Filters

Material quantity

Average granulation

70 µm - 70 µm

Mechanical properties

Impact strength

0 KJ/m² - 10 KJ/m²

Elongation at break

40 % - 50 %

Tensile strength

10 MPa - 20 MPa

Tensile modulus

820 MPa - 820 MPa

Flexural strength

20 MPa - 30 MPa

Flexural modulus

670 MPa - 670 MPa

Surface hardness (scale)

5 - 5

Thermal properties

Softening temperature (ºC)

110 ºC - 120 ºC

Highlighted features

Polypropylene (PP)

PP SLS powders enable the manufacture of lightweight, durable and tough parts with excellent chemical resistance. Ideal for industries such as automotive, packaging and consumer goods.

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Polypropylene (PP) SLS powder is a versatile and widely used material in the field of selective laser sintering (SLS) additive manufacturing. Known for their excellent chemical resistance, high impact strength, and flexibility, PP powders offer unique properties that make them suitable for a variety of applications across different industries. These powders are particularly valued for their ability to produce lightweight, durable, and functional parts with intricate geometries and precise dimensions.

One of the main advantages of PP SLS powders is their exceptional chemical resistance, making them ideal for applications requiring exposure to various chemicals, oils, and solvents. This property makes PP powders suitable for producing components in industries such as automotive, chemical processing, and fluid handling, including tanks, containers, and fluid ducts. Additionally, the high impact strength and flexibility of PP powders make them suitable for manufacturing products subject to mechanical stresses and deformations, such as car bumpers, protective equipment, and consumer appliances.

In the consumer goods sector, PP powders are used to manufacture a wide range of products, including appliances, packaging, and toys, due to their lightweight nature and cost-effectiveness. With their versatile properties and wide range of applications, PP SLS powders continue to play a significant role in driving innovation and advancing additive manufacturing technology.