铝青铜

lǚ qīng tóng
  • Aluminum bronze;aluminium bronze;albronze;xantal;oranium bronze
铝青铜铝青铜
铝青铜[lǚ qīng tóng]
  1. Cu-12%Al铝青铜线材的连续定向凝固制备

    Preparation of cu-12 % al albronze wires by continuous unidirectional solidification

  2. 铝青铜的超声波检测

    Ultrasonic test on albronze

  3. 微量元素Co对高铝青铜显微组织的影响

    Influence of microelement Co on microstructure of high-aluminum bronze

  4. 铝青铜合金粉末涂层制备中Fe元素的扩散特性

    Dispersion characteristics of element Fe in preparation of aluminum bronze alloy powder coating

  5. 基于MATLAB的铸造铝青铜金相组织分析

    Microstructure Analysis for Aluminum Bronze Based on MATLAB

  6. 基于BP神经网络的铝青铜超塑性流变应力预测模型

    Predicting Model for Flow Stress of Aluminum Bronze in Superplastic State Based on BP Neural Network

  7. Al、Ti元素对高锰铝青铜组织和性能的影响

    Study on the Effect of Al , Ti Content on Microstructure and Hardness of High Manganic Aluminum Bronze

  8. NaCl盐膜对铝青铜高温氧化行为的影响

    Effect of NaCl Film on Oxidation Behavior of Aluminum Bronze at High Temperature

  9. Ta离子注入对铝青铜耐磨性能的影响

    Influence of Surface Ta Ion Implantation on Friction and Wear Behavior of Al Bronze

  10. Al-Si合金表面激光熔覆铝青铜合金的工艺研究

    The Laser-Cladding of Al Bronze on an Al-Si Alloy

  11. 晶粒大小、α相含量、γ2相分布及K相的形状等影响着铝青铜铸态下的力学性能。

    Grain size , content of a phase , distributing of r2 phase , shape of K phase impact on mechanical properties of as-cast multi-aluminum bronze .

  12. 利用扫描电镜、X射线衍射仪、能谱仪等分析设备对一种新型高强度、高耐磨铸造高铝青铜在不同温度与时间均匀化处理后的显微组织和力学性能进行了研究分析。

    Microstructure and mechanical properties of a new high strength and wear-resistant as-cast aluminum bronze with different homogenizing annealing are investigated by means of SEM , XRD and X-ray spectrometer .

  13. 确定了用该高锰铝青铜材料制造冶金备件产品时,Al元素的最佳含量为7.5%~8.2%、Ti元素的最佳含量为020%~025%。

    During the making metallurgic products with this material , the proper composition of Al is 7.5 % ~ 8.2 % and Ti is 0.20 % ~ 0.25 % .

  14. 应用电化学阻抗谱(EIS)方法研究了铝青铜的腐蚀溶解机制。

    The corrosion dissolution mechanism of Al-bronze has been investigated by Electrochemical Impedance Spectroscopy ( EIS ) at different anodic potentials .

  15. 钛合金TC4与铝青铜在冲击滑动耦合作用下的磨损特性

    Impact-sliding Wear Property of Aluminum Bronze against Titanium Alloy

  16. 低温均匀化退火态的组织仍为β′、α、γ2、K,该铝青铜低温退火下仍表现为强度、硬度高,冲击韧性有明显下降的趋势。

    In low temperature homogeneous annealing , microstructure of multi-aluminum bronze are same to it 's as-cast , and the alloy still possesses high strength , high hardness , but toughness has evidently declined trend .

  17. 结果表明,新型高铝青铜是由α、β′、κ及γ2相组成,在强化相κ相中富集了大量的Co。

    The results show that the high Al bronze is composed of α、β′、κ and γ 2 phases and Co is rich in strengthening phase κ . The amount of phases are changed by heat treatment .

  18. 试验确定了新型多元复杂含锰铝青铜防爆合金的化学成分,并研究了B与V微合金化及热处理对该合金硬度及力学性能的影响。

    The composition of new complex aluminum-bronze alloy containing Mn was determined in this paper . The effect of microalloying both V and B and the heat treatment on its hardness and mechanical properties of aluminum-bronze alloy were studied .

  19. 通过静态浸泡腐蚀试验、X射线衍射分析(XRD)、扫描电镜(SEM)等方法研究了一种新型高铝青铜合金Cu-14%Al-X在3.5%NaCl溶液中的耐蚀性能及腐蚀行为。

    The corrosion resistance and behavior of Cu-14 % Al-X bronze in 3.5 % NaCl solution has been investigated by using static immersing corrosion test , X-ray diffraction ( XRD ) and scanning electron microscope ( SEM ) .

  20. 为了解铝青铜焊接热影响区(HAZ)的空蚀行为,对镍铝青铜焊接热影响区的空蚀形貌进行了扫描电镜(SEM)分析。

    SEM analysis of nickel aluminum bronze ( NAB ) weldment samples after cavitation erosion was carried to understand cavitation erosion behavior of the heat-affected zone ( HAZ ) of the weldment .

  21. 试验结果表明:该高铝青铜随固溶温度升高,晶粒长大,k相和γ2相大量溶解;

    The results show that the high-aluminum grain size increases and r2 phase K phase have been soluted with the increase of solution treatment temperature , and the thermal brittle at high solution temperature results from the segregation of inclusions at grain boundary ;

  22. 对新型高强度、高耐磨铝青铜合金(代号HSWAB)在润滑条件下的摩擦性能进行了分析。

    The friction properties and friction mechanism of a new high strength and wear-resistant aluminum bronze named HSWAB alloy were analyzed in detail under lubrication condition .

  23. 高强耐磨铝青铜合金在10%H2SO4溶液中腐蚀的研究

    Study of corrosion behavior of high-strength and wear-resistant aluminum bronze in 10 % H_2SO_4 solution

  24. 锆及钛对QAl(10-4-4)铝青铜缓冷脆性的影响

    Influence of Zr and Ti on slow cooling brittleness of QAl_ ( 10-4-4 ) aluminum bronze

  25. Ni-Cr-Fe-Si-B合金涂层及铝青铜基体熔合区组织的研究

    Microstructure of Ni-Cr-Fe-Si-B Alloy Coating and Fusion Zone on Aluminium Bronze Matrix

  26. 检测结果表明,CTS-2000数字超声波探伤仪能准确测定铝青铜棒内的缺陷。

    The results showed that CTS-2000 digital ultrasonic test device can exam accurately defects in it .

  27. 在干摩擦状态下,耐磨性按高铝青铜的热处理态、高铝青铜的铸态、QAl9-4依次降低。

    Under dry friction the order of wear resistance is heat treatment high Al bronze > as-casting high Al bronze > QAl9-4 .

  28. 通过静态浸泡腐蚀试验、扫描电镜(SEu)、电化学测试等方法研究了铝青铜Cu-14%Al-X在3.5%NaCl、5%H2SO4、10%H2SO4、10%HCl溶液中的耐蚀性能及腐蚀行为。

    The corrosion resistance and behavior of the high-Al bronze Cu-14 % A1-X in 3.5 % NaCl , 5 % H_2SO_4,10 % H_2SO_4 and 10 % HCl solutions were investigated by using Static Immersing Corrosion test , scanning electron microscope ( SEM ) and electrochemical methods .

  29. 高强度耐磨铝青铜合金及其摩擦学特性

    Strong and wear resistant aluminium bronze alloy and its tribological characteristics

  30. 船用螺旋桨新材料&无镍高锰铝青铜的研究

    The Study of a New Marine Propeller Material High Mn-Al Bronze