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Military & Security Product Prototype – CNC Aluminum Alloy + Soft Glue Overmolding | YYI Tech

Military & Security Product Prototype – CNC Aluminum Alloy + Soft Glue Overmolding | YYI Tech

Lugar de origem:

Guangdong, China

Marca:

YYI

Número do modelo:

YYI-CNC13

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Detalhes do produto
O diâmetro máximo:
600 (milímetro)
Tratamento de superfície:
polir
Desenho:
2D/(PDF/CAD) 3D ((IGES/STEP)
Matéria-prima:
AL7075
Formato de desenho:
2D/(PDF/CAD) 3D ((IGES/STEP)
Resistência à corrosão:
Ra0.2-Ra3.2 (disponível feito sob encomenda)
Ligação ou não:
É uma liga
Trabalho de anodização:
Anodização regular e anodização dura
Durabilidade:
Durabilidade
Material do braço de manivela:
Alumínio
Processamento:
Ferramentas de torneamento CNC, fresagem, perfuração, etc.
Material do eixo:
Aço
Controle de qualidade:
100% de inspecção
Ponto:
Fazer à máquina do CNC da precisão do OEM
Pacote:
Saco PP/Caixa
Termos de pagamento e envio
Termos de pagamento
L/C, D/A, D/P, MoneyGram, Western Union, T/T
Descrição do produto

Product Overview:

YYI Tech specializes in CNC machining and hybrid-material prototyping for the military and security industries. Our Aluminum Alloy + Soft Glue prototype processing service is tailored for developing rugged, ergonomic, and durable components used in field equipment, control housings, communication gear, and more. We combine high-strength aluminum cores with soft-touch or shock-absorbing rubber-like materials (TPU, silicone, or TPE), providing enhanced protection and user comfort in mission-critical environments.


Materials & Technology:

  • Hard Material (Core): Aerospace-grade Aluminum Alloys (6061, 7075, etc.)

  • Soft Material (Overmold/Insert):

    • TPU (Thermoplastic Polyurethane): Flexible and abrasion-resistant

    • Silicone: High-temperature, non-slip, and chemical-resistant

    • TPE (Thermoplastic Elastomer): Excellent tactile and sealing properties

  • Integration Methods:

    • CNC + Manual Insert Molding

    • CNC + Overmolding via compression or injection

    • Bonded dual-material assembly for prototypes


Manufacturing Capabilities:

  • Machining: 3/4/5-axis CNC for metal cores

  • Soft Material Process: Manual casting, vacuum forming, or low-pressure injection (depending on part size)

  • Tolerances: ±0.01 mm for metal, ±0.1 mm for soft material (depending on geometry)

  • Rapid Prototyping: From 1 to 100+ units

  • Design Support: DFM feedback for moldability and dual-material compatibility


Applications in Military & Security:

  • Rugged handheld device housings

  • Protective grips for firearms, drones, or surveillance tools

  • Shock-absorbing mounts or brackets

  • Sealed control enclosures or sensor covers

  • Wearable tactical components (soft-touch + armored)


Selling Points & Advantages:

  • Dual-Material Expertise: Metal strength + soft material comfort/shock resistance

  • Custom Ergonomics: Optimized for grip, sealing, and protection in field conditions

  • Precision Fit: CNC accuracy ensures seamless integration of soft and hard components

  • Ruggedization for Harsh Environments: Resistance to vibration, water, dust, and impact

  • Prototyping to Pilot Production: Small runs for testing or low-volume end-use


FAQs:

Q1: What’s the benefit of combining aluminum with soft glue materials?
A: The aluminum provides structural integrity, while the soft glue (like TPU or silicone) offers grip, shock absorption, or environmental sealing—ideal for military-grade equipment.

Q2: Can YYI Tech help with insert-molding design review?
A: Yes. We offer DFM (design for manufacturability) consultation to ensure optimal bonding and part function.

Q3: How durable are the bonded materials in prototype form?
A: With proper prep and bonding techniques, our aluminum + soft glue prototypes can withstand rough handling and environmental exposure suitable for field tests.

Q4: What surface treatments are available for the aluminum parts?
A: We offer anodizing, sandblasting, painting, or powder coating for added corrosion resistance and aesthetics.

Q5: What’s the lead time for dual-material prototypes?
A: Typically 7–14 days depending on complexity, volume, and the bonding method chosen.

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