Die Herausforderung
Als kleines militärisches R & D-Unternehmen mit Ingenieuren, die mehrere Rollen ausübten, war Delta Development bestrebt, seinen IT-Aufwand zu reduzieren, der 20% der Zeit des Teams für die Produktentwicklung in Anspruch nahm. Delta Development wechselte von einem lokalen CAD-System zu einer Cloud-nativen Software-as-a-Service (SaaS) -Produktdesignplattform, wodurch die Ausfallzeiten für Softwareinstallation, Lizenzierung und regelmäßige Systemaktualisierungen vermieden wurden.
Ergebnisse
- Aufgrund des geringeren IT-Aufwands konnten 20% der Konstruktionszeit eingespart werden.
- Mehrere Ingenieure können gleichzeitig an demselben 3D-CAD-Modell arbeiten, anstatt gezwungen zu sein, eine Person nach der anderen an einer Konstruktionsdatei zu arbeiten.
- Onshape ermöglicht Produktentwicklungsarbeiten aus der Ferne und häufigere Design-Prüfungen.
Die Möglichkeit, in einem Browser zusammenzuarbeiten, macht CAD für ein verteiltes Team wie uns einfach extrem nützlich. Ich habe zuvor 30 Jahre damit verbracht, es auf die alte Art zu machen, und ich bin sehr froh, dass wir beschlossen haben, unseren Ansatz zu ändern.“
Da das Militär und die medizinische Industrie oft die ersten sind, die von neuen Technologien und Geräten profitieren, ist es überraschend, von Situationen zu erfahren, in denen Low-Tech-Lösungen in den meisten Fällen die Norm sind.
Eines der Szenarien, die immer noch von altmodischen Lösungen abhängig sind, ist der sichere Transport von Blut, Impfstoffen, Virusproben und temperaturkontrollierten Medikamenten — all dies erfordert ein zuverlässiges Kühlsystem.
Some hospitals, for example, are still using beverage coolers filled with ice to transport organ transplants. The military has used coolers with ice to transport emergency blood supplies and also has experimented with small mobile refrigerators originally meant to store beer or soda.
“Everybody has their own workaround right now, but there is no reliable solution currently following all of the FDA’s best practices,” says Robert Futch, CTO of Delta Development. “These refrigeration units are not designed with medical device guidelines for transporting blood safely. When you’re in the middle of the desert in Afghanistan, you can’t predict how long ice or a cooling device will really last, or how much power it has left. But you definitely know it’s not going to stay cold forever.”
Delta Development is a Tucson-based R&D company specializing in military applications for cooling and heating systems in extreme environments. The product development company was contracted by the U.S. Air Force to design and manufacture the Autonomous Portable Refrigeration Unit (APRU) for deployment by medics on the battlefield.
Current military procedures require wounded troops needing blood to be evacuated by helicopter to the nearest base or field hospital. The APRU enables medics to replenish blood to patients faster on the ground.
Delta Development has been collaborating with the 48th Rescue Squadron at Davis-Monthan Air Force Base in Arizona for the design and testing of the device. The famed unit conducts combat search and rescue missions, serving as “guardian angels” during U.S. operations around the world. It also performs civil search and rescue, disaster relief, humanitarian aid, emergency medical evacuations, and counter-drug operations.
Der tragbare medizinische Kühlschrank wird derzeit von militärischen medizinischen Teams wie dem United States Special Operations Command (SOCOM), dem US Air Force Special Operations Command (AFSOC), den US Army Rangers und den Canadian Special Operations Forces (CANSOF) eingesetzt, die in extrem kalten Umgebungen operieren.
Designing One of the “Smallest Refrigeration Systems in the World”
One of the Delta team’s biggest design challenges was centered around miniaturization: How do you shrink the typical 150-pound small hospital fridge to a more portable unit one-third to one-fourth its size and one-fifth its weight?
At a glance, the APRU (which holds six liters of blood) looks more like a large first aid kit or fishing tackle box than a refrigerator.
“What we should compare it to is what the medics are carrying right now,” says mechanical engineer Tim Gust. “They'll try to bring along these hospital refrigerators that are not really mobile devices. They have heavy batteries that come with them so they can be moved down the hall, but they weren’t meant to go out in a C-130 Hercules aircraft. They're not designed to be out in a tent in the desert – and certainly, they're not single-person carriable.”
“So we’ve developed one of the smallest refrigeration systems in the world,” he adds.
The compact 29-pound unit is 19” wide x 10” high x 10” deep. Its rechargeable battery lasts for 80 hours with a digital screen indicating remaining power. The dustproof and waterproof device is also operational in any orientation (on its side, upside down, tilted), runs in extreme hot and cold environments, and is designed to withstand the rigors of rescue operations.
Der APRU verfügt über eine eingebaute Heizung, um ein Einfrieren des Inhalts zu verhindern. Das Gerät hat seine Vereisungstests im Rahmen der 4X-Zertifizierung der National Electrical Manufacturers Association (NEMA) bestanden, die für Outdoor-Geräte erforderlich ist. Das Gerät ist auch dann betriebsbereit, wenn sich an der Außenseite Eis bildet.
“One of the challenges was to make a rugged product that can withstand these high ambient conditions,” notes Gust. “And so part of making it rugged involved replacing the traditional condenser – that has a fan blowing air over the condenser – with just a large aluminum heat sink. That is pretty novel. Making that actually work took a lot of testing and FEA to really design the heat sink to reject that much heat.”
Having no fan means there are fewer moving parts to potentially break down.
“The passive heat exchangers are diecast aluminum structures that are very substantial and stiff and use convective natural cooling instead of active. So it’s completely different than your dorm fridge that would have a little fan blowing over some delicate aluminum fins,” he adds.
Onshape Helps Delta Accelerate Product Development
Für die Entwicklung der autonomen tragbaren Kühleinheit entschied sich Delta Development für Onshape, die Software-as-a-Service (SaaS) -Produktentwicklungsplattform von PTC, die robuste CAD-Tools mit Echtzeit-Zusammenarbeit und Datenmanagement in Echtzeit kombiniert.
As a small company with 13 employees, Delta places a high value on versatility. Most of the team’s five mechanical engineers are also proficient at either electrical or software engineering as well.
“Before we started using Onshape, we were also our own IT guys,” explains Delta Development chief engineer Bill Barg. “We were constantly running out of disk space or having one computer fail and dealing with issues about local installations of software and trying to keep up with the license file on some server. About 20 percent of our time was just dealing with administrative issues, you know?”
“Now it's such a liberation to not ever have to worry about what's on our server because it's all on Onshape's servers. Not having to worry about IT overhead has been a huge time-saver for us,” he adds.
Onshape’s real-time collaboration tools allow multiple engineers to work simultaneously on the same 3D CAD model in the cloud. Whenever one team member makes a design change, everyone else on the team instantly sees it. A comprehensive Edit History tracks who made what change and when, allowing teams to instantly revert back to any prior stage of the design.
„Wenn ich erklären will, wie Onshape funktioniert, sage ich immer: ,Es ist wie die CAD-Version von Google Docs.' Dann sagt mein Gegenüber meistens fort: 'Das ergibt wirklich Sinn. Warum haben sie (die CAD-Branche) das nicht schon getan? ' " sagt Futch.
“Being able to collaborate in a browser just makes CAD extremely more useful for a distributed team like ourselves. I previously spent 30 years doing it the old way and I’m very glad we decided to change our approach,” says Barg, who has used a number of file-based, on-premise CAD systems in his career.
Although its core design team is based in Arizona, Delta Development has an electrical engineer based in Montana and frequently partners with an injection molding company in Detroit.
“The ability to do mechanical design reviews remotely has been critical for us,” adds Futch. “When the COVID-19 pandemic forced us to work at home, we were able to continue as normal with our design process.”
Improving Life-Saving Equipment for Civilians
Delta’s engineering team is also currently developing a blood-warming device as a companion product to their blood-cooling unit. The new portable device would warm blood to body temperature in the field, reducing the risk of the patient getting hypothermia.
„Während wir diese Produkte mit der Rettungsstaffel entwickeln, freue ich mich am meisten auf die zivile Anwendung“, sagt Futch und fügt hinzu, dass sein Team auch einige Pilotprogramme mit Feuerwehren und Life Flight-Teams in Arizona und Alaska durchführt.
Barg stellt fest, dass er häufig gefragt wird, warum ein tragbarer Blutspeicherkühlschrank noch nie erfunden wurde — zumal die Technologie selbst leicht verfügbar ist.
“The answer is that it took a special team of players here – engineers, retired soldiers and retired medics – to first put the importance on it,” he says. “This refrigerator is now ready to save lives in the battlefield. And it’s because of our partners who are retired soldiers who bring us new points of view.”
„Wir befinden uns auch am Beginn einer neuen Ära der technischen Fähigkeiten, in der wir eine extrem schwierige Aufgabe übernehmen können, und das schnell und zu einem vernünftigen Preis. Es gibt so viele neue Möglichkeiten, diese Art von Produktdesign umzusetzen. Ich spreche von 3D-Modellierung, 3D-Druck, schnellerer Kommunikation zwischen Menschen, die an verschiedenen Standorten arbeiten, und der Gig-Engineer-Wirtschaft, in der viele verschiedene Mitwirkende eine Schlüsselrolle spielen „, fügt Barg hinzu. „Es ist sehr befriedigend, diese neuen technischen Ansätze nutzen zu können und sie für einen guten Zweck einzusetzen.“