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failure strain

Grammar usage guide and real-world examples

USAGE SUMMARY

The phrase "failure strain" is correct and usable in written English.
It is typically used in engineering and materials science to refer to the strain experienced by a material at the point of failure. Example: "The failure strain of the material was determined through rigorous testing to ensure safety in construction."

✓ Grammatically correct

Science

Human-verified examples from authoritative sources

Exact Expressions

60 human-written examples

The quasi-static failure strain is higher than the dynamic failure strain.

Science

Carbon

Moreover, applying geogrids led to increasing deformability and failure strain.

Science

GeoResJ

However, MWCNTs significantly improved the flexural strength, stiffness and failure strain of PC.

S 12 and ( {gamma}_{12}^0 ) denote the in-plane shear strength and failure strain, respectively.

Open image in new window Fig. 7 Variation of failure strain and UCS of admixed soil.

By comparison, the relationship between failure strain and unconfined compressive strength is calculated as σ = (20 130) εf and the failure strain ranges mainly between 1% and 2%.

On the contrary, the failure strain has a tendency to decrease.

In addition to the remarkable piezopotential properties, a large failure strain is also observed in BNHCs.

The failure strain of fibre-reinforced composites can be increased by fibre hybridisation.

Failure strain is more consistent as this property is independent of the fibre cross-section.

Temperature effect was pronounced in strain parameters (initial strain, failure strain, and strain at Nf NLC)).

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Expert writing Tips

Best practice

When reporting "failure strain", always specify the testing conditions (e.g., temperature, strain rate) as these factors significantly influence the measured value.

Common error

Avoid using "failure strain" and failure stress interchangeably. Failure strain refers to the deformation at the point of fracture, while failure stress is the force per unit area at that same point. Both describe material behavior, but represent different properties.

Antonio Rotolo, PhD - Digital Humanist | Computational Linguist | CEO @Ludwig.guru

Antonio Rotolo, PhD

Digital Humanist | Computational Linguist | CEO @Ludwig.guru

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81%

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Real-world application tested

Linguistic Context

"Failure strain" functions primarily as a noun phrase identifying a specific material property. Ludwig shows numerous examples in scientific contexts where this phrase serves as a key parameter in material characterization and analysis.

Expression frequency: Very common

Frequent in

Science

100%

Less common in

News & Media

0%

Formal & Business

0%

Academia

0%

Ludwig's WRAP-UP

In summary, "failure strain" is a noun phrase that refers to the amount of deformation a material can withstand before it fractures. According to Ludwig, this term is grammatically correct and very common in scientific and engineering contexts. It is crucial to understand the factors that influence "failure strain", such as temperature and material composition, and to avoid confusing it with failure stress. The phrase is primarily used to quantify material behavior and assess structural integrity. When communicating "failure strain" values, it’s a best practice to specify testing conditions to ensure accurate interpretation. Alternative phrases such as "fracture strain" or "ultimate strain" can be used depending on the desired level of detail.

FAQs

How is "failure strain" measured?

Failure strain is typically measured through tensile testing, where a material sample is subjected to increasing force until it fractures. The strain, or deformation, is recorded throughout the test, and the failure strain is the strain value at the moment of fracture.

What factors affect the "failure strain" of a material?

Several factors can affect a material's failure strain, including temperature, strain rate, material composition, and the presence of defects. For example, increasing the temperature can increase "ductility" and potentially increase the "failure strain".

How does "failure strain" relate to material ductility?

"Failure strain" is a direct indicator of a material's "ductility". A material with a high "failure strain" is considered ductile, meaning it can undergo significant deformation before fracturing. Conversely, a material with a low "failure strain" is brittle.

What are some alternative terms for "failure strain"?

Depending on the context, you can use alternatives like "fracture strain", "ultimate strain", or "elongation at break". The best choice depends on the specific emphasis you want to convey.

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