Acrylic Resin 113(T) is a specially formulated resin developed based on BR-106 to enhance hardness. Through molecular weight design and specialized modification processes, this product significantly improves hardness while maintaining excellent transfer properties. It is particularly suitable for surface layer applications in thermal transfer inks requiring high surface hardness.
Project | Parameters | Testing Standard |
Appearance | White fine powder | Visual Inspection |
Solid Content (%) | 100 | GB/T 1725-2007 |
Softening Point (°C) | 150-170 | GB/T 9284-2015 |
Molecular Weight (Mw) | 35000 | GPC |
Glass Transition Temperature (Tg, °C) | 76 | DSC |
Acid Value (mg KOH/g) | 3-6 | GB/T 6743-2008 |
Viscosity (at 25°C in 51% Toluene) | 150-300 mPa·s | GB/T 2794-2013 |
Project | Parameters | Testing Standard |
Appearance | White fine powder | Visual Inspection |
Solid Content (%) | 100 | GB/T 1725-2007 |
Softening Point (°C) | 150-170 | GB/T 9284-2015 |
Molecular Weight (Mw) | 35000 | GPC |
Glass Transition Temperature (Tg, °C) | 76 | DSC |
Acid Value (mg KOH/g) | 3-6 | GB/T 6743-2008 |
Viscosity (at 25°C in 51% Toluene) | 150-300 mPa·s | GB/T 2794-2013 |
Description
Acrylic Resin 113(T) is a specially formulated resin developed based on BR-106 to enhance hardness. Through molecular weight design and specialized modification processes, this product significantly improves hardness while maintaining excellent transfer properties. It is particularly suitable for surface layer applications in thermal transfer inks requiring high surface hardness.
Specification
Project | Parameters | Testing Standard |
Appearance | White fine powder | Visual Inspection |
Solid Content (%) | 100 | GB/T 1725-2007 |
Softening Point (°C) | 150-170 | GB/T 9284-2015 |
Molecular Weight (Mw) | 35000 | GPC |
Glass Transition Temperature (Tg, °C) | 76 | DSC |
Acid Value (mg KOH/g) | 3-6 | GB/T 6743-2008 |
Viscosity (at 25°C in 51% Toluene) | 150-300 mPa·s | GB/T 2794-2013 |
Features
Acrylic Resin 113 is a hardness-enhanced variant of BR-106.
Superior Hardness: Compared to BR-106, its hardness is significantly improved. The increased hardness enables the resulting coatings or products to withstand stronger friction and impact, resisting scratches and deformation. This greatly enhances product durability and provides more reliable protection for substrates, making it particularly suitable for applications demanding high surface hardness.
Retains BR-106's Superior Properties: While enhancing hardness, it preserves BR-106's excellent characteristics in solubility, film-forming ability, and adhesion. It rapidly blends with solvents to form a uniform solution, creating a continuous, even film that firmly adheres to substrate surfaces. This ensures product stability and reliability during use.
Product Applications:
Thermal Transfer Ink (Final Printed Surface Layer): The final surface layer of thermal transfer ink requires specific properties such as hardness, film-forming ability, and drying speed. Acrylic Resin 113, as a hardness-enhanced variant of BR-106, delivers superior abrasion resistance and scratch resistance to the final printed surface layer, preserving the aesthetics and integrity of printed materials. Its excellent film-forming properties create a flat, smooth surface layer, enhancing the printed material's texture. The low viscosity facilitates uniform ink transfer and coating during printing, ensuring consistent results. Additionally, the appropriate softening point and glass transition temperature adapt to temperature fluctuations during thermal transfer, guaranteeing stable performance of the printed surface layer.
Usage Recommendations:
Prior to use, mix the product with a suitable proportion of solvents such as toluene. Due to its excellent solubility, mixing time can be appropriately controlled; however, ensure complete dissolution to form a uniform solution, preventing issues like bubbles caused by inadequate mixing that may affect subsequent use.
Adjust solution viscosity as needed based on specific production and application requirements for thermal transfer inks, referencing viscosity indicators. Optimal application conditions can be achieved by adding or reducing solvent.
During application, select a coating method suitable for the thermal transfer process based on actual conditions. Ensure the coating evenly covers the substrate surface with consistent thickness to guarantee thermal transfer effectiveness and fully leverage the product's high hardness advantage.
After application, perform drying and curing according to corresponding process requirements to maximize product performance and ensure the quality of the final printed surface layer, particularly fully realizing its hardness characteristics.
Product Packaging:
25KG/bag. Store in a cool, dry, well-ventilated warehouse, avoiding direct sunlight and rain exposure.
REMARK |
The above information is believed to be accurate and presents the best explanation currently available to us. We assume no liability resulting from above content. The technical standards are formulated and revised by customers’ requirement and us, if there are any changes, the latest specification will be executed and confirmed in the contract. |

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