Fiber-Matrix Bonding Strength given Critical Length of Fiber Solution

STEP 0: Pre-Calculation Summary
Formula Used
Fiber Matrix Bonding Strength = (Tensile Strength of Fiber*Fiber Diameter)/(2*Critical Fiber Length)
τ = (σf*d)/(2*lc)
This formula uses 4 Variables
Variables Used
Fiber Matrix Bonding Strength - (Measured in Pascal) - Fiber Matrix Bonding Strength can also be taken as shear yield strength of the matrix.
Tensile Strength of Fiber - (Measured in Pascal) - Tensile Strength of Fiber refers to the maximum stress a material can withstand while being stretched or pulled before breaking.
Fiber Diameter - (Measured in Meter) - Fiber Diameter refers to the width or diameter of the individual fibers within a material, such as in composite materials or textiles.
Critical Fiber Length - (Measured in Meter) - Critical Fiber Length that is necessary for effective strengthening and stiffening of the composite material.
STEP 1: Convert Input(s) to Base Unit
Tensile Strength of Fiber: 6.375 Megapascal --> 6375000 Pascal (Check conversion ​here)
Fiber Diameter: 10 Millimeter --> 0.01 Meter (Check conversion ​here)
Critical Fiber Length: 10.625 Millimeter --> 0.010625 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
τ = (σf*d)/(2*lc) --> (6375000*0.01)/(2*0.010625)
Evaluating ... ...
τ = 3000000
STEP 3: Convert Result to Output's Unit
3000000 Pascal -->3 Megapascal (Check conversion ​here)
FINAL ANSWER
3 Megapascal <-- Fiber Matrix Bonding Strength
(Calculation completed in 00.004 seconds)

Credits

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Created by Rajat Vishwakarma
University Institute of Technology RGPV (UIT - RGPV), Bhopal
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Shri Madhwa Vadiraja Institute of Technology and Management (SMVITM), Udupi
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Polymer Matrix Composites Calculators

Volume Fraction of Matrix from EM of Composite (Longitudinal Direction)
​ LaTeX ​ Go Volume Fraction of Matrix = (Elastic Modulus Composite (Longitudinal Direction)-Elastic Modulus of Fiber*Volume Fraction of Fiber)/Elastic Modulus of Matrix
Fiber-Matrix Bonding Strength given Critical Length of Fiber
​ LaTeX ​ Go Fiber Matrix Bonding Strength = (Tensile Strength of Fiber*Fiber Diameter)/(2*Critical Fiber Length)
Tensile Strength of Fiber given Critical Fiber Length
​ LaTeX ​ Go Tensile Strength of Fiber = (2*Critical Fiber Length*Fiber Matrix Bonding Strength)/Fiber Diameter
Fiber Diameter given Critical Fiber Length
​ LaTeX ​ Go Fiber Diameter = (Critical Fiber Length*2*Fiber Matrix Bonding Strength)/Tensile Strength of Fiber

Fiber-Matrix Bonding Strength given Critical Length of Fiber Formula

​LaTeX ​Go
Fiber Matrix Bonding Strength = (Tensile Strength of Fiber*Fiber Diameter)/(2*Critical Fiber Length)
τ = (σf*d)/(2*lc)

What are polymer matrix composites (PMC)?

Polymer matrix composites have organic polymer matrix with strengthening fibers in the matrix. Matrix holds and protects the fibers in place while transmitting the load to them. Advanced composites are a class of Polymer matrix composites that have high mechanical properties (strength and stiffness) compared to the normal reinforced plastics and are used in aerospace applications. Reinforced plastics are relatively inexpensive and are widely used.

How to Calculate Fiber-Matrix Bonding Strength given Critical Length of Fiber?

Fiber-Matrix Bonding Strength given Critical Length of Fiber calculator uses Fiber Matrix Bonding Strength = (Tensile Strength of Fiber*Fiber Diameter)/(2*Critical Fiber Length) to calculate the Fiber Matrix Bonding Strength, Fiber-Matrix Bonding Strength given Critical Length of Fiber indicates that the bonding strength between the fiber and the matrix is inversely proportional to the critical length of the fiber. In other words, shorter fibers typically exhibit stronger bonding with the matrix compared to longer fibers. Fiber Matrix Bonding Strength is denoted by τ symbol.

How to calculate Fiber-Matrix Bonding Strength given Critical Length of Fiber using this online calculator? To use this online calculator for Fiber-Matrix Bonding Strength given Critical Length of Fiber, enter Tensile Strength of Fiber f), Fiber Diameter (d) & Critical Fiber Length (lc) and hit the calculate button. Here is how the Fiber-Matrix Bonding Strength given Critical Length of Fiber calculation can be explained with given input values -> 3E-6 = (6375000*0.01)/(2*0.010625).

FAQ

What is Fiber-Matrix Bonding Strength given Critical Length of Fiber?
Fiber-Matrix Bonding Strength given Critical Length of Fiber indicates that the bonding strength between the fiber and the matrix is inversely proportional to the critical length of the fiber. In other words, shorter fibers typically exhibit stronger bonding with the matrix compared to longer fibers and is represented as τ = (σf*d)/(2*lc) or Fiber Matrix Bonding Strength = (Tensile Strength of Fiber*Fiber Diameter)/(2*Critical Fiber Length). Tensile Strength of Fiber refers to the maximum stress a material can withstand while being stretched or pulled before breaking, Fiber Diameter refers to the width or diameter of the individual fibers within a material, such as in composite materials or textiles & Critical Fiber Length that is necessary for effective strengthening and stiffening of the composite material.
How to calculate Fiber-Matrix Bonding Strength given Critical Length of Fiber?
Fiber-Matrix Bonding Strength given Critical Length of Fiber indicates that the bonding strength between the fiber and the matrix is inversely proportional to the critical length of the fiber. In other words, shorter fibers typically exhibit stronger bonding with the matrix compared to longer fibers is calculated using Fiber Matrix Bonding Strength = (Tensile Strength of Fiber*Fiber Diameter)/(2*Critical Fiber Length). To calculate Fiber-Matrix Bonding Strength given Critical Length of Fiber, you need Tensile Strength of Fiber f), Fiber Diameter (d) & Critical Fiber Length (lc). With our tool, you need to enter the respective value for Tensile Strength of Fiber, Fiber Diameter & Critical Fiber Length and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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