guide temperature 中文意思是什麼

guide temperature 解釋
導絲器溫度
  • guide : n 1 引導,指導。2 領路人,導游者,向導;指導者,指揮者。3 【軍事】向導艦;〈pl 〉基準兵,標兵。4 ...
  • temperature : n. 1. 溫度,氣溫。2. 體溫。3. 〈口語〉發燒,高燒。
  1. Flame temperature measurements can be used as a guide in discussing energetics of a homogeneous propellant.

    火焰溫度的測定可作為討論均質推進劑能量特性的指導。
  2. Standard guide for collection of water temperature, dissolved - oxygen concentrations, specific electrical conductance, and ph data from open channels

    從明渠中採集水溫溶解氧濃度具體電導性和ph值的標準指南
  3. 3. alloy guide roll in static balane, sealed type oven, fast drying with less energy consuming, and auto constant temperature control system

    3靜平平衡鋁合金導輥,密閉式烘箱,節能快乾,自動恆溫控制系統。
  4. Five stages independent drying system with constant temperature control, waste gas is up to the standard, the guide roll within the drying tank drivesin synchronous rotation, with independent motor, and synchronsion control

    五段乾燥,加熱分體式,熱風循環,溫控自動,廢氣達標,烘箱導輥為主傳動,並有獨立電機,整機同步控制。
  5. 1. lengthened drying box, pneumatic open, driving guide roller in the box, automatic control for permanent temperature

    1加長型烘箱氣頂式開啟箱內導輥主動溫度恆溫自動控制。
  6. Standard guide for expression of temperature

    溫度表達式標準導則
  7. The system could be also used in online machining of some other parts in machine manufacturing, to realize the real time detection of non - uniform temperature field and guide the thermal compensation of workpiece

    該系統還可用於機械製造業其他零件的在線加工中,實現工件非均勻溫度場的實時檢測,指導工件尺寸的熱補償。
  8. The technical guide of ultrasonic inspection for high - temperature tight bolts

    高溫緊固螺栓超聲波檢驗技術導則
  9. Magnetic materials - part 12 : guide to methods of assessment of temperature capability of interlaminar insulation coatings iec 60404 - 12 : 1992

    磁性材料.第12部分:層間絕緣塗層的溫度穩定性的評定
  10. The interface behavior between essence and ethylene - vinyl acetate copolymer pallets was studied so that necessary data were obtained to guide the preparation of fragrant masterbatch. the adsorption type and wettability between essence and the copolymer pallets were analysed by measurements of fourier transform infrared spectrum, surface tension, contact angle and specific surface area. the technical factors affecting absorptivity such as the charge ratio, temperature, pressure and stirring speed were studied by series of adsorption experiments. the results showed that the adsorption of essence on the surface of ethylene - vinyl acetate copolymer pallets is physical in nature. essence couldn ' t moisten the surface of ethylene - vinyl acetate copolymer pallets absolutely, but it could be soaked into the surface of the pallets partly. adsorptivity could be increased by enhancing the temperature, pressure and stirring speed, but the extension of adsorption time had little influence on adsorptivity

    研究了香精與乙烯/醋酸乙烯共聚物粒子之間的界面行為,以便為香型母粒的制備提供必要的理論依據.利用傅立葉變換紅外光譜、表面張力、接觸角及比表面面積等測定手段,分析了香精與載體之間的吸附類型和潤濕作用.並通過一系列吸附實驗,討論了配料比、溫度、壓力、攪拌等工藝條件對吸附量的影響.結果表明,香精在乙烯/醋酸乙烯共聚物粒子表面的吸附為物理吸附;香精無法完全潤濕載體粒子表面,但可以對其形成部分浸潤;提高溫度、壓力、攪拌速度可以增加吸附量,而延長吸附時間對增加吸附量貢獻不大
  11. Abstract : the interface behavior between essence and ethylene - vinyl acetate copolymer pallets was studied so that necessary data were obtained to guide the preparation of fragrant masterbatch. the adsorption type and wettability between essence and the copolymer pallets were analysed by measurements of fourier transform infrared spectrum, surface tension, contact angle and specific surface area. the technical factors affecting absorptivity such as the charge ratio, temperature, pressure and stirring speed were studied by series of adsorption experiments. the results showed that the adsorption of essence on the surface of ethylene - vinyl acetate copolymer pallets is physical in nature. essence couldn ' t moisten the surface of ethylene - vinyl acetate copolymer pallets absolutely, but it could be soaked into the surface of the pallets partly. adsorptivity could be increased by enhancing the temperature, pressure and stirring speed, but the extension of adsorption time had little influence on adsorptivity

    文摘:研究了香精與乙烯/醋酸乙烯共聚物粒子之間的界面行為,以便為香型母粒的制備提供必要的理論依據.利用傅立葉變換紅外光譜、表面張力、接觸角及比表面面積等測定手段,分析了香精與載體之間的吸附類型和潤濕作用.並通過一系列吸附實驗,討論了配料比、溫度、壓力、攪拌等工藝條件對吸附量的影響.結果表明,香精在乙烯/醋酸乙烯共聚物粒子表面的吸附為物理吸附;香精無法完全潤濕載體粒子表面,但可以對其形成部分浸潤;提高溫度、壓力、攪拌速度可以增加吸附量,而延長吸附時間對增加吸附量貢獻不大
  12. Guide for the application, maintenance, and evaluation of room temperature vulcanizing silicone rubber coatings for outdoor ceramic insulators

    戶外陶瓷絕緣子用室溫硫化硅橡膠塗層的應用維護和評價指南
  13. Guide for determination of maximum winding temperature rise in liquid - filled transformers

    液體填充變壓器的最大繞組溫度升高的測定指南
  14. Guide for determination of hottest spot temperature in dry type transformers

    乾式變壓器熱斑溫度測定指南
  15. Guide for determining the effects of high - temperature operation on conductors, connectors, and accessories

    高溫運行對導體連接器和附件影響的測定指南
  16. Guide for determining the effects of high temperature operation on conductors, connectors, and accessories

    高溫運行對導體連接器和附件影響的測定指南
  17. From wave equation, under small signal approximation, a theoretical calculation of shg efficiency and acceptances is presented. according to this, the acceptances of wavelength, period, temperature and incidence angle are calculated. these will guide the experiment and the fabrication of optical supperlattice ( osl )

    2 、從波動方程出發,在小信號近似下,推導了qpm倍頻公式,分析了波矢失配的起因及影響,從理論上推導了波長,周期,溫度和入射角的接收帶寬,討論了占空比對輸出效率的影響,對介質制備及實驗有一定的指導意義。
  18. Due to the magnetic field discontinuity of the permanent magnet guide - way and the mechanical & electrical coupling, there will be lateral displacement for the high temperature superconductor maglev vehicle

    摘要高溫超導磁懸浮列車在運行過程中,導軌磁場的不連續或者機電耦合會引起車身的橫向偏移。
  19. Guide for determination of maximum winding temperature rise in liquid filled transformers

    充液變壓器的最大繞組溫升的測定指南
  20. In this paper, the main work is that developing a suit of on - line monitoring system of fouling on the low - temperature convection surface and local slagging on water wall surface, to guide and optimize the progress of sootblowing, on base of the successfully developed monitoring system of fouling on the high - temperature convection surface

    本文主要工作是在已經開發成功的高溫對流受熱面積灰監測的基礎上,開發低溫對流受熱面積灰在線監測以及水冷壁局部結渣在線監測,來指導和優化吹灰過程。
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