Description:
Desmopan 6064A, injection molding grade; free from plasticizers; easy flowing; very good hydrolysis resistance; low abrasion; automotive interior applications; hard - soft systems; Shoe soles.
Desmopan 6072A, injection molding grade; free from plasticizers; easy flowing; very good hydrolysis resistance; low abrasion; automotive interior applications; hard - soft systems; Shoe soles.
Desmopan 6080A, injection molding grade; free from plasticizers; easy flowing; very good hydrolysis resistance; low abrasion; automotive interior applications; hard - soft systems; Shoe soles.
Desmopan 6088A, injection molding grade; very good hydrolysis resistance; easy flowing; low warparge; hard - soft systems.
Desmopan 6088AU, injection molding grade; very good hydrolysis resistance; easy flowing; with special UV stabilizers; hard - soft systems.
Desmopan 37385A, Partially based on renewable raw materials; Hoses, non-reinforced.
Desmopan 85786A, Grade for calandering; no yellowing under the action of UV light; good low-temperature flexibility; high rebound resilience; Improved hydrolysis resistance; Application; Textile coating.
Desmopan 89043D, injection molding grade; no yellowing under the action of UV light; very good hydrolysis resistance; good low-temperature flexibility; high rebound resilience; low abrasion; colored applications in the automotive, sports and leisure sectors.
Desmopan 89785A, Grade for calandering; no yellowing under the action of UV light; very good low-temperature impact strength; high rebound resilience; Improved hydrolysis resistance; Textile coating.
Overview:
Desmopan TPU offers high wear resistance, flexibility across a wide range of temperatures, and high elasticity over the entire hardness range. It also possesses excellent resistance to oils and solvents as well as good resistance to weathering and high-energy radiation. In addition the Desmopan EC range also offers a reduced carbon footprint without compromising on quality or performance.
Desmopan TPU consist of alternating flexible and rigid segments. The elastic segments have a low glass transition temperature while the crystalline segments exhibit a high melting point. The modification of these phases makes it possible to vary properties such as hardness, strength, rigidity, elasticity and cold flexibility. The material is also intrinsically soft, eliminating the need for plasticizers.
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