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brittle fracture基础释义_brittle fracture的发音_brittle fracture英语范文_brittle fracture的英语作文

brittle fracture

基础释义:

脆性断裂

发音:

/?br?t?fl??fr?kt/

英语范文:

In brittle fracture, the material undergoes a sudden and catastrophic failure without much warning. This type of fracture is common in materials like glass and ceramic, and it can be very dangerous if not properly handled.

在脆性断裂中,材料经历了一次突然的灾难性失败,没有得到太多警告。这种类型的断裂在玻璃和陶瓷等材料中很常见,如果不适当处理,它可能是非常危险的。

音标和基础释义:

音标:/?br?t?fl??fr?kt/

释义:易碎的断裂,脆性断裂是一种材料在没有明显预兆的情况下突然破裂的现象,常见于玻璃、陶瓷等材料,如果不妥善处理,可能会带来危险。

Brittle fracture

Brittle fracture is a common fracture mode in engineering materials. It occurs when the material is subjected to high stress or temperature, and the microstructure of the material undergoes a sudden and irreversible change, leading to the fracture of the material.

In engineering applications, brittle fracture is a serious safety hazard, because it can occur suddenly and without warning, leading to catastrophic failure of the structure or component. Therefore, it is necessary to pay attention to the selection of materials, design and construction methods to reduce the occurrence of brittle fracture.

For example, in the design of automobile engines, selecting high-strength steel or aluminum alloys with good toughness can effectively reduce the occurrence of brittle fracture. In addition, optimizing the manufacturing process and ensuring the quality of components can also reduce the risk of brittle fracture.

In summary, brittle fracture is a common and dangerous fracture mode in engineering materials. It requires careful attention to material selection, design and construction methods to ensure the safety and reliability of engineering structures and components.

Brittle fracture

Brittle fracture, also known as ductile fracture, is a type of fracture that occurs when a material experiences sudden and catastrophic failure under stress or strain. It is characterized by abrupt and brittle cracking, often resulting in catastrophic failure of the material.

In brittle fracture, the material fails abruptly without any visible deformation or deformation before the fracture occurs. This type of fracture is often associated with materials that are highly brittle or have low ductility, such as ceramics, glass, and some plastics.

In engineering applications, brittle fracture is a serious safety hazard that can lead to catastrophic failure of structures and equipment. Therefore, it is crucial to ensure the safety of materials used in critical applications by conducting proper material testing and ensuring their ductility and fracture toughness meet design requirements.

In addition to ensuring the safety of materials, brittle fracture also has significant implications for recycling and waste management. When materials undergo brittle fracture, they often shatter into small fragments that are difficult to recycle and may pose environmental hazards if not properly managed. Therefore, it is crucial to develop sustainable waste management practices that minimize the impact of brittle fracture on the environment.

In conclusion, brittle fracture is a type of catastrophic failure that occurs abruptly without any visible deformation or deformation before the fracture occurs. It is a serious safety hazard that can lead to catastrophic failure of structures and equipment, and it also has significant implications for recycling and waste management. Therefore, it is crucial to ensure the safety of materials used in critical applications and develop sustainable waste management practices that minimize the impact of brittle fracture on the environment.

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