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Cas 68037-01-4 Poly Alpha Olefin Synthetic Anti-wear Pao MPAO Poly Alpha Olefin 1000 Base Oil for High Grade Lubricant Machinery Motor Oil

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Anti-Wear Protection: Synthetic base oil with advanced anti-wear additives to reduce friction and extend the lifespan of high-grade machinery and motors.
  • High-Performance Lubrication: Designed for heavy-duty applications, ensuring optimal performance under extreme pressure, temperature fluctuations, and prolonged operation.

Key features

  • 1. Corrosion-Resistant Synthetic PAO Base Oil

  • With corrosion-resistant synthetic Poly Alpha Olefin (PAO) base oil, protect machinery from wear and corrosion in harsh environments*

  • 2. High Viscosity Index for Extreme Conditions

  • With a high viscosity index, maintain optimal lubrication under extreme temperatures and pressures*

  • 3. Robust Wear Resistance for Industrial Applications

  • With advanced anti-wear additives, ensure prolonged equipment lifespan in high-stress industrial applications*

  • 4. Certified for Industrial Standards Compliance

  • Certified to meet ISO and API specifications, ensuring compatibility with advanced machinery requirements*

  • 5. Reinforced Steel Drum with Structural Integrity

  • With a corrosion-resistant steel drum featuring ribbed structural design, ensure safe and durable storage/transport in industrial settings*

Product details

Cas 68037-01-4 Poly Alpha Olefin Synthetic Anti-wear Pao MPAO Poly Alpha Olefin 1000 Base Oil for High Grade Lubricant Machinery Motor Oil

Cas 68037-01-4 Poly Alpha Olefin (PAO) Synthetic Anti-wear Base Oil is a high-performance lubricant solution designed for heavy-duty machinery and motor applications. Manufactured in robust industrial-grade steel drums with a hexagonal "APA" logo, this oil combines advanced synthetic technology with anti-wear properties to ensure longevity and efficiency in demanding environments.

Technical specifications

FeatureSpecificationApplication Scenario
Anti-wear AdditivesCAS 68037-01-4 compliant, MPAO-basedReduces friction in high-load machinery
Base Oil TypeSynthetic PAO 1000 (MPAO)Superior thermal/oxidation stability
Material CompatibilityCorrosion-resistant steel drumStorage of chemicals/liquids in harsh conditions

Customization guide

Adjustable parameters include viscosity grades (e.g., 100SN to 680SN) and additive concentrations to tailor wear resistance for specific equipment needs. For extreme temperatures or corrosive environments, request enhanced thermal stability or corrosion inhibitors.

Get inspired

Enhance your machinery’s reliability with this PAO-based oil. Its robust formulation ensures smooth operation in industrial gearboxes, compressors, and engines, even under prolonged stress.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Viscosity Index140+15% (161)+30% (182)*
Thermal Stability95°C110°C125°C
Anti-Wear RatingISO VG 100-320ISO VG 460-680ISO VG 1000+

Supplier's note

  1. Three Technical Breakthroughs:

    • MPAO Base Oil: 30% higher viscosity index than traditional PAO, enabling broader temperature adaptability.
    • Dual-Stage Anti-Wear Additives: Reduces wear by 40% in high-load gear systems.
    • Corrosion-Resistant Drum Design: Hexagonal steel construction withstands 20% more pressure than standard drums.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard industrial machinery (e.g., pumps, conveyors) operating within -20°C to 100°C.
    • Advanced Model: Suitable for heavy-duty engines and compressors requiring ISO VG 460-680 viscosity.
    • Pro Model: Engineered for extreme environments (e.g., offshore drilling, aerospace) with triple the oxidation resistance of industry benchmarks.

With its synthetic PAO base, you can achieve 20% longer equipment lifespan in harsh conditions. Pair the Pro Model’s high-temperature stability with its corrosion-resistant drum to ensure seamless operations in chemical processing plants.

Note: All specifications align with ISO 6743-6 and ASTM D-2276 standards.

Frequently asked questions

  • Which synthetic base oil suits high-performance industrial machinery requiring anti-wear properties?

  • How to store Poly Alpha Olefin base oil to prevent degradation?

  • Synthetic PAO vs Mineral Oil: Which is better for heavy-duty equipment?

  • Is this PAO base oil API/ISO-certified for industrial use?

  • Can this base oil be customized for specific lubricant formulations?

  • What makes MPAO suitable for high-temperature machinery operations?

  • How does the anti-wear feature benefit machinery longevity?

  • Is the drum design corrosion-resistant for outdoor storage?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Mineral Base OilsGeneral machinery, low-stress equipmentViscosity Index 80-120; Oxidative Stability: 1000h @ 100°C (ASTM D943)Cost-effective, widely availableLow thermal stability (▲ vs Synthetic PAO); shorter lifespan
Synthetic PAO Base Oil (Base)Industrial machinery, automotive enginesViscosity Index 140+; Wear Resistance: 30% reduction (ASTM D5182); ▲▲ vs MineralLonger lifespan (2000h @ 150°C); better thermal stabilityHigher cost; limited compatibility with some seals
MPAO Synthetic Oil (Advanced)High-temp equipment, aerospaceViscosity Index 160+; Wear Resistance: 40% reduction (▲▲ vs Base); ▲▲▲ OxidationSuperior thermal stability (200°C); extreme durabilityHighest cost; niche applications
Ester-Based OilsHigh-speed compressors, refrigerationBiodegradable (>90% per OECD 301); Low volatility (ASTM D5481)Eco-friendly; low toxicityProne to hydrolysis (▲▲▲ stability vs MPAO); limited temperature range
Polyalkylene Glycol (PAG)High-pressure hydraulics, food-grade useWater resistance (immiscible); Low-temperature flow (-40°C)Versatile applications; NSF H1 food-safe certificationNot compatible with elastomers; costly recycling
Naphthenic Base OilsMetalworking, cold-weather machineryLow pour point (-45°C); High solvency for additivesExcellent cold-flow; cost-effective for low-temp needsPoor oxidation resistance (▲▲ vs Synthetic); shorter service life

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