High Hardness 2650 HV Silicon Carbide Strike Face Plate with NIJ III Protection and Multi-Hit Durability

Ürün ayrıntıları:

Menşe yeri: Hunan, Çin
Marka adı: ECER
Sertifika: NIJ 0101.06 Level III, ISO 9001:2015
Model numarası: ECER-SIC-HH-3-1012
Belge: SIC Ballistic Armor Tiles-P...ad.pdf

Ödeme & teslimat koşulları:

Min sipariş miktarı: 100 kilogram
Fiyat: USD 20-40 / KGS
Ambalaj bilgileri: Oluklu kutu, ihracat sınıfı kontrplak palet ile bireysel EPE köpük ambalajı
Teslim süresi: Numuneler için 5-7 iş günü, toplu siparişler için 15-25 gün
Ödeme koşulları: T/T, L/C, Western Union, PayPal
Yetenek temini: Aylık 5000 mt
En iyi fiyat İletişim

Detay Bilgi

NIJ Koruma Seviyesi: Seviye III (7.62x51mm M80 NATO) Ağırlık: 2,3 kg (Tek Plaka)
Yoğunluk: 3,15 g/cm³ Boyutlar: 10x12 inç (250x300 mm)
Sertlik: 2650 HV (Dökülme, Minimum) Çalışma Sıcaklığı: -50°C ila +80°C
Vurgulamak:

High Hardness SiC Strike Face

,

Durable Multi-Hit Ceramic Plate

,

Industrial Grade SiC Armor

Ürün Açıklaması

High-Hardness Silicon Carbide Strike Face Protection Plate — Industrial-Grade Durability at Wholesale Pricing

Material Comparison: Why SiC Dominates the Ceramic Armor Landscape

Parameter Silicon Carbide (SiC) Alumina Oxide (Al₂O₃) Boron Carbide (B₄C)
Knoop Hardness 2,600-2,800 HV 1,800-2,100 HV 2,800-3,200 HV
Density 3.10-3.18 g/cm³ 3.85-3.95 g/cm³ 2.48-2.52 g/cm³
Fracture Toughness 3.5-4.5 MPa·m½ 3.0-3.5 MPa·m½ 2.5-3.0 MPa·m½
Elastic Modulus 410-450 GPa 340-380 GPa 440-470 GPa
Thermal Conductivity 120-170 W/m·K 24-30 W/m·K 30-42 W/m·K
Cost Index (per plate) Moderate Low Very High
Industrial Scalability Excellent Excellent Limited

It represents our premium industrial-grade Silicon Carbide plate. Unlike standard SiC tiles that may suffer from inconsistent sintering quality, our high-hardness variant is manufactured under strict process controls to deliver guaranteed minimum 2650 HV Knoop hardness across the entire strike face — including edges, where cheaper plates often fail.

Why Hardness Consistency Matters

  • Edge-to-Edge Protection: Many budget ceramic plates show hardness drop-off at tile edges due to uneven sintering. Our process ensures homogeneous density and hardness from center to edge.
  • Consistent Multi-Hit Performance: Each shot impacts a different tile area. Uniform hardness ensures predictable shattering regardless of impact location.
  • Lower Porosity for Longer Shelf Life: Near-zero porosity (<0.5%) prevents moisture absorption that can degrade ceramic performance over time — rated for 12-year shelf life.
  • Better Thermal Shock Resistance: SiC's superior thermal conductivity (120-170 W/m·K vs alumina's 24-30 W/m·K) means it handles rapid temperature swings without micro-cracking.

The SiC Cost-Performance Advantage Summarized

  • VS Alumina Oxide: 30% harder, 20% lighter, 50% better multi-hit rating — for only a 20-30% cost increase
  • VS Boron Carbide: 90% of the ballistic performance at 35-45% lower cost with dramatically better supply chain reliability
  • VS Pure PE: Defeats M855/SS109 penetrators that UHMWPE-only plates cannot stop

Key Features

  • 2650 HV Minimum Guaranteed Hardness: Each production batch is hardness-tested with documentation available
  • Near-Zero Porosity Sintering: Advanced pressureless sintering with post-HIP treatment for <0.5% porosity
  • Aramid/UHMWPE Hybrid Backing: Combines the thermal stability of aramid with the lightweight toughness of UHMWPE
  • Full Cut Profile: Maximum coverage area for vital organ protection
  • 12-Year Rated Shelf Life: Extended service life reduces total cost of ownership

Equip your force with industrial-grade Silicon Carbide armor that outperforms alumina on every metric and rivals boron carbide at half the cost. Contact us now for technical datasheets, ballistic reports, and wholesale pricing.


Contact us for more information:


 Jane Hu(Ms)

China Hunan High Broad New Material Co., Ltd.
70 Chezhan North Road,Changsha, China 410100
Tel:+86-731-85717705 
Fax:+86-731-85716569
Mobile/Whatsapp: +86-139-7515-2932
Wechat:13975152932
Skype:jane.hu261
Email: janehu@hbnewmaterial.com
Web:www.hbnewmaterial.com

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