達到最佳狀態;最後研究了磨裝置,設計了磨機的傳動系統。
  4. When there is no or lesser undercut, we can use the bend stress ' s algorithm of involute gear to calculate approximately the bend stress of gear with meshed medium belt, what we to do is to transit the interrelated shift coefficient to the according radial minus shift coefficient of involute gear, and the error can be controlled in 10 %

    在不產生或少量根切時,可用漸開線徑變位輪的彎曲應力計算方法來近似計算帶式嚙合介質輪的彎曲應力,只需將關聯變位系數轉化為相應的漸開線輪徑變位系數即可,其在10 %以內。
  5. The critical error has been found through computation, which is the error circling the gear. the load sharing characteristics of two kind of star - type gearing train has been determined through comparison. based on computation, the load sharing capability of two - stage external gear train is better than that of two - stage internal and external gear train

    其次,從靜力學的角度分析了各對系統均載性能的影響,比較了各對系統均載性能影響的大小,得到了較大的影響系統均載的因素,即圓周方分佈的;比較了兩種星型輪系統的均載性能,根據計算結果,兩級外嚙合傳動系統的均載性能要好於兩級內外嚙合傳動系統。
  6. Axial errors and profile errors of noninvolute bevoloid gears

    非漸開線變厚齒向誤差的分析
  7. Evaluation of double flank testers for radial composite measurement of gears

    利用輪的徑組合測量法評估雙面嚙合測量儀
  8. Creatively, this paper advance involute as the tooth form that has been used widely in the engineering, and we also bring forward a design idea that tooth can be distributed continuously on spherical surface. based on those ideas, we invent the spherical gear of ring involute tooth. it is proved that this mechanism overcome the two big objections of traditional gear by solid model, and so a great breakthrough is achieved in the gear drive field. 2

    本文創造性地提出了採用工程上廣泛應用的漸開線作為廓曲線,並將輪沿緯度方在球面上呈連續分佈的設計思想,在此基礎上發明了漸開線環形輪機構,實物模型證明,該機構從根本上克服了傳統離散輪存在的傳動原理和加工困難兩大障礙,在輪傳動領域取得了重大突破。
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