![]() Collapsible reusable container
专利摘要:
The invention relates to large-capacity containers for land, sea and air transport of goods. The purpose of the invention is to increase the reliability of the container. The collapsible container contains a base and a lid with corner fittings, fitted with detachable joints, which, in the working position of the container, interact with the corresponding elements of the side wall uprights, and in the folded position of the container, interact with each other. The detachable joints of the side walls with the base and the roof are formed by means of vertical posts installed in fittings and at the ends, with the possibility of the forks and pivoting axes interacting with the flats and the socket for inserting the tool from the outside of the container to rotate the axle. The container has devices that exclude the rotation of the axes in the working position, made in the form of hinged plates with cutouts to cover the bald axes. It is preferable to make each detachable connection of the side walls to the rear in the form of a screw placed inside the container, mounted for movement in a horizontal tubular element mounted in the rear wall rack, and interacting with a threaded hole made in the side wall rack. It is preferable to make a detachable connection of the walls to each other in the form of a rod, one end of which is T-shaped and the other end is threaded with a nut. The bar is installed with the possibility of rotation and axial movement on the inner side of one wall and the interaction of the T-shaped end with the sickle-shaped element fixed on the inner side of the adjacent wall. Roof and base of container 5c 22c 3/00 v 5c 22c 30/04 c. Method of excretion 公开号:SU1547705A3 申请号:SU833568913 申请日:1983-03-18 公开日:1990-02-28 发明作者:Гутиль Морис 申请人:Скк Сикс-Ин-Ван Контейнерс Компани С.А. (Фирма); IPC主号:
专利说明:
This invention relates to large-capacity containers designed for land, sea and air freight. The purpose of the invention - to increase | container reliability. Figure 1 shows the container in assembled form, in a perspective view; in FIG, 2 - container disassembled, in axonometry; on fig.Z - container, longitudinal vertical section; Fig 4 - one of the corners of the container, a partial horizontal section; 5 shows a connection of the side walls with the base of the container, a partial vertical section; Fig. 6 shows the means of joining and stacking empty containers into a bag; Fig. 7 shows a container view, front view; on Fig - section aa in Fig.7; figure 9 - section bb in figure 7; figure 10 - the connection of the side wall with the base on the outer side of the container; 11 shows a container 20 (left) and a package of empty containers (right), side view; Figures 12 and 13 show the lifting joint of the walls between them, embodiments. about 25 The assembly container contains a base 1 and a roof 2 with corner fittings 3 and 4, respectively (side and rear corrugated walls 5 and 6, respectively. The side walls 0 5 have vertical uprights 7 and 8. Rear wall 6 has upright 9. Container It has a front wall made in the form of a double-wing door, the flaps 10 of which are removable, “are mounted on the uprights 7 of the side walls 5. They can be rotated. The uprights 7, 8 and 9 have a thickness equal to the overall thickness of the walls 5 and 6. The walls 5 and 6 are connected between themselves 40 with base 1 and roof 2 by means of detachable connections, the constituent elements of which are arranged respectively on the base 1 and the roof 2, are adapted to interact with each other in the folded container position 45. The detachable joints of the side walls 5 with the base 1 and the roof 2 are formed by means of fittings 3 and 4 and at the ends of the uprights 7 and 8 with the ability of the forks 11 and the axles 12 to cooperate with the flats and the socket 13 for inserting an instrument on the outside of the container for turning the axis 12 to even-twisting turn. The container is equipped with devices that exclude the rotation of the axes 12 in the working position, made in the form of plates 14 hinged on the inner surfaces of the walls 5 with cutouts to cover the bald faces of the axes 12 (for fastening the side walls 5 to the roof 2 and the base 1 in various places throughout their length used screw means with the inserting between them sealing gaskets). Each detachable connection of the side walls 5 to the rear wall 6 can be made in the form of a screw 15 placed inside the container, fixed with a possibility of movement in a horizontal tubular element 16 mounted in the rack 9 of the rear wall 6, and interacting with a threaded hole made in the side 8 rack wall 5, g plate 17 is installed on the inner surface of the rear wall 6 to limit the stroke of the screw 15, and coaxial holes are made in its head, plate 17 and the wall for insertion from the outside of the container instr and turning the screw 15. Similarly, a detachable connection is made between the rear wall and the bottom and the roof 2. The detachable connection of the walls 5 and 6 between them can be made in the form of a rod 18, one end of which has a T-shape and the other has a thread with a nut 19. The rod 18 is installed with the possibility of rotation and axial movement from the inner side of one wall and the interaction of T- shaped end with a saddle-shaped element 20 mounted on the inner side of the adjacent wall. The roof 2 and the base 1 of the container on the outside can be provided with hooks 21 and protrusions 22 for interconnecting the folded containers, respectively, and on the roof 2 a pivot bolt 23 can be installed serving to stop the hooks 21. Roof 2 has longitudinal and transverse reinforcing elements 24 and 25 respectively placed along its perimeter. Corner fittings 3 and 4 have normalized openings that can perform various functions: grasping the container with lifting and transporting devices by means of turning locks; mount on the carrier chassis; connecting two containers installed side by side or one after the other; Container handling with traverse, equipped with slings. The ends of the uprights 7, 8 and 9 are made / recesses 26, in which the forks 11 are placed in the assembled position of the container. In the position shown in Fig. 5, the axis 12 prevents the fork 11 from coming out of engagement with the axis 12 under the force of upward and applied to the side wall 5. When the axis 12 is rotated by a quarter of a turn, it freely passes between the flanges of the fork 11 when the side wall 5 is vertically moved relative to the base 1. For connecting the side wall 5 to the base 1, the axis 12 is sufficient to turn so that flattering her If there are a pair of upper pins 32 and a lower pin 33 on the flaps 10, they are fixed on two parts 34 and 35, respectively, which have a semi-cylindrical shape and are fixed on the flaps. Between the parts 34 and 35, on the flaps 10, two more parts 36 are placed, having the same shape and fitted with pairs S intermediate ttyrey 37, coaxially with the pins 32 and 33. In the racks 7 there are four sockets 38-41, which include the pins 32, 33 and 37, respectively. Inside these sockets are welded parts 15 42, each of which interacts with one of the pins 32-34. In the slots 38 and 41 are provided on one piece 42 When it is necessary to strengthen the sash They are laid vertically, which will allow the fork 20 to the rack 7, the flap 10 is brought to the joint 11 to be put on the axle 12, after which the rack 7 is turned in such a way that each ice rotate so that the flats are placed horizontally. Plates 14, embracing the flats 25 axes 12, make it impossible to rotate axis 12 with a tool inserted into slot 13 on the outside of the container, which is very important for ensuring that the container is not openable and also to avoid accidental separation of the side wall 5 and the base 1. thirty from pins 32-34 was located opposite one of the parts 42 (Fig. 7). Then, the flap 10 is set at the level at which it should be after fixing it on the rack 7. At the same time, all the pins are inserted into the slots, where the corresponding parts 42 direct the pins, while the flap 10 is moved to the rack 7 s so that each of the pins takes up the position indicated in FIG. 8, where the part 36 is in the semicircular part of the part 42 having a diameter equal to the diameter of the pins. Thus, the common pin hinge is in the correct position, allowing the flap 10 to rotate. In conclusion, it is enough to first screw the bolt 43 into the corner fitting 3, the end of which forms the pin 44 entering the blind hole 45, made in the part 35 and coaxial with the pins 32-34, the bolt 43 is mounted in fittings 3 with the ability to move 35 Fig, 10 shows the mounting of the rear wall 6 to the base 1 on the outer side of the container. The hole made in the screw head 15 has a hexagonal shape, a hex key 27 with a handle 28 is inserted into it. This key passes through the hole in the plate 17 fixed to wall 6 and preventing the screw 15 from fully exiting by chain from pins 32-34 was opposite to that of parts 42 (Fig. 7). Then, the flap 10 is set at the level at which it should be after sticking it to the rack 7. At the same time, all the pins are inserted into the slots, where the corresponding parts 42 direct the plugs, while the flap 10 is moved to the rack 7 s so that each of the pins takes up the position indicated in FIG. 8, where the part 36 is in the semicircular part of the part 42 having a diameter equal to the diameter of the pin. Thus, the common pin hinge is in the correct position, allowing the flap 10 to rotate. In conclusion, it is enough to first screw the bolt 43 into the corner fitting 3, the end of which forms the pin 44 entering the blind hole 45, made in the part 35 and coaxial with the pins 32-34, the bolt 43 is mounted in fittings 3 with the ability to move A pin 29 is attached, which serves to place in the hole 30 the head of the wines-45 from the position in which the pin 44 of the chain 15 for the angular locking device is located inside the fitting 3 into it, when the screw 15 is in the working position. The pin 29 is long enough to rest against the position in which the pin 44 enters into the hole 45. After that, the roof 2 is lowered so that the pin c in wall 6. To ensure the tightness of the joint between the walls 5 and 6, the base and the roof, gaskets 31 are installed, which are clamped between them with screws. The detachable connections of the rear wall 6 with the side walls 5, the base 1 and the roof 2 are completely inside the overall dimension of the thickness of the corrugated wall 6. On the flaps 10 there is a pair of upper pins 32 and a lower pin 33, reinforced respectively in two parts 34 and 35, having a semi-cylindrical shape and fixed on the flaps. Between the parts 34 and 35, on the flaps 10, two more parts 36 are placed, having the same shape and fitted with pairs intermediate ttyrey 37, coaxially with the pins 32 and 33. In the racks 7 there are four slots 38-41, which include, respectively, the pins 32, 33 and 37. Inside these nests are welded parts 5 42, each of which interacts with one of the pins 32-34. In the slots 38 and 41 are provided on one piece 42. When it is necessary to strengthen the sash Yuna rack 7, the flap 10 is supplied to the rack 7 so that each from pins 32-34, it was opposite one of the parts 42 (Fig. 7). Then, the flap 10 is set at the level at which it should be after being fixed on the rack 7. At the same time, all the pins are inserted into the slots, where the corresponding parts 42 direct the pins, while the flap 10 is moved to the rack 7 so that from the pins, the position indicated in FIG. 8, where the part 36 is located in the semicircular part of the part 42, having a diameter equal to the diameter of the pins, is occupied. Thus, the common pin hinge is in the correct position, allowing the flap 10 to rotate. In conclusion, it is enough to first screw the bolt 43 into the corner fitting 3, the end of which forms the pin 44 entering the blind hole 45, made in the part 35 and coaxial with the pins 32-34, the bolt 43 is mounted in fittings 3 with the ability to move from the position in which pin 44 is entirely inside fitting 3, to from the position in which pin 44 is entirely inside fitting 3, to the position in which pin 44 enters from the position in which pin 44 is entirely inside fitting 3, to into the hole 45. After that, the roof 2 is lowered so that the pin 32 entered a blind hole 46 made in the fitting 4. From this moment on, the flap 10 can be rotated from the open position to the closed position. Sealing pads 47 are provided to ensure the tightness of the closed flaps 10. The flaps 10 are held in the closed position and the impact on the sealing gaskets 47 is provided by four rods 48 reinforced two on each flap 10 rotatably. At each end of the rods 48 there is a hook designed to interact with the rings 49. fixed on the base 1 and the roof 2. As a result of the rotation of the rods 48 around their own axis, the hooks enter the rings 49 and the rods 48 fix the corresponding flap 10 in the closed position. FIGS. 12 and 13 show how the screw means for connecting the walls 5 and 6 to each other can be replaced by a rod 18, one end of which is T-shaped, and the other end is threaded with a nut 19, which is rotatably mounted and axially movement from the inside of the wall 6 and the interaction of the T-shaped end with a saddle-shaped element 2Q mounted on the wall 5. The rod 18 is placed with a gap inside the cylindrical guide 50 in which it can move longitudinally c. The guide 50 is mounted so that it has the ability to pivot at one end of the lever 51, the other. The end of which is mounted on the pin 52, mounted rotatably in the wall 6. At the end of the pin 52, visible from the inside of the assembled container, there is a six-sided hole 53 in which may enter the end of the hex key 54 in order to rotate the pin 52. In the working position of the described connecting elements (represented by a solid line in Fig. 12 and. 13) the T-shaped end of the rod 18 is in mesh with the saddle-shaped element 20, and the nut 19 rests on the end of the guide 50. If you need to release the T-shaped the end of the rod 18 and set it to the position represented by the т thru-dotted line, in which the T-shaped end of the rod 18 does not interact with the saddle-shaped element 20, it is enough to turn the lever 51 a quarter of a turn using the key 54 presented on f g, 13 dot-dash line. In order to make this movement possible, the axis of the pin 52 is slightly displaced relative to the axis of the rod 18. To prevent the T-shaped end of the rod 18 from being accidentally released when it is in engagement with the saddle-shaped element 20, a lock 55 is provided that is rotatably mounted in the vicinity of the pin 52 and having an opening 56 identical to the hole 53. The hole 56 is intended to insert the key 54 and to turn the lock 55. The lock 55 has a cylindrical part 57 which can contact a recess 58 in the pin ( 52, in the form of a flaton, the lock 55 prevents any rotation of the pin 52 and the lever 51. If the lock 55 is rotated half a turn clockwise, the cut part 59 of the peripheral surface of the lock 55 is set opposite the notch 58, thereby freeing pin 52 and lever 51 are given. When returning the empty container, all its constituent elements are dismantled and laid on the base 1 in the order shown in FIG. 2. The side walls 5 are placed on the base 1, the flaps 10 and the rear wall 6 are laid on top, and then the roof 2 is installed, which with its corner fittings 4 rests on the corner fittings 3 of the base 1f and the plugs 11 of the fittings 3 enter into the grooves similar to the slots 26 of the racks 7 and 8, formed in fittings 4. Then the tool 12 brings the axis 12 to the working position. In this case, the roof 2 is connected to the base 1 in the manner in which the side walls 5 are connected to the base 1. Between the roof 2 and the base 1, there is a space sufficient to accommodate two side walls 5, the rear wall 6, two flaps 10. The container thus folded forms a block consisting of elements of the container stacked one upon another. The blocks, each of which represents a folded container, can be joined together, for example, in groups of six using hooks 21 and protrusions 22, with the hooks being locked using swivel locks 23. A package of six containers has the same dimensions as one container in working position. Such a container package can be easily processed using a crane or any other truck that catches it by the openings of the corner fittings 4 of the upper container. The invention provides convenience and reliability of operation due to In addition, when folded, the volume of each container is 1/6 of its volume in the working position, which, when returning empty containers, significantly reduces transportation costs. When the container is in the working position, there is not a single protruding part inside it capable of interfering with stowage of cargo in the container. The upper surface of the base has one level, due to which the loads can be freely rolled or slid into the container.
权利要求:
Claims (4) [1] Invention Formula t one . A collapsible container containing a base and a roof with corner fittings, side and rear corrugated walls with vertical posts, a front wall made in the form of a double-wing door, the sash of which is schematically mounted on the uprights of the side walls equal to the overall thickness of the walls interconnected with the base and the roof by means of detachable joints, the constituent elements of which are placed on the base and the roof are interoperable in the folded position of the container, characterized in that in order to increase the reliability of the container, detachable connections of the side walls with the base and roof are formed by means of vertical posts installed in the fittings and at the ends with the possibility of the forks and pivoting axles interacting with each other. a nest for insertion from the outer side of the container of the tool for turning the axis, while the container is equipped with devices that exclude the rotation of the axes in the working position, made in the form of plates with cutouts for the area of the bald lines of the axles hinged to the inner surfaces of the walls, [2] 2. The container according to claim 1, characterized in that each detachable connection of the side walls with the bridge is made as a screw placed inside the container, fixed with the possibility of movement in a horizontal tubular element mounted in the back wall rack, made in the side wall rack, a plate is installed on the inner surface of the back wall to limit the screw travel, and coaxial holes are made in its head, plate and wall for insertion from the outside of the container and strument and turn the bolts. [3] 3. The container according to claim. Characterized in that the detachable connection of the walls between them is made in the form of a rod, one end of which is T-shaped and the other has a thread with a nut, while the rod is installed with the possibility of rotation and axial movement from the inner side of one wall and the T-shaped end with a saddle-shaped element fixed on the inner side of the adjacent walls. [4] 4. The container according to Claim 1, characterized in that the roof and the base are externally provided with hooks and protrusions for interconnecting the folded containers. 25 39 40 41 sixteen 45 eleven FIG I R yr t Si 6 91 SOUVfi.l Fig 7 nineteen 3ff Fm ten 18 FIG. 1b IB FIG. It
类似技术:
公开号 | 公开日 | 专利标题 SU1547705A3|1990-02-28|Collapsible reusable container US3966285A|1976-06-29|Collapsible shipping container US3799384A|1974-03-26|Collapsible shipping container US4108326A|1978-08-22|Adapter frames to extend length of intermodal containers US4214669A|1980-07-29|Cargo container US4779751A|1988-10-25|Knock-down containers, container fastening system and elements thereof EP1796990B1|2011-01-26|A large collapsible container with central hinges in side covers EP0366780B1|1993-03-17|Collapsible pallet cage US6533122B1|2003-03-18|Shipping container US9718611B2|2017-08-01|Collapsible container for consolidated load transportation and associated method for collapsing EP0258320A1|1988-03-09|Cargo containers PT1224127E|2011-04-06|Transport and storage system EP0431012A1|1991-06-12|Collapsible shipping container. CN109896183B|2020-05-22|Front corner post of freight container and front wall thereof CA2091824A1|1993-09-19|Freight container EP0495043A1|1992-07-22|Improvements in containers of the collapsible type. US4618068A|1986-10-21|Method and apparatus for shipping and storing cargo US4546896A|1985-10-15|Collapsible shipping container US4360115A|1982-11-23|Sectional multi-purpose cargo container GB2094272A|1982-09-15|A collapsible container US4546945A|1985-10-15|Freight-carrying platforms KR20060046708A|2006-05-17|Foldable freight container US20170247184A1|2017-08-31|Method and apparatus for collapsible container US5489171A|1996-02-06|Vehicle transporter RU2762599C2|2021-12-21|Folded frame for containers and hinged element for it
同族专利:
公开号 | 公开日 KR840000422A|1984-02-22| WO1983000317A1|1983-02-03| AU556979B2|1986-11-27| CS259857B2|1988-11-15| FI69290C|1986-01-10| HU194117B|1988-01-28| KR880002644B1|1988-12-08| JPS58501114A|1983-07-14| DE3270094D1|1986-04-30| JPH0210031B2|1990-03-06| DK152987B|1988-06-06| IL66315A|1985-09-29| DK128383A|1983-03-21| DK128383D0|1983-03-21| IN159898B|1987-06-13| RO82850B|1985-03-01| YU157082A|1986-04-30| DD202520A5|1983-09-21| ES274589U|1984-04-16| IE53266B1|1988-09-28| AT18749T|1986-04-15| AU8585682A|1983-03-17| FI69290B|1985-09-30| BR8207794A|1983-06-21| ES274589Y|1984-12-01| IL66315D0|1982-11-30| MX156929A|1988-10-17| US4506798A|1985-03-26| FI830900A0|1983-03-17| FR2509695A1|1983-01-21| CA1193986A|1985-09-24| IE821727L|1983-01-20| EP0070800B1|1986-03-26| MA19543A1|1983-04-01| PL237550A1|1983-03-14| EP0070800A1|1983-01-26| ZA824925B|1983-04-27| RO82850A|1985-02-25| YU44840B|1991-04-30| PL129998B1|1984-06-30| DK152987C|1988-10-24|
引用文献:
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法律状态:
优先权:
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申请号 | 申请日 | 专利标题 FR8114107A|FR2509695A1|1981-07-20|1981-07-20|CONTAINER ISO DEMONTABLE-FOLDING WITH POSSIBILITY OF SOFT TANK| 相关专利
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