Showing posts with label 3d manufacturing. Show all posts
Showing posts with label 3d manufacturing. Show all posts

Thursday, May 7, 2015

The Time To Think About The 3-D Printed Future Is Now

From the Harvard Business Review:
https://hbr.org/2015/05/the-time-to-think-about-the-3d-printed-future-is-now



3-D printing, or additive manufacturing, is likely to revolutionize business in the next several years. Often dismissed in the popular mindset as a tool for home-based “makers” of toys and trinkets, the technology is gaining momentum in large-scale industry. Already it has moved well beyond prototyping and, as I explain in a new HBR article, it will increasingly be used to produce high-volume parts and products in several industries.

Since I prepared that article, new developments have only strengthened the case for a 3-D future – and heightened the urgency for management teams to adjust their strategies. Impressive next-generation technologies are overcoming the last generation’s drawbacks while adding new capabilities. This progress will speed up adoption and propel more experimentation and practical application. What was a niche technique is morphing into a broad-based movement driven by multiple technologies and many kinds of companies.

Many of the new developments have to do with broadening the science underpinning additive manufacturing. Early generations drew from physics and engineering. The new technologies are expanding the playbook into chemistry. Continuous light interface production, or CLIP, uses chemical reactions to better control the transformation of liquids into solids. Instead of slowly putting down a layer of material and then curing it, CLIP creates a monolithic product in what is essentially a continuous process. CLIP greatly speeds up production and boosts the material strength of the final product by cutting down on the problems created by layers. The inventors, who publicly announced this new approach in March, say they were inspired by the film “Terminator 2”  – specifically the scene where a robot reshapes itself after having melted into a puddle.

Another promising development is multi-jet fusion. This technology starts with a plastic or metal powder, but instead of solidifying the powder with a laser, it uses chemicals sprayed from 30,000 tiny nozzles at a rate of 350 million dots per second. These chemicals speed the shaping and hardening of the powder by a UV lamp. But importantly, in the future, the chemicals can also change the powdered material’s properties – adding color, elasticity, bacteria-resistance, hardness, and texture to the final product. And because the high-tech nozzles spray so quickly and precisely, the curing takes only a tenth of the time of existing 3D processes. Typical of next generation advances, it integrates a number of techniques that had been used separately.

Even more intriguing, though probably still years away, is what MIT calls 4-D printing, where the fourth dimension is time. These are objects embedded with “memory materials” that react to light or heat to form new shapes after delivery to the consumer. Imagine a piece of furniture that arrives flat, but then reshapes itself into a chair when exposed to sunlight.

And these are just the general-purpose technologies. Also emerging is xerographic micro-assembly, which promises to greatly improve computer chip manufacture by implanting components of chips with electrical charges and putting them in a highly conductive fluid. Electrical fields can then assemble these “chiplets” into full chips with greater capabilities and fewer defects than conventional chip production. Likewise in bio-printing, researchers are adding magnetic nanoparticles to living cells and then using magnetic fields to assemble the cells into artificial tumors and functioning tissues.

Big players are involved now in pushing additive manufacturing to the next level. Early phases of 3D printing involved startup companies with investments in the low seven digits. Stratasys and 3D Systems grew into industry leaders with approximately $1 billion in revenues each. Now we’re seeing much bigger stakes. Hewlett-Packard developed multi-jet fusion, leveraging its expertise in printer head technology to leapfrog the industry. CLIP comes from a startup, Carbon3D, but one with $40 million in funding from a VC group led by mainstay Sequoia Capital. MIT is investing heavily in 4-D printing. Xerox, which invented xerographic micro-assembly, had been testing the waters with an investment in startup 3D Systems. Once it saw the potential, it launched a major internal program leveraging many facets of its electronics expertise as well.

These organizations are putting their reputations as well as major capital investments on the line, and have a lot to lose if these technologies turn out to be vaporware. Carbon3D promises to release its first commercial printer by December of this year, while HP has a target date of January 2016.

The market is taking these claims seriously, as well. Both 3D Systems and Stratasys have seen their stock prices slide in recent months, in part because the market is worried about the next generation of technologies and the resources that giants like HP are putting behind them. Realizing they can’t spend like the giants, the early leaders have started shifting their R&D away from hardware and moving toward software, services, and consulting. The 3D printing ecosystem is still very much in flux.

In the midst of all this change, new strategies are required. Even if some of these new technologies fail to pan out, there’s so much activity going on, so much money and creativity now being applied, that we can safely expect the pace of additive manufacturing to pick up. That has two major implications for strategists. One is that timelines based on earlier generations of additive manufacturing may be too conservative. If the new technologies dramatically boost the speed and strength of 3D printing, then adoption rates will jump. The cost advantage of conventional “subtractive” manufacturing will disappear sooner than expected. The new capabilities to customize products will also be highly attractive. Digital platforms that coordinate 3D printing ecosystems will emerge sooner. Instead of moving incrementally to adopt 3D techniques into their organization, companies may need to pick up the pace.

Second, strategists will have to consider not only which technology to run with, but also whether to collaborate with these next generation pioneers. By partnering with, say, HP or Carbon3D, companies stand to gain earlier access. But they may also increase the risk if their chosen technology fails to meet its promise on schedule. Working with current 3D technologies, such as extrusion-, stereolithographic- and sintering-based methods has better odds but a smaller payoff. Such decisions could lead to internal strife between converts to each camp.  Companies could invest in both, but then they face the challenge of timing the switch over to the next generation, and the complexity of transitioning people and the organization from one to another, as well as the specter of writing off investments before they have been recaptured.

All of this is on top of the new level of complexity that 3D printing has brought to manufacturing generally.  What’s the proper mix of traditional “subtractive” methods with the new additive approaches. How much risk should a firm take on now, versus what’s the risk if you wait? And all of this raises the possibility of reshoring some operations, affecting established relationships with host governments and local unions.

Strategists, fasten your seat belts for a fun but bumpy ride.  Here’s where you show what you’re made of.

Monday, March 30, 2015

The Future Of 3D Metal Printing


In today's world, 3D printing is still expensive because it consumes a lot of energy, and energy costs money. But solar energy is taking off in a big way, as are several other renewable sources of energy, all of which tend to be inexpensive and more dependable. When we put the future of 3D printing and the future of solar energy side by side, we see their close relation. As the price of energy falls, 3D printing will become much cheaper, and manufacturers all over the world will pounce on the technology.

Because China is the manufacturing capital of the world, their model is therefore in danger. 3D printing has the potential to equalize the playing field. Businesses in America, for instance, will find more buyers here at home than ever before if they begin to use 3D printers to launch new products and services.

And some already have.

Companies like 3DX have already realized the potential of 3D metal printing, and offer additive manufacturing services. Design and development times are reduced, and the speed of production is multiplied as a result.

In the future, it's likely businesses will allow consumers to purchase downloadable blueprints in order to 3D print products from home. This will eliminate many of a business's production and delivery costs, significantly increasing profits. Because the blueprints could be sold at a reduced cost, the wealth gap will likely begin to close in the coming decades.

It will also be easy to modify and customize these products, or the downloadable blueprints on which they are based. This will lead to a new era of innovation and efficiency for businesses and consumers.

Services like these will eventually slash a business's costs. Prototyping is a time-consuming, costly phase, but 3D metal printing will allow companies to produce several products at once, reducing the period of trial and error. Additive manufacturing also tends to create stronger materials than alternatives, so the products will be more durable. Many companies like 3DX also know that this type of printing is more environmentally friendly.

Of course, manufacturers won't be the only ones that profit. 3D printing will one day be universally used in medicine to provide us with new tissues and organs when our old ones fail. It will be used to print pharmaceuticals when we're sick. We're even learning how to 3D print food. This technology has the potential to influence every aspect of the world in which we live, revolutionizing the way we conduct business. The future is looking bright!



Friday, February 6, 2015

3D Metal Printing Is the Future

With the introduction of affordable 3D printers, individuals and businesses now have the ability to produce one-off objects and quickly fabricate prototypes like never before. Despite the great technological advances that have been made in the last few years, there are still some issues that need to be overcome, especially with lower-cost models. Acrylonitrile butadiene styrene (ABS) and polylactic acid (PLA) are currently the dominant material choices for consumer-oriented devices, but the characteristics of these plastics limit what can be created. Their relatively low melting points preclude high-temperature use, and their mechanical traits leave much to be desired in demanding environments requiring high strength and wear resistance.

Though 3D printers using metal already exist, their stratospheric price limits their use to larger enterprises and puts them out of reach of the average person. Engineering metals are also incompatible with fused deposition modeling, by far the cheapest and most popular method of printing. There are two primary technologies that can use metal: selective laser sintering (SLS) and selective laser melting (SLM). SLS uses a precisely-controlled high-intensity laser to sinter extremely small areas of a powdered feed based on a CAD file, while SLM is similar but fully melts its target instead of sintering it. Both have the capability to be used with a variety of metals, but SLS is better for materials like tungsten with extremely high melting points.




As devices using laser-based processes become simpler to manufacture, their adoption will increase rapidly among all user types. Compared to common machining methods, they offer the ability to precisely create complex and durable objects economically and without human intervention. They also enable the easy processing of metals which are difficult to shape using conventional CNC techniques, such as Inconel and other superalloys that are very prone to work hardening. Additionally, 3D printing has the potential to be less wasteful than lathing and milling, as 3D printing is an additive process as opposed to a subtractive one that removes material from a larger workpiece.

Thermoplastic-based 3D printers will almost certainly continue to explode in popularity for general purposes, but printers using metal will complement them for objects requiring superior mechanical and thermal properties. As the cost of purchasing and maintaining SLS and SLM printers goes down, they may even entirely replace traditional manufacturing techniques in a wide array of applications.

Friday, August 15, 2014

Designing a Model for 3D Printing: 5 Tips to Keep in Mind


3D printing technology has improved significantly in the last few years to the point that any person can easily create anything with the help of a 3D printer. In short, you think of anything you want and the services on 3D manufacturing in Ferndale WA will do the rest of bringing it to life. However, the printer must be able to read from a good design in order to print out a good 3D model. To make this possible, below are 3D model designing tips that you need to keep in mind.

Keep the 45-Degree Rule

In architecture, there is always that rule that states that any fixture that will hang at 45 Degrees and above will require extra support. The reason for this is because this angle tends to shift the objects entire weight forward, causing it to topple over. To prevent this from happening, you need to design additional supports to your model. Objects like cones and beams are easily translated in the 3d printing process, making them ideal supports to your design.

Know the Printer’s Limits

Even if 3D Printing is quite advanced, it is not without its limits. A conventional 3D printer might have problems in distinguishing small design features, making the overall result bland and blocky. Depending on the printer’s nozzle, you might encounter thread width issues in the process which leads to incomplete details. Know first what the printing service is capable off before submitting any design. Through this, you can make changes to your model design way before the object will be printed.


Mind the Fit Tolerance

Whenever your 3D model has interlocking parts, you might have to deal with the tolerance levels in each part. One of the biggest issues with any interlocking part is that it is quite weak at the connecting points if not designed properly. To counter this, have at least a 0.2mm offset in between the connecting points for a tight fit or a 0.4mm offset for a loose fit. Always give the interlocking parts enough space to move around without causing too much friction at both ends.

Orient

Like in 2D printing, the way you orient a 3D model prior to printing will lead to very different results. If the model has several detailed features, make sure that the orientation is capable of bringing out those features in the features in the final product. Also, the right orientation will minimize stress in certain models with minimal base support. s

Mind the Gap

Unless you are making miniature chairs, it is best that you refrain from making gaps in between your 3D model. The 3D printer often has problems in distinguishing gaps from actual design features which results in a very messy final product. Keep in mind that these “extra” marks are quite difficult and time consuming to remove especially if the 3D model is quite small.

To prevent blemishes in the process of 3D manufacturing in Ferndale WA, it is best that you make simpler design features or design it in such a way that it can be divided into parts for assembly. Either way, you can have a very flawless 3D presentation of your design once the 3D printing services are done with it.

Thursday, June 12, 2014

3DX Industries completes first production run of 3D metal printed components



Bellingham WA, May 20, 2014 – 3DX Industries Inc. (OTCQB: DDDX) 3DX Industries Inc.,  (the “Company” or “3DX”) is pleased to announce  it has completed its first series of production run components using the M-FlexTM Metal Printing System manufactured by The ExOne Company. The ExOne Company (“ExOne”) is a global provider of three-dimensional ("3D") printing machines and printed products to industrial customers.  3DX Industries has now printed numerous 3D Metal components and parts for clients use in the food processing industry, green energy generation sector as well as various other industries.

“Having the ability to generate working prototype parts for our customers within a matter of a few days really shows the power and flexibility of the M-FlexTM metal printing system,” comments 3DX President and CEO Roger Janssen.  “We have now shown our customers that we can take their computer aided design (CAD) generated files and create working prototypes for their evaluation and testing as well as provide finished parts for their immediate use without the time delays and tooling costs inherent in conventional manufacturing processes.  We look forward to continuing our introduction of this exciting technology to our current and future customers” adds Mr. Janssen.

3DX’s M-FlexTM metal printing system from ExOne,  uses an additive manufacturing process, otherwise known as three-dimensional printing, or 3DP, which materializes an object—or mold for an object—layer by layer out of powdered material, a chemical binder and a digital file(1).  The process is also referred to as Binder Jetting Technology.  The ability to offer clients the option of manufacturing their products using Binder Jetting Technology provided by the M-FlexTM metal printing system will not only save on production costs but also will save time on the engineering and evaluation aspects relative to new and redesigned product manufacturing.  The ability to make immediate changes within a CAD file, and have those changes sent directly to the print floor will change the way companies bring products to market.

Mr. Janssen further comments “We could not be more excited about this technology and the positive impact it will make within the manufacturing industry.  The M-FlexTM 3D metal printing system met our expectations and we have received nothing but positive responses on the products we have delivered to date.  We are planning to increase our exposure across additional industries over the coming weeks with the intent of identifying other areas where this additive manufacturing process can be applied.”

About the Company: 3DX Industries, Inc. is focused on the additive metal manufacturing segment within the manufacturing industry.  3DX has the capability of manufacturing a wide variety of products using its 3D metal printing system, 3D composite printing as well as more traditional methods of precision manufacturing. 3DX offers additive and traditional manufacturing services as well as product design, engineering and assembly services to its customers.

About the ExOne Company – For more information about the ExOne Company please visit their website at www.exone.com

Safe Harbor 3DX encourages those interested in our Company to rely only on information included in our filings with the United States Securities and Exchange Commission which can be found at www.sec.gov. Statements released by3DX Industries, Inc. that are not purely historical are forward-looking within the meaning of the "Safe Harbor" provisions of the Private Securities Litigation Reform Act of 1995, including statements regarding the company's expectations, hopes, intentions, and strategies for the future. Investors are cautioned that forward-looking statements involve risk and uncertainties that may affect the company's business prospects and performance. The company's actual results could differ materially from those in such forward-looking statements. Risk factors include but are not limited to general economic, competitive, governmental, and technological factors as discussed in the company's filings with the SEC on Forms 10-K, 10-Q, and 8-K. The company does not undertake any responsibility to update the forward-looking statements contained in this release.

For additional information please contact:
3DX Industries, Inc.
6920 Salashan Parkway Suite D-101
Ferndale WA 98248
Telephone: 360-244-4339


Visit the 3DX Industries, Inc. web site at www.3dxindustries.com.  Information included on the Company's website is not incorporated herein by reference or otherwise.

Tuesday, June 10, 2014

3DX Industries completes first production run of 3D metal printed components



Bellingham WA, May 20, 2014 – 3DX Industries Inc. (OTCQB: DDDX) 3DX Industries Inc., (the “Company” or “3DX”) is pleased to announce it has completed its first series of production run components using the M-FlexTM Metal Printing System manufactured by The ExOne Company. The ExOne Company (“ExOne”) is a global provider of three-dimensional ("3D") printingmachinesandprintedproductstoindustrialcustomers. 3DXIndustrieshasnowprinted numerous 3D Metal components and parts for clients use in the food processing industry, green energy generation sector as well as various other industries.
“Having the ability to generate working prototype parts for our customers within a matter of a few days really shows the power and flexibility of the M-FlexTM metal printing system,” comments 3DX President and CEO Roger Janssen. “We have now shown our customers that we can take their computer aided design (CAD) generated files and create working prototypes for their evaluation and testing as well as provide finished parts for their immediate use without the time delays and tooling costs inherent in conventional manufacturing processes. We look forward to continuing our introduction of this exciting technology to our current and future customers” adds Mr. Janssen.
3DX’s M-FlexTM metal printing system from ExOne, uses an additive manufacturing process, otherwise known as three-dimensional printing, or 3DP, which materializes an object—or mold for an object—layer by layer out of powdered material, a chemical binder and a digital file(1). The process is also referred to as Binder Jetting Technology. The ability to offer clients the option of manufacturing their products using Binder Jetting Technology provided by the M- FlexTM metal printing system will not only save on production costs but also will save time on the engineering and evaluation aspects relative to new and redesigned product manufacturing. The ability to make immediate changes within a CAD file, and have those changes sent directly to the print floor will change the way companies bring products to market.
Mr. Janssen further comments “We could not be more excited about this technology and the positive impact it will make within the manufacturing industry. The M-FlexTM 3D metal printing system met our expectations and we have received nothing but positive responses on the products we have delivered to date. We are planning to increase our exposure across additional industries over the coming weeks with the intent of identifying other areas where this additive manufacturing process can be applied.”
About the Company: 3DX Industries, Inc. is focused on the additive metal manufacturing segment within the manufacturing industry. 3DX has the capability of manufacturing a wide variety of products using its 3D metal printing system, 3D composite printing as well as more traditional methods of precision manufacturing. 3DX offers additive and traditional manufacturing services as well as product design, engineering and assembly services to its customers.
About the ExOne Company – For more information about the ExOne Company please visit their website at www.exone.com
(1) The ExOne Company – www.exone.com - http://exone.com/en/materialization/what-digital-part- materialization
Safe Harbor 3DX encourages those interested in our Company to rely only on information included in ourfilings with the United States Securities and Exchange Commission which can be found at www.sec.gov. Statements released by3DX Industries, Inc. that are not purely historical are forward-looking within the meaning of the "Safe Harbor" provisions of the Private Securities Litigation Reform Act of 1995, including statements regarding the company's expectations, hopes, intentions, and strategies for the future. Investors are cautioned that forward-looking statements involve risk and uncertainties that may affect the company's business prospects and performance. The company's actual results could differ materially from those in such forward-looking statements. Risk factors include but are not limited to general economic, competitive, governmental, and technological factors as discussed in the company's filings with the SEC on

Forms 10-K, 10-Q, and 8-K. The company does not undertake any responsibility to update the forward- looking statements contained in this release.
For additional information please contact:

3DX Industries, Inc.
6920 Salashan Parkway Suite D-101 Ferndale WA 98248
Telephone: 360-244-4339
Email: info@3dxindustries.com

Visit the 3DX Industries, Inc. web site at www.3dxindustries.com. Information included on the Company's website is not incorporated herein by reference or otherwise. 

Monday, May 12, 2014

Press Release - 3DX Industries Acquires Cutting Edge 3D Metal Printing System

Bellingham WA, May 5, 2014 – 3DX Industries Inc. (OTCQB: DDDX) 3DX Industries Inc., (the “Company” or “3DX”) is pleased to announce it has acquired its first 3D Metal Printing System to complement its additive manufacturing division. The Company has purchased the M-FlexTM Metal Printing System from The ExOne Company (Nasdaq –XONE). The ExOne Company (“ExOne”) is a global provider of three-dimensional ("3D") printing machines and printed products to industrial customers. “The addition of the M-Flex metal printing system opens up a world of opportunities for our Company. We are now able to offer 3D metal printing as an alternative to more traditional manufacturing processes, allowing for quicker turnaround times and reduced manufacturing costs on many products”, states 3DX President and CEO Roger Janssen. “After spending a considerable amount of time researching the additive manufacturing sector, and reviewing the options available to us for 3D metal printing, we have determined that the M-Flex metal printing system offers the best available metal printing process for our needs. We are pleased to have this state of the art additive metal manufacturing technology available to offer to our clients”, comments Mr. Janssen. 3DX’s new M-Flex metal printing system from ExOne, uses an additive manufacturing process, otherwise known as three-dimensional printing, or 3DP, which materializes an object—or mold for an object—layer by layer out of powdered material, a chemical binder and a digital file(1). The process is also referred to as Binder Jetting Technology. The ability to offer clients the option of manufacturing their products using Binder Jetting Technology provided by the M-Flex metal printing system will not only save on production costs but also will save time on the engineering and evaluation aspects related to new and redesigned product manufacturing. The ability to make immediate changes within a computer aided design file (CAD), and have those changes sent directly to the print floor will change the way companies bring products to market. Mr. Janssen adds “Its exciting to be one of the first “job-shop” precision manufacturers capable of providing its customer base with 3D metal printing and 3D composite printing.” About the Company: 3DX Industries, Inc. is focused on the additive metal manufacturing segment within the manufacturing industry. 3DX has the capability of manufacturing a wide variety of products using its 3D metal printing system, 3D composite printing as well as more traditional methods of precision manufacturing. 3DX offers additive and traditional manufacturing services as well as product design, engineering and assembly services to its customers. (1) The Exone Company – www.exone.com - http://exone.com/en/materialization/what-digital-part-materialization 3DX encourages those interested in our Company to rely only on information included in our filings with the United States Securities and Exchange Commission which can be found at www.sec.gov. Statements released by3DX Industries, Inc. that are not purely historical are forward-looking within the meaning of the "Safe Harbor" provisions of the Private Securities Litigation Reform Act of 1995, including statements regarding the company's expectations, hopes, intentions, and strategies for the future. Investors are cautioned that forward-looking statements involve risk and uncertainties that may affect the company's business prospects and performance. The company's actual results could differ materially from those in such forward-looking statements. Risk factors include but are not limited to general economic, competitive, governmental, and technological factors as discussed in the company's filings with the SEC on Forms 10-K, 10-Q, and 8-K. The company does not undertake any responsibility to update the forward-looking statements contained in this release. For additional information please contact: 3DX Industries, Inc. 6920 Salashan Parkway Suite D-101 Ferndale WA 98248 Telephone: 360-244-4339 Email: info@3dxindustries.com Visit the 3DX Industries, Inc. web site at www.3dxindustries.com. Information included on the Company's website is not incorporated herein by reference or otherwise.