Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts

Product Details
Customization: Available
File Format: STEP
Printer Material: Metal
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  • Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts
  • Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts
  • Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts
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  • Overview
  • Customized Solutions
Overview

Basic Info.

Product Name
3D Printed Bicycle Stem Cap
Material
Titanium Alloy Tc4
Service
OEM and ODM
MOQ
1
Surface Treatment
Painting/Coating/Powder/Polishing/Plating
Quality
Comprehensive Inspection
Transport Package
Foam, Carton, Wooden Boxes, or as Per The Customer
Trademark
mw3dp
Origin
Cn
Production Capacity
5000000PCS/Year

Packaging & Delivery

Package Size
20.00cm * 20.00cm * 10.00cm
Package Gross Weight
1.000kg
Lead Time
15 days (1 - 5 Pieces)
To be negotiated ( > 5 Pieces)

Product Description


Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts
Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts

The 3D Printed Universal Titanium Alloy Handlebar is a premium bicycle component that combines strength, lightweight design, and versatility. Utilizing advanced 3D printing technology and high-quality titanium alloy, this handlebar offers exceptional performance, durability, and aesthetic appeal. Whether you ride a road bike, mountain bike, or commuter bike, this handlebar is designed to enhance your cycling experience.

Key Features:

  • Material:  TC4 Titanium Alloy
  • Manufacturing Process: 3D Printing Technology LPBF
  • Compatibility: Fits most standard bicycle
  • Finish: Painting/Coating/Powder/Polishing/Plating

Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts
Advantages:

  • High-Strength Titanium Alloy Material: Made from high-quality titanium alloy, ensuring robustness and stability under various riding conditions.
  • Advanced 3D Printing Technology: Leveraging state-of-the-art 3D printing, this handlebar achieves precise and complex geometric shapes, providing optimal mechanical performance and lightweight design.
  • Lightweight Design: Optimized design and material selection significantly reduce the weight of the handlebar, enhancing riding efficiency and control.
  • Versatility: Suitable for a wide range of bicycles, including road bikes, mountain bikes, and commuter bikes, meeting diverse riding needs.
  • Aesthetic Appeal: Unique 3D printed textures and modern design make this handlebar a standout feature on your bicycle.
  • Easy Installation: Standard interface design for quick and easy installation on various bicycles, requiring no additional tools.
Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts

Applications:

  • Road Bikes: Ideal for road cyclists who demand high performance and lightweight design, enhancing speed and comfort.
  • Mountain Bikes: Suitable for mountain bikers who need a strong and lightweight handlebar to tackle challenging terrains.
  • Commuter Bikes: Provides a comfortable and practical riding experience for city commuters, combining aesthetics and functionality.
  • Competitive Bikes: For competitive cyclists, this handlebar offers a necessary edge, helping them achieve better results in races.
  • Touring Bikes: Perfect for long-distance riders, the lightweight design and high-strength material ensure comfort and reliability over extended rides.
 
Customized Solutions

Metal 3D printing Materials Available: 
 
Material Type Grade Physical Properties Properties of Printing
Particle Size Shape Flowabilty Tapped Density Density Tensile Strength Yield Strength
Stainless steel 316L 15~53μm spherical 40S 3.9g/cm3 ≥99% ≥560MPa ≥480MPa
Die steel MS1 15~53um spherical 40S 4.3g/cm3 ≥99% ≥1090 Mpa ≥1000 Mpa
Titanium alloy TC4 15~53um spherical 45S 2.5g/cm3 ≥99% ≥600 Mpa ≥540 Mpa
Aluminium alloy AlSi10Mg 15~53um spherical 150S 1.45g/cm3 ≥95% ≥330 Mpa ≥245 Mpa
Nickel base superalloy GH4169 15~53μm spherical 45S 4.4g/cm3 ≥99% ≥980 Mpa ≥700Mpa

Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts
Technical specifications: 

Maximum build dimensions: Dimensions are unlimited as components may be composed of several sub-parts.  
Our maximum build envelope is 400 x 300 x 300 mm.

Standard accuracy: Better than or equal to the industry standards:
DCTG 6 of DIN EN ISO 8062-3: 0.5 and 30 mm
DCTG 8 of DIN EN ISO 8062-3: 30 and 400 mm
DIN ISO 2768-1 c (coarse): 0.5 mm and 400 mm

Layer thickness: 0.04 - 0.09 mm (material dependent))
Minimum wall thickness: Standard grade: 1 mm  Performance grade: 0.5 mm
Surface structure: Unfinished parts are typically rough, but various post-production finishes are possible

Surface Treatment:
Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts
Surface Treatment Method Functional Requirements Aesthetic Requirements Cost
Considerations
Post-Processing
Sandblasting Clean surfaceRemove contaminants Uniform matte finish
Textured look
Medium Use sandblasting machine-Wear safety gear
Abrading Smooth surfaceRemove imperfections Smooth finish Low to medium Use sandpaperStart coarse, end fine
Polishing Improve finishIncrease shine High gloss
Mirror-like finish
Medium to high Use polishing compounds-Gradual fineness
Painting/Coloring Protect surfaceAdd color Wide color range
Custom finishes
Medium Clean surface-Apply primer-Multiple coats-Light sanding between coats
Electroplating Corrosion resistanceConductivity Metallic finish
Various colors
High Clean part-Electrolyte bath-Apply current-Rinse and dry
Anodizing Corrosion resistanceWear resistance Durable, colorful finish
Matte or glossy
Medium to high Clean part -Acidic/alkaline bath-
Apply current-Seal (if needed)

Customization Process:
Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike PartsDesign Consultation: Provide us with your design ideas, specifications, and any specific requirements.
3D Modeling: Our expert designers will create a 3D model based on your input.
Approval: We will send you the 3D model for approval. You can request modifications if needed.
3D Printing: Once approved, we will use advanced 3D printing technology to manufacture your custom idea.
Quality Control: The product or idea will be finished, polished, and undergo rigorous quality checks.
Shipping: Your custom 3D printed product will be carefully packaged and shipped to you. 


Lead Time: 
 
Process Lead Time
Quotation Contact us for a quote within 24 hours
3D Drawing Design About 5-7 days
3D Printing About 1-3 days
Polishing/Surface Treatment About 1-3 days
Functional Making About 2-5 days
Painting About 2-4 days
Packaging and Delivery About 4-5 days

Company Profile
 

Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts   
     MW3DP specializes in innovative product design and production through advanced digital 3D printing technology. We redefine traditional manufacturing by creating products that merge futuristic aesthetics with practical functionality. Our core business encompasses 3D printing services, innovative design,material development, and product manufacturing, including 3D Printed footwear, furniture, home decor, gifts, jewelry accessories,  bags, and other artistic cultural or fashion products.

 

    At MW3DP, we actively explore new technologies and materials, providing highly customized solutions to clients worldwide. With a strong commitment to sustainability, we leverage digital smart manufacturing and personalized production to drive industry upgrades and innovation, truly "making way for 3D printing."

Our Service 

   3D Printing Services ( LPBF / FDM / SLA / SLS / SLM /LCD & DLP/ FGF )
   Innovative Concept Design 
   Materials Development
   3D Printing Product ( Footwear, furniture,home decor, gifts, bags, and other artistic cultural or fashion product
s)
 

Why Choose Us? 
Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts10+ Years of Experience in the 3D Printing Material Industry
With over a decade of expertise, we have a deep understanding of various 3D printing technologies, including LBPF, FDM, SLA, SLS, FGF, and
LCD/DLP... 
allowing us to meet the diverse needs of our clients.

Highly Customized Solutions and Multi-Industry Applications
Our focus on personalization enables us to tailor solutions that align perfectly with your unique requirements and vision, continuously exploring the
boundaries of 3D printing applications.


Stable, Comprehensive, and Flexible Digital Smart Production and Supply Chain Ecosystem Support
Our production processes are optimized for stability in quality and efficiency. We have established a flexible digital smart production system and supply chain ecosystem that supports both small-batch customization and large-scale production.

Broader and More Diverse Customer Base
We cater to a diverse range of clients, including wholesalers, brand owners, designers, engineers, and retailers, as well as 3D printing enthusiasts and everyday consumers, providing tailored solutions to meet their unique needs.

3D Printing Technology
Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts

Technology Principle Materials Used Accuracy Features Application Fields
(LPBF)
Laser Powder Bed Fusion
Uses a laser to selectively melt metal powder layer by layer. Metal powders (titanium alloys, stainless steel, aluminum alloys) ±0.1-0.2 mm Suitable for complex shapes, high surface finish. Aerospace, medical implants
(FDM )
Fused DepoFused Deposition Modeling 
Heats and extrudes thermoplastic filament, building objects layer by layer. Thermoplastics (PLA, ABS, PETG) ±0.2-0.3 mm Easy to operate, cost-effective. Prototyping, education, consumer products
(SLA)
Stereolithography
Utilizes ultraviolet light to cure liquid photopolymer resin layer by layer. Photopolymer resins ±0.1 mm High precision, ideal for detailed models. Jewelry, art, dental applications
(SLS)
Selective Laser Sintering
Uses a laser to sinter powdered material layer by layer. Nylon, polystyrene, metal powders ±0.1-0.2mm No need for support structures, complex parts. Functional parts, automotive, consumer goods
(SLM)
Selective Laser Melting
Completely melts metal powder using a laser. Titanium alloys, aluminum alloys, stainless steel ±0.1-0.2mm Produces high-strength metal parts. Medical, aerospace, automotive components
(LCD) & (DLP)
Liquid Crystal Display & Digital Light Processing
Cures liquid photopolymer resin by projecting light onto layers. Photopolymer resins ±0.1 mm Fast printing speeds, high precision. Prototyping, small batch production, dental molds


Packing and Shipping
Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike PartsDurable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts


Exhibtion 
Durable 3D Printed Titanium Alloy Stem with Lightweight 3D Printed Bike Parts
Notice

Before placing an order, we warmly invite you to take a moment to review the following information to better understand our process.

File Format 
Please provide STP/STL//3MF or other formats suitable for 3D printers. If needed, our customer manager is happy to assist with file format conversions.
Before submitting, we recommend verifying the details and dimensions of your model with our customer service team to ensure all necessary adjustments are made.


File Verification 
Different software may have varying compatibility, and converting formats or using different programs can lead to discrepancies in details, especially with threaded parts.
To avoid any issues, we encourage you to carefully verify all details with our customer service team before placing your order.


Split Printing 
Please note that products in a single STL file cannot be split into separate parts by default. If your STL file contains multiple products or requires assembly, kindly split the file into multiple parts beforehand for smoother printing.

Pricing 
The cost of 3D printing is primarily based on the material, weight, construction, and printing time. We encourage you to contact our customer service for a detailed quote tailored to your material requirements.

Assembly  
When designing assembly parts, please ensure there is sufficient clearance. Different processes and materials may result in dimensional variations, so we recommend incorporating enough clearance in your design and using assembly parts made from the same material.

Shipping

Please understand that the production of customized products takes time and cannot be expedited. To ensure timely delivery, we are unable to support modifications, file replacements, or order cancellations for confirmed orders. We greatly appreciate your understanding and support.

 

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