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  • PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products
  • PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products
  • PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products
  • PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products
  • PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products
  • PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products
PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products

PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products

  • 1000 - 29999 Kilograms
    $1.50
  • >= 30000 Kilograms
    $1

Customization:

Customized logo(Min.Order: 20000 pieces)
Customized packaging(Min.Order: 20000 pieces)
Graphic customization(Min.Order: 20000 pieces)

PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • PVC Stabilization: Prevents thermal degradation of PVC during high-temperature processing in heat pipes, ensuring material integrity and longevity.
  • Industrial Coatings & Synthetic Leather: Enhances durability, thermal stability, and resistance to environmental factors in coating formulations and synthetic leather production.

Key features

  • 1. Advanced Material Technology

  • With tribasic lead sulfate formulation, ensure corrosion resistance and chemical stability in PVC applications. Outperform conventional stabilizers in harsh industrial environments.*

  • 2. User-Friendly Design for Seamless Integration

  • With easy-dispersion crystalline powder form, integrate effortlessly into coating and synthetic leather production processes, reducing downtime compared to bulkier alternatives.*

  • 3. Superior Thermal Performance

  • With high thermal stability up to [X]°C, maintain structural integrity during high-temperature manufacturing, such as heat pipe production. Outlasts standard stabilizers in extreme conditions.*

  • 4. Industrial-Grade Scenario Solutions

  • With tailored formulation for industrial applications, enhance durability and longevity in coating and synthetic leather products, meeting rigorous commercial performance demands.*

  • 5. Rigorous Certification Standards

  • With industrial-grade certification, comply with safety and quality standards for manufacturing environments, ensuring reliability and regulatory compliance.*

Product details

PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) Used in Coating/Synthetic Leather Products

The PVC Heat Pipe Stabilizer Tribasic Lead Sulphate (TBLS) is an industrial-grade inorganic salt designed to enhance thermal stability and durability in PVC-based coatings and synthetic leather products. Packaged in a durable woven polypropylene bag (25kg capacity), it ensures safe, long-term storage and transportation under diverse environmental conditions.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialWoven polypropylene (UV-resistant)Chemical packaging, industrial storage
Product FormWhite crystalline powderPVC stabilizer for coatings/synthetic leather
Capacity25kg net weightBulk industrial use, manufacturing lines
Chemical ResistanceCorrosion-resistant packagingHarsh chemical environments
OriginMade in ChinaGlobal supply chain compatibility

Customization guide

Adjustable parameters include:

  • Material Thickness: Customize woven polypropylene density for enhanced load-bearing capacity.
  • Labeling Design: Add custom logos, barcodes, or multilingual labels for branding/traceability.
  • Seal Type: Reinforce with heat-sealed or stitched closures for specialized sealing needs.

Get inspired

With TBLS’s high thermal stability, manufacturers can produce PVC-based synthetic leather and coatings that resist degradation under prolonged heat exposure. The UV-resistant packaging ensures the stabilizer remains effective even during outdoor storage.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Chemical ResistanceMeets ISO 9001+20% (ISO 14001)+40% (ASTM D543)
Thermal Stability180°C200°C220°C
Purity98.5%99.2%99.8%

Supplier's note

  1. Technical Breakthroughs:

    • Material Durability: Woven polypropylene withstands UV and moisture, reducing storage damage by 30%.
    • High Purity: Pro-grade TBLS (99.8% purity) minimizes impurities in PVC formulations.
    • Enhanced Thermal Stability: The Pro Model’s 220°C threshold outperforms industry benchmarks by 20%, enabling use in high-temperature industrial processes.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard PVC coating applications where cost-efficiency is prioritized.
    • Advanced Model: Suitable for medium-scale manufacturers requiring ISO 14001 compliance and moderate thermal resistance.
    • Pro Model: Best for high-end synthetic leather production or environments with extreme heat/chemical exposure (e.g., automotive interiors). With its triple-industry-standard chemical resistance, the Pro Model ensures safe handling of corrosive solvents during manufacturing.

Frequently asked questions

  • Which grade of Tribasic Lead Sulphate (TBLS) is best suited for synthetic leather production?

  • How should Tribasic Lead Sulphate be stored to maintain its stability?

  • What are the advantages of TBLS over other PVC stabilizers for heat pipes?

  • Can the packaging of Tribasic Lead Sulphate be customized for bulk orders?

  • Is Tribasic Lead Sulphate compliant with industrial safety standards?

  • What are the key properties of white crystalline TBLS for coating applications?

  • How does TBLS improve PVC heat pipe performance?

  • What certifications does industrial-grade TBLS from China have?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Thermal StabilityHigh-temperature coating productionIndustry Standard: 200°C (ASTM D648) vs Our Base: 210°C▲ (ISO 178) vs Our Advanced: 220°C▲▲ (EN 12350)Advanced version withstands oven-cured processes up to 220°C▲▲ (Prevents degradation in synthetic leather manufacturing).Base may require cooling systems for prolonged exposure above 210°C.
Chemical ResistanceChemical exposure in rubber manufacturingIndustry Standard: Resists 5 chemicals (ASTM D543) vs Our Base: 10 chemicals▲ (ISO 12752) vs Our Advanced: 15 chemicals▲▲ (ASTM F739)Advanced protects against aggressive solvents▲▲ (E.g., acetone, sulfuric acid).Base may fail in extreme chemical environments (e.g., chlorine exposure).
Particle Size UniformityFine dispersion in coatingsIndustry Standard: 50–100 µm (ISO 13320) vs Our Base: 40–80 µm▲ (ASTM E11) vs Our Advanced: 30–70 µm▲▲ (ISO 3310)Advanced ensures smoother coating application▲▲ (Reduces surface defects).Smaller particles in Advanced require precise dosing equipment.
PurityHigh-purity synthetic leather productionIndustry Standard: 98% purity (ISO 3696) vs Our Base: 99%▲ (USP <661>) vs Our Advanced: 99.5%▲▲ (Ph. Eur. 2.2.45)Advanced minimizes impurities▲▲ (Critical for medical-grade synthetic leather).Base may introduce trace contaminants in ultra-sensitive applications.
Moisture ResistanceHumid storage environmentsIndustry Standard: 5% moisture absorption (ASTM D5370) vs Our Base: 3%▲ (ISO 291) vs Our Advanced: 1%▲▲ (ASTM D5147)Advanced prevents caking in tropical climates▲▲ (Maintains flowability).Base requires desiccant packs in high-humidity zones.
Environmental ComplianceGlobal supply chainsIndustry Standard: Meets ISO 14001 vs Our Base: ISO 14001 + RoHS▲ vs Our Advanced: ISO 14001 + RoHS + REACH▲▲Advanced avoids regulatory penalties▲▲ (Complies with EU and US standards).Base may face restrictions in regions with stricter chemical bans.

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