荷重

hè zhòng
  • load;weight
荷重荷重
荷重[hè zhòng]
  1. 采用恒荷重速率试验法,对甘肃陇西Q3原状黄土进行了k0固结试验。

    A series of k_0 consolidation tests under constant rate of loading were carried out on the loess ( Q_3 ), which comes from Longxi area in Gansu province .

  2. 利用荷重传感器、PCI数据采集卡将MM200型摩擦磨损试验机改造成具有动态测试功能。

    This paper explain how to transform MM200 friction and wear tester to dynamical testing friction coefficient testing machine by loading sensor ? PCI data acquisition card .

  3. 用途:该设备用于测定耐火材料荷重软化

    Purpose : The equipment is used for mensurating Refractoriness under load .

  4. 以硅酸乙酯作SiC隔板砖的结合剂,可以使制品具有较好的高温性能:荷重软化温度1580℃、高温抗折强度(1350℃)2.4~2.7MPa、导热系数2.48W/(m·K)。

    Ethyl silicic acid was used as binder for silicon carbide shielding board , which makes the board have better high temperature properties refractoriness under food of 1580 ℃, high temperature bending strength of 2.4 ~ 2.7MPa ( at 1350 ℃) thermal conductivity 2.30W / ( m.K ) .

  5. 桩顶存在较大的集中反力,桩土应力分担比在不同荷重下有很大的变化,在上部荷重为120~380kPa时应力分担比在10左右。

    There is a large concentrated reacting force on the top of the pile , and the stress ratio of pile and soil is remarkably influenced by the load . If the load is 120 ~ 380kPa , the stress ratio is about 10 .

  6. 影响硅砖荷重软化温度的因素

    The Factors of Influence on Refractoriness under Load of Silica Bricks

  7. 500tf幅孔式荷重传感器的研制与应用

    Development and Application of 500 tf Load Transducer of Spoke-Hole Type

  8. 利用荷重传感器获取人造金刚石结晶强度值

    Obtaining of the Hardness of the Diamond Crystal Using the Weight Sensor

  9. 运动荷重对铁路无缝线路强度计算的影响

    The Impact of Motional Loading on the Intensity Calculation of Seamless Railroad

  10. 两种荷重软化温度检验方法测试结果的分析

    Analysis of two test methods of refractoriness-under-load on refractory products

  11. 利用荷重传感器测定工程构件质量重心的方法

    A Method to Determine Mass CG of Engineering Object with Loaded Sensor

  12. 荷重随着重力的变化而升起或降落。

    With variations of gravity the weight rises or falls .

  13. 测定内容包括对南钢烧结矿试样的综合热分析和烧结矿荷重软化性能的测定。

    The testing involved Comprehensive thermal analysis loading softening performance .

  14. 荷重传感器在自行火炮悬挂系统检测中的应用

    Application of Weight Sensor in Measurement of Suspension System of Self-propelled Gun

  15. 带孔等厚薄壳荷重传感器弹性元件的形状优化

    Shape optimization for the load cell elastomer of equal-thickness thin shell with holes

  16. 注:表中()内数字系表示轻荷重使用。

    NOTE : Values shown in parenthesis () are used for light loading .

  17. 通过实验确定了各涵闸不同闸门的荷重保护值。

    To certify the protection values of load for different gates by experiment .

  18. 荷重整体动作力量素质多种能力的理论研究

    Theoretical Researches on Varied Abilities of the Strength for Entire Movements with Weight

  19. 绿色屋顶荷重对建筑结构的影响

    Influence on Construction Structure Stressed by the Green Roof

  20. 悬链线方程在单跨单荷重悬索中的应用

    Application of Catenary Equation in Single-Span and Single-Load Suspension

  21. 具有加劲环助变截面钢筋混凝土圆薄板在轴对称荷重作用下的应力分析

    Analysis of ring-stiffened circular reinforced concrete plates of non-uniform cross section subjected to axisymmetrical loads

  22. 非匀布荷载;不规则分布荷载;不均匀分布荷载;不平匀分布荷重由不均匀的纱线制成的有不均匀的解的纤维制品。

    Irregularly distributed load a fabric of uneven yarn that has an uneven knobby effect .

  23. 文中对两种不同的方法作了比较,研究了气压、荷重质量对不同轮胎的刚度、阻尼特性的影响;

    These two methods were compared .

  24. 水工建筑物上的脉动荷重

    Fluctuation load on the hydraulic structures

  25. 重型车辆荷重下混凝土空心道面设计理论与方法的研究

    The Research into the Principle and Design Method for Hollow Concrete Plate Pavement Under Heavy Truck

  26. 副井罐笼提升制动绳防坠器终端试验荷重的确定

    Determination of Terminal Test Load of Brake Rope Parachute Gear for Cage Hoisting in Auxiliary Shaft

  27. 本机可做突拉试验、扭转试验、荷重试验及接地电流试验。

    Afterward , hang the weight assembly onto the grip hook to perform the above test .

  28. 荷重移转将被视为强化的通用机制加以阐述,而混合律也将被推导。

    Load transfer is presented as a general mechanism for strengthening , and the rule-of-mixtures is derived .

  29. 垂直和水平荷重是用气压施加的,并且分别由两个调压阀控制。

    The vertical and horizontal loads are applied pneumatically and are controlled seperately by two regulating valves .

  30. 用荷重传感器测量靶面上的超声辐射压力,以此求得辐射功率;

    The radiation power is derived by the measurement of the ultrasound radiation pressure on the target .