Javascript must be enabled to continue!
Design and Structural Analysis of a Connecting Rod Using Different Materials
View through CrossRef
A connecting rod or connective rod is a very important part of internal combustion engines that connect the piston to crankshaft, which enables conversion of the reciprocating motion to another rotary motion. Connecting rods have traditionally been constructed out of forged steel because of its fatigue strength, although its density adds weight and decreases efficiency to engines. As the requirements for lightweight and fuel-efficient engines increase, so too do the negative influences of the mass of forged steel connecting rods leading to easier induction of inertial forces and loss of performance. The purpose of the research is to design and analyze connecting rod materials alternative to reduce weight, increase stiffness and fatigue life compared to conventional forged steel connecting rods. A connecting-rod was modeled parametrically in SolidWorks and assessed using SolidWorks Workbench finite element analysis (FEA). The paper compared Forged Steel to Titanium Alloy, Beryllium Alloy-25, Magnesium Alloy and Aluminum 360 such in stress strain, deformation, safety factor and fatigue life. Out of the tested material, Aluminum 360 had the lowest deformation (1.950e-05 mm), least stress (2.992e+04 N/m 2), greatest margin of safety and substantial weight reduction compared to forged steel. The results encourage the use of Aluminum 360 in place of forged steel used in two-wheeler engines since it provides better performance, efficiency, and a longer life.
Science Publishing Group
Title: Design and Structural Analysis of a Connecting Rod Using Different Materials
Description:
A connecting rod or connective rod is a very important part of internal combustion engines that connect the piston to crankshaft, which enables conversion of the reciprocating motion to another rotary motion.
Connecting rods have traditionally been constructed out of forged steel because of its fatigue strength, although its density adds weight and decreases efficiency to engines.
As the requirements for lightweight and fuel-efficient engines increase, so too do the negative influences of the mass of forged steel connecting rods leading to easier induction of inertial forces and loss of performance.
The purpose of the research is to design and analyze connecting rod materials alternative to reduce weight, increase stiffness and fatigue life compared to conventional forged steel connecting rods.
A connecting-rod was modeled parametrically in SolidWorks and assessed using SolidWorks Workbench finite element analysis (FEA).
The paper compared Forged Steel to Titanium Alloy, Beryllium Alloy-25, Magnesium Alloy and Aluminum 360 such in stress strain, deformation, safety factor and fatigue life.
Out of the tested material, Aluminum 360 had the lowest deformation (1.
950e-05 mm), least stress (2.
992e+04 N/m 2), greatest margin of safety and substantial weight reduction compared to forged steel.
The results encourage the use of Aluminum 360 in place of forged steel used in two-wheeler engines since it provides better performance, efficiency, and a longer life.
Related Results
Design optimization of a diesel engine connecting rod
Design optimization of a diesel engine connecting rod
Rotary motion is generated from a crankshaft’s piston alternating motion using a connecting rod. The engine combustion gases and components motion of inertia exert pressures that i...
Ribbon Rod - Improvement in Sucker Rod Technology Shows Need to Re-Evaluate Current Artificial Lift Installations
Ribbon Rod - Improvement in Sucker Rod Technology Shows Need to Re-Evaluate Current Artificial Lift Installations
Abstract
This study describes ribbon rod as a continuous graphite composite material that can be currently used to partially replace a conventional sucker rod str...
Rod bipolar cells in the macaque monkey retina: immunoreactivity and connectivity
Rod bipolar cells in the macaque monkey retina: immunoreactivity and connectivity
Rod bipolar cells in the macaque monkey retina were labeled by three antibodies: an antibody against the alpha- and beta-subspecies of protein kinase C (PKC), a polyclonal antiseru...
Effects of Criterion Values on Estimation of the Radius of Drainage and Stabilization Time
Effects of Criterion Values on Estimation of the Radius of Drainage and Stabilization Time
Abstract
After a well starts flowing, a larger portion of the reservoir contributes to production. At any given time, the radius of the portion of the reservoir t...
Effects of Criterion Values on Estimation of the Radius of Drainage and Stabilization Time
Effects of Criterion Values on Estimation of the Radius of Drainage and Stabilization Time
Abstract
After a well starts flowing, a larger and larger portion of the reservoir contributes to production. At any given time, the radius of the portion of the ...
Rod Lengthening With the Magnetically Controlled Growing Rod
Rod Lengthening With the Magnetically Controlled Growing Rod
Study Design.
Prospective study.
Objective.
To identify the factors that are associated with rod slippage and to study the...
In VitroBiomechanical Comparison of 3.5 mm LC‐DCP/Intramedullary Rod and 5 mm Clamp‐Rod Internal Fixator (CRIF)/Intramedullary Rod Fixation in a Canine Femoral Gap Model
In VitroBiomechanical Comparison of 3.5 mm LC‐DCP/Intramedullary Rod and 5 mm Clamp‐Rod Internal Fixator (CRIF)/Intramedullary Rod Fixation in a Canine Femoral Gap Model
ObjectiveTo compare the biomechanical properties of clamp rod internal fixation (CRIF)/rod and LC‐DCP/rod constructs in a canine femoral gap model.Study DesignCadaveric biomechanic...
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
The springing up of freeform architecture and structures introduces many challenges to structural engineers. The main challenge is to generate structural forms with high structural...

