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We are a 3d printing parts manufacturer, pure-play enterprise dedicated to developing and manufacturing nonstandard machine parts and equipment processing. Our main business are cnc machining, injection mold products, precision hardware, etc. Owning advanced technologies and strong technical force. We have over 40 professional manufacturing and possessing equipment, which includes cnc, milling machine, lathe machine, precision grinding machine and line cutting machine. And there are various testing equipment imported with high precision in our quality department, including 3D and 2.5d measuring equipment, tesa altimeter and hardness tester.
Why Choose Us
High Quality Guaranteed
We have passed iso 9001:2015 certification, ts16949, sgs, and other strict quality certifications to ensure product quality from start to finish.
Fast Delivery
Simple samples can be provided within 5 days at the earliest, and mold samples can be provided within 20 days. Customer service has engineers with more than 10 years of experience and provides 24-hour service.
Production Market
Products have been sold all over the world including america, britain, germany, israel, greece, sweden, malaysia, australia, russia, japan etc, our company has always been committed to the principle of "taking the technology as the lead, quality as the priority, efficiency as the fundamental, and reputation as the target".
Good After-Sales Service
From the moment we accept the order, we will disclose the project's progress to our customers and provide regular process reports every week! We also have a complete after-sales service system so customers have no worries!
3D Printing of ABS PartsABS is currently the most widely used polymer. It combines various characteristics of PS, SAN, and BS, and has the characteristics of hard, hard, and hard.. ABS plastic is generally opaque, milky
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3D Printing Medical Plastic PartsAvailable as final parts. Samples made of PC materials can be directly assembled and used in transportation and home appliance industries. The PC material has a single color, only white, and its
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High Level of 3D Printing of Plastic PartsAs a new technology, 3D plastic printing can be roughly divided into four categories in terms of technical realization:. 1. 3D printing bonding molding technology. 2. Fused deposition modeling
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3d Printing of Plastic PartsIf you need to make larger parts for a test project, plastic will be the best solution. Large-scale 3D printing is now becoming one of the items of interest to many companies to obtain accurate and
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3d Printing Small Plastic PartsGeneral-purpose materials are divided into rubber-like, elastomers, rigid ultra-flexible materials, ultra-high toughness plastics, etc.. (1) Rubber-like materials: parts with high tear strength and
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3D Printing of Aluminum Alloy PartsMetal powders for 3D printing generally require high purity, good sphericity, narrow particle size distribution, and low oxygen content. At present, the metal powder materials used in 3D printing are
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3D Printing of Automotive PartsMetal 3D printing materials are widely used in petrochemical, aerospace, automobile manufacturing, injection molds, light metal alloy casting, food processing, medical treatment, paper making,
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High Technology 3D Printing of Metal PartsThe current mainstream metal 3D printing technologies include: selective laser melting (SLM), laser near net shaping (LENS), electron beam selective melting (EBSM) technology, direct energy
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3d Print Metal1. Everything can be printed, and any complex structure can be formed at one time without welding, which can save a lot of time.. 2. A variety of metal materials are available, commonly used
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Prototype of 3D Printing of Metal PartsAt present, metal 3D printing is widely used in: mold field, industrial field, automobile field, medical field, aerospace field, etc.. Mold field: First, we will introduce the application of the mold
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Types of 3D Printing Parts
The 3D printing parts produced by our company mainly include the following types:
3D printing medical plastic parts, as one of the important applications of this technology, not only greatly improves the degree of customization of medical equipment, but also accelerates medical innovation and brings more accurate and efficient treatment options to patients.
Plastic 3D printing technologies mostly fall into three categories: Material extrusion (e.G. Fff, fdm), vat polymerization (e.G. Sla, dlp), and powder bed fusion (e.G. Sls, mjf). Fff and sla are readily available in consumer and professional desktop machines, while powder bed fusion (pbf) is best for industrial use.
3D printing of aluminum alloy parts, as the name implies, is to use 3D printing technology to stack aluminum alloy materials layer by layer, and finally build parts with complex geometric shapes. This process can be roughly divided into three core steps: Design modeling, printing and manufacturing, and post-processing.
3D printing can directly produce parts of complex shapes quickly and accurately based on three-dimensional digital models without the need for molds or complex tooling. In the field of automotive parts, the introduction of this technology not only simplifies the production process, but also greatly broadens the design freedom and promotes the personalization and customization process of automobile manufacturing.
Advantages of 3D Printing Parts
3D printing medical plastic parts have many advantages, including:
Digital manufacturing and design flexibility
3D printed parts begin their life as digital three-dimensional cad files in a computer program. Such designs can be created directly on a computer using readily available software, or they can be derived from a topological 3D scan of an actual physical object.
3D mapping and prototyping
3D scanning technology, such as advanced ct/ mri, can be used to make highly accurate and detailed virtual models of human organs or bones. These can then be rendered as physical prototypes or models using a 3D printer. With such a model, doctors can then study and diagnose various conditions without needing to perform dangerous or intrusive surgery.
Decentralized production
Unlike mass-production processes, 3D printing does not need the industrial infrastructure of a large factory and a complex supply chain. Rather, small printers are truly desktop portable and can be used almost anywhere with electricity and a computer.
Speed and volume flexibility
3D printing in metal or plastic is not limited by the same economies of scale that affect conventional manufacturing. There is no need to make specialized tooling, jigs, or fixtures, and there are no minimum volume requirements or batch production limitations.
3D printing of plastic parts have many advantages, including:
Capable of 3D printing large-scale parts
If you need to make larger parts for a test project, plastic will be the best solution. Large-scale 3D printing is now becoming one of the items of interest to many companies to obtain accurate and customized parts.
The cost of using plastic 3D printing is low
Price is clearly one of the biggest advantages of plastic 3D printed parts. Using abs or pla materials, you can already print reasonably priced parts. If you pay attention to model accuracy or material strength, you can also use nylon materials for high-precision printing.
Compared with traditional injection molding processing, it is more efficient
Manufacturing plastic parts using 3D printing technology is very simple compared to techniques such as plastic injection molding. You don't need to customize production molds for prototyping or pre-production r&d production process, you only need to upload the 3D printing model file to the 3D printer.
Plastic 3D printing materials are suitable for many fields
Plastic 3D printing can be used in the medical industry to create 3D printed models of organs. It can be used in the automotive industry to replace car interior parts, to print architectural models, and even in the aerospace industry.
3D printing of aluminum alloy parts have many advantages, including:
The advantage of aluminum 3D printing is that the mechanical properties of aluminum can be modified by changing the microstructure and the internal distribution of forces. Studies on aluminum 3D printing have also demonstrated material savings compared to conventional methods. High-tech industries that use metal additive manufacturing have demonstrated the faster fabrication of complex components, improved material strength, and ductility advantages than conventional methods.
Aluminum additive manufacturing also enables the production of highly optimized structures that were otherwise expensive, time demanding, or even impossible to fabricate using conventional manufacturing methods. Additionally, 3D printed aluminum parts can be used with other parts to create hybrid structures.
3D printing of automotive parts have many advantages, including:
High design freedom
3D printing technology can easily realize complex structures that are difficult or impossible to complete with traditional processes, such as internal flow channels, lightweight hollow designs, etc., providing unlimited possibilities for the innovative design of automotive parts.
Rapid prototyping
In the early stages of product development, 3D printing can quickly produce prototypes, shorten the product design to verification cycle, and accelerate product launch.
Reduce waste and cost
By directly printing the required parts, material waste and additional processing steps in traditional manufacturing are avoided, especially in small batch or personalized production, the cost control effect is significant.
Lightweight and performance optimization
3D printing allows designers to optimize the structure of parts without affecting the function, achieve lightweight design, and improve the mechanical and thermal properties of parts.
3D Printing Medical Plastic Parts
3D printing medical plastic parts can be used for a variety of purposes, including:
Personalized medical devices: 3D printing technology can customize medical devices that accurately match the patient's specific needs. For example, printing personalized orthotics, prosthetics or implants for patients with complex skeletal deformities or injuries. These components not only improve treatment outcomes, but also reduce surgical risks and speed up patient recovery.
Surgical guide and model: Before complex surgeries, doctors can use 3D printing technology to create precise models of the patient's bones, organs, and even details such as blood vessels and nerves. These models provide doctors with intuitive surgical references, help plan surgical paths, and improve surgical success rates.
Tissue engineering and drug delivery: 3D printing technology also shows great potential in the fields of tissue engineering and drug delivery. By printing bioactive scaffold materials, cell growth and differentiation can be induced, promoting tissue repair and regeneration.


3D Printing of Aluminum Alloy Parts
3D printing of aluminum alloy parts can be used for a variety of purposes, including:
In the field of aerospace: 3D printing technology of aluminum alloy parts can realize the integrated molding of complex structures, greatly reducing the number of parts and assembly costs, while improving the strength and stability of the overall structure.
In terms of automobile manufacturing: This technology accelerates the research and development cycle of new models, reduces mold costs, and enables automakers to respond to market changes more flexibly. At the same time, lightweight design has become an important trend in the development of modern automobiles. 3D printing technology of aluminum alloy parts has played an important role in this field, helping to improve the fuel economy and environmental performance of vehicles.
In the field of medical devices: 3D printing technology of aluminum alloy parts has opened a new chapter in personalized medicine. By precisely matching the patient's physiological structure and needs, highly customized medical implants, surgical guides, etc. Can be printed, which not only improves the accuracy and success rate of the operation, but also reduces the patient's recovery time and pain.
In the consumer electronics industry: The application of 3D printing technology for aluminum alloy parts is also remarkable. As consumers' requirements for product appearance and performance continue to increase, traditional manufacturing methods are unable to cope with complex designs and rapid iterations. 3D printing technology can easily realize the design and production of complex structures, meeting consumers' pursuit of personalized and lightweight products.
3D Printing of Automotive Parts
3D printing of automotive parts can be used for a variety of purposes, including:
Customized interior parts: Using 3D printing technology, automotive interior parts such as steering wheels, instrument panels, seat frames, etc. Can be customized to meet the aesthetic and functional needs of different consumers.
Complex structural parts: Complex structural parts such as engine blocks and intake manifolds can be formed in one go through 3D printing, reducing assembly steps and improving overall performance.
Lightweight parts: 3D printing technology using metal powder bed fusion (such as titanium alloy, aluminum alloy) or high-performance polymer materials can produce light and strong automotive parts, such as wheel spokes, suspension parts, etc., which significantly improves vehicle fuel efficiency or cruising range.
Tools and fixtures: On the production line, 3D printing can quickly produce tools and fixtures of specific shapes, improving production efficiency and flexibility.

FAQ
Q: Can you 3D print plastic parts?
A: There are many different types of 3D printers, the most common processes for producing plastic parts being: Fused deposition modeling (fdm), stereolithography (sla), and selective laser sintering (sls). Standard thermoplastics, such as abs, pla, and their various blends.
Q: Can you 3D print medical devices?
A: Surgical guides, splints, temporary and permanent restorations, and dentures can all be directly 3D printed.
Q: What plastic is safe for 3D printing?
A: Food safe 3D printing filaments include pla, pp, co-polyester, pet, pet-g, hips, and nylon-6, as well as some brands of abs, asa, and pei. Having to run parts through the dishwasher rules out pet, nylon, and pla because these plastics soften and distort around 60–70 °c.
Q: How strong are 3D printed plastic parts?
A: Generally, plastic materials used in 3D printing are not as strong as metals and ceramics, but they are strong enough for a variety of applications. Overall, polycarbonate is generally considered the strongest 3D printed filament, but there are several methods by which product strength is ascertained.
Q: Is 3D printing as strong as injection molding?
A: Injection molded parts tend to be stronger than 3D printed components. Mainly, that's because injection molded parts are made are made of a single layer of material. By contrast, 3D printing produces parts layer by layer .
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