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Home> Products> Mold Making Silicone> Addition Curing Silicone> Design Prototype Modeling Flexible Detail
Design Prototype Modeling Flexible Detail
Design Prototype Modeling Flexible Detail
Design Prototype Modeling Flexible Detail
Design Prototype Modeling Flexible Detail
Design Prototype Modeling Flexible Detail
Design Prototype Modeling Flexible Detail

Design Prototype Modeling Flexible Detail

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Payment Type:T/T,Paypal
Incoterm:FOB,Express Delivery,CIF,EXW,DDP
Min. Order:10 Kilogram
Transportation:Ocean,Land,Air,Express
Port:SHENZHEN
Product Attributes

Model No.HY-E610

BrandHONGYE SILICONE

OriginHUIZHOU

Certification9001

Packaging & Delivery
Selling Units : Kilogram
Package Type : 1/5/20/25/200KG
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Addition curing silicone 24
Product Description
HONGYE SILICONE’s Design Prototype Modeling Flexible Detail silicone is a premium dual-component addition curing product, tailored for global B2B purchasers in industrial design, rapid prototyping, mold making, and product development industries. As a national high-tech enterprise with standardized production and one-stop solutions, this silicone features excellent flexibility, ultra-high detail replication, easy operation, and stable performance. It supports room/heat curing, deep curing, and customized specifications, helping purchasers restore prototype details accurately, accelerate product development, and improve modeling efficiency.
 
HY-silicone term
 
Product Overview
Our Design Prototype Modeling Flexible Detail silicone is a high-performance solution for precision prototype modeling, composed of high-purity flowable Part A (base rubber) and Part B (curing agent) via advanced addition curing technology. It solves the pain point of ordinary liquid silicone or Condensation Curing Silicone Mold Rubber with poor flexibility, low detail replication, and difficulty in demolding delicate prototypes. Unlike standard Mold Making Silicone, our product balances flexibility and precision—curing into a soft, elastic body that perfectly replicates tiny prototype details, enabling easy demolding without damaging delicate structures, making it ideal for design prototype modeling, rapid prototyping, and detail-rich mold making.
 
Addition curing silicone
 
Product Images and Videos
High-quality images showcase our Design Prototype Modeling Flexible Detail silicone, including its uniform liquid texture, curing process, flexible prototype models (with delicate details), and application scenarios (industrial design, rapid prototyping, detail-rich molds). Close-ups highlight its ability to replicate tiny lines, gaps, and textures, as well as its flexible, bendable texture. Demonstration videos display the full operation process—1:1 mixing, vacuum degassing, pouring into prototype molds, curing, and detail demolding—highlighting easy operation, precise detail replication, and flexible demolding. Original image addresses are retained for direct website integration, helping purchasers intuitively assess its detail restoration capability.
 
Product Features & Advantages
1. Superior Detail Replication: Shrinkage rate ≤0.03% and detail replication accuracy ≥99.5%, perfectly restoring tiny prototype details (lines, gaps, textures) that ordinary silicone cannot replicate.
2. High Flexibility: Hardness 15~35 Shore A, soft and elastic, enabling easy demolding of delicate prototypes without damage, solving the problem of prototype deformation during demolding.
3. Advanced Addition Curing: No harmful by-products, non-toxic odorless, deep curing without thickness limits, ensuring consistent detail and performance in batch modeling.
4. Excellent Fluidity: Easy to pour into tiny prototype gaps, fully filling detail structures, reducing detail loss and modeling defects.
5. Easy Operation: 1:1 mix ratio, simple stirring for 2~3 minutes, no professional modeling skills; supports room/heat curing, accelerating prototype development cycles.
6. Flexible Customization: Customizable hardness, curing time, and color to match diverse prototype modeling needs, from delicate small prototypes to large detail-rich models.
 
How to Use (Step-by-Step Guide)
1. Mix Part A and Part B of the prototype modeling silicone in a 1:1 weight ratio, stirring thoroughly in an irregular direction for 2~3 minutes until uniform and bubble-free (ensuring detail replication).
2. Perform vacuum degassing for 2~5 minutes (time varies by viscosity) to eliminate tiny bubbles, avoiding detail defects in prototypes.
3. Pour the degassed silicone slowly into prototype molds, leveraging good fluidity to fill all tiny details and gaps.
4. Cure at room temperature (25℃) for 4~5 hours, or 80~120℃ for accelerated curing; post-cure enhances flexibility and detail retention.
5. Store unused silicone in sealed packaging, separate Part A and Part B, indoor storage away from sunlight and rain, use within 10 months; avoid contact with N, P, S-containing compounds to prevent curing failure.
 
Application Scenarios
Our Design Prototype Modeling Flexible Detail silicone is widely used in global industrial design and prototyping fields, including industrial design prototype modeling, Rapid prototyping silicone, precision Prototype silicone, product development models, metal craft prototypes, and detail-rich mold making silicone. It also applies to High transparency mold silicone for visible prototype details, bringing tangible value: improving detail replication rate by 50%+, shortening prototype development cycles by 35%+, and helping B2B purchasers accelerate product launch and reduce development costs.
 
FAQ
1. Can it replicate tiny prototype details?
Yes, it has a detail replication accuracy of ≥99.5% and shrinkage rate ≤0.03%, perfectly restoring tiny lines, gaps, and textures.
2. Is it suitable for delicate prototype demolding?
Yes, its high flexibility (15~35 Shore A) allows easy demolding without damaging delicate prototype structures.
3. Can it be used for large prototype modeling?
Yes, it supports deep curing without thickness limits, suitable for both small delicate prototypes and large detail-rich models.
4. Can we customize its flexibility?
Yes, we can tailor hardness (15~35 Shore A) to match your prototype’s flexibility requirements.
5. How long does it take to make a prototype?
Room temperature curing takes 4~5 hours, while heating (80~120℃) can accelerate curing to tens of minutes, shortening development cycles.
 
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