地应力卸荷、风化、流水侵蚀、植物根劈是危岩发育的主要原因。
The developing of dangerous rock is due to release of in-situ stress in rock, aeolation, water erosion and root flerry.
在此基础上,论述了卸荷拱理论。
On this condition, the paper introduces the unloading arch theory.
失速控制,卸荷,手动电子刹车。
文章简要介绍了卸荷拱理论。
卸荷应力路径对土体的强度参数影响不大。
Unloading paths have little effects on the shearing strength parameters.
其加卸荷过程以及负荷保持时间全部系自动控制。
The loading process and the duration of loading are controlled automatically.
本文着重介绍了刀架重量卸荷梁的结构原理及其应用。
The essay mainly introduces the structure principle and its application for the unloading beam of the carriage weight.
通过大量试验,研究了淤泥在卸荷作用下的变形特性。
Deformation properties under unloading have been studied through large Numbers of tests.
传统计算方法未考虑卸荷效应对岩体力学参数的弱化。
The effect of unloading is not considered in the traditional slope stability analysis method.
本文从理论上推导出齿轮泵长圆形卸荷槽的设计计算公式。
This paper derives theoretically calculation formula of designing circle-form-at-ends rectangle unloading groove.
黄土节理主要分为原生节理、构造节理、风化节理和卸荷节理。
Loess joints can be generally classified into primary joints, structural joints, weathering joints and unloading joints.
卸荷状态工程岩体的力学条件与传统的加载岩体有本质的区别。
There is essential difference between the mechanical condition of unloading engineering rock mass and loading engineering rock mass.
卸荷状态工程岩体的力学条件与传统的加载岩体有本质的区别。
The mechanical condition of unloading engineering rock mass is essentially different from traditional loading rock mass.
卸荷状态工程岩体的力学条件与传统的加载岩体有本质的区别。
The mechanical condition of unloading engineering rockmass is essentially different from that of traditional loaded rockmass.
本文以三峡船闸工程为背景,对边坡开挖的卸荷效应进行了研究。
The effect of excavation unloading has been studied on the ground of the Three Gorges Shiplock Project in this thesis.
液压传动。减压阀、顺序阀、卸荷阀、节流阀和止回阀。安装面。
Hydraulic fluid power - Pressure reducing valves, sequence valves, unloading valves, throttle valves and check valves - Mounting surfaces.
液压传动。减压阀、顺序阀、卸荷阀、节流阀和止回阀。装配面。
Hydraulic fluid power - Pressure-reducing valves, sequence valves, unloading valves, throttle valves and check valves - Mounting surfaces.
采用定性与定量相结合的方法,综合研究了坝肩边坡的卸荷分带。
Combination qualitative and quantitative method, studying synthetically on the abutment slope off-load zoning.
本文以露天矿边坡为工程背景,对边坡开挖的卸荷效应进行了研究。
The effect of excavation unloading has been studied on the ground of open-pit slope project in this thesis.
分析了卸荷系统对精密导轨精度的影响,设计了卸荷系统总体结构。
Analyzes the unloading system influence to the precision of ultra-precision's guide, and designs the unloading system.
由于先导卸荷阀5内的单向阀作用,可以实现系统保压而油泵卸荷。
The pilot unloading valve 5 of the one-way valve can be achieved system-pressure pump and unloading.
该文主要通过分析齿轮的啮合特点来探讨啮合齿轮泵卸荷槽的设计。
This article will discuss the design of compensating groove in external gear pump by analyzing the gearing characteristics.
为查明洞窟卸荷裂隙的分布位置,最可靠的方法是在现场进行水平钻探。
Onsite horizontal coring is the most reliable method to use when searching for the distribution position of unloading cracks.
气压自动卸荷导轨是一种新型机床导轨,本文给出了这种导轨的设计方法。
Designing method for the automatic regulating pneumatic unloading guideways was given, which is a new kind of machine-tool guide ways.
基于岩石试件的卸荷试验,研究卸荷条件下岩石的变形、参数及破裂特征。
Based on unloading tests of rock samples, the deformation, parameters and fracture features of rocks under unloading are studied.
通过标志矩阵自动搜索新的开挖边界节点,并由单元应力计算出节点的卸荷荷载。
It can automatically search the node of the new boundary through symbolic matrix, and calculate the unloading of the node by stress of element.
试验结果表明,经过侧向卸荷过程土样的抗剪强度指标与常规三轴试验明显不同。
The test results show that the shear strength of soils after lateral unloading are different from that of conventional triaxial test.
介绍了对含闭合裂缝岩石试件在达到峰值压剪荷载时卸荷的裂缝断裂形态观察结果。
The observational result of crack fracture form for rock samples with close crack under unloading after the peak compression shear load.
在现场各种环境因素的影响下,讨论了钢结构安装的结构卸荷、空间定位等关键技术措施。
By the influence of the environment, it discusses the technology such as unloading the structure, precise position and so on.
在现场各种环境因素的影响下,讨论了钢结构安装的结构卸荷、空间定位等关键技术措施。
By the influence of the environment, it discusses the technology such as unloading the structure, precise position and so on.
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