Direct Dimensions is sponsoring a webinar for APMM this Wednesday, January 19th:
"3D Imaging Technologies to Help the Model Making Process".
There will be two available webinar sessions: 12 & 3 pm EST Wednesday January, 19th. If interested please contact info@modelmakers.org!
3D laser scanning is a vital tool in every craftperson's tool box. Even if you don't use this technology, being aware of its capabilities will equip you to know when to use and who to call for such services and products.
We will discus various 3D imaging and scanning tools and the conversion of collected raw "point cloud" data into high-quality industrial 3D CAD models, for rapid prototyping via additive manufacturing or 5-axis milling.
Join APMM for this educational webinar on 3D imaging as applied to model making!
Monday, January 17, 2011
3D Imaging Technologies Webinar for APMM Members
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Wednesday, January 5, 2011
Free Sample Model!
Happy New Year!
What better way to start off the year than with a free model download?
You can download the free car model and others on our website.
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Labels: Free Model
Tuesday, December 28, 2010
Everything You Always Wanted to Know . . . Desktop Manufacturing
Desktop 3D Printers
Welcome to part 2 of this topic- Desktop 3D Printers
Like 3D scanners, 3D printers have already reached the small business market and are now just entering the individual consumer marketplace. Their build envelopes are limited but what could be cooler than printing your own action figures, robot parts, or 3D portraits?
* The RepRap project is an open-source project aimed at creating self replication rapid manufacturing machines. Based out of Bath University, the project shares its plans and the RepRap community can build as is or make their own improvements, which they can then share.
* At the other end of the Desktop 3D printer spectrum comes the V Flash from 3D Systems. Rather than making your 3D printer from scratch you can buy this smaller version of traditional additive manufacturing technology. It is priced for small businesses and schools.
* In the same market space as the V Flash, Solido bills their SolidPro300 as the “world's most cost efficient and flexible 3D printer”. In the US the SolidPro300 is distributed by Enser.
* Between RepRap, the V Flash, and SolidPro300 comes the Makerbot Cupcake CNC. Makerbot sells a kit for the Cupcake CNC but the customer puts it together. Like RepRap, they also host a community called Thingverse. Though their community revolves more around the 3D models than the machine itself. They are also working on a 3D scanning kit.
* HP has also recently announced that they are entering the market in an agreement with Stratysis who will produce mainstream 3D printers using Fused Deposition Modeling technology.
The above examples are just a small selection from a quickly developing marketplace, but they are a good indication of what home scanning technologies are just around the corner. Thanks for reading “Everything you always wanted to know about 3D scanning”, we hope it is has been an informative series!
If you have any questions feel free to contact us at info@dirdim.com.
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Labels: About 3D Scanning
Monday, December 20, 2010
Everything You Always Wanted to Know . . . Desktop Scanning and Manufacturing
Chapter 10, Part 1: The Future - Desktop Scanning and Manufacturing
Before we finish our series “Everything you always wanted to know about 3D scanning” we wanted to take a moment to talk about what we think is the immediate future in 3D scanning and manufacturing: the technology is going Desktop.
In the last few years, companies have been creating more products with smaller footprints, at much lower price points, making the technology a viable tool for schools and medium to small businesses. In addition to these new products, students and hobbyists have been creating (and sharing) do-it-yourself versions of 3D scanning and rapid manufacturing products. Soon we could see 3D scanners and printers in home offices!
Coming in the near future – to a home workshop near you!
Commercial Desktop and Handheld Scanners:
There are a few digitizers and scanners out there that are sized and priced for the small business. The price points are not yet for your everyday consumer, but it is getting closer all of the time.
* One of our favorite desktop digitizer/scanners is the Microscribe. It is a miniature articulating arm that is easily portable, is compatible with most popular reverse engineering and metrology packages, and offers near metrology level accuracy in a small package. Obviously you are not going to digitize an airplane with this – but we consider it the first major desktop digitizer (an attachable scanner is also available).
* 3D metrology has also entered the realm of handheld and wireless. eMicroscibe also now offer the MobiGage, the first handheld 3D metrology app. You don’t even need a computer, just a Microscribe and an iPhone or iPod Touch, to take measurements.
* Next Engine also offers a desk top 3D laser scanner. Its compact size, ease of use, customer support and price point are quickly making it a popular choice for small businesses and individuals.
Open Source, Consumer and Up-Coming Scanning Technologies:
While they don’t come close to offering the same kind of accuracy as current available scanning systems, there is a burgeoning community of small businesses, hobbyists and students who are working to bring 3D scanners into the home. New products are rapidly developing.
* Qi Pan, a student at Cambridge University has created ProFORMA, which uses a web cam to collect data and create a color 3D model.
* David Laser Scanner offers a kit to build your own basic scanning system using every day objects like a web cam and hand held laser pointer.
* Perhaps the ultimate in DIY scanners, Friederich Kirschner used Legos, a webcam and some milk to create 3D models.
Stay tuned for part 2 of this chapter- Desktop Manufacturing. If you have any questions about desktop scanning equipment, like the Microscribe, feel free to contact Direct Dimensions. We're happy to answer any questions.
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Labels: About 3D Scanning
Friday, December 17, 2010
Call for Papers - CMSC

The Coordinate Metrology Society (CMS), the eminent membership association for measurement professionals, proudly announces the "Call for Papers" for their 2011 Coordinate Metrology Systems Conference (CMSC).
The 27th annual event will be held in Phoenix, AZ from July 25-29, 2011. Metrology professionals from leading manufacturers and science laboratories are invited to submit abstracts for technical papers and presentations covering industry best practices, scientific research and developments, and successful applications of 3D coordinate measurement systems. Abstract submissions will be peer reviewed by the CMS Executive Committee and considered for presentation at CMSC 2011.
Click here for more information.
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Labels: Shows and Conferences
Tuesday, December 7, 2010
Case Study: 3D Scanning for Historical Preservation
Quality Magazine recently ran a story about our 3D scan project for the Maryland Statehouse. You can read the story below.
Archiving the Past
Restoring the original architectural design of The Maryland State House – a Georgian style building built during the Revolutionary War – was made easier with 3-D imaging technology.
In summer 2008, Direct Dimensions Inc. (DDI), a 3-D laser scanning services firm, performed digital archival work at the Maryland State House in Annapolis, MD. The Maryland Statehouse functions today as the oldest continuously used State House in the nation. It was in the room known as the “Old Senate Chamber” within the Maryland State House that George Washington submitted his resignation as the Commander of the Continental Army on December 23, 1783.
A major renovation planned for the Old Senate Chamber, which included removing the plaster walls to show the original brick surface, created a unique opportunity to document the initial structure of this historically important space. With the brick uncovered for only a short period, the archivists wanted to find a way to quickly and accurately document the chamber.
Given the significance of this structure, DDI was quite willing to demonstrate the 3-D digital capabilities that can be used to not only document but also help analyze the existing structure, site plan and even restore the building.
“The archivists had employed a fairly high-tech program, so we were excited to show them our 3-D imaging technologies to help them stay ahead of the curve,” DDI Business Development Manager Harry Abramson explained.
With only one day on-site in Annapolis to document the entire chamber, the DDI engineering team chose the Surphaser HSX medium-range laser for the project. The Surphaser scanner works by sweeping a laser over a specified area. This then returns a high-definition data map of the surfaces touched by the laser. The resulting data can be up to half a billion of points on the surface map, which is shown as a point cloud. This point cloud is used to model an exact digital replica of the scanned structure.
The Surphaser laser scanner was a perfect tool for this project because it was easily portable and able to quickly laser scan the entire Old Senate Chamber room, which included its exposed original brick walls, plaster ceiling, wood plank flooring, a small second story balcony and the architectural ornamental elements. The scanner, mounted on a tripod like a camera, collected raw data in the form of a dense 3-D point cloud of millions of coordinates of the elements within the chamber. In the end, these 3-D laser images formed a high-definition survey of the entire space, a process that could take weeks using conventional measurement tools.
With the scanning complete, the team returned to DDI, where the raw data scans were loaded into PolyWorks software and then coordinated and aligned together to form a single point cloud of the entire space. The point cloud was processed into a digital mesh and surfaced.
The 3-D model of the Old Senate Chamber was provided for the Historical Structure Archive for the State. The model represents a complete digital duplication of this important space. Due to its resolution and accuracy it could also be used to replicate historical elements in exact detail, should the need arise. The same data can also be used to create architectural elevation drawings, 3-D animations and walkthroughs, or even a miniature physical representation.
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Labels: preservation
Tuesday, November 30, 2010
3D Scanning Newsletter - November

This month we highlighted some great 3D imaging industry events that are offering the opportunity for you to give back and share your knowledge and expertise with others in our field. We attend, support, and often give technical presentations at these events and always have a wonderful experience!
We also provided a list of some of Direct Dimensions' favorite sites, forums and blogs about 3D scanning.
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Labels: newsletter
Monday, November 22, 2010
Thankful in 2010

Despite the continuing economic challenge, Direct Dimensions has been fortunate to have had another successful year in 2010! This would not have been possible without our wonderful customers, supportive vendors and phenomenal hardworking employees. In the spirit of the Thanksgiving holiday, we would like to express our thanks to everyone who contributed to making 2010 a great year for Direct Dimensions.
Thank you to our customers for trusting us to scan your priceless sculptures, airplanes, historic buildings, inventions and everything else you ask us to 3D digitize for you.
Thank you to our vendors for providing us with the incredible hardware and software products that allow us to scan and model so many types of objects.
And a special thank you to our amazing employees for all of your long hours, dedication, and creativity.
At Direct Dimensions we are also thankful to be part of two rather extraordinary communities that we would like to mention.
Our company is located in Baltimore, which has one of the most vibrant high technology scenes in the entire U.S. In the last year alone we’ve been invited to participate in many technology showcases and events: Betascape, Tech Crawl East, TEDx MidAtlantic, the AME conference and several Greater Baltimore Technology Council (GBTC) events. The leaders and organizers of these events within our local tech community are an amazing and tireless group of people who inspire us on a regular basis with their creativity.
Thank you Baltimore techies for allowing us to be a part of your community!
Our informal 3D imaging families around the world are constantly innovating and supporting each other. We are honored to be part of so many groups that work so hard to educate us all about the remarkable 3D technologies that we all get to play with every day. Our friends and partners at SME, CMSC, SPAR, LiDAR News, and the UK Laser Scanning forum are a huge asset to the entire 3D imaging community.
And of course, thank you for taking the time to read and comment on our newsletters, blog and forum postings, and even our tweets.
Happy Thanksgiving from Direct Dimensions!
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Monday, November 15, 2010
Project Snapshot - 3D Skull

At Direct Dimensions we recently 3D laser scanned this skull. The final digital model can be used for replication, visualization and even analysis.
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Labels: medical
Tuesday, November 9, 2010
Everything You Always Wanted to Know . . . Additive Manufacturing
Chapter 9: From Digital to Physical – Rapid Prototyping and Milling
Up to now we’ve been discussing putting physical objects into the realm of the digital, but before we finish this series we need to talk about another common application for our 3D scanning and modeling processes. Chapter Nine focuses on creating physical objects from digital data.
Important Terminology
Additive Manufacturing – the process of making a physical object from 3D digital data by layering materials; also known as rapid prototyping and 3D printing.
Milling – a subtractive process of removing material to create a physical object directly from 3D digital data by the cutting away from existing solid material.
Applications
You may be asking, why do I need a physical replication of my digital model? After all, we just spent a series of entries talking about turning your physical parts into various digital formats. But there are many good reasons to create new physical models of your data. Here are a few:
* Scaling: Making enlargements, reductions, or even exact size replicas...we can do it all. After a Digital Model has been created, there are few boundaries as to how big or how small we can replicate your object or part.
* Restoration: Our technology enables us to capture accurate 3D data that can be used for manufacturing to completely restore any object that has been damaged by weather, neglect, natural disasters, etc. such as historical monuments and artifacts or aged aircraft and automotive parts.
* Manufacturing Prototype: With a digital model, Direct Dimensions can create a physical prototype that can be used for testing or to manufacture final pieces, such as milling a foam sculpture for a bronze casting pattern or creating a finished prototype as a concept model for a new consumer product.
And now we can talk about the best ways to create the physical models.
Additive Manufacturing (AM)
There are a variety of additive manufacturing equipment manufacturers and processes on the market. Regardless of the type of AM, the various machines read the 3D data most typically in an STL file format. We discussed this format in earlier editions. The software within the machines then generates the layering instructions and directs the deposition of successive layers of material needed to build up the physical part. Essentially this part is created from cross sectional layers. The layers are fused together automatically and ultimately create the final shape, an exact physical replica of the 3D model. Additive manufacturing is an umbrella term that covers many of the following processes.
* One of the earliest and most common types of AM is called Stereolithography (also known as SLA). SLA builds pieces using a laser and a vat of UV-curable liquid resin. Each thin layer of resin is solidified and secured to the layer below with every pass of the UV laser. SLA is good for producing models, patterns, and prototypes. A downside to SLA is that it generally requires support structures to be included in the build, which is part of the SLA process.
* Another AM process is Selective Laser Sintering (also known as SLS). Unlike SLA, SLS can utilize a wide variety of materials such as plastics, metals, and ceramics although post processing may be required. SLS does not require support material while building since it is built and incased within the raw material. SLS uses these materials in a powder format and, by fusing the powder together, creates the layers needed to build the part. SLS is increasingly being used to create final parts for when mass scale production isn’t necessary.
* Similar to Stereolithography is Fused Deposition Modeling (also known as FDM). FDM, trademarked and marketed by Stratasys, also uses the additive platform build concept. Rather than raw liquid or powder, FDM uses thermoplastic materials which are applied through a heated nozzle that places a single thermoplastic bead at a time. These beads fuse together and harden as cooled. The plastics used in FDM are known for their strength and high heat resistance, making them good for product testing.
* Perhaps the most similar to regular 2D printing is the concept of 3D Inkjet Printing. The only rapid prototyping technique that can print in multiple colors, 3D printing also uses a powder base material, but rather than sintering the powder, an inkjet releases a dot of adhesive mixed with coloring, allowing the layers to be built with colors. While the final model is not generally as strong as the other three techniques it is usually cheaper and faster and the colored prints allow for good representation of final concepts. Recently 3D printing has been used commercially to create personalized figurines from World of Warcraft and Rock Band avatar characters.
The primary advantage to additive fabrication is its ability to create almost any shape or geometric feature relatively quickly and inexpensively. We generally say that for a small part, you can’t beat the price to complexity ratio. However the overall volume within a single build is generally limited for AM and for larger parts we recommend milling.
Milling
Milling is best described as a subtractive manufacturing technique. Most often used in the creation of metal production parts, tools, and molds for virtually any industry, an engineer, or even an artist, counts this as a well-tested valuable method. More advanced Computer Numerical Control (CNC) milling machines, like the various additive manufacturing machines, use a 3D CAD file to create a physical reproduction of the digital model. Unlike AM, CNC milling machines can utilize an extremely diverse range of materials including:
* Metals
* Stones
* Woods
* Waxes
* Plastics
* Even Glasses!
Milling steel or aluminum is a common option to make durable tooling. And stone and wood are common for sculpture and historical restoration projects.
Where is this all going?
We are almost done with our “Almost Everything You Always Wanted to Know About 3D Scanning” series. Don’t be surprised if we add additional chapters now and then; the field is constantly changing and growing. We wrap up this series next with talking about the immediate future of these technologies, including desktop (or home) scanning and manufacturing.
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Labels: About 3D Scanning