Breaking stress is a term that is commonly used in the field of engineering and materials science. It refers to the maximum amount of stress that a material can withstand before it breaks or fractures. This is an important concept to understand when designing and testing materials for various applications.
Definitions
Breaking stress is defined as the maximum amount of stress that a material can withstand before it breaks or fractures. This is often measured in units of force per unit area, such as pounds per square inch (psi) or megapascals (MPa).
Origin
The concept of breaking stress has been around for centuries, with early engineers and scientists studying the properties of materials and their ability to withstand stress. The modern understanding of breaking stress has been developed through years of research and experimentation in the field of materials science.
Meaning in different dictionaries
Breaking stress is defined in various dictionaries as the maximum amount of stress that a material can withstand before it breaks or fractures. It is often described as the point at which a material reaches its ultimate strength and can no longer resist deformation.
Associations
Breaking stress is often associated with the strength and durability of materials. It is an important factor to consider when designing and testing materials for various applications, such as construction, manufacturing, and transportation.
Synonyms
Some synonyms for breaking stress include ultimate strength, fracture strength, and tensile strength. These terms all refer to the maximum amount of stress that a material can withstand before it breaks or fractures.
Antonyms
The antonym of breaking stress is often referred to as yield strength. Yield strength is the point at which a material begins to deform permanently under stress, whereas breaking stress is the point at which a material fractures or breaks.
The same root words
Breaking stress is often associated with other concepts related to materials science and engineering, such as elasticity, plasticity, and deformation. These terms all describe the way that materials respond to stress and strain.
Example Sentences
- The breaking stress of this steel alloy is 100,000 psi.
- The engineers tested the breaking stress of the bridge before it was opened to the public.
- The material failed to meet the breaking stress requirements for the application.
- The breaking stress of the concrete was lower than expected due to the presence of air pockets.
- The breaking stress of the metal increased after it was heat-treated to improve its strength.