Wecome to HeBei ShengShi HongBang Cellulose Technology CO.,LTD.

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HeBei ShengShi HongBang Cellulose Technology CO.,LTD.
hpmc dextran hydroxypropyl methyl cellulose
hpmc dextran 70 hydroxypropyl methylcellulose
proveedor de polvo vae

We are a professional manufacturer of HPMC, and we located in Hebei Province Xinji provincial clean chemical Industry Park, in the Beijing Tianjin Hebei metropolitan area. The park is 250 kilometers away from Beijing and Tianjin, 250 kilometers away from the Capital Airport and Tianjin Airport, 100 kilometers away from Shijiazhuang Zhengding Airport, and 250 kilometers away from Tianjin Port; The Shihuang Expressway, National Highway 307, Provincial Hengjing Line, Shide Railway, and Shiqing High speed Railway pass through Xinji, with convenient transportation and unique location advantages for economic development relying on the central city, airport, and seaport. It is a key cultivated enterprise in Xinji City, covering an area of more than 80 acres, with 200 employees and 11 senior technical personnel. Our factory adopts the German horizontal kettle "one-step production process", with a 100% product quality rate to meet different customer needs. The daily production capacity has now reached 80-100 tons. Our company has more than 20 years of experience in cellulose production and sales, and has exported to more than 30 countries and regions, highly praised and trusted by users both domestically and internationally.

  • 40000tons
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    Production

  • 20+years
    Group_493

    Experience

  • 5000+
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    Acreage

Product Category
  • recron polypropylene fibre

    Optimize your industrial solutions with fine rubber powder, nitrile rubber powder, and advanced production lines. About HeBei ShengShi HongBang Cellulose Technology CO.,LTD. Official Website: https://www.sshbhpmc.com Phone: +86 13180486930 Email: 13180486930@163.com Mobile: +86 13180486930 Address: Room 1904, Building B, Wanda Office Building, JiaoYu Road, Xinji City, Hebei Province With over a decade of innovation, scientific strength, and global market service, we focus on high-value rubber powder and its applications for industrial, construction, and adhesive sectors. Rubber powder-821 Rubber Powder represents a significant innovation as a highly effective binder for ceramic tiles. Rubber powder uses are substantial in modern tile adhesives, extending also to waterproof coatings, modifying agents in plastic and rubber industries, and anti-tack agents in processing lines. Explore full product specs and technical data at the product page . rubber powder price fine rubber powder nitrile rubber powder rubber powder coating Industry Trends and Wide-ranging Applications of Rubber Powder Uses In recent years, the rubber powder uses market has seen significant growth in both quality and application domains, driven by the sustainability movement and cost optimization in manufacturing. The global rubber powder price fluctuates between USD $800 and $1,200 per ton, depending on type, specifications, and market demand. Key applications include: Tile Adhesive & Mortars: Enhances adhesion, flexibility, and durability. Asphalt & road paving: Improves elasticity and anti-aging characteristics. Construction coatings: Provides waterproofing and anti-crack features. Plastic & rubber modification: Serves as a reinforcing and anti-tack agent. Industrial anti-tack agent: Added as fine rubber powder or rubber anti tack powder to prevent agglomeration during processing. Key Parameters & Rubber Powder Uses Table Application Grade/Type Particle Size (μm) Binder Strength (Mpa) Rubber Powder Price (USD/ton) Tile Adhesive Rubber powder-821 80-150 2.6 920-1050 Asphalt Modifier Fine Rubber Powder 60-120 3.1 950-1200 Rubber Compounding Nitrile Rubber Powder 100-200 2.2 900-1100 Industrial Anti-tack Rubber Anti Tack Powder 80-150 1.7 820-930 Coatings Rubber Powder Coating 80-140 2.4 870-1180 Additive Filling Talc Powder for Rubber 10-50 n/a 200-320 Rubber powder production line technologies have enabled customizable solutions, reducing environmental waste and boosting efficiency across industries. Rubber Powder Uses Technical Parameter Trends EEAT: Professionalism in Rubber Powder Uses With 15+ years of experience, HeBei ShengShi HongBang Cellulose Technology CO.,LTD. delivers industry-leading rubber powder products and bespoke production line solutions. Our R&D and testing procedures adhere strictly to ISO 9001, and each batch of fine rubber powder , nitrile rubber powder , rubber anti tack powder , and talc powder for rubber meets stringent quality benchmarks ( ScienceDirect ). Referenced by top industry forums like Polymer Innovation Blog , our process ensures stable rubber powder price and reliable technical service across the globe. We provide comprehensive technical specifications, application consulting, and after-sales services for all customers and partners. Professional FAQ – Key Terms on Rubber Powder Uses Q1: What are the core material types of rubber powder? The primary types are fine rubber powder (from scrap tires), nitrile rubber powder (for oil resistance), and modified rubber powders for specific industries. Q2: What is the standard particle size for rubber powder-821? Typical ranges are 80-150 μm, optimized for strong binding in tile adhesives and low-residue surface. Q3: What technical standards define quality in rubber powder production? Standards include ISO 9001 for manufacturing, GOST, ASTM D5603 (for particle fineness), and EN 12014 for adhesives. Q4: How does rubber anti tack powder function in processing? It prevents sticking and agglomeration of rubber sheets or particles during industrial processes, ensuring smooth downstream processing. Q5: What is the technological advantage of a modern rubber powder production line? Automated lines utilize cryogenic grinding and advanced sieving, producing uniformly fine rubber powder for a wide range of rubber powder uses . Q6: How does talc powder for rubber differ from standard fillers? Talc acts both as a filler and an anti-tack agent, enhancing workability and surface smoothness, compared to mineral or silica-only fillers. Q7: Are there recommended mixing ratios for tile adhesive applications? Yes, optimal formulas incorporate 2.5–5% rubber powder uses relative to binder/cement content for strong adhesion and crack resistance. References & Further Reading: [1] Applications of Recycled Rubber Powder, Polymer Innovation Blog, polymerinnovationblog.com/applications-of-recycled-rubber-powder [2] ScienceDirect - Rubber Powder, sciencedirect.com/topics/engineering/rubber-powder [3] G. Smith et al, “Mechanical and Chemical Properties of Rubber Powders Used in Construction,” Journal of Materials Science, 2024. [4] More information, technical guides, and price support at HeBei ShengShi HongBang Cellulose Technology CO.,LTD.

  • бетонға арналған полипропилен талшығы

    Hydroxymethyl cellulose , often encountered in its more prevalent derivative form hydroxypropyl methylcellulose , represents a cornerstone of modern construction chemistry. Derived from natural cellulose through etherification, this non-ionic, water-soluble polymer exists as a white, odorless, and tasteless powder. Its unique properties – exceptional water retention, thickening capability, adhesion enhancement, and workability modification – make it indispensable in numerous building materials. While often used interchangeably in construction contexts, hpmc cellulose typically offers superior performance in critical areas like enzyme resistance, temperature stability, and consistent viscosity development compared to basic hydroxymethyl cellulose . Understanding the fundamental chemistry and rheology of these cellulose ethers is paramount for optimizing their use in demanding construction environments, where controlling water dynamics and paste consistency directly impacts final product quality and application efficiency. Core Functions of hpmc Cellulose The primary value of hydroxypropyl methylcellulose lies in its multifaceted functionality within cementitious and gypsum-based systems: Unmatched Water Retention: This is arguably HPMC cellulose 's most critical attribute. By significantly slowing the rate of water loss to the substrate and atmosphere, it ensures sufficient water remains available for the complete hydration of cement or setting of gypsum. This prevents premature drying, minimizes plastic shrinkage cracking, enhances ultimate strength development, and improves bond strength to substrates. Poor water retention leads to weak, dusty surfaces and poor adhesion. Rheology Modification & Workability Enhancement: hpmc cellulose acts as a highly efficient thickener and rheology modifier. It imparts desirable consistency to mortars and plasters, improving sag resistance on vertical surfaces, reducing splattering during application, and enhancing toolability. The viscosity grade of the hydroxypropyl methylcellulose selected directly influences the final mix rheology. Air Entrainment: The incorporation process of hpmc cellulose often introduces a controlled amount of minute, stable air bubbles into the mix. This micro-air improves workability further, enhances cohesion, reduces density, and can improve freeze-thaw resistance in exterior applications. However, excessive air entrainment must be avoided as it compromises strength. Adhesion Promotion: hpmc cellulose films formed at interfaces enhance the adhesive bond between the applied material and the substrate, as well as improving cohesion within the material itself. Retardation: By forming a film around cement particles and reducing water availability, hpmc cellulose can slightly retard the setting time, extending open time for application and adjustment, particularly crucial in tile adhesives and large renders. Optimizing Hydroxypropyl Methylcellulose Selection and Dosage Selecting the right hydroxypropyl methylcellulose grade and dosage is not arbitrary; it requires careful consideration of the specific application and desired performance profile: Viscosity Grade: hpmc cellulose is available in a wide range of viscosity grades. Lower viscosity grades are often used in self-leveling compounds or where high flow is needed. Medium viscosity is common for tile adhesives and standard renders. High viscosity grades provide excellent sag resistance in thick-bed mortars, plasters, and exterior insulation finishing systems base coats. Hydroxypropyl Substitution Ratio: The ratio of methyl to hydroxypropyl groups on the cellulose chain influences key properties. Higher methyl substitution generally improves water solubility. Higher hydroxypropyl substitution enhances thermal gelation temperature (critical for hot weather application) and improves enzyme resistance in cementitious systems. Most construction-grade hpmc cellulose balances these substitutions for optimal performance. Particle Size and Modification: Finer powders dissolve faster but may be dustier. Surface-treated hpmc cellulose powders offer delayed dissolution ("lump-free" mixing) and are highly preferred for dry-mix mortars added to mixers with water. FAQs about hpmc Cellulose What causes slow strength development in my HPMC-modified mortar? Slow strength gain is most commonly linked to excessive dosage of hydroxypropyl methylcellulose . While HPMC provides essential water retention and workability, overdosing significantly retards the hydration of cement by physically coating particles and limiting water access. Carefully review and reduce the hpmc cellulose dosage according to formulation guidelines and application needs. Ensure environmental conditions (especially low temperature) aren't the primary cause. Verify cement quality and freshness. Why is my hpmc cellulose render cracking shortly after application? Plastic shrinkage cracking in renders is primarily due to rapid water loss before the material gains sufficient strength. This indicates insufficient water retention capacity. Check that you are using an adequate type and dosage of hpmc cellulose , specifically chosen for its high water retention performance suitable for renders. Ensure the substrate wasn't overly absorbent and wasn't pre-wetted correctly. Applying in hot, dry, or windy conditions without adequate protection (sun/wind screens) will exacerbate this issue, even with good hydroxymethyl cellulose derivatives. How do I prevent lump formation when mixing hpmc cellulose ? Lumps occur when hpmc cellulose powder hydrates too quickly on the surface, trapping dry powder inside. The solution is twofold:Always pre-blend the dry hydroxypropyl methylcellulose powder thoroughly with the other dry ingredients (cement, sand, filler) before adding water. This dilutes it and prevents clumping. Crucially, use surface-treated (delayed solubility) hpmc cellulose grades. These are chemically modified to dissolve gradually, allowing time for dispersion before thickening occurs, virtually eliminating lumps even if added directly to water under agitation. Ensure adequate mixing energy and time. Can I use hpmc cellulose in hot weather? Yes, but job site practices are essential. Standard hydroxypropyl methylcellulose solutions thicken significantly and can even gel as temperature rises. For hot climates or summer application, specify hpmc cellulose grades engineered with a high thermal gelation temperature . These maintain viscosity stability and workability much better under heat. Additionally, store materials in the shade, use cool mixing water if possible, schedule work during cooler parts of the day, and protect applied materials from direct sun and wind to slow evaporation. Is hpmc cellulose compatible with other admixtures? Generally, hydroxypropyl methylcellulose exhibits good compatibility with most common construction admixtures like superplasticizers, air-entraining agents , retarders, and accelerators. However, interactions can occur. For instance, some superplasticizers might slightly reduce the viscosity imparted by hpmc cellulose . Some retarders might have synergistic or antagonistic effects. Air-entraining agents combined with hpmc cellulose can sometimes lead to higher than desired air contents. Always conduct small-scale compatibility tests when formulating with multiple admixtures. Add admixtures sequentially according to manufacturer recommendations, often adding hpmc cellulose early in the dry blend and liquid admixtures to the mix water. Mastering the use of hydroxymethyl cellulose and its advanced counterpart, hydroxypropyl methylcellulose , is fundamental to achieving high-performance, durable, and workable building materials. From the crucial water retention that safeguards against cracking and ensures full hydration, to the rheological control enabling smooth application and sag resistance, hpmc cellulose acts as a vital multifunctional modifier. Success hinges on selecting the appropriate grade and dosage for the specific application—whether it's a high-sag-resistance plaster, a highly retarded tile adhesive, or a fluid self-leveling compound. Adherence to proper mixing protocols, awareness of environmental conditions, and understanding substrate requirements are equally critical. By addressing common challenges through informed choices and practices, as highlighted in the FAQs, formulators and applicators alike can consistently leverage the unique properties of hpmc cellulose to produce superior construction results, enhancing both the efficiency of the building process and the longevity of the finished structure. The versatility and effectiveness of hydroxypropyl methylcellulose cement its indispensable role in modern, high-quality construction chemistry.

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    200000 Viscosities

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    We can produce pure products up to 200,000 viscosities

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    We don’t stop production all year round, and the annual output can reach 40,000 tons

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