Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research

China Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research, Find details about China 3D Printing, Medical Use 3D Printer from Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research

Model NO.
EASY-M Series
Forming Technology
3DP
Operating System
Windows 7
Filed
Mould Casting
Software
Easymade Self Design
Application
Print Medicine
Printing Materieals
Medical Powder
Research
Meidical Study
Nozzle Holes
1200
Field
Binder Reserch
Trademark
EASYMFG
Transport Package
Wooden Box
Specification
420mm*220mm*300
Origin
China
HS Code
8477591000
Model NO.
EASY-M Series
Forming Technology
3DP
Operating System
Windows 7
Filed
Mould Casting
Software
Easymade Self Design
Application
Print Medicine
Printing Materieals
Medical Powder
Research
Meidical Study
Nozzle Holes
1200
Field
Binder Reserch
Trademark
EASYMFG
Transport Package
Wooden Box
Specification
420mm*220mm*300
Origin
China
HS Code
8477591000
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research


The ultimate goal of every researcher is to advance their field of study. Research councils are looking to fund projects that span multiple disciplines. Creating prototypes to illustrate findings in vivid detail with realistic 3D models leaves a lasting - and potentially valuable - impression. And that's just one example of how 3D printing is accelerating the field of research
 

Additive manufacturing (3D printing): A review of materials, methods, applications and challenges

Additive manufacturing ; 3D printing; Buildings ;Aerospace;Biomaterials protective structures Concrete Composites Ceramics Metal alloys; 

Freedom of design, mass customisation, waste minimisation and the ability to manufacture complex structures, as well as fast prototyping, are the main benefits of additive manufacturing (AM) or 3D printing. A comprehensive review of the main 3D printing methods, materials and their development in trending applications was carried out. In particular, the revolutionary applications of AM in biomedical, aerospace, buildings and protective structures were discussed. The current state of materials development, including metal alloys, polymer composites, ceramics and concrete, was presented. In addition, this paper discussed the main processing challenges with void formation, anisotropic behaviour, the limitation of computer design and layer-by-layer appearance. Overall, this paper gives an overview of 3D printing, including a survey on its benefits and drawbacks as a benchmark for future research and development.


What is 3D printing?

3D printing, also called additive manufacturing, is a family of processes that produces objects by adding material in layers that correspond to successive cross-sections of a 3D model. Plastics and metal alloys are the most commonly used materials for 3D printing, but it can work on nearly anything-from concrete to living tissue.

 
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
Wuhan EasyMade technology was established by Dr Cai Daosheng, It's the founder of first industrial grade droplet jetting 3D printer in China and 3D printer cloud ecosystem "3D Easy Cloud Computing" . It is also the only manufacturer who achieve the complete autonomy and localization of droplet jet 3D printing equipment and applications.


 
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
course of growth
In 2013:Wuhan EasyMade Technology Co,.ltd  was established in Wuhan,Hubei
In 2014:The R&D Center of  3D printer research
In 2015:The first full-color 3D printer for micro-droplet injection was launched in China
In 2017:The first droplet jetting Metal 3D Printing in China
was researched
2018: Successful introduct  strategic investment(Angel Wheel )
2018:achieve the"ONE PASS",breahthrough"Multi-nozzle cooperative inkjet technical breakthrough
 
 
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
*A New Modular Design of the whole structure
*Design of high precision three axis motion mechanism.
*Design of Interactive working cylinder Mechanism
*Design of High Precision Cooperative working cylinder supporting Mechanism
*Design of vibration powder high-efficiency powder laying mechanism
*It can print the maximum size part of 2000mm*1000mm*1050mm


 
Parameter of EASYMADE Binder Jetting Metal 3D Printer machine
Device No.Easy3DP-M500Easy3DP-M450
Printing size(mm)500x450x400450x220x300
Dimensions(mm)1480x1175x17301275x825x1465
Precision±0.1mm (L<100mm)Or ±0.1%(L>100mm)
 print  speed 7-25S / layer
Thickness (mm)0.04 -0.2
Powder feeding Automatic up or down powder feeding  Down powder feeding
Quantity of nozzles1 Piezoelectric nozzle (number of nozzles is available as required)
Nozzle specificationsImport Piezoelectric nozzle , length≥50 mm, physical resolution is 600 DPI
 Software formatSTL,3MF
Power  Single phase, 220V,15A,50HZ
Binderphenolic resin
 Material Iron powder, copper powder, stainless steel powder, etc

 
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
 
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research


EASYMADE 3D METAL PRINTER

Wuhan easymade technology co.,ltd was founded in 2013 as a innovation three-dimensional equipment company in China. Three-dimensional printing emerged as the core technology for easymade company, which currently supplies core software systems, designs, services and solutions for manufacturing in the digital and modern industry. Special including three-dimensional in education, medical, scientific research, industry, industrial grade materials such as metal, coated metal ,metals, ceramic powder and gypsum powder.

Easymade is the only company in China focused on whole 3D technologies, such as SLS, SLM, SLA,FDM, LOM, binder jetting three-dimensional technologies. Dr. Cai, the founder of easymade, the owner of "top ten of science and technology progress in China", "second prize of national technological invention", "First prize of province technological invention" has run on innovation in three-dimensional field for more than 20 years.

Easymade metal 3D printers with binder jetting technology at exceptional print speeds, efficiency, high accuracy ,low cost of operation and consumable items.

 
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research
Easymfg 3D Printing Machine for Metal Powder for 3D Printing Related Research



What is binder jetting technology?
As one of an additive manufacture process, binder jetting technology equipped a selectively  liquid binding agent to join powder particles. Layers of material are bonded to form an object. The printing head drops binder into the powder, then the job box lowers and another layer of powder is then spread and binder is added. After all, the part develops through the layering of powder and binder.

Binder jetting technology is available of printing a variety materials including metals, ceramics powder, metal powder. And some of materials like metal, no need additional processing after 3D building. Binder jetting is similar as paper printing, the binder functions like the ink(a special ink) as it moves across the layers of powder forms the final product. Depend on its ability to produce solid layers, binder jetting technology is often considered the best option for three-dimension printing. That is why binder jetting technology has the ability to print very large objects. Right now, ezsymade could build 1500mm*1000mm*600mm objects by its binder jetting 3D technology.
 

Welcome Universities to visit us and build relationship with us, Our leadera team are Drs from Huazhong technology Univeristy . They have been researched in materials and machines,additive manufacturing for more than 25 years.