An urn storage rack for stably storing urns
By introducing a locking and clamping mechanism into the urn storage rack, combined with the pressing and air extraction mechanism, the problem of easy damage of the urn is solved and the stable storage of the urn is achieved.
Patent Information
- Application Number
- CN202210702834.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-21
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2042-06-21
AI Technical Summary
Existing urn storage racks may easily cause the urn to move or fall off when accidentally bumped, resulting in damage.
The design includes a vertical frame, support plate, storage box, locking mechanism and clamping mechanism, and the locking mechanism of the storage box can limit the urn by opening and closing doors and clamping mechanism. The urn is sturdy and the air extraction mechanism is combined with the pressing mechanism and the exhaust mechanism to stabilize the urn to reduce the damage caused by collision.
Effectively prevent the urn from moving or falling off in the storage rack due to collision, improve storage stability and reduce the risk of urn breakage.
Smart Images

Figure CN114991573B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a storage rack, and particularly to an urn storage rack for stably storing urns. Background Art
[0002] Currently, in China's funeral industry, project products focusing on urn storage racks and boxes are beneficial for saving land and environmental protection.
[0003] Patent application CN203742244U discloses a combined urn storage rack, including a vertical plate, a back plate, a door leaf, a support plate, and a top cover. There are hooks formed by stamping on the vertical plate, and openings for installing the corresponding hooks on the support plate. The present invention manufactures the urn storage rack using a fully automatic production line, which can improve the accuracy of the product and the flatness of the appearance, greatly improve the product quality and output, reduce the pressure of labor shortage and employment difficulty of the enterprise itself, and while designing the product structure, meet the requirement of producing products of different specifications and several styles on one production line at the same time. The angle of the curled edge is both standard and the hole pitch is accurate. When installing on site, there is no need to use an electric drill to wash the holes and level them, which is both labor-saving and time-saving. This product uses hooks inserted into the bayonet to connect naturally. The hooks have a large stress area, and the storage rack is firm and the installation is convenient and fast. Although the device is firm and the installation is convenient and fast, when the urn is placed in the storage rack, if the storage rack is accidentally touched, it is easy for the urn to move or fall, resulting in damage to the urn.
[0004] In order to solve the above problems, we propose an urn storage rack for stably storing urns, which is not easy to cause damage. Summary of the Invention
[0005] In order to overcome the drawback that if the storage rack is accidentally touched, it is easy for the urn to move or fall, resulting in damage to the urn, the present invention provides an urn storage rack for stably storing urns, which is not easy to cause damage.
[0006] The present invention is achieved through the following technical means:
[0007] An urn storage rack for stably storing urns includes a vertical rack, a support plate, a storage box, a locking mechanism, and a clamping mechanism. Support plates are fixedly connected to the left and right sides of the lower part of the vertical rack. Four storage boxes for placing urns are fixedly connected at intervals inside the vertical rack. A locking mechanism for locking the door is provided between the vertical rack and the storage box, and a clamping mechanism for limiting the urn is provided between the locking mechanism and the storage box.
[0008] In addition, it is particularly preferred that the locking mechanism includes a first fixed rod, a rotating door panel, a vertical plate, a sliding rod, a sliding rod, a first return spring, a bow plate and a hook plate, the first fixed rod is symmetrically fixed to the left and middle of the front side of the upright frame, the middle part of the first fixed rod is rotatably provided with a rotating door panel, the right part of the rear side surface of the rotating door panel is fixed with a vertical plate, the right side surface of the vertical plate is symmetrically fixed with a sliding rod, a sliding rod is slidably provided between the upper and lower sliding rods, a first return spring is wound around the sliding rod, one end of the first return spring is connected to the sliding rod, and the other end of the first return spring is connected to the vertical plate, a bow plate is slidably provided in the middle of the right part of the rotating door panel, the adjacent bow plates are fixedly connected to the sliding rod, a hook plate is fixedly connected to the right side position in the front of the storage box, and the hook plate contacts the sliding rod.
[0009] In addition, it is particularly preferred that the clamping mechanism includes a first rotating shaft, a column gear, an arc-shaped rack, a second rotating shaft, a first transmission assembly, a third rotating shaft, a second transmission assembly, a rotating plate, a convex rod, a fixed seat, a sliding plate, a slotted plate, a sliding column, a pressure plate and a force storage spring, a first rotating shaft is rotatably provided at the front upper left side of the storage box, a column gear is fixedly connected to the upper portion of the first rotating shaft, an arc-shaped rack is fixedly connected to the upper left side of the rotating door panel, the arc-shaped rack is meshed with the column gear, a second rotating shaft is rotatably provided at the middle upper left side of the storage box, a first transmission assembly is connected between the upper portion of the second rotating shaft and the upper portion of the first rotating shaft, the first transmission assembly consists of two pulleys and a belt, one pulley is installed on the upper portion of the second rotating shaft, and the other pulley is installed on the upper portion of the first rotating shaft, the belt is wound around the two pulleys, and a third rotating shaft is rotatably provided at the middle upper right side of the storage box The transmission gear of the present invention is connected with the transmission gear of the present invention one by one, and the transmission gear of the present invention is connected with the transmission gear of the present invention to the transmission gear of the present invention.
[0010] In addition, it is particularly preferred that a pressing mechanism for further limiting the urn is further included. The pressing mechanism includes a fourth rotating shaft, a third transmission assembly, a mounting seat, a fifth rotating shaft, bevel gears, a rotating mounting block, a scroll spring, a mounting plate, and a rubber pad. The fourth rotating shaft is rotatably provided at the rear of the left side surface inside the storage box. A third transmission assembly is connected between the upper part of the fourth rotating shaft and the upper part of the second rotating shaft. The third transmission assembly is composed of two belt pulleys and a belt. One belt pulley is mounted on the upper part of the fourth rotating shaft, and the other belt pulley is mounted on the upper part of the second rotating shaft. The belt is wound between the two belt pulleys. A mounting seat is fixedly connected to the middle and lower part of the rear side surface inside the storage box. The fifth rotating shaft is rotatably provided at the front of the mounting seat. Bevel gears are fixedly connected to the left part of the fifth rotating shaft and the lower part of the fourth rotating shaft, and two adjacent bevel gears mesh with each other. The right part of the fifth rotating shaft is rotatably provided with a rotating mounting block. A scroll spring is wound between the lower part of the left side surface of the rotating mounting block and the right part of the fifth rotating shaft. The front side of the upper part of the rotating mounting block is fixedly connected with a mounting plate, and a rubber pad for further limiting the urn is sleeved on the mounting plate.
[0011] In addition, it is particularly preferred that an air extraction mechanism for reducing the internal pressure of the storage box is further included. The air extraction mechanism includes a mounting groove plate, a limiting frame, a connecting plate, a piston plate, a fixing plate, a second return spring, an H-shaped plate, a grip plate, a top plate, a third return spring, a pulling plate, and an inclined plate. Mounting groove plates are fixedly connected symmetrically left and right on both the upper and lower sides of the vertical frame. A limiting frame is fixedly connected to the rear of the mounting groove plate. Two air guide ports are provided at the rear of the limiting frame, and the air guide ports are communicated with the storage box. A connecting plate is slidably provided in the middle of the front part of the limiting frame. A piston plate for air extraction is fixedly connected to the rear side surface of the connecting plate, and the piston plate is located inside the limiting frame. A fixing plate is fixedly connected to the front middle side position of the inner bottom of the mounting groove plate. An H-shaped plate is fixedly connected to the front side surface of the connecting plate. Second return springs are fixedly connected symmetrically left and right between the rear side surface of the adjacent H-shaped plate and the rear side surface of the fixing plate. A grip plate is fixedly connected to the outer front side surface of the H-shaped plate. Top plates are slidably provided on both the left and right sides of the grip plate, and the top plates are in contact with the mounting groove plate. A third return spring is provided between the inner side surface of the top plate and the inside of the grip plate. A pulling plate is slidably provided in the front part of the H-shaped plate. Inclined plates are fixedly connected symmetrically left and right to the front side surface of the pulling plate, and the inclined plates are in contact with the top plates.
[0012] In addition, it is particularly preferred that a storage mechanism for placing sacrificial offerings is further included. The storage mechanism includes a C-shaped groove plate and a storage drawer. The C-shaped groove plate is slidably provided on the upper part of the storage box, and a storage drawer for placing sacrificial offerings is fixedly connected to the inner side surface of the C-shaped groove plate.
[0013] In addition, it is particularly preferred that a photo placement mechanism for facilitating the placement of photos is further included. The photo placement mechanism includes a second fixing rod, a rotating limiting plate, and a limiting piece. The second fixing rod is fixedly connected to the lower part of the front side surface of the rotating door panel. The rotating limiting plate for facilitating the placement of photos is rotatably provided in the middle of the second fixing rod, and a limiting piece is fixedly connected to the middle and lower part of the front side surface of the rotating limiting plate.
[0014] In addition, it is particularly preferred that both the left and right sides of the rotation limit plate have damping.
[0015] The remarkable progress of the present invention lies in:
[0016] 1. The present invention places the urn in the storage box, pulls the rotating door panel to swing backward and reset. The backward swing of the rotating door panel drives the column gear to rotate forward and reset through the arc-shaped rack, and the pressing plate also moves inward to reset and clamp and limit the urn. In this way, the urn can be stably stored and is not easily damaged.
[0017] 2. Under the action of the pressing mechanism of the present invention, the rotating mounting block swings forward to drive the mounting plate to move forward. The forward movement of the mounting plate drives the rubber pad to move forward. The forward movement of the rubber pad contacts the urn and presses it down. In this way, the urn can be further limited.
[0018] 3. Under the action of the storage mechanism of the present invention, the sacrificial offerings for worship can be placed in the storage drawer, and then pulling the storage drawer backward to reset is enough. In this way, it is convenient for people to place the sacrificial offerings. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 is a three-dimensional structure schematic diagram of the present invention.
[0020] Figure 2 is a partial three-dimensional structure schematic diagram of the present invention.
[0021] Figure 3 is a partial cross-sectional structure schematic diagram of the present invention.
[0022] Figure 4 is a cross-sectional structure schematic diagram of the locking mechanism of the present invention.
[0023] Figure 5 is a partial cross-sectional structure schematic diagram of the locking mechanism of the present invention.
[0024] Figure 6 is a partial three-dimensional structure schematic diagram of the clamping mechanism of the present invention.
[0025] Figure 7 is a first partial cross-sectional structure schematic diagram of the clamping mechanism of the present invention.
[0026] Figure 8 is a second partial cross-sectional structure schematic diagram of the clamping mechanism of the present invention.
[0027] Figure 9 is a first partial cross-sectional structure schematic diagram of the pressing mechanism of the present invention.
[0028] Figure 10 is a second partial cross-sectional structure schematic diagram of the pressing mechanism of the present invention.
[0029] Figure 11 This is the first partial sectional structure schematic diagram of the air extraction mechanism of the present invention.
[0030] Figure 12 This is the enlarged schematic diagram of part A of the present invention.
[0031] Figure 13 This is the second partial sectional structure schematic diagram of the air extraction mechanism of the present invention.
[0032] Figure 14 This is the partial sectional structure schematic diagram of the storage mechanism of the present invention.
[0033] Figure 15 This is the partial sectional structure schematic diagram of the photo placing mechanism of the present invention.
[0034] The meanings of the reference numerals in the figure: 1 - vertical frame, 2 - support plate, 3 - storage box, 4 - locking mechanism, 41 - first fixing rod, 42 - rotating door panel, 43 - vertical plate, 44 - sliding rod, 45 - sliding bar, 46 - first return spring, 47 - bow-shaped plate, 48 - hook plate, 5 - clamping mechanism, 51 - first rotating shaft, 52 - column gear, 53 - arc rack, 54 - second rotating shaft, 55 - first transmission component, 56 - third rotating shaft, 57 - second transmission component, 58 - rotating plate, 59 - convex rod, 510 - fixing seat, 511 - sliding plate, 512 - one-word groove plate, 513 - sliding column, 514 - pressing plate, 515 - energy storage spring, 6 - material pressing mechanism, 61 - fourth rotating shaft, 62 - third transmission component, 63 - mounting seat, 64 - fifth rotating shaft, 65 - bevel gear, 66 - rotating mounting block, 67 - scroll spring, 68 - mounting plate, 69 - rubber pad, 7 - air extraction mechanism, 71 - mounting groove plate, 72 - limiting frame, 73 - connecting plate, 74 - piston plate, 75 - fixing plate, 76 - second return spring, 77 - H-shaped plate, 78 - holding plate, 79 - top plate, 710 - third return spring, 711 - pulling plate, 712 - inclined plate, 8 - storage mechanism, 81 - C-shaped groove plate, 82 - storage drawer, 9 - photo placing mechanism, 91 - second fixing rod, 92 - rotating limiting plate, 93 - limiting piece. Detailed implementation manners
[0035] The present invention will be further described below in conjunction with the accompanying drawings of the specification, and embodiments of the present invention will be given in conjunction with the accompanying drawings of the specification.
[0036] Embodiment 1
[0037] An urn storage rack for stably storing an urn, as Figures 1-8As shown in the figure, it includes a vertical frame 1, a support plate 2, a storage box 3, a locking mechanism 4, and a clamping mechanism 5. On the left and right sides of the lower part of the vertical frame 1, there are fixedly connected support plates 2. Inside the vertical frame 1, there are four storage boxes 3 fixedly connected at intervals. The storage boxes 3 can be used to place urns. A locking mechanism 4 is provided between the vertical frame 1 and the storage boxes 3. The locking mechanism 4 can be used to open and close the doors of the storage boxes 3. A clamping mechanism 5 is provided between the locking mechanism 4 and the storage boxes 3. The clamping mechanism 5 can be used to limit the urns.
[0038] As Figures 1-5 shown, the locking mechanism 4 includes a first fixed rod 41, a rotating door panel 42, a vertical plate 43, a sliding rod 44, a sliding bar 45, a first return spring 46, a bow-shaped plate 47, and a hook plate 48. On the left and in the middle of the front side of the vertical frame 1, there are symmetrically fixedly connected first fixed rods 41 up and down. In the middle of the first fixed rod 41, there is a rotatably arranged rotating door panel 42. On the right part of the rear side of the rotating door panel 42, there is a fixedly connected vertical plate 43. On the right side of the vertical plate 43, there are symmetrically fixedly connected sliding rods 44 up and down. Between the upper and lower sliding rods 44, there is a slidably arranged sliding bar 45. A first return spring 46 is wound around the sliding rod 44. One end of the first return spring 46 is connected to the sliding bar 45, and the other end of the first return spring 46 is connected to the vertical plate 43. In the middle of the right part of the rotating door panel 42, there is a slidably arranged bow-shaped plate 47. The bow-shaped plate 47 is fixedly connected to the adjacent sliding bar 45. At the middle right position of the front part of each storage box 3, there is a fixedly connected hook plate 48. The hook plate 48 is in contact with the sliding bar 45.
[0039] As Figure 2 、 Figure 3 、 Figure 6 、 Figure 7 and Figure 8As shown, the clamping mechanism 5 includes a first rotating shaft 51, a column gear 52, an arc-shaped rack 53, a second rotating shaft 54, a first transmission assembly 55, a third rotating shaft 56, a second transmission assembly 57, a rotating plate 58, a protruding rod 59, a fixed seat 510, a sliding plate 511, a slotted plate 512, a sliding column 513, a pressing plate 514 and a force storage spring 515. The first rotating shaft 51 is rotatably provided at the upper front side of the left part of each storage box 3. The upper part of the first rotating shaft 51 is fixedly connected to the column gear 52. The upper left part of the rotating door panel 42 is A curved rack 53 is fixedly connected, and the curved rack 53 is meshed with the column gear 52. A second rotating shaft 54 is rotatably provided at the upper middle position of the left part of the storage box 3. A first transmission assembly 55 is connected between the upper part of the second rotating shaft 54 and the upper part of the first rotating shaft 51. The first transmission assembly 55 consists of two pulleys and a belt. One pulley is installed on the upper part of the second rotating shaft 54, and the other pulley is installed on the upper part of the first rotating shaft 51. The belt is wound between the two pulleys. A third rotating shaft 56 is rotatably provided at the upper middle position of the right part of the storage box 3. A second transmission assembly 57 is connected between the upper part of the rotating shaft 56 and the upper part of the second rotating shaft 54. The second transmission assembly 57 is composed of two pulleys and a belt. One pulley is installed on the upper part of the second rotating shaft 54, and the other pulley is installed on the upper part of the third rotating shaft 56. The belt is wound between the two pulleys. A rotating plate 58 is fixedly connected to the lower part of the second rotating shaft 54 and the lower part of the third rotating shaft 56. A protruding rod 59 is fixedly connected to the inner side of the bottom of the rotating plate 58. A fixed seat 510 is fixedly connected to the middle of the bottom of the storage box 3 symmetrically. The fixed seat 510 is fixedly connected to the upper part of the fixed seat 510. A sliding plate 511 is provided in a sliding manner, a slotted plate 512 is fixedly connected to the middle of the upper part of the sliding plate 511, the slotted plate 512 is sleeved on the adjacent convex rod 59, the slotted plate 512 is slidably connected to the convex rod 59, and sliding columns 513 are symmetrically slidably provided on the upper and lower sides of the sliding plate 511, a pressure plate 514 is fixedly connected between the inner ends of the four sliding columns 513, a force storage spring 515 is wound around the sliding column 513, one end of the force storage spring 515 is connected to the pressure plate 514, and the other end of the force storage spring 515 is connected to the sliding plate 511.
[0040] First, the operator pulls the bow-shaped plate 47 to move leftward. The leftward movement of the bow-shaped plate 47 drives the sliding rod 45 to move leftward. The first return spring 46 is compressed. The leftward movement of the sliding rod 45 disengages from the hook plate 48, and then the rotating door panel 42 is pulled to swing forward. Subsequently, the bow-shaped plate 47 is released. Due to the action of the first return spring 46, the bow-shaped plate 47 drives the sliding rod 45 to move rightward and reset. At the same time, the forward swing of the rotating door panel 42 drives the arc-shaped rack 53 to rotate forward. The forward rotation of the arc-shaped rack 53 drives the column gear 52 to rotate backward. The backward rotation of the column gear 52 drives the first rotating shaft 51 to rotate backward. The backward rotation of the first rotating shaft 51 drives the first transmission assembly 55 to rotate backward. The backward rotation of the first transmission assembly 55 drives the second rotating shaft 54 to rotate backward. The backward rotation of the second rotating shaft 54 drives the left rotating plate 58 to rotate backward. The backward rotation of the left rotating plate 58 drives the left one-word groove plate 512 to move leftward. The leftward movement of the left one-word groove plate 512 drives the left sliding plate 511 to move leftward. The leftward movement of the left sliding plate 511 drives the left sliding column 513 to move leftward. The leftward movement of the left sliding column 513 drives the left pressing plate 514 to move leftward. And the backward rotation of the second rotating shaft 54 also drives the second transmission assembly 57 to rotate backward. The backward rotation of the second transmission assembly 57 drives the third rotating shaft 56 to rotate backward. The backward rotation of the third rotating shaft 56 drives the right rotating plate 58 to rotate backward. Thus, the pressing plate 514 on the right also moves rightward. Subsequently, people place the urn in the storage box 3, pull the rotating door panel 42 to swing backward and reset. The backward swing of the rotating door panel 42 drives the column gear 52 to rotate forward and reset through the arc-shaped rack 53. The pressing plate 514 also moves inward and resets to clamp and limit the urn. The energy storage spring 515 plays a buffering role. At the same time, the backward swing of the rotating door panel 42 drives the bow-shaped plate 47 to move backward. The backward movement of the bow-shaped plate 47 drives the sliding rod 45 to move backward. The backward movement of the sliding rod 45 contacts the hook plate 48. Due to the action of the first return spring 46, the sliding rod 45 slides over the hook plate 48 during its backward movement, and the hook plate 48 limits the sliding rod 45.
[0041] Embodiment 2
[0042] Based on Embodiment 1, as Figure 2 、 Figure 3 、 Figure 9 and Figure 10As shown in the figure, it further includes a blanking mechanism 6. The blanking mechanism 6 includes a fourth rotating shaft 61, a third transmission component 62, a mounting seat 63, a fifth rotating shaft 64, bevel gears 65, a rotating mounting block 66, a scroll spring 67, a mounting plate 68, and a rubber pad 69. A fourth rotating shaft 61 is rotatably provided at the rear part of the left inner side of each storage box 3. A third transmission component 62 is connected between the upper part of the fourth rotating shaft 61 and the upper part of the second rotating shaft 54. The third transmission component 62 is composed of two pulleys and a belt. One pulley is installed on the upper part of the fourth rotating shaft 61, and the other pulley is installed on the upper part of the second rotating shaft 54. The belt is wound between the two pulleys. A mounting seat 63 is fixedly connected to the middle and lower part of the rear inner side of the storage box 3. A fifth rotating shaft 64 is rotatably provided at the front part of the mounting seat 63. Bevel gears 65 are fixedly connected to the left part of the fifth rotating shaft 64 and the lower part of the fourth rotating shaft 61. Adjacent bevel gears 65 mesh with each other. A rotating mounting block 66 is rotatably provided on the right part of the fifth rotating shaft 64. A scroll spring 67 is wound between the lower part of the left side surface of the rotating mounting block 66 and the right part of the fifth rotating shaft 64. The front side of the upper part of the rotating mounting block 66 is fixedly connected to a mounting plate 68. A rubber pad 69 is sleeved on the mounting plate 68. The rubber pad 69 can further limit the position of the urn.
[0043] As Figure 1 , Figure 2 , Figure 11 , Figure 12 and Figure 13 shown in the figure, it further includes an air extraction mechanism 7. The air extraction mechanism 7 includes a mounting groove plate 71, a limiting frame 72, a connecting plate 73, a piston plate 74, a fixing plate 75, a second return spring 76, an H-shaped plate 77, a grip plate 78, a top plate 79, a third return spring 710, a pulling plate 711, and an inclined plate 712. Mounting groove plates 71 are fixedly connected to the upper and lower sides of the vertical frame 1 symmetrically left and right. The mounting groove plates 71 are located below the corresponding storage boxes 3. A limiting frame 72 is fixedly connected to the rear part of the mounting groove plate 71. There are two air guide ports at the rear part of the limiting frame 72. The air guide ports are communicated with the storage box 3. A connecting plate 73 is slidably provided in the middle of the front part of the limiting frame 72. A piston plate 74 is fixedly connected to the rear side surface of the connecting plate 73. When the piston plate 74 moves forward, it extracts air from the storage box 3 through the air guide port of the limiting frame 72, thereby reducing the internal air pressure of the storage box 3. The piston plate 74 is located inside the limiting frame 72. A fixing plate 75 is fixedly connected to the front middle side of the inner bottom of the mounting groove plate 71. An H-shaped plate 77 is fixedly connected to the front side surface of the connecting plate 73. Second return springs 76 are fixedly connected symmetrically left and right between the rear side surface of the adjacent H-shaped plates 77 and the rear side surface of the fixing plate 75. A grip plate 78 is fixedly connected to the outer front side surface of the H-shaped plate 77. Top plates 79 are slidably provided on both the left and right sides of the grip plate 78. The top plates 79 are in contact with the mounting groove plate 71. A third return spring 710 is provided between the inner side surface of the top plate 79 and the inside of the grip plate 78. A pulling plate 711 is slidably provided at the front part of the H-shaped plate 77. Inclined plates 712 are fixedly connected symmetrically left and right to the front side surface of the pulling plate 711. The inclined plates 712 are in contact with the top plates 79.
[0044] As Figure 2 and Figure 14 shown, it further includes a storage mechanism 8. The storage mechanism 8 includes a C-shaped groove plate 81 and a storage drawer 82. A C-shaped groove plate 81 is slidably provided on the upper part of each storage box 3. A storage drawer 82 is fixedly connected to the inner side surface of the C-shaped groove plate 81, and an appropriate amount of sacrificial offerings can be placed in the storage drawer 82.
[0045] As Figure 1 、 Figure 2 and Figure 15 shown, it further includes a photo placement mechanism 9. The photo placement mechanism 9 includes a second fixing rod 91, a rotating limiting plate 92, and a limiting piece 93. A second fixing rod 91 is fixedly connected to the lower part of the front side surface of the rotating door panel 42. A rotating limiting plate 92 is rotatably provided in the middle of the second fixing rod 91. There is damping on both the left and right sides of the rotating limiting plate 92. When the rotating limiting plate 92 swings backward and contacts the rotating door panel 42, the photo can be clamped. A limiting piece 93 is fixedly connected to the middle and lower part of the front side surface of the rotating limiting plate 92.
[0046] When the urn is placed in the storage box 3, pull the rotating door panel 42 to swing backward and reset. The second rotating shaft 54 rotates forward to drive the third transmission component 62 to rotate forward. The third transmission component 62 rotates forward to drive the fourth rotating shaft 61 to rotate forward. The fourth rotating shaft 61 rotates forward to drive the fifth rotating shaft 64 to rotate backward through the bevel gear 65. The fifth rotating shaft 64 rotates backward to drive the volute spring 67 to rotate backward. The volute spring 67 rotates backward to drive the rotating mounting block 66 to swing forward. The rotating mounting block 66 swings forward to drive the mounting plate 68 to move forward. The mounting plate 68 moves forward to drive the rubber pad 69 to move forward. The rubber pad 69 moves forward to contact and press the urn, and the urn also limits the rubber pad 69. Furthermore, the fifth rotating shaft 64 continues to rotate backward, causing the volute spring 67 to be compressed. Similarly, when people pull the rotating door panel 42 to swing forward, the second rotating shaft 54 drives the fourth rotating shaft 61 to rotate backward through the third transmission component 62. The fourth rotating shaft 61 rotates backward to drive the fifth rotating shaft 64 to rotate forward through the bevel gear 65. The volute spring 67 slowly resets. When the volute spring 67 is completely reset, the fifth rotating shaft 64 continues to rotate forward to drive the mounting block 66 to swing backward through the volute spring 67, and the rubber pad 69 also swings backward to separate from the urn, and people can take out the urn. In this way, the urn can be further limited.
[0047] Initially, the installation groove plate 71 presses against the top plate 79, and the third return spring 710 is in a compressed state. When the urn is placed in the storage box 3, the H-shaped plate 77 is pulled to drive the connecting plate 73 to move forward, the second return spring 76 is compressed. The forward movement of the connecting plate 73 drives the piston plate 74 to move forward. The forward movement of the piston plate 74 drives the air inlet of the storage box 3 to be evacuated through the limiting frame 72, thereby reducing the internal air pressure of the storage box 3. At the same time, the forward movement of the H-shaped plate 77 also drives the grip plate 78 to move forward. The forward movement of the grip plate 78 drives the top plate 79 to move forward. The forward movement of the top plate 79 disengages from the installation groove plate 71. Due to the action of the third return spring 710, the top plate 79 slides forward from the front side of the installation groove plate 71, and the installation groove plate 71 limits the top plate 79, and the piston plate 74 is also limited. When the urn is taken out of the storage box 3, first pull the pull plate 711 to move forward. The forward movement of the pull plate 711 drives the inclined plate 712 to move forward. The inclined plate 712 contacts the top plate 79 when it moves forward, and the inclined plate 712 causes the top plate 79 to move inward, and the third return spring 710 is compressed. Then pull the H-shaped plate 77 to drive the piston plate 74 to move backward and reset through the connecting plate 73, and the second return spring 76 plays an assisting role. Then release the pull plate 711. Due to the action of the third return spring 710, the top plate 79 also moves outward and resets, and the outward movement of the top plate 79 drives the pull plate 711 to move backward and reset through the inclined plate 712. In this way, the internal air pressure of the storage box 3 can be reduced.
[0048] When people use this device, they can pull the storage drawer 82 forward through the C-shaped groove plate 81, then place the sacrificial objects for worship in the storage drawer 82, and then pull the storage drawer 82 backward to reset. In this way, it is convenient for people to place the sacrificial objects.
[0049] When people use this device, pull the rotating limit plate 92 to swing forward. The limit piece 93 prevents the rotating limit plate 92 from swinging forward too much. Then place the photo in the rotating limit plate 92, and then pull the rotating limit plate 92 to swing backward. The backward swing of the rotating limit plate 92 contacts the rotating door panel 42. Due to the damping on both left and right sides of the rotating limit plate 92, the rotating limit plate 92 can be stuck on the rotating door panel 42 to limit the photo. In this way, it is convenient for people to place the photo.
[0050] Finally, it is necessary to note that the above content is only used to help understand the technical solution of the present invention and should not be construed as a limitation on the protection scope of the present invention; non-essential improvements and adjustments made by those skilled in the art based on the above content of the present invention all fall within the scope of protection required by the present invention.
Claims
1. An urn storage rack for stably storing urns, comprising an upright frame (1), a support plate (2) and a storage box (3). The support plates (2) are fixedly connected to the left and right sides of the lower part of the upright frame (1), and four storage boxes (3) for placing urns are fixedly connected at intervals inside the upright frame (1). It is characterized in that, It further includes a locking mechanism (4) and a clamping mechanism (5). A locking mechanism (4) for locking the door is provided between the vertical frame (1) and the storage box (3), and a clamping mechanism (5) for limiting the urn is provided between the locking mechanism (4) and the storage box (3); The locking mechanism (4) includes a first fixed rod (41), a rotating door panel (42), a vertical plate (43), a sliding rod (44), a sliding bar (45), a first return spring (46), a bow-shaped plate (47) and a hook plate (48). The first fixed rods (41) are symmetrically and fixedly connected up and down on the left and in the middle of the front side of the vertical frame (1). A rotating door panel (42) is rotatably provided in the middle of the first fixed rod (41). A vertical plate (43) is fixedly connected to the right part of the rear side of the rotating door panel (42). The sliding rods (44) are symmetrically and fixedly connected up and down on the right side of the vertical plate (43). A sliding bar (45) is slidably provided between the upper and lower sliding rods (44). The first return spring (46) is wound around the sliding rod (44). One end of the first return spring (46) is connected to the sliding bar (45), and the other end of the first return spring (46) is connected to the vertical plate (43). A bow-shaped plate (47) is slidably provided in the middle of the right part of the rotating door panel (42). The adjacent bow-shaped plates (47) are fixedly connected to the sliding bar (45). A hook plate (48) is fixedly connected to the middle right position of the front part of the storage box (3). The hook plate (48) contacts the sliding bar (45); The clamping mechanism (5) comprises a first rotating shaft (51), a column gear (52), an arc-shaped rack (53), a second rotating shaft (54), a first transmission assembly (55), a third rotating shaft (56), a second transmission assembly (57), a rotating plate (58), a protruding rod (59), a fixed seat (510), a sliding plate (511), a slotted plate (512), a sliding column (513), a pressing plate (514) and a force storage spring (515). The first rotating shaft (51) is rotatably provided at the upper front side of the left part of the storage box (3). The column gear (52) is fixedly connected to the upper part of the first rotating shaft (51). The rotating door plate (42 ) is fixedly connected to an arc-shaped rack (53) on the upper left side, and the arc-shaped rack (53) meshes with the column gear (52). A second rotating shaft (54) is rotatably provided at the upper middle side of the left part of the storage box (3). A first transmission assembly (55) is connected between the upper part of the second rotating shaft (54) and the upper part of the first rotating shaft (51). The first transmission assembly (55) is composed of two pulleys and a belt, one pulley is mounted on the upper part of the second rotating shaft (54), and the other pulley is mounted on the upper part of the first rotating shaft (51). The belt is wound between the two pulleys. A third rotating shaft (56) is rotatably provided at the upper middle side of the right part of the storage box (3). A second transmission assembly (57) is connected between the upper portion of the rotating shaft (56) and the upper portion of the second rotating shaft (54). The second transmission assembly (57) is composed of two pulleys and a belt. One pulley is mounted on the upper portion of the second rotating shaft (54), and the other pulley is mounted on the upper portion of the third rotating shaft (56). The belt is wound between the two pulleys. A rotating plate (58) is fixedly connected to the lower portion of the second rotating shaft (54) and the lower portion of the third rotating shaft (56). A convex rod (59) is fixedly connected to the inner side of the bottom of the rotating plate (58). A fixed seat (510) is fixedly connected to the middle of the bottom of the storage box (3) in a symmetrical manner. A sliding type is mounted on the fixed seat (510). A sliding plate (511) is provided, a slotted plate (512) is fixedly connected to the middle of the upper part of the sliding plate (511), the slotted plate (512) is sleeved on the adjacent protruding rod (59), the slotted plate (512) and the protruding rod (59) are slidably connected, sliding columns (513) are symmetrically slidably provided on the upper and lower sides of the sliding plate (511) in a front-to-back sliding manner, a pressing plate (514) is fixedly connected between the inner ends of the four sliding columns (513), a force storage spring (515) is wound around the sliding column (513), one end of the force storage spring (515) is connected to the pressing plate (514), and the other end of the force storage spring (515) is connected to the sliding plate (511).
2. The urn storage rack for stably storing an urn according to claim 1, wherein, It further includes a pressing mechanism (6) for further limiting the urn. The pressing mechanism (6) includes a fourth rotating shaft (61), a third transmission assembly (62), a mounting seat (63), a fifth rotating shaft (64), bevel gears (65), a rotating mounting block (66), a scroll spring (67), a mounting plate (68) and a rubber pad (69). The fourth rotating shaft (61) is rotatably provided at the rear part of the left inner side of the storage box (3). A third transmission assembly (62) is connected between the upper part of the fourth rotating shaft (61) and the upper part of the second rotating shaft (54). The third transmission assembly (62) is composed of two belt pulleys and a belt. One belt pulley is mounted on the upper part of the fourth rotating shaft (61), and the other belt pulley is mounted on the upper part of the second rotating shaft (54). The belt is wound between the two belt pulleys. A mounting seat (63) is fixedly connected to the middle and lower part of the rear inner side of the storage box (3). The fifth rotating shaft (64) is rotatably provided at the front part of the mounting seat (63). Bevel gears (65) are fixedly connected to the left part of the fifth rotating shaft (64) and the lower part of the fourth rotating shaft (61). The adjacent two bevel gears (65) are meshed with each other. The right part of the fifth rotating shaft (64) is rotatably provided with a rotating mounting block (66). A scroll spring (67) is wound between the lower part of the left side surface of the rotating mounting block (66) and the right part of the fifth rotating shaft (64). The front side of the upper part of the rotating mounting block (66) is fixedly connected with a mounting plate (68). A rubber pad (69) for further limiting the urn is sleeved on the mounting plate (68).
3. The urn storage rack for stably storing an urn according to claim 2, wherein, It further includes an air extraction mechanism (7) for reducing the internal pressure of the storage box (3). The air extraction mechanism (7) includes a mounting groove plate (71), a limiting frame (72), a connecting plate (73), a piston plate (74), a fixing plate (75), a second return spring (76), an H-shaped plate (77), a holding plate (78), a top plate (79), a third return spring (710), a pulling plate (711), and an inclined plate (712). Mounting groove plates (71) are symmetrically and fixedly connected to the upper and lower sides of the vertical frame (1) in the left-right direction. A limiting frame (72) is fixedly connected to the rear of the mounting groove plate (71). There are two air guide ports at the rear of the limiting frame (72), and the air guide ports are communicated with the storage box (3). A connecting plate (73) is slidably arranged in the middle of the front of the limiting frame (72). A piston plate (74) for air extraction is fixedly connected to the rear side of the connecting plate (73). The piston plate (74) is located within the limiting frame (72). A fixing plate (75) is fixedly connected to the front-middle side of the inner bottom of the mounting groove plate (71). An H-shaped plate (77) is fixedly connected to the front side of the connecting plate (73). Second return springs (76) are symmetrically and fixedly connected between the rear inner sides of adjacent H-shaped plates (77) and the rear side of the fixing plate (75). A holding plate (78) is fixedly connected to the outer front side of the H-shaped plate (77). Top plates (79) are slidably arranged on both the left and right sides of the holding plate (78). The top plates (79) are in contact with the mounting groove plate (71). A third return spring (710) is arranged between the inner side of the top plate (79) and the inside of the holding plate (78). A pulling plate (711) is slidably arranged at the front of the H-shaped plate (77). Inclined plates (712) are symmetrically and fixedly connected to the front side of the pulling plate (711). The inclined plates (712) are in contact with the top plates (79).
4. The urn storage rack for stably storing an urn according to claim 3, characterized in that, It further includes a storage mechanism (8) for placing sacrificial offerings. The storage mechanism (8) includes a C-shaped groove plate (81) and a storage drawer (82). A C-shaped groove plate (81) is slidably arranged on the upper part of the storage box (3). A storage drawer (82) for placing sacrificial offerings is fixedly connected to the inner side of the C-shaped groove plate (81).
5. The urn storage rack for stably storing an urn according to claim 4, characterized in that, It further includes a photo placement mechanism (9) for conveniently placing photos. The photo placement mechanism (9) includes a second fixing rod (91), a rotating limiting plate (92), and a limiting piece (93). A second fixing rod (91) is fixedly connected to the lower part of the front side of the rotating door panel (42). A rotating limiting plate (92) for conveniently placing photos is rotatably arranged in the middle of the second fixing rod (91). A limiting piece (93) is fixedly connected to the middle-lower part of the front side of the rotating limiting plate (92).
6. The urn storage rack for stably storing an urn according to claim 5, characterized in that, The left and right sides of the rotating limiting plate (92) have damping.
Citation Information
Patent Citations
Combined type cinerary casket storage rack
CN203742244U
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CN114482685A