Modular anti-ballistic, blast and forced entry resistant shelter system
US-10443260-B2 · Oct 15, 2019 · US
US11267516B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11267516-B2 |
| Application number | US-201313886248-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 2, 2013 |
| Priority date | May 2, 2012 |
| Publication date | Mar 8, 2022 |
| Grant date | Mar 8, 2022 |
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A Hardened Alternative Trailer System (HATS) is described, including methods of producing same. HATS has superior blast, ballistic and forced entry protection properties, relative to existing structures, due to particular features of frame design and construction methods. Furthermore, HATS is a low-cost reinforced ISO container suitable for field and/or remote fabrication and meets blast, ballistic/projectile and/or forced entry threats such as the U.S. Department of State Certification Standard SD-STD-01.01, Revision G.
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What is claimed is: 1. A hardened trailer structure having blast, ballistic and forced entry resistance properties, the structure having a frame assembly comprising: four corner posts, two lower side members, two upper side members, two lower cross members, two upper cross members, and a plurality of vertical strengthening members, the frame assembly forming a rectangular cuboid structure, wherein the lower side member and the upper side member are tubular and comprise openings each configured to receive an extended length of a corresponding one of the vertical strengthening members into an interior cavity of the lower side member and an interior cavity of the upper side member, wherein the extended length at a top end of the vertical strengthening member is received in the opening and interior cavity of the upper side member and is engaged to the upper side member by a welded connection, and the extended length at a corresponding bottom end of the vertical strengthening member is received in the opening and interior cavity of the lower side member and is engaged to the lower side member by a welded connection, the vertical strengthening members spanning between the upper and lower side members to form two reinforced side walls, and wherein the structure further comprises a plurality of wall panels to be welded to the frame assembly as an underlying frame structure, the wall panels comprising interior wall panels including a plurality of pre-manufactured plug weld openings specially arranged to be aligned with the underlying frame structure into which plug welding is placed to attach the interior wall panels to the underlying frame structure. 2. The structure according to claim 1 , comprising at least ten vertical strengthening members in each reinforced side wall of the two reinforced side walls and wherein each of said vertical strengthening members is engaged by the welded connection to said upper side member and the welded connection to said lower side member. 3. The structure according to claim 1 , wherein the upper cross members and the lower cross members are tubular and comprise openings each configured to receive the extended length of the corresponding one of the vertical strengthening members into an interior cavity of the lower side member and an interior cavity of the upper cross member, the extended length at a top end of the vertical strengthening member is received in the opening and interior cavity of the upper cross member and is engaged to the upper cross member by a welded connection, and the extended length at a corresponding bottom end of the vertical strengthening member is received in the opening and interior cavity of the lower cross member and is engaged to the lower side member by a welded connection, the vertical strengthening members spanning between the upper and lower cross members to form two reinforced end walls. 4. The structure according to claim 3 , wherein the plurality of wall panels include exterior wall panels, the interior and exterior wall panels forming a double waned panel construction on the sidewalk and end walls. 5. The structure according to claim 4 meeting US Department of State Certification Standard for Forced Entry and Ballistic Resistance of Structural Systems, SD-STD-01.01, Revision G (amended) Apr. 30, 1993. 6. The structure according to claim 4 , wherein the interior and exterior wall panels comprise interior single piece wall panels each for one of the sidewalls and end walls and exterior single piece wall panels each for one of the sidewalls and end walls. 7. The structure according to claim 5 having 50% to 75% low quality structural welds. 8. The structure according to claim 5 , wherein the structure is an ISO container. 9. The structure according to claim 6 , wherein the exterior single piece wall panels are welded to the structure from inside of the structure, and the interior single piece wall panels have the pre-manufactured plug weld openings aligned with the underlying frame structure and are plug welded. 10. The structure according to claim 1 , further comprising lower corner members attached to lower ends of the corner posts, and upper corner members attached to upper ends of the corner posts. 11. The structure according to claim 1 , wherein the interior wall panels include the plurality of pre-manufactured plug weld openings specially arranged to be aligned with the four corner posts, two lower side members, two upper side members, two lower cross members, two upper cross members, and vertical strengthening members of the underlying frame structure, into which plug welding is placed to attach the interior wall panels to the four corner posts, two lower side members, two upper side members, two lower cross members, two upper cross members, and vertical strengthening members of the underlying frame structure. 12. A method of manufacturing a hardened trailer structure having blast, ballistic and forced entry resistance properties, the method comprising: providing a frame assembly comprising four corner posts, two lower side members, two upper side members, two lower cross members, two upper cross members, and a plurality of vertical strengthening members, the lower side member and the upper side member being tubular and comprising openings configured to receive an extended length of the vertical strengthening members into an interior cavity of the lower side member and an interior cavity of the upper side member, engaging the extended lengths at a top end of the vertical strengthening members each into one opening of said openings and interior cavity of the upper side member, engaging the extended lengths at a corresponding bottom end of the vertical strengthening members each into one opening of said openings and interior cavity of the lower side member such that the vertical strengthening members have a vertical orientation spanning between the upper and lower side members, welding said vertical strengthening members to the upper and lower side members to form two reinforced side walls; and welding a plurality of wall panels to the frame assembly as an underlying frame structure, the wall panels comprising interior wall panels including a plurality of pre-manufactured plug weld openings specially arranged to be aligned with the underlying frame structure, the welding comprising aligning the plurality of pre-manufactured plug weld openings of the interior wall panels with the underlying frame structure into which plug welding is placed to attach the interior wall panels to the underlying frame structure. 13. The method according to claim 12 , wherein each reinforced side wall of the two reinforced side walls has at least ten vertical strengthening members and each of said vertical strengthening members is engaged by the welded connection to said upper side member and the welded connection to said lower side member. 14. The method according to claim 12 , wherein the upper cross members and the lower cross members further comprise openings configured to receive the extended length of the vertical strengthening members into an interior cavity of the cross member, the method further comprising: engaging the extended lengths at a top end of the vertical strengthening members each into one opening of said openings and interior cavity of the upper cross members, engaging the extended lengths at a corresponding lower end of the vertical strengthening members each into one opening of said openings and interior cavity of the lower cross members, such that the vertical strengthening members have a vertical orientation spanning between the upper and lower cross members, and weldin
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