The replacement of nodular cast iron with 319 type aluminum (Al) alloys in gasoline engine blocks is an example of the shift towards the use of lighter alloys in the automotive industry. However, excessive residual stress along the cylinder bore may lead to bore distortion, significantly reducing engine operating efficiency. In the current study, microstructure, mechanical properties and residual stress were characterized along the cylinder bridge of engine blocks following thermal sand reclamation (TSR), T7 heat treatment, and service testing of the casting. Neutron diffraction was effectively used to quantify the residual stress along both the Al cylinder bridge and the adjacent gray cast iron cylinder liners in the hoop, radial, and axia...
The presence of thermally induced residual stresses, created during the industrial direct chill (DC)...
The most commonly used aluminum alloy for automotive engine blocks is 319, which possesses good stre...
The presence of thermally induced residual stresses, created during the industrial direct chill (DC)...
The replacement of nodular cast iron with 319 type aluminum (Al) alloys in gasoline engine blocks is...
In recent years, stringent government legislation on vehicle fuel efficiency has pushed the automoti...
The development of an optimized heat treatment schedule, with the aim of maximizing strength and rel...
Continuous efforts to develop a lightweight alloy suitable for the most demanding applications in au...
Development of lightweight alloys suitable for automobile applications has been of great importance ...
Continuous efforts to develop a lightweight alloy suitable for the most demanding applications in au...
Development of lightweight alloys suitable for automobile applications has been of great importance ...
In recent years, light weight components have been an area of significant importance in automotive d...
Next-generation internal combustion engines (ICEs) require advanced manufacturing technologies to fu...
Aluminum alloy engine blocks have successfully replaced ferrous materials in order to maximize weigh...
Aluminium alloy engine blocks have successfully replaced ferrous materials in order to maximise weig...
The continued need of vehicle weight reduction provides impetus for research into the development of...
The presence of thermally induced residual stresses, created during the industrial direct chill (DC)...
The most commonly used aluminum alloy for automotive engine blocks is 319, which possesses good stre...
The presence of thermally induced residual stresses, created during the industrial direct chill (DC)...
The replacement of nodular cast iron with 319 type aluminum (Al) alloys in gasoline engine blocks is...
In recent years, stringent government legislation on vehicle fuel efficiency has pushed the automoti...
The development of an optimized heat treatment schedule, with the aim of maximizing strength and rel...
Continuous efforts to develop a lightweight alloy suitable for the most demanding applications in au...
Development of lightweight alloys suitable for automobile applications has been of great importance ...
Continuous efforts to develop a lightweight alloy suitable for the most demanding applications in au...
Development of lightweight alloys suitable for automobile applications has been of great importance ...
In recent years, light weight components have been an area of significant importance in automotive d...
Next-generation internal combustion engines (ICEs) require advanced manufacturing technologies to fu...
Aluminum alloy engine blocks have successfully replaced ferrous materials in order to maximize weigh...
Aluminium alloy engine blocks have successfully replaced ferrous materials in order to maximise weig...
The continued need of vehicle weight reduction provides impetus for research into the development of...
The presence of thermally induced residual stresses, created during the industrial direct chill (DC)...
The most commonly used aluminum alloy for automotive engine blocks is 319, which possesses good stre...
The presence of thermally induced residual stresses, created during the industrial direct chill (DC)...