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将钻井专业知识与俄克拉荷马大学的创新相结合,提高石油工业的安全性

Having the chance to improve safety of large industrial systems is a gratifying application in our digital fabrication work. One such application recently presented itself to Potomac through the University of Oklahoma’s [OU] School of Aerospace and Mechanical Engineering. Growing out of a prime geographic location in the oil industry, the University of Oklahoma conducts…
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Potomac 被列入纽约 3D 打印周医疗设备和生物技术专题讨论会

Over the last few years, Inside 3D Printing has proven to be a lively, educational event that takes place around the globe. The New York version this year has grown to a full 3D Printing Week with multiple activities around the city the week of April 13 for everyone from the 3D Printing professional to…
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波托马克参加国会山 NASA 技术日活动

Potomac is thrilled to announce that the National Aeronautics and Space Administration [NASA] has invited us to demonstrate our digital fabrication technologies at NASA Technology Day, April 29, on Capitol Hill. We’ll be showing samples of the many types of medical device and biotech products Potomac has manufactured as an outgrowth of research conducted for…
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真正的快速成型技术应用于微流体设备制造

Digital fabrication processes such as laser micromachining and 3D Printing have had enormous impact on manufacturing by allowing for rapid prototyping and testing of new product designs. These digital fabrication tools are driven by instructions from a computer aided design [CAD] file, so that any changes are made quickly and easily on the computer. With…
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通过激光微加工医用级硅胶改进脑引流导管

Engineering is a process, a continual development of new techniques to improve products so that we can expand their usefulness via better performance, longer lifetime and reduced cost. And it’s even more gratifying when the engineering process improvement saves more lives. Recently, Potomac had the opportunity to do just that in work for the Department…
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二维码让华盛顿国会公墓的黑人历史重现

In recent years, Potomac has done some rather interesting laser coding and marking work for customers. With the current celebration of black history month, we’d like to share one such project using QR Codes to help a headstone company bring black history to life for a Washington, D.C. cemetery. Congressional Cemetery is an historic resting…
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纪念激光发明家查尔斯·汤斯及其对波托马克微加工工作的影响

Last week the laser community was saddened to learn of the death of Charles Townes, one of the inventors of the laser. Light Amplification by Stimulated Emission of Radiation [LASER] devices are such a part of 21st century life that we now take them for granted but they are a fairly recent 20th century invention.…
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波托马克 2015 年决议:巩固 2014 年数字化制造的成功

2014 was a year of many successes for Potomac. First and foremost, we moved to the bwtech@umbc research and development campus near Baltimore. Moving a functioning company after over 30 years on the DC Beltway was no small feat, but the opportunity to be part of a world-class science and engineering community is already realizing…
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德克萨斯大学奥斯汀分校心血管生物力学研究的快速成型微型夹具

Computer simulations are powerful tools for development of new medical devices and treatments. At the Center for Cardiovascular Simulation (CCS) at the University of Texas, Austin, Dr. Michael Sacks’ group is working to provide advanced cardiovascular simulations in order for physicians and biomedical engineers to develop more effective treatments for cardiovascular disease. The specific research…
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波托马克的高精度激光微加工推动马里兰大学巴尔的摩分校开发新型能量收集技术

Anyone who has found themselves without the power cord for their laptop, iPad or smart phone knows the frustration of living in a “connected” world. Energy-harvesting is one of the research areas that would cut the cord, so to speak, to our electricity dependence. There is energy all around us, but the challenge is to…
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Potomac 在 DigiFabCon 上通过教育回馈社区

Thanksgiving is a time when we think about giving back to the community in thanks for our own success and good fortune. Recently, Potomac had an opportunity to share our expertise on the powerful use of digital fabrication in diverse fields with attendees at the annual DigiFab Conference in Baltimore. Partially underwritten by Chevron and…
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激光微加工助力俄勒冈州立大学改进生物物理学、天体物理学和材料科学研究设备

Advanced research in basic science is continually pushing the limits of commercially available chemical analysis equipment. Such is the case for the Kong group at Oregon State University whose physical chemistry work involves studying the basic structure of materials on the atomic level. Dr. Wei Kong has been actively designing new tools that are important…
