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Plastic 3D Printing
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Plastic 3D Printing

Plastic 3D Printing

Industrial grade plastic 3D printing, providing integrated 3D printing solutions for multiple materials. Compatible with large FDM plastics such as PEEK/ABS/PC/TPU/PP/carbon fiber/nylon for 3D printing, it can meet the complex printing requirements of industrial applications.
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Product Introduction

Description

 

Industrial grade plastic 3D printing, providing integrated 3D printing solutions for multiple materials. Compatible with large FDM plastics such as PEEK/ABS/PC/TPU/PP/carbon fiber/nylon for 3D printing, it can meet the complex printing requirements of industrial applications.

 

Our Services

  

We provide customized solutions for different industries, from aerospace, medical components, electronics to the new energy industry, and more. CNC machining ensures the accuracy and quality of products.

 

At XYC, our ISO certified CNC workshop is specifically designed for rapid prototyping and small batch production of end use components. XYC CNC Factory provides you with 24-hour quotation service and rapid production of samples. We are your best choice for machining parts and can customize manufacturing according to your project requirements.

 

Machinable Range

 

Tolerance:

+/-0.01mm(In CNC machining, The tolerance is largely influenced by the geometric shape and material type of the part. Specific tolerance details for different parts )

Roughness:

Ra 0.1-Ra 3.2

Quality:

DIN,ASTM,GOST,GB,JIS,ANSI,BS;

Drawing format:

PDF,DWG,DXF,IGS,STEP

Authentication:

ISO9001:2015,ISO4001:2015,RoHS,SGS;

Size:

Length 1600mm*length 850mm

Material

Steel: carbon steel, alloy steel, stainless steel, 4140, 20 #, 45 #, 40Cr, 20Cr, etc

AL: AL6061,AL6063,AL6061,AL7075,AL5052,etc

Stainless steel: 201SS,301SS,304SS,316SS 17-4PH,etc

Brass: C37700,C28000,C11000,C36000,etc

Plastics:PTFE,PEEK,POM,PA,UHMW,PC,PBT,etc

Surface Treatment:

Steel

stainless steel

stainless steel

Galvanization

Burnishing

Anodizing

Black anodize

Passivation

Sandblasting anodizing

Nickeling

Laser marking

Colorful anodizing

Chroming

Sandblasting

Wire drawing

Heat treatment

 

Burnishing

Powder coating

 

Chroming

 

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Plastic is one of the earliest materials used in the 3D printing industry, and it is regarded as an economically efficient alternative to injection molding. Compared to technologies such as plastic injection molding, using 3D printing technology to manufacture plastic parts is very simple. You don't need to customize production molds for prototype production or pre development production processes, just upload the 3D printed model file to the 3D printer.

 

Plastic 3D printing can be used in the medical industry to create 3D printed models of organs. It can be used for replacing automotive interior parts in the automotive industry, printing building models, and even in the aerospace industry. In addition, plastic 3D printing materials are very useful for every step of the product development process, from proof of concept, prototype design to production! You can print any plastic component, plastic packaging, or plastic product. You can freely 3D print any type of complex design using plastic.

 

The benefits of using plastic 3D printing materials to make parts:

 

1, Capable of 3D printing large-sized parts

2, Low cost of using plastic 3D printing

3, Compared to traditional injection molding, it is more efficient

 

Plastic 3D printing materials can provide various surface treatment possibilities

 

product-800-800

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FQA

 

Can I use PP plastic for 3D printing?

Yes, (PP) plastic can be used for 3D printing. The PP used in 3D printing technology is usually printed through methods such as coupled deposition modeling (FDM) or brazing laser sintering (SLS).

 

In FDM printing, coil plastic is usually supplied to the printer in a filamentous form. The printer heats the coil wire material to a molten state, then heats it layer by layer through the head and solidifies it into the desired shape.

 

In SLS printing, multiple layers of powder are melted and solidified by a laser sintering machine. The laser beam scans on multiple layers of powder, locally melting and bonding them together, ultimately constructing the printed piece layer by layer.

 

PP has advantages such as good physical properties, chemical resistance, and aesthetics. Therefore, in some application fields such as original production, functional components, and household products, using PP for 3D printing is a common choice. Note that a large amount of materials have a low melting point, so it is necessary to control the temperature well during the printing process to avoid deformation or quality issues caused by excessive heating.

 

Can 3D printing perspective plastic?

Light cured 3D printing: Light cured 3D printing technology uses a laser light source to solidify a beam of photosensitive resin into a solid state. By using transparent photosensitive resin, transparent printing results can be achieved. This technology is commonly used in photo cured resin 3D printers, such as SLA (photo cured) curing chromatography and DLP (digital light processing) printers.

 

Multi material printing: Some multi material 3D printing technologies can print transparent materials on transparent printers. For example, a 3D printer using PolyJet technology can print transparent plastic on a transparent printer.

 

Hot pressing molding: Hot pressing molding is a method of heating plastic sheets to a softened state, and then forming the desired shape through pressure and mold. Transparent plastic sheets can be used for hot pressing to produce transparent parts.

 

What materials cannot be 3D printed?

Metal: Traditional 3D printing methods such as FDM and SLA are often difficult to directly print metal. Metal 3D printing typically uses metal powder or wire, and relies on special 3D printing techniques such as Fast Laser Melting (SLM) or Electron Beam Melting (EBM).

 

Glass: Due to its high melting point and special physical properties, traditional 3D printing methods cannot directly print glass products. At present, glass 3D printing is still in the research and experimental stage, using some emerging technologies such as laser sintered glass powder or fiber guided spindle glass.

 

Natural materials: Some natural materials, such as wood, leather, textiles, etc., are difficult to directly perform traditional 3D printing due to their complex structures and special properties. However, post-processing and processing of these materials can be achieved using technologies such as 3D scanning and CNC cutting.

 

High temperature materials: Some high-temperature materials, such as high-temperature plastics, ceramics, etc., may exceed the working temperature range of traditional 3D printing technology. These materials typically require special 3D printing equipment and techniques, such as thermal spraying or hot pressing.

 

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