Microcellular materials such as polypropylene foams are often used in protective applications and passive safety for packaging (electronic components, aeronautical structures, food, etc.) or personal safety (helmets, knee-pads, etc.). In such applications the foams which are used are often designed to absorb the maximum energy and are generally subjected to severe loadings involving high strain rates. The manufacture process to obtain polymeric microcellular foams is based on the polymer saturation with a supercritical gas, at high temperature and pressure. This method presents several advantages over the conventional injection moulding techniques which make it industrially feasible. However, the effect of processing conditions such as blow...
High-hardness thermoplastic polyurethane (HD-TPU) presents a high matrix modulus, low-temperature du...
Poly (ethylene terephthalate) (PET) foam was produced with a batch-wise method using carbon dioxide ...
Hızlı gelişen teknoloji ile birlikte hafiflik, ucuzluk ve daha az hammadde tüketimi ön plana çıkmakt...
Microcellular materials such as polypropylene foams are often used in protective applications and pa...
Expanded polypropylene foams (EPP) can be used to absorb shock energy. The performance of these foam...
ABSTRACT: This article presents the preparation of microcellular polypropy-lene foams produced by a ...
This article presents the preparation of microcellular polypropylene foams produced by a CO2 batch-f...
Expanded polypropylene foams (EPP) can be used to absorb shock energy. The performance of these foam...
Microcellular foaming of reinforced core/ shell Polymethylmethacrylate (PMMA) was carried out bymean...
Microcellular foaming of reinforced core/ shell Polymethylmethacrylate (PMMA) was carried out bymean...
Microcellular foams have focused attention of researches due to improvement in some properties when ...
The properties of polypropylene (PP) foams can be extended by controlling the cellular structure and...
International audienceMicrocellular Polypropylene (PP) was obtained using Chemical Blowing Agents (C...
The aim of this research program was to elucidate the process-structure-property relationships that ...
Polypropylene foams are cellular materials, which are often use to fill structures subjected to cras...
High-hardness thermoplastic polyurethane (HD-TPU) presents a high matrix modulus, low-temperature du...
Poly (ethylene terephthalate) (PET) foam was produced with a batch-wise method using carbon dioxide ...
Hızlı gelişen teknoloji ile birlikte hafiflik, ucuzluk ve daha az hammadde tüketimi ön plana çıkmakt...
Microcellular materials such as polypropylene foams are often used in protective applications and pa...
Expanded polypropylene foams (EPP) can be used to absorb shock energy. The performance of these foam...
ABSTRACT: This article presents the preparation of microcellular polypropy-lene foams produced by a ...
This article presents the preparation of microcellular polypropylene foams produced by a CO2 batch-f...
Expanded polypropylene foams (EPP) can be used to absorb shock energy. The performance of these foam...
Microcellular foaming of reinforced core/ shell Polymethylmethacrylate (PMMA) was carried out bymean...
Microcellular foaming of reinforced core/ shell Polymethylmethacrylate (PMMA) was carried out bymean...
Microcellular foams have focused attention of researches due to improvement in some properties when ...
The properties of polypropylene (PP) foams can be extended by controlling the cellular structure and...
International audienceMicrocellular Polypropylene (PP) was obtained using Chemical Blowing Agents (C...
The aim of this research program was to elucidate the process-structure-property relationships that ...
Polypropylene foams are cellular materials, which are often use to fill structures subjected to cras...
High-hardness thermoplastic polyurethane (HD-TPU) presents a high matrix modulus, low-temperature du...
Poly (ethylene terephthalate) (PET) foam was produced with a batch-wise method using carbon dioxide ...
Hızlı gelişen teknoloji ile birlikte hafiflik, ucuzluk ve daha az hammadde tüketimi ön plana çıkmakt...