Product Overview
Our JPP Silver ion antimicrobial PVC foam board is an advanced co-extruded structural panel combining a cellular expanded plastic core with solid, unplasticized exterior skins infused with continuous biocidal technology. Engineered to replace moisture-sensitive substrates, it actively suppresses the cellular division of microorganisms while providing rigid mechanical support for high-hygiene infrastructure.

Professional Product Description
Scientific Authority and Biological Efficacy
The superior defense of this Silver ion antimicrobial PVC foam board relies on an embedded composite matrix of inorganic silver ions and organic anti-mold compounds. Unlike cheap alternatives that feature a simple sprayed-on coating, our active biocide is compounded directly into the raw molten material before extrusion. This guarantees that our Non-porous PVC celuca board maintains an autonomous, lifetime defensive layer. Our JPP Silver ion antimicrobial PVC foam board delivers an audited 99.9% bacterial destruction rate within a tight 24-hour timeline, neutralizing critical pathogens including Campylobacter, MRSA (Staphylococcus aureus), E. coli, Legionella, and Salmonella. Even when subjected to deep physical scratches, harsh abrasions, or relentless chemical sanitization, the protective action remains undiminished.
Environmental Standards and Structural Performance
Structurally, our Silver ion antimicrobial vinyl foam board functions as a highly durable substitute for wood, MDF, and metal. This eco-conscious substrate emits completely zero formaldehyde and zero TVOCs, keeping indoor air exceptionally clean in pediatric spaces, laboratories, and healthcare facilities. Featuring a 7-day water absorption rate of only 0.5%, it completely rejects rot, swelling, and termite invasion. With a vertical tensile strength of 110 kg/cm³ and a surface hardness peaking at 80 Shore D, Our JPP Silver ion antimicrobial PVC foam board provides excellent nail-holding capabilities for medical furniture, animal habitats, public restrooms, and sterile food processing walls.
Value Analysis (FABE Framework)
|
Feature (F) |
Advantage (A) |
Benefit (B) |
Evidence (E) |
|
Patented Interfacial Adhesion |
Eradicates core-to-skin delamination during intensive tooling. |
Decreases material wastage and guarantees flat structural layouts. |
Certified by 63 national patents and 20-year OEM history. |
|
Compounded Silver & Organic Matrix |
Sustains a non-stop, self-cleaning surface shield across the board. |
Delivers around-the-clock biosecurity without added manual labor. |
99.9% reduction rate verified against MRSA and Salmonella within 24 hours. |
|
Ultra-Dense Non-Foamed Crust |
Provides hard exterior protection (50-80 Shore D rating). |
Withstands heavy impacts and aggressive hospital-grade chemical scrubbing. |
Standardized laboratory testing tracking ASTM D676 and ASTM D256 parameters. |
|
Hydrophobic Polymer Base |
Restricts water ingress to 0.5% and releases zero formaldehyde. |
Eliminates mold formation and interior toxicity, protecting children and animals. |
Fully compliant with UL-94 V0 and ASTM E84 Class A fire safety regulations. |
Product Application

Patent Certificates




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FAQ
Q1. Is its surface hardness sufficient to meet the requirements of applications such as tabletops?
A: Antimicrobial sheets are particularly well-suited for production using the PVC co-extrusion process; this not only enhances the surface's impact and scratch resistance but also reduces costs by incorporating antimicrobial agents directly into the top and bottom layers of the sheet.
Q2:Will secondary cutting or CNC routing compromise the anti-pathogen layer?
A: No. Because the silver-ion and organic anti-mold compounds are blended uniformly directly into the raw core materials during manufacturing, the protection exists throughout the entire thickness of our Non-porous PVC foam board. Cutting, drilling, or scratching the surface will not create a vulnerable zone for bacterial growth.
Q3:Why do JPP boards resist surface peeling better than standard marketplace alternatives?
A: Many manufacturers struggle with skin separation because antimicrobial additives interfere with the plastic's natural binding properties. Our proprietary, patented formulation modifies the interface physics during co-extrusion, completely resolving the tendency for the outer skin layer to peel off while boosting structural yield.
Q4: Is this material safe for long-term confinement spaces like veterinary cages or preschools?
A: Absolutely. Our production lines guarantee zero formaldehyde and zero TVOC emissions. It is entirely heavy-metal-free and resistant to destructive pests, making it a highly reliable and safe material for animal habitats, classrooms, and medical clinics.

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