AbstractUltra High Molecular Weight Polyethylene (UHMWPE) is a semi-crystalline polymer that has remarkable properties of high mechanical properties, excellent wear resistance, low friction and chemical resistance, and it is found in many applications such sporting goods, medical artificial joints, bullet proof jackets and armours, ropes and fishing lines [1]. UHMWPE parts cannot be produced easily by many conventional processes because of its very high melt viscosity resulting from its very long chains [2]. Additive Manufacturing (AM) is moving from being an industrial rapid prototyping process to becoming a mainstream manufacturing process in a wide range of applications. Laser sintering of polymers is one of the AM techniques that is mos...
Since the introduction of Additive Manufacturing (AM), many researches have been done over the decad...
The aim of this paper is the description and evaluation of physical properties like porosity and den...
Manufacturing complex parts by the laser sintering process requires a minimum amount of energy input...
Ultra High Molecular Weight Polyethylene (UHMWPE) is a semi-crystalline polymer that has remarkable ...
Ultra High Molecular Weight Polyethylene (UHMWPE) has excellent properties, such as high mechanical ...
Ultra High Molecular Weight Polyethylene (UHMWPE) has excellent properties, such as high mechanical ...
Porous structures have unique physical properties(mechanical, density, etc.) that are related to th...
Porous structures have unique physical properties(mechanical, density, etc.) that are related to th...
© 2017 Elsevier Ltd Laser Sintering (LS) of polymers is an Additive Manufacturing technique progress...
Polymer products manufactured by additive processes are today increasingly flooding the market. Give...
Polymer products manufactured by additive processes are today increasingly flooding the market. Give...
Since the introduction of Additive Manufacturing (AM), many researches have been done over the decad...
The properties of parts manufactured by laser sintering (LS) are, amongst others, influenced by the ...
The aim of this paper is the description and evaluation of physical properties like porosity and den...
This paper presents an analysis of Laser Sintering (LS) process from an energy standpoint. LS has a ...
Since the introduction of Additive Manufacturing (AM), many researches have been done over the decad...
The aim of this paper is the description and evaluation of physical properties like porosity and den...
Manufacturing complex parts by the laser sintering process requires a minimum amount of energy input...
Ultra High Molecular Weight Polyethylene (UHMWPE) is a semi-crystalline polymer that has remarkable ...
Ultra High Molecular Weight Polyethylene (UHMWPE) has excellent properties, such as high mechanical ...
Ultra High Molecular Weight Polyethylene (UHMWPE) has excellent properties, such as high mechanical ...
Porous structures have unique physical properties(mechanical, density, etc.) that are related to th...
Porous structures have unique physical properties(mechanical, density, etc.) that are related to th...
© 2017 Elsevier Ltd Laser Sintering (LS) of polymers is an Additive Manufacturing technique progress...
Polymer products manufactured by additive processes are today increasingly flooding the market. Give...
Polymer products manufactured by additive processes are today increasingly flooding the market. Give...
Since the introduction of Additive Manufacturing (AM), many researches have been done over the decad...
The properties of parts manufactured by laser sintering (LS) are, amongst others, influenced by the ...
The aim of this paper is the description and evaluation of physical properties like porosity and den...
This paper presents an analysis of Laser Sintering (LS) process from an energy standpoint. LS has a ...
Since the introduction of Additive Manufacturing (AM), many researches have been done over the decad...
The aim of this paper is the description and evaluation of physical properties like porosity and den...
Manufacturing complex parts by the laser sintering process requires a minimum amount of energy input...