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ABS-Wear and Scratch Resistant

ABS Wear and scratch resistant  is a special material developed for high wear and high load scenarios, and is an ideal choice for industrial grade durable components.
The ABS ultra-wear-resistant and scratch-resistant 3D printing filament is a special material developed for high-wear and high-load scenarios. Through the dual technology path of "composite reinforcement + self-lubrication", it redefines the wear resistance performance of ABS, fills the market gap where high wear resistance and high toughness cannot be achieved at the same time, and is an ideal choice for industrial-grade durable components:
Scratch resistance and durability
Through the polymer composite process, the surface hardness and wear resistance are significantly improved, while the friction coefficient of the material is reduced, so that it can resist the frequent scratches of keys, tools and other hard objects, with less noise and longer life during operation.
Durability and adaptability
It pays attention to mechanical balance, has high impact strength and rigidity, and is more adaptable to the environment.And its surface does not fade or stick, so it can meet the needs of laboratory and industrial environment.
Industrial grade and compatibility
The whole series supports high-speed printing, compatible with desktop and industrial equipment, the special formulation of materials, greatly reduces the risk of deformation of finished products, and simplifies the post-treatment, no tedious polishing, glossiness close to injection molding products, with excellent stability performance.
Technology and innovation applications
The characteristics of wear and scratch resistance further expand the application industries and products of 3D printing in the industrial field, realizing the flexible production of special parts and significant cost reduction. At the same time, more users novel ideas can be quickly realized.
application scenarios
This product is suitable for high-frequency friction components such as gearbox shift paddles, door handles, smartwatch casings, earphone slide rails, and foldable smartphone hinges. It also applies to mining conveyor belt rollers, automated sorting robot grippers, and military machinery wear parts. For instance, prototype aerodynamic kits for racing cars can be directly adjusted post-testing, eliminating the need for traditional mold manufacturing.
Specifications parameters


Method of measurement

standard

characteristic

callipers

1.75±0.02mm

Wire diameter

callipers

≤ 0.02mm

roundness

electronic balance

1 ± 0.01KG/roll

weight

automatic measurer

1.75 ± 0.02mm

Diameter consistency

Surface


Method of measurement

standard

characteristic

Visual plus touch

Smooth, rounded, uniform thickness

surface

Visual plus touch

No bubbles, bulges, spots, etc

details

Visual additive color charts

The color is uniform with the color chart

pigment

visual

Neat and unblocked

rolling

Physical property


Method of measurement

standard

characteristic

density

1.05g/cm³

standard

distortion temperature

80℃

standard

melt index

24g/10min

standard

Vika softening temperature

/

standard


Mechanical behavior


Method of measurement

standard

characteristic

tensile strength

41.7 MPa

standard

elongation at break

9.3%

standard

bending strength

6 1.7 MPa

standard

flexural modulus

2300 MPa

standard

Cantilever beam notch impact

10KJ/M²

standard

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