1、Epoxy curing agents
Epoxy Resin, Curing Agent for Epoxy Resin and Reactive Diluent - Bisphenol A epoxy resin - Epoxy resin (solvent-based) - Fire-retardant Brominated Epoxy Resin - Heat-Resistant Epoxy-phenol Resin - Reactive diluent for epoxy resin Epoxy curing agents - Epoxy curing agents UV Oligomers and Monomers - Epoxy acrylate oligomers - Urethane acrylate ...
2、三木集团
More Light curing resin Resin series More Alkyd Resin series More Saturated polyester resin Resin series More Polyurethane curing agent Resin series More Acrylic resin Resin series More Amino resin Resin series More Organic silicon resin Resin series More Water-base resin Resin series More Unsaturated polyester resin Resin series More Powder ...
3、Modified Aromatic Amine Epoxy Curing Agent D113 Used as Primer Curing
Our company specialises in the production of epoxy resins, epoxy curing agents, including modified cycloaliphatic amine curing agents, polyamide curing agents, polyether amine curing agents, phenolic amine curing agents, aromatic amine curing agents, DETA, TETA, DPTA, DATA, 1.3BAC, reactive diluent, accelerators, etc., which are widely used in ...
Wholesale Epoxy Hardener Epoxy Curing Agent Clear Liquid for Epoxy
Key attributes CAS No. 500-033-5 Purity 99.8 Place of Origin Guangdong, China Type Liquid Usage Adhesives Casting and Tooling Civil Engineering Composites Marine and Protective Coatings Can and Coil Coatings Automotive Coatings Photocure Industrial Coatings Potting and Encapsulation Brand Name sanmu Classification Chemical Auxiliary Agent EINECS No. 500-033-5 MF
Epoxy & Coating Solutions
D113 epoxy curing agent is a modified aromatic amine that cures at room temperature. It has the advantages of good curing performance at room temperature, good chemical resistance properties.
Sanmu Epoxy Resin
The Sanmu epoxy resin series characterized by exceptional reactivity (epoxy value: 0.48–0.54 eq/mg), these resins enable robust cross-linking with diverse curing agents, forming thermally stable networks ideal for high-stress environments.
Sanmu 203 Epoxy Curing Agent
1、Epoxy curing agentsEpoxy Resin, Curing Agent for Epoxy Resin and Reactive Diluent - Bisphenol A epoxy resin - Epoxy resin (solvent-based) - Fire-ret...
Reactive diluent for epoxy resin
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Understanding HanamineTM D113: A Key Component in Epoxy Adhesives
In summary, HanamineTM D113 plays a significant role in the formulation of epoxy adhesives, enhancing their mechanical properties, adhesion capabilities, and overall performance.
Sanmu Specialty Chemicals & Resins
Discover Sanmu’s advanced specialty chemicals and resin products at Evergreen Chemicals — your trusted Sanmu distributor. We offer high-quality resins and chemical solutions for coatings, composites, and industrial manufacturing applications.
In modern industrial production, the performance and quality of materials directly affect the final outcome of products. As an essential class of high-molecular-weight materials, the stability, uniformity of the curing process, and post-curing properties of epoxy resins are critical indicators of their quality. Sanmu D113 epoxy curing agent is one of the key factors in achieving these properties. This article explores the characteristics of Sanmu D113 epoxy curing agent and its importance in practical applications from multiple perspectives.
Sanmu D113 epoxy curing agent is a high-performance chemical curing agent widely used in bonding and sealing applications across industries such as electronics, automotive, and construction. Its primary function is to react with epoxy resins to form insoluble products, thereby enhancing the mechanical strength and durability of materials.
Chemical Composition Sanmu D113 is a polyol-type curing agent containing multiple reactive functional groups, such as hydroxyl (-OH) and ether (-O-) bonds. These groups react with epoxide groups in epoxy resins, forming stable cross-linked structures and enabling curing. Additionally, the curing agent acts as a catalyst to accelerate the curing process, improving production efficiency.
Application Performance Sanmu D113 epoxy curing agent exhibits the following advantages:
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Excellent Compatibility: It demonstrates good compatibility with epoxy resins, without compromising the latter’s inherent properties or the mechanical performance of the cured material. This makes it an ideal curing agent for epoxy systems.
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Fast Curing Speed: Due to its high reactivity, Sanmu D113 rapidly reacts with epoxy resins, enabling quick curing. This significantly boosts production efficiency and reduces manufacturing cycles.
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Superior Post-Curing Properties: With optimized formulations and curing processes, the cured epoxy resins achieve exceptional mechanical strength, wear resistance, and corrosion resistance. These properties have led to widespread adoption in various fields.
Practical Production Advantages In industrial settings, Sanmu D113 offers the following benefits:
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Simplified Processes: Its strong compatibility and rapid reaction allow direct mixing with other raw materials, eliminating complex preprocessing steps and reducing costs.
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Enhanced Efficiency: Shorter curing times translate to higher production throughput, aligning with high-efficiency manufacturing demands.
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Consistent Quality: Materials cured with Sanmu D113 meet stringent performance requirements across applications, ensuring product reliability and strengthening competitiveness.
Limitations and Improvement Measures Despite its advantages, Sanmu D113 has certain drawbacks. For instance, its relatively high cost may increase enterprise expenses, and incomplete curing may occasionally occur under specific conditions. To address these issues:
- Research and Development: Continuous optimization of formulations and processes can reduce costs and improve quality.
- Market Alignment: Tailoring curing agent selection to specific application needs based on customer feedback.
- Supplier Collaboration: Partnering with suppliers to drive technological advancements and expand application scope.
As a high-performance chemical curing agent, Sanmu D113 plays a vital role in epoxy resin applications. By analyzing its chemical properties, application performance, and production benefits, this article highlights its significance in modern manufacturing. While acknowledging its limitations, targeted improvements and optimizations can further enhance its effectiveness, making it an indispensable tool in industrial material innovation.

