To reduce vibration during machining and to avoid re-manufacture or scrap parts, two main methods have been proposed, vibration damping and absorption. In this paper, a novel synergistic integration between both techniques using pillar elements known as flexures (acting as absorbers) and a flexible pneumatic expandable diaphragm (acting as a damper) is presented. Four setups have been compared: the proposed Hybrid Fixture, a traditional solid vice, a flexures fixture, and an expandable diaphragm-only clamp. The Hybrid Fixture was able to reduce the workpiece vibration by 58% and the surface waviness by 74.1% when compared with the traditional solid fixture
Vibration absorbers have been widely used to suppress undesirable vibrations in machining operations...
[[abstract]]This study proposed a novel hybrid dynamic balancer and vibration absorber that is cheap...
A passive support with a pivot mechanism was previously designed for increasing damping of the vibra...
Machining of thin wall structures is a challenging area due to the problems such as chatter and forc...
The design of fixture systems for low stiffness freeform components is challenging. The tendency of ...
AbstractMilling of large thin walled casings with complex features needs appropriate damping solutio...
AbstractMilling of the thin-walled workpiece in the aerospace industry is a critical process due to ...
Damping of machining vibrations in thin-wall structures is an important area of research due to the ...
Due to the thin and rigid wall of aeroengine casing, it is easy to reduce the machining accuracy for...
Damping of machining vibrations in thin-wall structures is an important area of research due to the ...
AbstractElimination of flexible workpiece vibrations with a special damper, attached to workpiece by...
Fixtures are a critical element in machining operations as they are the interface between the part a...
AbstractIn the precision manufacturing field, the major structural components are often made of rigi...
Fixtures are a critical element in machining operations as they are the interface between the part a...
The paper presents novel design of vibration absorber with innovative features including use of flex...
Vibration absorbers have been widely used to suppress undesirable vibrations in machining operations...
[[abstract]]This study proposed a novel hybrid dynamic balancer and vibration absorber that is cheap...
A passive support with a pivot mechanism was previously designed for increasing damping of the vibra...
Machining of thin wall structures is a challenging area due to the problems such as chatter and forc...
The design of fixture systems for low stiffness freeform components is challenging. The tendency of ...
AbstractMilling of large thin walled casings with complex features needs appropriate damping solutio...
AbstractMilling of the thin-walled workpiece in the aerospace industry is a critical process due to ...
Damping of machining vibrations in thin-wall structures is an important area of research due to the ...
Due to the thin and rigid wall of aeroengine casing, it is easy to reduce the machining accuracy for...
Damping of machining vibrations in thin-wall structures is an important area of research due to the ...
AbstractElimination of flexible workpiece vibrations with a special damper, attached to workpiece by...
Fixtures are a critical element in machining operations as they are the interface between the part a...
AbstractIn the precision manufacturing field, the major structural components are often made of rigi...
Fixtures are a critical element in machining operations as they are the interface between the part a...
The paper presents novel design of vibration absorber with innovative features including use of flex...
Vibration absorbers have been widely used to suppress undesirable vibrations in machining operations...
[[abstract]]This study proposed a novel hybrid dynamic balancer and vibration absorber that is cheap...
A passive support with a pivot mechanism was previously designed for increasing damping of the vibra...