Custom Carbon Fiber Medical Device Components
Medical Grade

Custom Carbon Fiber Medical Device Components

Medical-grade carbon fiber components manufactured for imaging equipment, surgical instruments, and patient support systems. Carbon fiber's radiolucency (X-ray transparency) and high strength-to-weight ratio make it ideal for CT scanner beds, wheelchair frames, surgical robot arms, and MRI-compatible accessories. Biocompatible resin systems available.

23 views
طلب عرض سعر

الميزات الرئيسية

X-ray / CT radiolucent (no image artifacts)
MRI-compatible (non-magnetic)
High strength-to-weight ratio
Custom 3D shapes possible
Biocompatible epoxy available

التطبيقات

CT scanner couch topsWheelchair framesSurgical robot armsMRI coil housingsProsthetic components

المواصفات

Carbon Grade
T700 / T300
Resin System
Medical-grade epoxy / PEEK
X-Ray Transparency
> 95% (no artifacts)
Sterilization
Autoclave / ETO / Gamma
Surface Finish
Smooth medical-grade coating
طلب عرض سعر

عادةً ما نرد خلال 24 ساعة

الأسئلة الشائعة

ما هو الحد الأدنى لكمية الطلب (MOQ) للمنتجات؟
نحن نقبل التخصيص بكميات صغيرة. تختلف الكميات الدنيا حسب نوع المنتج — الأنابيب والألواح لها MOQات أقل، بينما الأجزاء المخصصة الشكل تعتمد على متطلبات القوالب. تواصل مع فريق المبيعات للحصول على عرض سعر مفصل.
ما هي خيارات اللون والإنهاء المتاحة؟
الإنهاءات القياسية تشمل 3K plain/twill weave، UD unidirectional، والساتان، أساساً باللون الأسود. الألوان المخصصة والطلاءات السطحية — بما في ذلك الطلاءات الصقيعية الخام والمضيئة — متاحة أيضاً.
ما هو وقت التسليم المتوقع؟
وقت التسليم القياسي للمنتج هو 15-25 يوم عمل. يتم تقييم المنتجات المخصصة بناءً على تعقيد العملية. خدمة الطوارئ متاحة — يرجى تأكيد الجدول الزمني عند طلب عرض سعر.

Related Articles

Wind Turbine Blade Leading Edge Protection 2026: Polyurethane, Tape, and Metallic Shield Solutions

Wind Turbine Blade Leading Edge Protection 2026: Polyurethane, Tape, and Metallic Shield Solutions

Leading edge erosion has emerged as one of the most significant maintenance challenges for wind turbine blades, particularly in offshore and coastal installations where blades are exposed to rain, hail, salt spray, and airborne particulates at high rotational speeds. The leading edge of

١٩ سبتمبر ٢٠٢٦Read
Digital Product Passport for Composites: EU DPP Data Requirements for CFRP Components

Digital Product Passport for Composites: EU DPP Data Requirements for CFRP Components

The European Union's Ecodesign for Sustainable Products Regulation (ESPR) introduces the Digital Product Passport (DPP) as a foundational tool for circular economy compliance. For carbon fiber reinforced polymer (CFRP) components, the DPP represents more than a regulatory checkbox — it

١٥ سبتمبر ٢٠٢٦Read
Machining Carbide Tool Wear: CFRP Cutting Tool Life and Surface Quality

Machining Carbide Tool Wear: CFRP Cutting Tool Life and Surface Quality

Machining carbon fiber reinforced polymer composites differs fundamentally from metal cutting. CFRP's heterogeneous structure — hard, abrasive carbon fibers embedded in a relatively soft polymer matrix — creates a two-phase cutting environment where tool wear mechanisms, chip formation,

١٥ سبتمبر ٢٠٢٦Read
Type IV Hydrogen Tank Fatigue Testing: ISO 11439 Evolution and 300k Cycle Validation

Type IV Hydrogen Tank Fatigue Testing: ISO 11439 Evolution and 300k Cycle Validation

A hydrogen fuel cell vehicle must carry 350 to 700 bar of compressed gas inside a vessel that survives the full service life of the vehicle without a single structural failure, while remaining as light as possible. That combination — extreme pressure, extreme safety consequence, and ext

١١ سبتمبر ٢٠٢٦Read
Autoclave Cure Cycle Optimization: Energy Reduction and Throughput Improvement

Autoclave Cure Cycle Optimization: Energy Reduction and Throughput Improvement

The autoclave remains the gold standard for producing high-quality carbon fiber composite parts, particularly for aerospace and defense applications where void content below 1% and consistent mechanical properties are non-negotiable. However, autoclave processing is energy-intensive and

١١ سبتمبر ٢٠٢٦Read
Iberia Peninsula Wind Market: Spain and Portugal Offshore Wind Development

Iberia Peninsula Wind Market: Spain and Portugal Offshore Wind Development

The Iberia Peninsula — Spain and Portugal — is experiencing a wind energy development cycle that will fundamentally reshape European offshore wind geography. While the North Sea has dominated European offshore wind investment for two decades, the Atlantic-facing coasts of Spain and Port

١٠ سبتمبر ٢٠٢٦Read