https://www.avient.com/knowledge-base/case-study/lighter-weight-greater-durability-luxury-vehicles?ind[]=6601
However, in this case, designers wanted to reduce the thickness of the part wall significantly to achieve a relative weight saving of 90 percent.
Maxxam™ formulations are based on polypropylene and polyethylene resins and can be filled and reinforced to satisfy the required performance characteristic.
Designers were able to achieve a relative weight saving of 90 percent without compromising performance.
https://www.avient.com/knowledge-base/case-study/lighter-weight-greater-durability-luxury-vehicles
However, in this case, designers wanted to reduce the thickness of the part wall significantly to achieve a relative weight saving of 90 percent.
Maxxam™ formulations are based on polypropylene and polyethylene resins and can be filled and reinforced to satisfy the required performance characteristic.
Designers were able to achieve a relative weight saving of 90 percent without compromising performance.
https://www.avient.com/knowledge-base/case-study/lighter-weight-greater-durability-luxury-vehicles?sust[]=1165
However, in this case, designers wanted to reduce the thickness of the part wall significantly to achieve a relative weight saving of 90 percent.
Maxxam™ formulations are based on polypropylene and polyethylene resins and can be filled and reinforced to satisfy the required performance characteristic.
Designers were able to achieve a relative weight saving of 90 percent without compromising performance.
https://www.avient.com/knowledge-base/case-study/lighter-weight-greater-durability-luxury-vehicles?pname[]=16817
However, in this case, designers wanted to reduce the thickness of the part wall significantly to achieve a relative weight saving of 90 percent.
Maxxam™ formulations are based on polypropylene and polyethylene resins and can be filled and reinforced to satisfy the required performance characteristic.
Designers were able to achieve a relative weight saving of 90 percent without compromising performance.
https://www.avient.com/knowledge-base/case-study/reducing-weight-automotive-parts?sust[]=1165
With non-hazardous Hydrocerol™ Chemical Foaming Agents (CFA) Avient helped the customer achieve their sustainability targets through significant energy savings in production and finished part weight reduction.
Added during processing, Hydrocerol is heat activated and releases gas to form a cellular foam structure, keeping the outer skin solid without voids.
Every saved pound contributes to lower fuel consumption and cuts CO2 emissions.
https://www.avient.com/knowledge-base/case-study/reducing-weight-automotive-parts
With non-hazardous Hydrocerol™ Chemical Foaming Agents (CFA) Avient helped the customer achieve their sustainability targets through significant energy savings in production and finished part weight reduction.
Added during processing, Hydrocerol is heat activated and releases gas to form a cellular foam structure, keeping the outer skin solid without voids.
Every saved pound contributes to lower fuel consumption and cuts CO2 emissions.
https://www.avient.com/products/vinyl-formulations/vinyl-plastisols-organosols/core-vinyl-organosols
Plastisols that provide the durability and flexibility you need without phthalates
Our cutting-edge polymer additives can add function, performance, even profitability
See how our specially formulated colorants can help differentiate your brand
https://www.avient.com/knowledge-base/case-study/medical-device-shielded-radiation-without-lead
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Medical Device Shielded from Radiation Without Lead
https://www.avient.com/knowledge-base/case-study/reducing-weight-automotive-parts?rtype[]=1124
With non-hazardous Hydrocerol™ Chemical Foaming Agents (CFA) Avient helped the customer achieve their sustainability targets through significant energy savings in production and finished part weight reduction.
Added during processing, Hydrocerol is heat activated and releases gas to form a cellular foam structure, keeping the outer skin solid without voids.
Every saved pound contributes to lower fuel consumption and cuts CO2 emissions.
https://www.avient.com/knowledge-base/case-study/reducing-weight-automotive-parts?psfam[]=10812
With non-hazardous Hydrocerol™ Chemical Foaming Agents (CFA) Avient helped the customer achieve their sustainability targets through significant energy savings in production and finished part weight reduction.
Added during processing, Hydrocerol is heat activated and releases gas to form a cellular foam structure, keeping the outer skin solid without voids.
Every saved pound contributes to lower fuel consumption and cuts CO2 emissions.