HOCP
Hydrogenated Olefin Copolymer (HOCP) viscosity index improver for lubricant manufacturers seeking enhanced thermal stability, oxidation resistance, reliable viscosity retention, and long-term lubricant performance.
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Product Overview
Modern lubricant formulations require advanced polymer technologies capable of maintaining stable viscosity performance under demanding operating conditions, elevated temperatures, and long service intervals. The selection of an appropriate viscosity index improver plays a critical role in achieving consistent viscosity control, formulation stability, and reliable finished lubricant performance.
HOCP (Hydrogenated Olefin Copolymer) is a hydrogenated olefin copolymer viscosity index improver supplied by SiNDA through qualified international manufacturing partners for lubricant manufacturers and formulators.
Developed through hydrogenation technology, HOCP provides improved polymer backbone stability by reducing unsaturation within the polymer structure. This modification enhances resistance to thermal and oxidative degradation, allowing lubricant manufacturers to develop advanced formulations with improved viscosity retention and long-term performance stability.
Compared with conventional OCP viscosity improvers, HOCP technology is designed to provide enhanced polymer durability, improved high-temperature performance, and reliable viscosity modification in demanding automotive and industrial lubricant formulations.
HOCP supports lubricant manufacturers in developing modern multigrade lubricants requiring stable viscosity behavior, improved formulation durability, and consistent performance throughout the lubricant service period.
Compatible with commonly used base oil systems, including Group I, Group II, and Group III base oils, HOCP provides formulation flexibility for mineral, semi-synthetic, and synthetic blend lubricant technologies.
Through international sourcing capability, technical documentation support, and SiNDA commercial packaging solutions, SiNDA provides lubricant manufacturers with dependable access to advanced hydrogenated polymer technology for automotive and industrial lubricant production.
Key Benefits
- Advanced hydrogenated polymer technology
- Improved thermal stability
- Enhanced oxidation resistance
- Better polymer durability under operating conditions
- Reliable viscosity retention
- Efficient viscosity index improvement
- High formulation flexibility
- Compatible with Group I, Group II, and Group III base oils
- Suitable for advanced automotive and industrial lubricant formulations
Operational Applications
HOCP is developed for lubricant manufacturers producing advanced lubricant formulations requiring improved polymer stability, viscosity control, and long-term performance reliability.
Typical applications include:
- Passenger Car Motor Oil (PCMO) formulations
- Heavy-Duty Diesel Engine Oil (HDEO) formulations
- Multigrade Engine Oil formulations
- Synthetic Blend Engine Oil formulations
- Hydraulic Oil formulations
- Industrial Hydraulic Lubricant formulations
- Industrial Gear Oil formulations
- General Industrial Lubricant formulations
HOCP technology enables lubricant formulators to optimize viscosity-temperature performance while maintaining formulation stability across a wide range of lubricant applications.
Technical Overview
Hydrogenation reduces unsaturated sites within the polymer backbone, improving resistance to oxidation and thermal degradation that can occur during prolonged lubricant service. The resulting polymer structure is intended to provide more stable viscosity-modifying performance under demanding operating conditions. Final lubricant performance depends on the complete formulation and should be verified through laboratory testing.
Hydrogenated Polymer Technology
Hydrogenated Olefin Copolymer technology represents an advanced development of conventional olefin copolymer viscosity modifiers.
Through hydrogenation of the polymer backbone, HOCP provides:
- Reduced polymer unsaturation
- Improved resistance to oxidative attack
- Enhanced thermal durability
- Improved polymer stability during lubricant service
This technology allows lubricant manufacturers to achieve improved viscosity control while maintaining reliable formulation performance under demanding operating conditions.
Performance Characteristics
Enhanced Thermal Stability
HOCP provides improved resistance to thermal degradation compared with conventional non-hydrogenated polymer systems. Actual thermal stability depends on the complete lubricant formulation, operating conditions, and the selected base oil system.
Benefit:
Improved polymer durability in lubricant formulations exposed to elevated operating temperatures.
Improved Oxidation Resistance
The hydrogenated polymer structure offers enhanced resistance against oxidative degradation mechanisms.
Benefit:
More stable viscosity performance during extended lubricant operation.
Reliable Viscosity Retention
HOCP supports consistent viscosity behavior by maintaining polymer performance throughout the lubricant service period.
Benefit:
Improved formulation durability and viscosity control.
Efficient Viscosity Modification
The optimized polymer structure provides effective viscosity index improvement while supporting practical formulation design.
Benefit:
Flexible lubricant formulation with efficient polymer utilization.
Base Oil Compatibility
HOCP is designed for compatibility with:
- Group I Base Oils
- Group II Base Oils
- Group III Base Oils
Benefit:
Broad formulation flexibility for lubricant manufacturers developing mineral, semi-synthetic, and synthetic blend lubricant products.
Compatibility & Limitations
HOCP is intended for lubricant formulations requiring enhanced polymer stability and reliable viscosity modification.
The product is recommended for manufacturers developing:
- Automotive engine oil formulations
- Heavy-duty lubricant formulations
- Hydraulic lubricant formulations
- Industrial lubricant formulations
Final lubricant performance depends on:
- Base oil selection
- Polymer concentration
- Additive system
- Target viscosity grade
- Formulation objectives
Laboratory formulation validation is recommended before commercial production.
Selection Guidance
Selecting a viscosity index improver requires evaluation of polymer technology, formulation requirements, operating conditions, and finished lubricant performance targets.
HOCP is recommended for lubricant manufacturers seeking:
- Hydrogenated polymer technology
- Improved thermal stability
- Enhanced oxidation resistance
- Reliable viscosity retention
- Advanced formulation flexibility
When selecting HOCP, formulators should evaluate:
- Target SAE viscosity grade
- Base oil characteristics
- Required viscosity performance
- Operating temperature range
- Finished lubricant specifications
- Production requirements
For advanced automotive and industrial lubricant formulations, HOCP provides a modern hydrogenated polymer solution designed to support stable viscosity performance and long-term formulation reliability.
Compliance & Technical Documentation
HOCP is supplied by SiNDA through qualified international manufacturing partners under controlled commercial and technical documentation procedures.
To support lubricant manufacturers during product evaluation, formulation development, and procurement processes, SiNDA provides technical documentation and product support required for professional lubricant applications.
Available documentation includes:
- Technical Data Sheet (TDS)
- Safety Data Sheet (SDS)
- Certificate of Analysis (COA)
- Batch Quality Documentation
- Product Handling Guidelines
- Storage Recommendations
- Export Documentation
Each supplied batch is managed through appropriate quality verification procedures to support product consistency, traceability, and reliable technical evaluation by lubricant manufacturers.
Why Choose SiNDA
Selecting a viscosity index improver requires more than polymer availability. Lubricant manufacturers need advanced polymer technology, consistent quality, reliable supply, technical documentation, and a supplier capable of supporting long-term formulation requirements.
SiNDA supplies advanced Hydrogenated OCP viscosity index improver technology through qualified international manufacturing partners, supporting lubricant manufacturers with reliable polymer solutions for modern automotive and industrial lubricant formulations.
Key advantages include:
- Access to advanced hydrogenated polymer technology
- Responsive technical support during formulation development
- Qualified international manufacturing sources
- Consistent technical documentation
- SiNDA commercial packaging solutions
- Technical support for polymer selection
- Reliable supply solutions for Asia, Africa, and Middle East lubricant markets
- Flexible cooperation with lubricant manufacturers and distributors
By combining international sourcing capability, technical support, and controlled supply processes, SiNDA helps lubricant producers develop stable and reliable lubricant formulations using advanced viscosity modifier technologies.
Industrial FAQ
What is HOCP?
HOCP (Hydrogenated Olefin Copolymer) is an advanced viscosity index improver technology designed for lubricant manufacturers requiring improved polymer stability, thermal resistance, and reliable viscosity control.
What is the main function of HOCP in lubricant formulations?
HOCP is used as a viscosity modifier to improve the viscosity-temperature behavior of finished lubricants while providing enhanced polymer stability and reliable viscosity retention.
What is the difference between HOCP and conventional OCP?
The main difference is the hydrogenation process applied to the polymer structure.
Hydrogenation reduces polymer unsaturation and improves resistance to oxidation and thermal degradation, providing enhanced polymer durability compared with conventional OCP technologies.
Why is hydrogenation important in viscosity index improvers?
Hydrogenation improves the chemical stability of the polymer backbone, helping the viscosity modifier maintain performance under elevated temperatures and oxidative operating conditions.
Which base oils are compatible with HOCP?
HOCP is designed for compatibility with:
- Group I Base Oils
- Group II Base Oils
- Group III Base Oils
Final compatibility should be confirmed through lubricant formulation testing.
Which lubricant formulations can use HOCP?
HOCP is suitable for lubricant manufacturers producing:
- Multigrade engine oils
- Passenger Car Motor Oil (PCMO) formulations
- Heavy-Duty Diesel Engine Oil (HDEO) formulations
- Hydraulic lubricant formulations
- Industrial lubricant formulations
- Synthetic blend lubricant formulations
How is the optimum HOCP treat rate determined?
The required polymer concentration depends on:
- Base oil viscosity
- Target SAE viscosity grade
- Finished lubricant performance requirements
- Additive system compatibility
- Desired viscosity-temperature characteristics
Laboratory formulation testing is recommended to determine the optimum treat rate.
TDS
| Property | Test Method | Typical Value / Description |
| Product Name | — | HOCP |
| Product Type | — | Hydrogenated Olefin Copolymer (HOCP) Viscosity Index Improver Concentrate |
| Manufacturer | — | Qualified International Manufacturing Partner |
| Supplier & Distributor | — | SiNDA |
| Commercial Brand | — | SiNDA |
| Source | — | Qualified International Manufacturing Partners |
| Packaging | — | SiNDA Commercial Packaging |
| Polymer Chemistry | — | Hydrogenated Ethylene–Propylene Olefin Copolymer |
| Polymer Technology | — | Hydrogenated Polymer Backbone Technology |
| Carrier Fluid | — | Refined Mineral Base Oil |
| Physical Appearance | Visual | Clear to Slightly Hazy Amber Viscous Liquid |
| Color | ASTM D1500 | ≤ 3.0 |
| Density @15°C | ASTM D4052 | 0.865–0.885 g/cm³ |
| Kinematic Viscosity @100°C | ASTM D445 | 1,100–1,700 mm²/s |
| Flash Point (COC) | ASTM D92 | ≥200°C |
| Pour Point | ASTM D97 | ≤−18°C |
| Polymer Active Content | Internal Method | 10.0–13.0 wt.% |
| Thickening Efficiency | Internal Method | High |
| Thermal Stability | Internal Evaluation | High (Formulation Dependent) |
| Oxidation Resistance | Internal Evaluation | Improved (Formulation Dependent) |
| Viscosity Retention Performance | Internal Evaluation | High |
| Polymer Durability | Internal Evaluation | Enhanced |
| Oil Solubility | Internal Compatibility Test | Pass |
| Base Oil Compatibility | — | Compatible with Group I, Group II & Group III Base Oils (validation recommended) |
| Storage Stability | Internal Method | No separation or gel formation |
| Recommended Treat Rate | Formulation Guideline | 4.0–10.0 wt.% |
| Recommended Applications | — | Premium PCMO, HDEO, Multigrade Engine Oils, Synthetic Blend Lubricants, Hydraulic Oils, Industrial Lubricants |
| Recommended Blending Temperature | Process Guideline | 80–110°C |
| Storage Temperature | — | 5–40°C |
| Shelf Life | Original Sealed Container | 24 Months |
Final Technical Summary
HOCP (Hydrogenated Olefin Copolymer) is a hydrogenated olefin copolymer viscosity index improver supplied by SiNDA through qualified international manufacturing partners. Designed for automotive and industrial lubricant formulations, it provides enhanced thermal stability, improved oxidation resistance, reliable viscosity retention, and effective viscosity index improvement. Final lubricant performance should be validated through formulation development and laboratory testing.
Need a hydrogenated viscosity index improver for advanced lubricant formulations? Contact the SiNDA technical team for product recommendations, formulation support, samples, pricing, and RFQ assistance via WhatsApp.
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