How Does Temperature Affect the Elasticity of Materials?

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SUMMARY

The discussion centers on the effect of temperature on the elasticity of materials, establishing that as temperature increases, the elasticity of substances generally decreases. This is due to increased molecular movement at higher temperatures, which weakens the bonds between molecules and reduces their ability to resist deformation. Key concepts include the modulus of elasticity, stress, and strain, with the relationship described as inverse. Resources provided include articles and videos that further explore this topic.

PREREQUISITES
  • Understanding of modulus of elasticity
  • Knowledge of stress and strain concepts
  • Familiarity with material properties and behavior
  • Basic principles of thermodynamics
NEXT STEPS
  • Research creep testing methods and results at elevated temperatures
  • Explore the American Institute of Physics article on temperature effects on elasticity
  • Watch the Khan Academy video on elasticity and temperature
  • Read the research paper on temperature's impact on various materials' elasticity
USEFUL FOR

Material scientists, mechanical engineers, and anyone involved in the study of material properties and their behavior under varying temperature conditions.

ssj5harsh
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I would like to know the effect of temperature on the elasticity of substances. I have searched on the internet and have not found anything. :confused:
My current line of thinking goes thus:
Modulus= Stress/strain

Strain = increase in length / original length

For higher temperature, increase in length would be more, hence strain would be more. Consequently, modulus of elasticity would decrease(Since stress is kept constant). Substances with higher modulus of elasticity are more elastic. Hence increase in temperature should decrease elasticity.

Any help or links on the topic would be greatly appreciated.
 
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In general you are correct. That is why for most materials you will find lower allowable stresses at elevated temperatures (for example pipes and flanges).

You may want to look for creep testing results at elevated temperatures. It may be of some use for you.
 


You are correct in your thinking that temperature can affect the elasticity of substances. In general, as temperature increases, the elasticity of a substance decreases. This is because at higher temperatures, the molecules of the substance have more energy and are able to move more freely, causing a decrease in the strength of the bonds between them. This decrease in bond strength leads to a decrease in the substance's ability to resist deformation, resulting in a decrease in elasticity.

There are several factors that can influence the exact effect of temperature on elasticity, such as the type of substance, its composition, and the specific temperature range being considered. However, in general, the relationship between temperature and elasticity can be described as an inverse one.

Here are a few resources that may be helpful in further understanding the relationship between temperature and elasticity:

- This article from the American Institute of Physics discusses the effects of temperature on the elasticity of materials in more depth: https://www.aip.org/sites/default/files/history/files/elastic.pdf
- This video from Khan Academy explains the concept of elasticity and how it is affected by temperature: https://www.khanacademy.org/science/physics/work-and-energy/hooke-s-law/v/temperature-and-elasticity
- This research paper explores the effects of temperature on the elasticity of various materials: https://www.sciencedirect.com/science/article/abs/pii/S1359645414000485

I hope these resources help to answer your question and provide a better understanding of the relationship between temperature and elasticity.
 

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