WEBVTT

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The Department of Defense Manufacturing

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Technology program develops and

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supports the adoption of advanced

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manufacturing technologies . Some of

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the goals include lowering the cost of

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production and the cost of repair and

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maintenance , increasing the capability

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and the quality of the products that

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the military purchases and also

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increasing the production throughput of

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those items . The manufacturing

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technology program identifies and

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solves problems across the Defense

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industrial base By working with the

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Joint Defense Manufacturing technology

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panel and its technology based sub

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panels to identify joint technology

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pursuit areas . We all work together to

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ensure that we're meeting requirements

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for the military services themselves

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all the way to strategic partnering

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with industry and academia through a

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manufacturing innovation institutes

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which work on scale up commercially

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relevant advanced manufacturing

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technologies .

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Our program is focused on the

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efficiency and affordability of

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technologies and we enhance those

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things through enhancing the

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manufacturing processes for that . And

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the end goal is to support weapons

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systems to enhance warfighter

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capabilities . We are at the Watervliet

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arsenal are engineering facility as

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part of a . F . C . Def . Com armament

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center and our mission is to provide

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research design and development of

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large caliber cannon . The project that

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we have is called electrochemical

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machining for armament manufacturing

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for future cannon designs and looking

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at alternative materials We needed to

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have a different approaching process or

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rifling process to be able to rifle

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large caliber cannons approaching is a

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conventional manufacturing process that

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uses a successive set of approaches

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that shear off very small amounts of

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material approach sets are very

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expensive . So with electrochemical

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machining it's a non contact process so

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your tooling is much much cheaper . We

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can get faster processing rates and get

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an improved quality with this process .

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This project started off as an S . And

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T . Development effort . As the

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technology matured , it was

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transitioned to a man tech program with

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the support of the Man Tech office .

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This technology will reach a

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manufacturing readiness level to allow

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it to be transitioned into production

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manufacturing processes . This was

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specifically under the Man Tech program

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for the M 24 which is on the palatine

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system . But the technology is also

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very pervasive . So we could use this

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on 105 millimeter , we can use this on

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776 which is the M 77 towed artillery

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system , long range artillery . We can

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use it for that as well . The

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investment of the Army Man Tech office

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in electrochemical machining allows us

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to advance the technology that

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currently exists for rifling large

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caliber cannon . It will also offer us

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flexibility and agility moving forward

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into our newer designs so that we may

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provide superior weapons systems . I

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considered a success because we started

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out as a very small effort and then we

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built this full scale facility and then

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demonstrated that we can rifle large

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caliber cannons with it . We've been

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doing this for the Man Tech program

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since fiscal year 19 . So we just ended

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our four year program and we're now

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going into our transition phase where

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we're taking that from A . M . R . L .

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Seven technology and pushing that out

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to the shop floor . It's very vital to

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the mission because whatever the US war

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fighter has to use within combat

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situations it has to be manufactured .

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And if we can't manufacture it , if we

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can't manufacture enough of it then it

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reduces our ability to have overmatch

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against the adversary .

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The mission of the Navy mantle program

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is to develop new and improved

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manufacturing processes with the goal

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of reducing the acquisition and

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lifecycle costs of key Navy platforms .

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David Mann Tech works in conjunction

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with the Centers of Excellence and the

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shipyards to generate ideas that would

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have the greatest impact cost savings

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or capability acceleration for the Navy

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and for the warfighter . Today you're

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at ingalls shipbuilding . We build

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surface combatants for the U . S . Navy

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as well as the Coast Guard and any

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commercial opportunities that we have

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as well . The shape plate robot project

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is taking a process that it took over

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40 years for a craftsman to create his

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art in order to shape plates . The

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existing process involves using a flame

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based porch to eat and then pull the

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metal . We've taken that science put it

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into a robot that use programming to

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take his art and repeat that process to

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shape that plate What the robot is

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doing . It's taking flat pieces of

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steel and forming them into specific

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shapes that go into various components

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that will then be installed on the ship .

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And the goal is to shorten the process

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of fabricating these plates from

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somewhere on the order of 50 to 60

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hours to hopefully around four hours .

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And that's a tremendous cost and time

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savings for the Navy . We've had over

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40 for projects that are implemented or

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in the process of implementing the

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total savings over $27 million dollars

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per hole . And we've done all kinds of

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projects with them , from new ,

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improved welding processes to digital

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threat technologies and other

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technologies that really reduce the

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cost of ship fabrication and accelerate

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the delivery of those assets . This

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project supports the Navy and the

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Warfighter , generating cost savings

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for the Navy and allowing those

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research dollars to be used for new

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capabilities and bringing those the

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Warfighter more quickly . They provide

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expertise and cutting edge technology

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that as shipbuilders we would not

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usually be accustomed to or even

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familiar with . So that partnership

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really provides us benefit to grow ,

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learn and continue getting better and

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reducing costs for our customers .

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The Air Force Man Tech program is

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really focused on driving affordability

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into our weapons systems manufacturer

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ability into our weapons systems were

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at compass Technology Group , they're

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running our project called the Advanced

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rate home diagnostic system . ARDS for

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short . What we have found is with the

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man double tap test that the depot

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typically uses . We don't discover

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problems with the rhythms not being

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properly repaired or missing areas that

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need to be repaired until we get out to

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test in the field after the depot and

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then we have to do rework and usually

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leads to 80 hours plus of re work that

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needs to be done , ratings are very

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important to a plane's ability to

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locate targets to locate the ground

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terrain to make sure that it sees

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weather ahead of it . So we need to

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make sure that those freedoms are at

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their peak performing capability . And

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this system helps ensure that we're

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doing that . This system will allow us

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to test the performance midstream or

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even at the beginning to give us a

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baseline to know how to best make those

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repairs . We take millimeter wave radio

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frequency measurements and by using

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this measurement we can look at the

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transmission and reflectivity of

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different objects and materials . So we

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used those to look at the paint

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thickness or the layer thickness of the

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raid um and evaluate its health and

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performance . This is about the third

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year of the project . It started off as

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a handheld unit that we were using to

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measure Radom transmissibility . We

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transitioned that to a robot and now

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what we're doing is using that data to

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go do further testing and proof of

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concept on Radames . The man take

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programs important to innovation

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because they pull technologies that are

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in the development stages , they get

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them ready for prime time to allow us

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to then push that into production So

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they help us bridge that gap of

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technology readiness to get us to a

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spot where we're ready to transition

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Sure that our war fighters have the

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capability they need we need to invest

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the government dollars in building that

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industrial base . We need to ensure

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that the suppliers exist that we have

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domestic suppliers that we have access

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to suppliers so that we can provide the

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capabilities that the war fighters need .

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I'm the research and development

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director in Mahon Tech is the largest

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of the three components of our R . And

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D . Program . It involves basically

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sustainment of key supply chains . It's

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all about the defense industrial base

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and really keeping it ready for D . L .

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A . Sustainment . We're at Redstone

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Test center located on Redstone arsenal

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Alabama and we do testing for army

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hardware . So this is a project that

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we've been working with the army and as

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part of our additive manufacturing

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portfolio for D . L . A . It's really

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about getting added manufactured parts

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into the aviation supply chain . The

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name of the project that we're

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highlighting is the additive

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manufacturing you ate 60 fuel elbow

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project and because of supply

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shortages that had to do with

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manufacturing quality escapes the

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program office and D . L . A . And the

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armies F . Com . Aviation missile

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center Man tech got together to

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design build and test an additive lee

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manufactured fuel elbow . The goal of

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the project was to do a 10 hour test

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flight on a U . H . 60 helicopter here

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at our airfield better than

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manufacturing is the ability to take a

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cad model and computer aided design

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model and put it into layers into a

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machine so the machine deposits layers

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of materials . This is actually a fuel

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elbow . What this does is this end

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connects to the fuel hose and then this

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end connects to the engine . So this

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actually supplies fuel to the turbine

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engines . So the fuel elbow had a

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manufacturing quality issue had a thin

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wall on one side of the fuel elbow that

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was causing small fuel leaks . The

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importance of this project is

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demonstrating that we can print these

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parts and qualify these parts to a

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certain airworthiness qualification and

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fly these parts in a limited test

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flight which is really just exercising

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that whole process so that in the

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future as technology improves and

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advances we can move forward and

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continue to add parts to the aircraft

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as needed to help sustainment . We

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definitely consider the project a

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success . The fact that it was a joint

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project was very beneficial . The fact

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that we were able to pull resources ,

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different organizations and we had a

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stated goal and we met it at the end ,

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it is important that the L . A .

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Establishes these partnerships not only

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with the military but also with the

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academia in industry because when you

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bring different perspectives to a

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problem , you find better solutions to

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its success . Can be defined in a

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number of ways , a lot of ways it's

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making a better part getting it

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qualified so it can be part of the new

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part that you'd order for that weapon

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systems . Other times it's improving a

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business process for D . L . A . Like

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moving us from A to D . Technical data

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world to a three D . Connected digital

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enterprise . So success can take

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different approaches . But for us it's

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really all about support to the war

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Fighter .

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Man tech is really working on securing

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the supply chains in the US ,

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increasing the resilience of the supply

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chains so that we can respond to not

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only daily products that you and I use

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all the time . It upgrades to those

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products but also respond to the

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warfighter needs and support national

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security but also through economic

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security and creating better jobs for

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the U . S . The D . O . D . Man Tech

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program is very important to the

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defense industrial base and the

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warfighter because we are investing in

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next generation technologies , ensuring

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manufacturing processes are advanced

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and improving so that our war fighter

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has access to asymmetric advantage on

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the battlefield .

