DEK is your one-stop partner for high-quality products, we make on-demand machining & manufacturing easy and fast, from prototyping to end-part production.
If you are searching for effective 3D printing services, then there’s no one better than DEK. With instant optimization of solutions, we can revolutionize your experience.
You can get the best possible way to turn your ideal product from imagination to reality. Contact us to get an instant quote.
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DEK is devoted to connecting all the successful manufacturing services in China with the most cost-effective and reliable 3D printing services.
We bring you the most competitive quality and prices to speed up your business with sustainable profits.
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SLA (Stereolithography) is a modern technology for producing an object and selectively securing it with polymer resin layering with the help of ultra-violet rays. Moreover, the technique is extensively famous for being the pioneer of 3D printing technologies. Typically, it is helpful in manufacturing parts with high dimensional accuracy.
SLS (Selective Laser Sintering) is another 3D technique that uses a blade to spread a thin layer of powder over the build volume. Furthermore, the laser sinter fuses with powder and forms a powder cake. Typically, the process helps produce consumer goods in the footwear, medical, and beauty industries.
MJF (Multi Jet Fusion), a 3d printing technology that involves spreading powder, fusing, and detailing agents and then being exposed to UV light to produce prototypes.
Typically, the process requires minimum lead time and possesses a good price-quality ratio. Moreover, the products consist of great mechanical and physical properties.
DLP (Digital Light Processing) is an interesting 3D process that works by using the projector. Typically, the projector helps secure photopolymer resin. Technically, the technique is efficient in manufacturing intricate geometries with multiple advantages in prototyping and 3D jewellery making. Mainly, the process is used for making models for orthodontics.
FDM (Fused Deposition Modeling) is the most popular 3D printing technique nowadays. The major advantage of this method is its cost-effectiveness for the production of relatively large objects. Moreover, its filaments are reusable, and machines are less complex, and they are portable easily with a compact design.
In the PolyJet 3D technique, both UV light and photopolymers are used to secure the plastics. Moreover, it is known as one of the fastest techniques in the market.
From opaque and rigid to flexible and transparent objects, the process is efficient for vast kinds of materials with full colors.
SLM (Selective Laser Melting) is a 3D technology for metal powders. Moreover, the process is gaining popularity in the industry due to its exceptional molding accuracy and no adhesives requirements.
Typically, the process offers limitless opportunities with reduced production time, high flexibility, low cost, and fewer waste materials.
Before you, we have successfully manufactured 72M+ different parts.
Working with market leaders in the On-demand manufacturing industry, without the busyness and risk.
With over 1600 material options, we have you covered to deliver the products with high precision. You can get limitless services at DEK.
Due to our rich industrial-grade experience, we know how to maintain quality standards. Whether you are ordering the first time or multiple times, you’ll get products of premium quality.
Our advanced cutting-edge printers and work line enable us to send you the affordable and minimum quote possible. Our finance team will guide you with the best solutions.
While working with us, you can enjoy a quick turnaround with flexible shopping solutions. Start your 3D printing services with us to explore your creations.
At DEK, we consider consumers as our companions to build a better future. A place where you can send us your ideas, and we manufacture the greatest products for you.
Do you need help with the 3D printing services? Contact our sales representative now. They are available 24x7 to offer you the best services in China.
To DEK, Dr. Deming’s textbook remark is not a theory, but a practice we have been conducting every day. We use advanced production technologies and strict control systems to ensure high quality. More importantly, the quality-oriented attitude has been so entrenched in the mind of every single employee.
In DEK, we never stop improving the quality of our product. This is how we differentiate ourselves from the competition and is also why we can remain on top of the game for so many years.
Yes, we will analyze your 3D files and make recommendations suitable for 3D printing.
Yes, we can perform surface finishes such as sanding, polishing, and coloring on the 3D printed parts.
Yes, after printing the parts, if necessary, we can assemble them.
Generally within 1-3 days, depending on your requirements, such as quantity, material, surface finishing, etc.
The product will be wrapped with foam cotton to avoid bumps, and then placed in a reinforced 5-layer corrugated box.
For small-sized goods, we will deliver them directly to you via DHL, FedEx, UPS, TNT. It usually takes 3-7 days.
I selected DEK to get my idea manufactured through their SLM 3D printing services. Overall, my experience was very good. All the milestones were met efficiently with great customer service. I think DEK offers great deals for resin printers. I would retake their service for sure.
After various attempts with other 3D printing services, my team and I opted for DEK to check their resources. We were so happy with the effort and hard work they put in. Their customer service is also exceptional, with quick replies. No doubt, they have been very helpful to us.
Are you eager to find a smooth and accurate 3D-printed service? But don’t have enough information about where to go or how to get them?
We’re here to help you out of this confusion. By the end, you’ll have a better understanding of every term regarding 3D-printed services.
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3D printing services indicate every manufacturing technique that creates additively 3D-printed parts in layers from the Computer-Aided Design data.
It’s beneficial in providing consumers with direct manufacturing designs through a printer or a computer.
Moreover, to get high-quality 3D printing parts at a low cost seems pretty possible because of the six different 3D printing machines.
3D printing can benefit you in the following aspects:
3D printing technology allows us to print the demanding parts, meaning, no matter whether you demand a tiny or bulky size product, you can easily get it.
Sometimes you may need 3D-printed parts that are flexible. You can easily manufacture every sort of product with great flexibility with 3D printing.
3D printing machines provide you with 3D-printed parts that have extremely smooth surface finishing after going through every step of part production.
3D printing machines let you manufacture the parts and prototypes quickly within an hour due to their speed-up prototype 3D printing processes.
Besides metal parts and prototypes, you can also use 3D printers to manufacture lightweight plastic prototypes, depending on your requirements.
3D printing technologies minimize material wastage and let you utilize the remaining materials of one part in the upcoming production.
Using 3D printing techniques lets you create strong plastic, elastomeric, and metal 3D-printed parts that manufacture durable products.
The parts or prototypes manufactured with 3D printing technology are worthwhile.
Because the parts have every quality you need at a low price, make your products worthwhile.
3D printing machines are used to make numerous medical technologies and body parts such as hearts, kidneys, liver, fingers, feet, etc., to let a patient’s body work properly.
The parts produced with any 3D printing machine are incredibly accurate and can meet your every requirement and completely satisfy you.
Additive manufacturing and 3D printing services differ from each other in the following aspects:
3D printing particularly includes the product creations by joining materials in layers.
While additive manufacturing creates parts by adding material that might or might not be in layers.
Among many types of 3D printing technologies, the seven most commonly used are as follows.
SLA is also called Stereolithography apparatus. It is a technique that creates parts, models, patterns, and prototypes by joining layers.
Typically, it is a photochemical process in which light links the polymer materials to form 3D-printed products.
Furthermore, the SLA 3D printing technology creates parts and prototypes for medical use, engineering use, and other development processes.
Selective laser sintering or SLS is an additive manufacturing technique.
It utilizes a highly-powered laser to sinter tiny particles of the powder (polymer) into a solid structure varying on the 3D-printed model.
Currently, SLS is one of the most widely used 3D printing technologies around the globe for many engineers and manufacturers.
The qualities included in SLS are producing parts at a low-cost, high productivity, smooth surface finish, etc.
Multi Jet Fusion or MJF is a 3D printing technology that creates prototypes and parts quickly in almost 24hr.
The manufactured parts or prototypes have high qualities, smooth surface finishes, excellent resolution, great accuracy, precision, etc.
Moreover, it uses an inkjet array to fuse agents across a bed of nylon powder that provides some heat to form a solid layer.
Finally, powder spreads on the top of the bed, and the technique occurs again until the product is completely prepared.
DLP or Digital Light Processing is the same process as SLA and works with photopolymers.
The major difference between them is the light source that they use to create parts and prototypes.
Furthermore, Larry Hornbeck, an engineer of Texas Instrument, initially invented the DLP printer in 1987.
However, the DLP based on the projector was developed by Digital Projection Ltd in 1997.
Fused Deposition Modeling, FDM 3D printing, or Fused Filament Fabrication (FFF) are additive manufacturing techniques.
The material’s layers are joined in a pattern to create a particular product or part.
The layers are fused by stacking up throughout the entire printing process and form the smoothly finished parts at the end.
Furthermore, it’s an affordable and widely used 3D printer that produces different parts with variate sizes.
It is a powerful 3D printer that manufactures parts with a microscopic layer resolution of about 0.014 mm.
It produces pretty thin walls and extremely complicated geometries using modern and quality material.
Additionally, it provides you with smooth, accurate, precise, and premium quality prototypes, products, and instruments.
PolyJet was firstly introduced by Rami Bonen, Gershon Miller, and Hanan Gotaiit in 1998 in the Objet Geometries Limited organization.
Selective Laser Melting or SLM is a particular 3D printing machine that uses a high power density laser source.
It uses the laser to fuse and melt the metallic powders and produces nearly net-shaped products and prototypes with almost complete density.
Remember that, The SLM services are specially created for the production of metal alloys.
The industries often use 3D printing services in the following sectors:
As the 3D printing organizations emerge, the educational institutes reach there as soon as possible to facilitate their students with different 3D-printed materials.
Everyone requires some machines such as printers and computers and the tools to research for running their institute properly.
To prepare successful robots, 3D printing is used for making the strong parts of the robot, their customization and grippers, and expensive sensor mounts.
Simply, from their fingers to the entire parts of robot components to reduce weights and overall performance of robots.
The service of 3D printed products with great accuracy and premium quality is one of the most important aspects of the aerospace industry.
For the reason that hundreds of people travel in it at a time, there should be no chances of any errors.
As you already know, the aerospace industries own some of the most premium standards in product performance.
3D printing services play an important role in developing new vehicles because every vehicle needs parts and can be manufactured with a 3D printing machine.
Consequently, these 3D printed services do not only let you see the cars moving around but the tools through which they can fix and prepare new car parts.
The different varieties and designs that manufacturing industries provide you are based on 3D printed technology.
3D printing services have improved our lives in a new and modern way with the help of modern manufacturing objects produced in many styles each day.
Yes, 3D printing techniques are ideal for rapid prototypes because they allow you to produce prototypes and other products much faster than the normal processes.
3D printing provides you with an ideal service to produce trustworthy, rapid, and premium quality prototypes and products in a very short time limit.
Moreover, rapid prototypes help the designers present more concepts to the clients.
3D printing and CNC machining both are better for a specific type of small quality production.
In some points, the CNC machines work better than 3D printing machines to produce small quality products, while 3D printing does better in other points.
Engineers and manufacturers are likely to use both CNC machines and 3D printing technologies due to their smoother surface finishings and other properties.
Among 3D printing and CNC machining, the better for mass production is dependent on the conditions and scenarios.
Due to their qualities such as smoothness, accuracy, precision, and durability, manufacturers and engineers prefer them both to create mass production.
However, both of them may sometimes overcome one another by letting them manufacture various prototypes or products.
Both 3D printing and CNC machining can be right for your project; both are competitive machinery with various materials, such as plastic and metal.
If the project is plastic, 3D printing is the recommendable option for your concern project; however, plastics can also be used in CNC.
If your project is metal related, it is recommended to use CNC machining to get a better quality and strong project.
To choose the right technology among plastic Injection Molding and 3D printing for the production of prototypes, you must know about how they work.
Plastic Injection Molding utilizes a mold filled with molten material and solidifies it to manufacture 3D printed parts and products.
Talking of 3D printing technology, it is an additive manufacturing method, which makes parts by stacking up layers of material above one another.
DEK has offered 3D printing services such as SLA, SLS, DLP, MJF, and PolyJet for over 21 years.
We have supplied 72 million-plus 3D printing parts to more than 2300 clients around the world with ninety-nine point nine percent (99.9%) satisfaction.
Due to their tip-top characteristics, including accuracy, precision, strength, and flexibility, we are able to serve their consumers with the best services.
Furthermore, speaking of the engineers of DEK, we have top-notch and extremely expert engineers and manufacturers.
As far as its machinery is concerned, DEK utilizes the most up-to-date 3D printing technologies with every modern feature as we introduces to the world of 3D printing.
Yes, DEK offers assembly services after getting your ordered 3D printing services ready.
Moreover, we are a well-known 3D printing company that has provided its services to 2300+ clients worldwide and kept its reliance.
DEK’s 3D printing services are more affordable than other companies due to its constant care of your needs and wants.
As everyone wants to get high-quality products at a low cost, DEK is here to help you get them as easily as possible.
To order every kind of 3D-printed part and get our premium quality services at a low cost, you can send DEK your requirements.
Consequently, you can talk to us to get the important information and fill the form to complete the process.
After submitting the form, our representative will contact you shortly to follow up on your order.