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High-Strength Tin-Cured LSR for Architectural Molds – Durable & Cost-Effective

Categories Tin Cure Silicone Rubber
Brand Name: Hnanast
Model Number: HN-620
Place of Origin: China
MOQ: 1kg
Price: 5.85-6.88$
Payment Terms: L/C,D/A,D/P,T/T,Western Union
Supply Ability: 100ton/mouths
Delivery Time: 5-10day
Packaging Details: 25kg
Usage: mold making
Shape: Liquid Two Component
Package: 20kg/25kg
Operating Temperature: -50°C to 200°C
Shrinkage Rate: less than 0.2%
Feature: High tensile resistance,
Goods Description: Silicone in primary forms
Mixed Viscosity: 20000~24000 Cps
Shelf Life: 12 months
Specific Gravity: 1.08
Features: low shrinkage
Type: tin cure silicone rubber
Description: Silicone in primary forms
Appearance: Liquid
Shrinkage: ≤0.3%
Elongation At Break: 400%
Sample: 1kg silicone sample for free
Grade: molding
Hs Code: 39100000
Mix Ratio: 100:2
Mixing Ratio: 1:1
Linear Shrinkage: 0.2-0.4%
Cure Time: 4-6h
Woking Time: 30-40 Miuntes
Viscosity: 20,000 cps
Wokring Time: 30-40 min
Method Of Molding: brushable silicone , pourable silicone
Working Time: 30~40mins
Enlogation: 600%
Strength: excellent strength
Application: Mold making, casting, prototyping
Curing Time: 24 hours
Working Temperature: -50℃ to 200℃
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High-Strength Tin-Cured LSR for Architectural Molds – Durable & Cost-Effective

Industrial Grade Tin-Cure Liquid Silicone Rubber (LSR)

Tin-cured liquid silicone rubber (LSR) is a preferred material for architectural mold making due to its balance of flexibility, durability, and affordability. As a room-temperature vulcanizing (RTV-2) silicone, it offers practical solutions for creating detailed and reusable molds in construction, landscaping, and decorative design. This guide explores its key properties, applications, and SEO-friendly keywords to enhance visibility for construction professionals and mold makers.


Key Properties of Tin-Cured LSR
1. Excellent Flexibility & Tear Resistance
- Withstands repeated demolding without damage, ideal for complex architectural designs (e.g., ornamental concrete, geometric panels).
- Maintains shape integrity even under stress, ensuring consistent mold reproduction.

2. Fast and Easy Curing Process
- Cures at room temperature (typically 4–24 hours), reducing production downtime compared to heat-cured silicones.
- No specialized equipment needed, making it accessible for small workshops or on-site projects.

3. Cost-Effective for Large-Scale Use
- More affordable than platinum-cured silicones, suitable for budget-conscious builders and manufacturers.
- Long shelf life (6–12 months) minimizes material waste.

4. Chemical & Weather Resistance
- Resists moisture, UV rays, and mild acids/alkalis, ensuring longevity for outdoor molds (e.g., garden statues, façade elements).
- Performs well in temperatures up to 200°C (392°F), suitable for precast concrete and resin applications.

5. Non-Toxic and User-Friendly
- Safe for skin contact during manual application, unlike some industrial mold materials.
- Low shrinkage (<0.2%) preserves fine details in molds.

Applications in Architectural Mold Making
- Concrete Casting: Columns, balustrades, decorative tiles, and paving stones.
- Facade & Wall Panels: Intricate 3D designs, bas-reliefs, and textured surfaces.
- Landscaping: Reusable molds for garden ornaments, fountains, and artificial rocks.
- Restoration: Replicating historical architectural elements with precision.

Comparison with Alternative Materials
- vs. Platinum Silicone: Lower upfront cost but less suitable for high-heat applications (>200°C).
- vs. Polyurethane Rubber: Superior flexibility and longer lifespan, though slightly slower curing.

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