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您现在的位置: > 公共英语 > bending point

bending point

bending point的音标是[bɪndɪŋ pɔɪnt],基本翻译是“弯曲点;屈服点;临界点”。速记技巧可以是谐音记忆,可以联想记忆为“宾(bending)分(point)点了”。

Bending point 的英文词源是benda,意为弯曲。Bending point 是指物体在受到外力作用后发生弯曲的临界点。这个词在英语中通常用来描述物体的韧性或强度,以及在特定条件下发生弯曲的特性。

变化形式:名词形式为bending point,动词形式为bend。

相关单词:

1. Flexibility - 名词,意为灵活性,来源于拉丁语flexus,意为弯曲或扭曲。这个词可以用来描述物体或人的柔韧性和适应性。

2. Stiffness - 名词,意为刚性,来源于拉丁语stipes,意为棍子或棒子。这个词可以用来描述物体的硬度和不易弯曲的性质。

3. Bending - 动词,意为弯曲,来源于benda。这个词可以用来描述物体在受到外力作用后的形状变化。

4. Curvature - 名词,意为弯曲,来源于拉丁语curvus,意为弯曲的。这个词可以用来描述物体或线条的弯曲程度。

5. Flex - 动词和名词形式,意为弯曲或柔韧,来源于拉丁语flexus。这个词可以用来描述物体的柔韧性和可弯曲性。

以上这些单词都与bending point 相关,它们在不同的语境中描述了物体在不同方面的特性。

常用短语:

1. bending point of a rubber band

2. bending moment

3. yield point

4. bending strength

5. flexural strength

6. buckling point

7. critical bending radius

例句:

1. The rubber band has a bending point where it becomes weak and prone to breakage.

2. When a beam is subjected to bending, it experiences a bending moment which causes it to warp.

3. The material has a yield point at which it starts to deform under stress.

4. The bending strength of steel is much higher than its tensile strength, making it strong and durable.

5. When a beam is too long for its support, it may undergo buckling at its bending point, causing it to collapse.

6. The critical bending radius of a structure determines its susceptibility to collapse due to wind or earthquake forces.

英文小作文:

Bending Points in Materials

Materials have certain points where they become weak and prone to deformation or failure when subjected to certain forces or stresses. These points are called bending points or yield points. For example, rubber bands have a bending point where they become weak and prone to breakage under tension or compression. Similarly, steel beams have a bending point where they may undergo buckling due to excessive bending stress. Understanding these bending points is crucial for the design and use of structures and other engineering systems. Engineers must carefully select materials, design structures with appropriate supports, and calculate loads and stresses to ensure that structures remain stable and safe under expected conditions.

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