Large Metal Industrial FDM 3D Printing Machine

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    Negotiable

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  • Delivery term:

    The date of payment from buyers deliver within days

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    Guangdong

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    Long-term effective

  • Last update:

    2020-09-28 13:31

  • Browse the number:

    425

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Company Profile

Shenzhen Wish 3D Printer Co.,Ltd

By certification [File Integrity]

Contact:bokang(Mr.)  

Email:

Telephone:

Phone:

Area:Guangdong

Address:Guangdong

Website:http://www.wish3dprinter.com/ http://bokang.sxcxty.com/

Product details

WH1200-FA1200 3D Printer is a Large Scale FDM industrial 3D Printer, Today, The Large scale 3D printing has become affordable, reliable and accessible with Wish 3D printers, high-quality 3D printing, Building volume is: 1200 *1200 *1200 mm .

Wish WH1200-FA1200 FDM Large Dual Color Fully Closed Housing 3D Printer Deals

This is a full closed housing combined with the heated bed positively influence the print quality of the printed object but also reduces the sound of the machine. The transparent doors allow you to monitor

the printing process at all times. The WH1200-FA1200 3D Printer is with air filter. The dual head can be required and print head nozzle diameter 0.4/0.6/0.8/1.0/1.5mm for option.

1.Used the All Steel Sheet Metal Body With Plastic-Sprayed Surface Treatment,The Internal Structure Is Independent With Printer Housing,The Steel structure can ensure the 3D Printer will be durable and working smoothly.

2.Used Double Z Axis (double beam) and Self-Created Guide Rail designs,Dynamic parallel design,Solid stability design, Anti vibration design, And eliminated the operation jitter effectively.

3.Used special extrusion device and high precision Nozzle head to ensure higher printing precision.

4.This 3D Printer used intelligent full automatic control and omnibearing printing control device,The operation is convenient and efficient.

5.Used10 inch Color touch screen to control the operation,The operation can be showed on the offline screen and can also monitor the operation of the machine in real time.

6.Designed a Heated Glass Platform With Thermotank (Constant Temperature Heated Platform),The highest heating temperature can be reached to 100 ℃. Uniform heat, strong adhesion;

7.Designed multi-function control, Its operation is more convenient, efficient, controllable and energy-saving.

8.Designed 6 Power Supplies and 6 Drives;

9.Used LED Track lighting, 3D Printer operator can see panoramic printing and real-time printing result;

10.Used the Power-off protection function, This can prevent the data will be missed because Of the sudden power fault in the printing process.

11.Designed the continuous printing function after breakpoint caused by emergency pause, shutdown and other accidents.

12.Designed the signal source protection function, This can prevent wrong, disorderly and missing printing when the 3D printer is running.

13.Designed a key start stop function, This is convenient for charging and refueling operation.

14.3D Printer can be operated by manual or automatic, This is easy for adjust and test before printing.

15.This 3D Printer can be charged the Filament by manual or automatic function, This is easy for change the Filament or change to other color Filament.

16.This 3D Printer can be real-time operation in English and Chinese.

17. This 3D Printer designed the Status Alert function, It can monitor the printing Status.

18.This 3D Printer can operated by online, offline, SD card or USB, Mobile control, Wifi,(can be required) .

19.This 3D Printer can be customized the Dual Head (Two Nozzles) as your requirements.

The different Nozzle Diameter will corresponding to different Printing Accuracy is as below:

No

Nozzle Diameter

Printing Accuracy

1

0.4mm

0.05mm~0.2mm

2

0.6mm

0.1mm~0.4mm

3

0.8mm

0.1-0.6mm

4

1.0m

0.1-0.6mm

5

1.5mm

0.6-1.2mm

And the removal Printing Model Support way will be:

Single Nozzle

Manual Removal Support

Dual Nozzle

Water Soluble Support

20.Our all 3D Printers can be customized as your requirements, We can make the Print Technology:FDM, SLA and SLM 3D Printers, We have made the Maximum Build Volume is: 2000*2000*2000mm FDM 3D Printers,1600*1600*1600mm SLA 3D Printers.

10 Inch Touchscreen

The 10 inch touch screen for easy to use interface and allows you to have full adjustment control over the Wish WH1200-FA1200 Printer and the printed object. You can control the nozzle and bed temperature, light, filament change and more.And you can also check the progress of the print.

High Quality 3D Printers And About Us

Wish 3D Printer let your every ideas becomes far more efficient. You’ll have a low-cost of concept model

and in your hands within hours, No need to wait for a supplier or make models by hand. Print it anytime,

You can design the textures, finished,colors, complex shapes and dimension as your ideas or your Customers’ ideas.

Printed models can be discussed ideas with potential buyers or raise capital from investors, Mass Productions can be tested market potential and sales after tested, No need to make the molds for expensive mold costs. And 3D printing can also shorten the development time from months to days.And

can also be used for 3D printer 3D Printing business to do the products in mass production.

Industrial 3D Printer Printing Materials Include: nylon, flexible and rigid photosensitive resin, heat shrinkable ABS, Peek, PC engineering plastics, 3D printing metal powder, 3D printing soft rubber, Silicone, Transparent materials, Ceramics,Stainless steel, Mold steel, High temperature nickel alloy, Titanium alloy, Paraffin and Gypsum composite materials and other 3D printer consumables. This will be analyzed and studied the different needs of customers in different industries to select and utilize different 3D printing materials and technologies. The realistic part model of 3D printing can be applied to almost every industry quickly. Typical applications of 3D printing materials include conceptual model, verification prototype and rapid modeling, ergonomic research, visual analysis, shape and function test, function test and engineering evaluation.

Where is 3D printing used?

A: Architecture; Aerospace; Art; Automotive; Engineering; Fablabs and Makerspaces; Fashion; Humanitarian Aid; Jewelry; Manufacturing; Medicine; Product Design; Research; Education; Primary Education; Secondary Education; DIY, Hobbies and Home; Medical Products

Q2. What features should I consider when buying a 3D printer?

A: The build area of a 3D printer dictates the size of the objects you can create, while the number of

extruders (usually ranging from between 1 and 3) lets you print objects in more than a single colours.

WiFi connectivity is a great feature to have when you want to scan items with a compatible smartphone

and send them to a 3D printer wirelessly.

Q3.What About Your After-Sale Service?
A: We offer one-year warranty for our products. Lifelong technical support, online operation video support etc..

Q4. Can I Have A Sample Order?
A: Yes, Your sample order is available and welcome for test and check the quality.

Q5: Does it work with any filament of the correct material and dimensions, or does it only accept your brand filament?

A: It accepts other brands of filament, However, they will not fit on the internal spool holder. Instead you will have to print an external filament holder. The different brands filaments and they all worked fine, The types have been used are PLA/TPU/Carbon Fiber/PETG/ABS.

Q6. What About The Lead Time?
A: Samples arrived often need 3-7days via International Express.

Q7. Do You Have Any MOQ (minimum order quality) ?
A: Yes, Our MOQ is 1pcs.

Q8. Is It Acceptable To Print My Logo On The Product?
A: Yes. This can be acceptable.

Q9: Can You Do OEM Service ?
A: Yes, We can do the OEM Service based on your 3D printer drawings, functions requitements and then offer you the best OEM solutions.

Q10:Technical Parameters Of FDM 3D Printer Printing Material PC

1. Maximum printing size of one-time molding: 406x355x406mm;

2. Printing layer thickness: 0.127mm, 0.178mm, 0.254mm, 0.330mm;

3. Attainable accuracy:The accuracy of the production part is ± 0.127 mm (± 0.005 inch) or ± 0.0015 mm / mm (± 0.0015 inch / inch), whichever is higher. (accuracy depends on geometry. The accuracy specifications that can be achieved are from statistical data, and the measurement reliability is 95%.) ;

4. Post processing: polishing, spraying, electroplating, drilling;

Characteristics and application of PC 3D printing materials

PC (polymer polycarbonate) 3D printing materials are widely used in automotive, aerospace, medical and many other fields. The PC material has the characteristics of precision, durability and stability, which makes the products can withstand the functional test under the actual use environment. Compared with ABS and other thermoplastic plastics, PC also has outstanding mechanical properties, which makes it an ideal tool and fixture for metal bending and composite work. Small batch production and customization become feasible, and testing is more reliable.

In addition, there are pc-abs high impact engineering thermoplastic and pc-iso materials. Pc-iso material is the biocompatible material with the highest strength and the best heat resistance, which can be used in FDM 3D printer printing technology. It is sterilized by gamma and ETO and conforms to ISO 10993 and USP plastic VI standards. It can be used with soluble support materials, which allows you to easily make complex parts with deep internal cavities without removing the support manually.

Q11:Technical Parameters Of 3D Printer Printing Material ABS-M30

1. Maximum printing size of one-time molding: 406x355x406mm;

2. Printing layer thickness: 0.127mm, 0.178mm, 0.254mm, 0.330mm;

3. Attainable accuracy:The accuracy of the production part is ± 0.127 mm (± 0.005 inch) or ± 0.0015 mm / mm (± 0.0015 inch / inch), whichever is higher. (accuracy depends on geometry. The accuracy specifications that can be achieved are from statistical data, and the measurement reliability is 95%.) ;

4. Post processing: polishing, spraying, electroplating, drilling;

ABS-M30 3D printing material properties:

Abs-m30 is a kind of rigid thermoplastic engineering material with superior mechanical properties. Stable material characteristics, help to carry out accurate functional testing, and be able to make 3D prototypes close to real products. The strength of abs-m30 is 25% - 70% higher than that of ABS. It is an ideal material for conceptual and functional models, molds and finished products. Abs-m30 has better ductility and compression resistance, and better bending strength than ABS. The adhesion between layers of materials is obviously better than that of ABS, which is suitable for the production of high durability components.

Q12:Advantages Of 3D Printing molds

3D printing mold is mainly used in mold follow-up cooling water way, special-shaped water way mold inserts and sliders. It is typically used in precision injection mold and die-casting mold manufacturing. It has obvious and feasible advantages:

1. Greatly reduce the manufacturing cost, make the mold design cycle consistent with the product design cycle, reduce the time and material consumption, so as to improve the overall production efficiency;

2. Effectively reduce the residual stress, prevent the warpage and deformation of products, and ensure the dimensional accuracy;

3. The feature of 3D printing is that there is no limitation in modeling. Even if the complex modeling and pipeline in the object, that is to say, the mold shape following cooling water path can realize the cooling channel design of any shape, greatly reducing the cooling time;

4. Compared with the traditional mold manufacturing method, 3D printing mold has longer service life (millions of mold times) and higher production efficiency (30% - 70% shorter production cycle);

3D printing mold process

Mold optimization design → mold flow analysis → 3D printing feasibility analysis → laser sintering 3D printing manufacturing → high temperature tempering, polishing and other subsequent processing;

Q13:Introduction To 3D Printing Molds Application:

Because 3D printing technology will not be constrained by the internal structure and complex shape of the product in the manufacturing process, through the design and processing of complex shape following cooling water path inside the mold, it can be closer to the product contour, and for the dead angle of general products or the area where heat is not easy to be discharged, the shape following water path can provide good heat dissipation efficiency, which has the cooling effect incomparable to the traditional water path. 3D printing technology can easily realize the production and manufacturing of high-end molds, thus bringing unparalleled benefits to the mass production of final products:

1. It can effectively shorten the cooling time in the process of injection molding or die-casting, which will reduce the rate of demoulding and molding cycle, greatly improve the production efficiency, and increase the productivity, aging and quality yield by 30-70%.

2. And it will not have residual stress and warpage due to time reduction, effectively reduce warpage deformation, crack flash, bubble sand hole and other product defects, and significantly improve the quality and yield of the final product;

3. The service life of the mould is greatly extended, and the unit cost of the product is reduced. In addition to providing more high-quality plastic injection mold which can produce millions of plastic products, the newly developed powder can also make high-strength mold for tens of thousands of times of casting metal products.

Scheme: 3D printing, printing mold, can print with the shape of the cooling water, printing mold hardness in 52-56 HRC, surface can be high gloss polishing.

In recent years, rapid mold opening technology has gradually extended to advanced mold making with special-shaped water structure or complex geometry shape, and direct metal laser sintering technology (DMLS) will play a key role, and its unique manufacturing method will make up for the lack of CNC tool machine and EDM, especially for extremely complex shape and need real-time and low-cost way to make mold The direct metal laser sintering (DMLS) technology used in the series equipment of Madden 3D printing company has the absolute advantage for the direct molding and manufacturing of complex molds. Industries that can use industrial 3D printer printing technology to manufacture high-end molds include: auto parts, electronic products, household appliances, daily chemical packaging and etc.

Q14.How can PETG be applied to 3D printer printing?

As a new 3D printer printing material that PETG has the advantages of PLA and ABS. The shrinkage of the material is very small and has very good hydrophobicity, so it does not need to be stored in a special confined space. Due to the low shrinkage of PETG, it is OK to use or not to use the heating bed when 3D printing, and there is almost no smell in the 3D printer printing process, and its quality is transparent and tough.

Q15.How to apply PVA in 3D printer printing?

PVA is a new 3D printing filament are being applied in FDM printing technology, And is a good supporting material in the 3D printing process. The supporting part can be completely dissolved in water after the printing process, , non-toxic and tasteless, so it can be easily removed from the 3D printing models.

In the 3D printing process, PVA and PLA consumables can be perfectly matched.

Q16.What is powder bonding process (3DP) ?

Powder bonding forming (3DP) is the best process to achieve full-color 3D printing, using gypsum powder, ceramic powder, plastic powder and other materials. The principle is to lay a layer of powder first, and then spray the adhesive (glue) on the area by the 3D printer nozzle, so that the material powder can be bonded to a layer of cross-section, and then repeat the process of laying powder and spraying bonding continuously, layer by layer, and finally print out the complete 3D printing parts.

Q17.What is fused deposition modeling (FDM) 3D printing technology ?

Fused deposition modeling (FDM) is the most popular 3D printing technology, which mainly uses materials such as abs pla. Its working principle is to melt ABS, PIA and other materials by heating, and then solidify them. The material is sent to the hot-melt nozzle through the extrusion mechanism and heated and melted in the 3D printer nozzle. According to the integrated circuit system, the nozzle moves along the section profile and filling track of the part. At the same time, the semi molten material is extruded and deposited in the designated position according to the path controlled by the 3D printer software layered data, solidified and formed, bonded with the surrounding materials, and stacked layer by layer.

Q18.Application of 3D printer printing in optical instrument manufacturing

It is reported that researchers at Imperial College London have developed an optical instrument for 3D printer printing. The instrument consists of 3D printing chassis, camera and raspberry PI. It is mainly used for the research of biological behavior.

More specifically, this 3D printing optical instrument can record the behavior of fruit flies in an automatic form, which mainly includes the molecular mechanism of hunting, courtship, maternal love behavior, mating behavior, spawning, fighting and so on, as well as the behavior of learning memory, smell, vision, and decision-making of fruit flies. It can even manipulate its flight behavior in ingenious ways, which will play a very important role in other fields such as human neuroscience and behavior research.

By programming the built-in raspberry pie, the optical instrument sends a stimulus to the flies in a certain way, allowing them to respond, according to Dr. GIO gresto, the project leader. At this time, neuroscientists can better observe and understand the behavior of this insect, so as to study human learning, memory and sleep.

In addition, with the device, researchers can even track the behavior of insects smaller than fruit flies with the help of lenses. It can be said that the application of 3D printing technology in optical instruments has made important progress in biological research, and also brought an important research tool for researchers.

Q19.How does the 3D printer calibrate?

When you assemble a 3D printer, whether you assemble it by yourself or through a kit, you need a calibration process before you start printing to ensure that the printer can work accurately. This process is also called pre commissioning preparation (i.e. commissioning).

Specifically, it includes: testing the movement of each axis, testing whether the stopper works normally, whether the feed port can be heated, whether the feed is smooth, whether the printing tray can be heated (if the printing tray has heating function), etc. Then, we will calibrate the printer, including whether the position of printing tray and block is accurate, and set and test the firmware parameters (including printing speed, temperature, layer, etc.). Even if you already have a working 3D printer, it's good to take some time to optimize its parameters.

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