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相关概念视频

Dynamic Modulus of Elasticity of Concrete01:16

Dynamic Modulus of Elasticity of Concrete

The dynamic modulus of elasticity assesses how a concrete structure deforms under impact or dynamic loads. It is typically higher than the static modulus of elasticity, measured under slow, steady loading conditions.
The sonic test is a common method to determine the dynamic modulus. In this test, a concrete beam, sized either 6 x 6 x 30 inches or 4 x 4 x 20 inches, is clamped at its center. Vibrations are initiated at one end of the beam by an electromagnetic exciter unit powered by a...
Elasticity in Concrete01:20

Elasticity in Concrete

Upon subjecting concrete to moderate or high uniaxial compressive or tensile stresses, the strain response is non-linear relative to the stress applied. As the stress is removed, the resulting stress-strain curve deviates from the original path traced during loading, creating a hysteresis loop, indicative of the concrete's non-linear and non-elastic properties. Typically, a material's modulus of elasticity, which is a measure of the material's stiffness, is inferred from the linear portion of...
Bulk Modulus01:21

Bulk Modulus

The bulk modulus is a scientific term used to describe a material's resistance to uniform compression. It is the proportionality constant that links a change in pressure to the resulting relative volume change.
Deformation of Member under Multiple Loadings01:11

Deformation of Member under Multiple Loadings

When a rod is made of different materials or has various cross-sections, it must be divided into parts that meet the necessary conditions for determining the deformation. These parts are each characterized by their internal force, cross-sectional area, length, and modulus of elasticity. These parameters are then used to compute the deformation of the entire rod.
In the case of a member with a variable cross-section, the strain is not constant but depends on the position. The deformation of an...
Acceleration due to Gravity on Earth01:21

Acceleration due to Gravity on Earth

According to Newton's law of gravitation, the gravitational force on a body is proportional to its mass. According to Newton's second law of motion, the acceleration produced by an external force is inversely proportional to the force. Hence, the acceleration of an object under an external force of gravitation is independent of its mass.
The acceleration of an object close to the Earth, because of the Earth's gravitational pull, is called the acceleration due to gravity. It is always directed...
Acceleration due to Gravity on Earth00:55

Acceleration due to Gravity on Earth

Newton's second law is closely related to his first law of motion. It mathematically gives the cause-and-effect relationship between force and changes in motion. Newton's second law is quantitative and is used extensively to calculate what happens in situations involving a force. All external forces acting on a system add together to produce a net force Fnet. A larger net external force produces a larger acceleration. This acceleration is directly proportional to, and in the same direction as,...

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相关实验视频

Updated: Jul 12, 2026

Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction
10:36

Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction

Published on: May 20, 2018

地球材料的动态压缩.

T J Ahrens

    Science (New York, N.Y.)
    |March 7, 1980
    PubMed
    概括

    冲击波实验揭示了地球物质的相位变化,影响了地球深层内部的模型. 这些发现为下层地幔和金属外核的组成提供了洞察力.

    科学领域:

    • 地质物理学 地质物理学
    • 材料科学 材料科学 材料科学
    • 矿物物理 矿物物理

    背景情况:

    • 冲击波技术对于研究极端压力下的材料特性至关重要.
    • 了解压力密度关系对于地球内部的地球物理模型至关重要.

    研究的目的:

    • 为了研究金属,酸盐和氧化物的压力密度行为.
    • 为了确定冲击诱导的相变对材料压缩的影响.
    • 推断地球下层地幔和外核的组成.

    主要方法:

    • 利用冲击波实验来产生高压条件.
    • 分析地质学相关材料的压缩行为,如铁,石,氧化和石.
    • 解释冲击波数据以建模相位过渡和密度变化.

    主要成果:

    • 主要冲击诱导的相位变化显著影响关键矿物质在100万bar以下的压缩行为.
    • 下层地幔的密度略高于橄胺丰富模型预测的密度.
    • 外部核心的密度大约比纯铁低10%,这表明存在更轻的元素.

    结论:

    • 冲击波数据为地球深层内部的组成提供了关键的约束.

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    A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System
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    A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System

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    Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction
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    Stress Distribution During Cold Compression of Rocks and Mineral Aggregates Using Synchrotron-based X-Ray Diffraction

    Published on: May 20, 2018

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    Production and Analysis of Sporosarcina pasteurii Biocement Bricks Using Custom 3D-Printed Molds for Unconfined Compression Tests

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    A Uniaxial Compression Experiment with CO2-Bearing Coal Using a Visualized and Constant-Volume Gas-Solid Coupling Test System

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  • 地球的核心可能含有大量的硫 (重量9-12%) 或氧气 (重量约8%).
  • 这些发现完善了行星内部和极端条件下的物质行为的地质物理模型.