Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Orion Hiblack 890 Carbon Black

Orion Hiblack 890 is a high-performance furnace black from Orion Engineered Carbons’ Hiblack series, engineered for premium rubber reinforcement—especially in tire treads and industrial rubber goods—delivering exceptional abrasion resistance, tensile strength, and dispersion efficiency.
  • orion hiblack 890 carbon black_079e98f0
  • orion hiblack 890 carbon black_079e98f0

Features Of Orion Hiblack 890 Carbon Black

  1. High structure and excellent dispersion characteristics for enhanced rubber compound processability.

  2. Optimized particle size distribution to deliver superior reinforcement and tensile strength in elastomeric systems.

  3. Low volatile content and consistent batch-to-batch quality ensuring reliable performance in high-volume production.

  4. Excellent UV absorption and weather resistance, extending service life of black-colored polymer products.

  5. Low abrasion loss and high resilience—ideal for dynamic mechanical applications requiring fatigue resistance.

Typical Applications Of Orion Hiblack 890 Carbon Black

  1. Passenger and light-truck tire treads and sidewalls.

  2. Industrial rubber goods including conveyor belts, hoses, and seals.

  3. Automotive non-tire components such as bushings, mounts, and vibration dampers.

  4. Black masterbatches for engineering thermoplastics and TPE compounds.

  5. Conductive and static-dissipative rubber formulations for specialized industrial use.

Specifications Of Orion Hiblack 890 Carbon Black

Chemical TypeCarbon black (ASTM N330 equivalent)
Product FormPelletized (standard 1–3 mm cylindrical pellets)
AppearanceBlack, free-flowing pellets with low dust generation
Primary ApplicationsRubber reinforcement, pigmenting, UV protection
Key FeaturesHigh structure, good dispersibility, low DBP absorption variability
BenefitsImproved extrusion stability, reduced mixing time, enhanced surface finish
Moisture Content (max)1.5 wt%
Volatile Matter (max)1.0 wt%


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