An anti - toppling protection urn storage rack
Through the locking and clamping mechanism, combined with buffering and inflation protection, the problem of poor anti-fall protection of the urn storage rack is solved, and stable clamping and protection of the urn is achieved.
Patent Information
- Application Number
- CN202310406480.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-17
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2043-04-17
AI Technical Summary
When urn storage racks are placed, the urn can easily fall off and the lid will slip, and the protection effect is not good.
The locking mechanism and clamping mechanism are adopted to clamp the urn through the splint, and the wedge-shaped block presses the cover, combining the cushioning, adjustment and inflation protection mechanism to ensure the stability and protection of the urn.
Effectively prevent the urn from moving left and right and the lid from slipping off, cushioning the impact force, adapt to urns of different heights, and provide all-round anti-fall protection.
Smart Images

Figure CN116357150B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of funeral supplies, and particularly to an ash urn storage rack with anti-falling protection. Background Art
[0002] An ash urn is a container used to hold the ashes after the body is cremated. In order to save land resources, people will choose to place the ash urn on an ash urn storage rack. However, during the process of placing the ash urn on the storage rack, the ash urn is likely to accidentally fall.
[0003] A patent with the publication number CN217326718U discloses an ash urn storage rack, which includes a rack body, an inner box, a base, a top plate, a tray, etc. A base is provided at the bottom of the rack body, a top plate is provided at the top of the rack body, a support frame is provided between the base and the top plate, a horizontally arranged tray is provided in the middle of the support frame, partitions are provided on both sides of the tray, the inner box is arranged on one side of the partition, a box door is hinged to the front side of the inner box, a movable slide is movably installed at the bottom of the inner box, an ash urn is arranged on the movable slide, a pulley is movably installed on the lower surface of the movable slide, a first hinge seat is fixedly installed at the front end of the movable slide, and a second hinge seat is fixedly installed on the outer wall of the box door close to the movable slide, and a linkage rotating rod is hinged between the first hinge seat and the second hinge seat.
[0004] When placing the ash urn on the above-mentioned ash urn storage rack, first open the box door of the storage rack to synchronously move the movable slide out of the inner box, place the ash urn on the movable slide, close the box door to drive the movable slide to move towards the inside of the inner box, and use the groove on the movable slide to position the ash urn to prevent the ash urn from falling. However, because the groove on the movable slide of the above-mentioned ash urn storage rack is relatively shallow, the positioning effect on the ash urn is average, and there is no protection measure for the lid of the ash urn, so the lid of the ash urn is likely to fall, resulting in poor overall anti-falling protection effect of the above-mentioned ash urn storage rack. Now, an ash urn storage rack with effective anti-falling protection is developed. Summary of the Invention
[0005] In order to overcome the disadvantage of the existing ash urn storage rack having a poor anti-falling protection effect on the ash urn, the technical problem of the present invention is: to provide an ash urn storage rack with effective anti-falling protection.
[0006] The technical solution of the present invention is: an anti - toppling protection urn storage rack, which includes a housing, doors, first fixing blocks, first rotating rods, urn placement seats, locking mechanisms and clamping mechanisms. Doors are rotatably connected to the left and right sides of the front part of the housing. First fixing blocks are provided at the lower front parts of the sides where the doors are close to each other. First rotating rods are rotatably connected to the first fixing blocks. An urn placement seat is connected between the rear parts of the first rotating rods. The first rotating rods are rotatably connected to the urn placement seat. The urn placement seat and the first rotating rods are in extrusion fit. The urn placement seat is slidably connected to the lower inner part of the housing. A locking mechanism is provided at the lower inner part of the urn placement seat, and a clamping mechanism is provided at the rear part of the urn placement seat.
[0007] Optionally, the locking mechanism includes a pressure plate, clamping plates, first telescopic springs and second telescopic springs. A pressure plate is slidably connected inside the urn placement seat. A first telescopic spring is connected between the lower part of the pressure plate and the lower inner part of the urn placement seat. Clamping plates are slidably connected to the left and right sides inside the urn placement seat. Second telescopic springs are connected between the sides of the clamping plates away from the pressure plate and the urn placement seat. The clamping plates and the pressure plate are in extrusion fit.
[0008] Optionally, the clamping mechanism includes a rodless cylinder, a connecting block, a first sliding rail, a sliding block, a wedge block and a third telescopic spring. A rodless cylinder is provided at the upper rear part of the urn placement seat. A connecting block is slidably connected to the upper part of the rodless cylinder. A first sliding rail is connected to the front part of the connecting block. A sliding block is slidably connected to the front part of the first sliding rail. A wedge block is slidably connected to the sliding block. A third telescopic spring is connected between the lower part of the wedge block and the lower inner part of the sliding block.
[0009] Optionally, it further includes a buffering mechanism for buffering the impact generated when the urn placement seat moves backward and hits the housing. The buffering mechanism includes sliders and fourth telescopic springs. Sliders are slidably connected to the left and right sides of the lower inner part of the housing. The sliders are in extrusion fit with the urn placement seat. Fourth telescopic springs are connected between the rear parts of the sliders and the housing.
[0010] Optionally, it further includes an adjusting mechanism for adjusting the height of the wedge block so that the wedge block can clamp taller urns. The adjusting mechanism includes a second fixing block and a screw rod. The right part of the first sliding rail is rotatably connected to the screw rod. A second fixing block is threadedly connected to the screw rod. The second fixing block is connected to the sliding block. The second fixing block and the sliding block are in extrusion fit, and the second fixing block is slidably connected to the first sliding rail.
[0011] Optionally, it further includes an inflatable protection mechanism for preventing the urn from being bumped. The inflatable protection mechanism includes an air pump, an air charging pipe and a protection pad. An air pump is connected to the front left part of the urn placement seat. A protection pad is annularly provided on the upper part of the urn placement seat. An air charging pipe is connected between the protection pad and the air pump.
[0012] Optionally, it further includes a reset mechanism for facilitating the reset of the pressure plate and the clamping plate. The reset mechanism includes a third fixing block, a second rotating rod, a rotating seat, a sliding rod and a second sliding rail. Third fixing blocks are connected to the upper rear sides of the clamping plates, and a second sliding rail is connected to the rear side of the urn placement seat. The upper part of the second sliding rail is slidably connected with a sliding rod, and the front part of the sliding rod is connected with a rotating seat. The front part of the rotating seat is rotatably connected with a second rotating rod, and this second rotating rod is in extrusion fit with the rotating seat. The front part of this second rotating rod is rotatably connected with another second rotating rod. The lower part of the front second rotating rod is rotatably connected with the left third fixing block, and the lower part of the rear second rotating rod is rotatably connected with the right third fixing block. The second rotating rods are all in extrusion fit with the adjacent third fixing blocks.
[0013] Optionally, the slider is made of rubber.
[0014] Compared with the prior art, the present invention has the following advantages: 1. By setting the locking mechanism and the clamping mechanism, the present invention clamps and locks the urn through the clamping plate to prevent the urn from moving left and right and shaking. By the urn squeezing the wedge block, the wedge block moves upward and presses the lid of the urn to clamp the urn, preventing the urn from moving up and down and the lid of the urn from slipping off. In this way, effective anti-tipping protection for the urn can be achieved.
[0015] 2. By setting the buffer mechanism, when the urn placement seat moves backward and contacts the outer shell, the slider and the fourth telescopic spring play a buffering role on the urn placement seat, so that the urn will not shake and tip over, effectively providing anti-tipping protection for the urn.
[0016] 3. By setting the adjustment mechanism, by rotating the screw rod to adjust the heights of the sliding block and the wedge block, the clamping mechanism can also clamp the urn with a high height, expanding the application range of the present invention, so that the present invention can effectively provide anti-tipping protection for more kinds of urns with different heights.
[0017] 4. By setting the inflatable protection mechanism, when the outer shell is impacted and shakes, the protection pad inflated by the gas protects the urn from being knocked and buffers the impact received by the urn, so as to effectively provide anti-tipping protection for the urn.
[0018] 5. By setting the reset mechanism, by simply pressing down the rotating seat, the two second rotating rods rotate towards the side away from each other, and the pressure plate moves upward to reset, making the operation of resetting the pressure plate and the clamping plate by people simpler and facilitating people's use. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a three-dimensional structural schematic diagram of the present invention.
[0020] Figure 2 It is a partial three-dimensional structure diagram of the present invention.
[0021] Figure 3 It is a three-dimensional structure diagram of the locking mechanism of the present invention.
[0022] Figure 4 It is a partial three-dimensional structure diagram of the locking mechanism of the present invention.
[0023] Figure 5 It is a three-dimensional structure diagram of the clamping mechanism of the present invention.
[0024] Figure 6 It is a partial three-dimensional structure diagram of the clamping mechanism of the present invention.
[0025] Figure 7 It is a three-dimensional structure diagram of the buffer mechanism of the present invention.
[0026] Figure 8 It is an enlarged view at position A of the present invention.
[0027] Figure 9 It is a three-dimensional structure diagram of the adjustment mechanism of the present invention.
[0028] Figure 10 It is a three-dimensional structure diagram of the inflatable protection mechanism of the present invention.
[0029] Figure 11 It is a three-dimensional structure diagram of the reset mechanism of the present invention.
[0030] Reference numerals in the drawings: 1. Outer shell, 2. Door, 3. First fixed block, 4. First rotating rod, 5. Urn placement seat, 6. Locking mechanism, 61. Pressure plate, 62. Clamping plate, 63. First telescopic spring, 64. Second telescopic spring, 7. Clamping mechanism, 71. Rodless cylinder, 72. Connecting block, 73. First slide rail, 74. Sliding block, 75. Wedge block, 76. Third telescopic spring, 8. Buffer mechanism, 81. Slide block, 82. Fourth telescopic spring, 9. Adjustment mechanism, 91. Second fixed block, 92. Screw rod, 10. Inflatable protection mechanism, 101. Air pump, 102. Inflatable tube, 103. Protection pad, 11. Reset mechanism, 111. Third fixed block, 112. Second rotating rod, 113. Rotating seat, 114. Slide rod, 115. Second slide rail. Detailed implementation manners
[0031] The technical solutions of the present invention will be further described below with reference to the accompanying drawings.
[0032] Embodiment 1
[0033] An anti-fall protection urn storage rack, as Figure 1 and Figure 2As shown in the figure, it includes a housing 1, a door 2, a first fixing block 3, a first rotating rod 4, an urn placement seat 5, a locking mechanism 6, and a clamping mechanism 7. Doors 2 are rotatably connected to both the left and right sides of the front part of the housing 1. First fixing blocks 3 are provided at the lower front parts of the sides of the doors 2 that are close to each other. First rotating rods 4 are rotatably connected to the first fixing blocks 3. An urn placement seat 5 is connected between the rear parts of the first rotating rods 4. The first rotating rods 4 are rotatably connected to the urn placement seat 5. The urn placement seat 5 and the first rotating rods 4 are in extrusion fit. The urn placement seat 5 is slidably connected to the lower inner part of the housing 1. A locking mechanism 6 is provided at the lower inner part of the urn placement seat 5. The locking mechanism 6 is used to clamp and lock the urn to prevent the urn from moving left and right and shaking. A clamping mechanism 7 is provided at the rear part of the urn placement seat 5. The clamping mechanism 7 is used to press the lid of the urn to clamp the urn and prevent the urn from moving up and down and the lid of the urn from slipping off.
[0034] As Figure 1 , Figure 3 and Figure 4 shown in the figure, the locking mechanism 6 includes a pressure plate 61, a clamping plate 62, a first telescopic spring 63, and a second telescopic spring 64. A pressure plate 61 is slidably connected to the inside of the urn placement seat 5. A first telescopic spring 63 is connected between the lower part of the pressure plate 61 and the lower inner part of the urn placement seat 5. Clamping plates 62 are slidably connected to both the left and right sides of the inside of the urn placement seat 5. A second telescopic spring 64 is connected between the side of each clamping plate 62 away from the pressure plate 61 and the urn placement seat 5. The clamping plates 62 and the second telescopic springs 64 are used to clamp and lock the urn to prevent the urn from moving left and right and shaking. The clamping plates 62 and the pressure plate 61 are in extrusion fit.
[0035] As Figure 1 , Figure 5 and Figure 6 shown in the figure, the clamping mechanism 7 includes a rodless cylinder 71, a connecting block 72, a first slide rail 73, a sliding block 74, a wedge block 75, and a third telescopic spring 76. A rodless cylinder 71 is provided at the upper rear part of the urn placement seat 5. A connecting block 72 is slidably connected to the upper part of the rodless cylinder 71. A first slide rail 73 is connected to the front part of the connecting block 72. A sliding block 74 is slidably connected to the front part of the first slide rail 73. A wedge block 75 is slidably connected to the sliding block 74. The wedge block 75 is used to press the lid of the urn to clamp the urn and prevent the urn from moving up and down and the lid of the urn from slipping off. A third telescopic spring 76 is connected between the lower part of the wedge block 75 and the lower inner part of the sliding block 74.
[0036] When using the present anti-falling protection casket storage rack, it is necessary to first rotate the door 2 to open the door 2. At this time, the door 2 drives the first rotating rod 4 to move forward, and at the same time, the first rotating rod 4 rotates and pulls the casket placement seat 5 forward. At this time, the casket can be placed on the casket placement seat 5. Because the initial state of the first telescopic spring 63 is a state of neither stretching nor compression, at this time the pressure plate 61 squeezes the two clamping plates 62, so that the second telescopic spring 64 is compressed. When the casket is placed on the pressure plate 61, under the squeezing of the casket, the first telescopic spring 63 is compressed, the pressure plate 61 moves downward, and the two clamping plates 62 are released. Under the action of the second telescopic spring 64, the two clamping plates 62 move in the direction close to the casket. At this time, the second telescopic spring 64 is still compressed. The movement of the connecting block 72 is stopped and the rodless cylinder 71 is closed. At this time, the wedge block 75 limits the position of the urn so that the lid of the urn is pressed tightly. Then the door 2 is rotated to close the door 2. Driven by the door 2, the first rotating rod 4 pushes the urn placement seat 5 and the urn backward into the shell 1, so that the urn can be opened and closed. When the ash box is stored, the ash box is stored. When people need to take out the ash box, they turn to open the door 2 and repeat the process of pushing out the ash box placement seat 5, start the rodless cylinder 71, and the connecting block 72 moves backward and resets under the drive of the rodless cylinder 71, and the connecting block 72 drives the sliding block 74 and the wedge block 75 to move backward and reset. When the wedge block 75 is no longer in contact with the ash box, under the action of the third telescopic spring 76, the wedge block 75 moves downward and resets, and the rodless cylinder 71 is closed. At this time, the ash box can be moved upward to separate the ash box from the ash box placement seat 5. When the ash box is no longer in contact with the pressure plate 61, under the action of the second telescopic spring 64, the clamping plate 62 preferentially moves to one side in the direction of approaching each other. At this time, the clamping plate 62 limits the pressure plate 61, so that the pressure plate 61 is still in a pressed down state, and the first telescopic spring 63 is still compressed. At this time, people need to manually move the clamping plate 62 to the side in the direction away from each other, so that the pressure plate 61 can move upward and reset under the action of the first telescopic spring 63, and then rotate the door 2 to close the door 2. The clamping plate 62 is used to clamp and lock the urn to prevent the urn from moving left and right. The rodless cylinder 71 is used to make the connecting block 72 drive the first slide rail 73, the sliding block 74 and the wedge block 75 to move backward. The urn squeezes the wedge block 75 so that the wedge block 75 moves upward and presses the cover of the urn. The wedge block 75 clamps the urn to prevent the urn from moving up and down and the cover of the urn from slipping off. In this way, the urn can be effectively protected from falling over.
[0037] Example 2
[0038] Based on Example 1, as Figure 1 、 Figure 7 and Figure 8 shown, it further includes a buffer mechanism 8. The buffer mechanism 8 includes a slider 81 and a fourth telescopic spring 82. Sliders 81 are slidably connected to the left and right sides of the lower inner part of the outer shell 1. The sliders 81 are made of rubber, and the sliders 81 are in extrusion fit with the urn placement seat 5. Fourth telescopic springs 82 are connected between the rear parts of the sliders 81 and the outer shell 1. The sliders 81 and the fourth telescopic springs 82 are used to buffer the urn placement seat 5 when the urn placement seat 5 moves backward and contacts the outer shell 1, so that the urn will not shake and topple.
[0039] As Figure 1 and Figure 9 shown, it further includes an adjustment mechanism 9. The adjustment mechanism 9 includes a second fixing block 91 and a screw 92. The screw 92 is rotatably connected to the right part of the first slide rail 73. The second fixing block 91 is threadedly connected to the screw 92. The second fixing block 91 is connected to the sliding block 74, and the second fixing block 91 is in extrusion fit with the sliding block 74, and the second fixing block 91 is slidably connected to the first slide rail 73. By rotating the screw 92, the second fixing block 91 drives the sliding block 74 and the wedge block 75 to move upward, so that the wedge block 75 can also clamp the urn with a higher height.
[0040] As Figure 1 and Figure 10 shown, it further includes an inflation protection mechanism 10. The inflation protection mechanism 10 includes an air pump 101, an inflation pipe 102 and a protection pad 103. The air pump 101 is connected to the front left part of the urn placement seat 5. The protection pad 103 is annularly arranged on the upper part of the urn placement seat 5. The protection pad 103 is used to protect the urn from being knocked when the outer shell 1 is impacted and shakes, buffer the impact received by the urn, and an inflation pipe 102 is connected between the protection pad 103 and the air pump 101.
[0041] As Figure 1 and Figure 11As shown in the figure, it further includes a reset mechanism 11. The reset mechanism 11 includes a third fixed block 111, a second rotating rod 112, a rotating seat 113, a sliding rod 114 and a second slide rail 115. Third fixed blocks 111 are connected to the upper rear sides of the clamping plates 62. A second slide rail 115 is connected to the rear side of the urn placement seat 5. The upper part of the second slide rail 115 is slidably connected with a sliding rod 114. The front part of the sliding rod 114 is connected with a rotating seat 113. The front part of the rotating seat 113 is rotatably connected with a second rotating rod 112. This second rotating rod 112 and the rotating seat 113 are in extrusion fit. The front part of this second rotating rod 112 is rotatably connected with another second rotating rod 112. The lower part of the front second rotating rod 112 is rotatably connected with the left third fixed block 111. The lower part of the rear second rotating rod 112 is rotatably connected with the right third fixed block 111. The second rotating rods 112 are all in extrusion fit with the adjacent third fixed blocks 111. When resetting the pressure plate 61 and the clamping plates 62, by moving the rotating seat 113 downward, the two second rotating rods 112 rotate toward the side away from each other, and the pressure plate 61 moves upward to reset, so that the operation of resetting the pressure plate 61 and the clamping plates 62 by people is simpler.
[0042] When the urn placement seat 5 drives the urn to move backward, the urn placement seat 5 contacts the slider 81. At this time, the fourth telescopic spring 82 is compressed to buffer the urn placement seat 5, avoiding the impact generated when the urn placement seat 5 moves backward and contacts the outer shell 1, which may cause the urn to shake and fall. Because the slider 81 is made of rubber material, it can further buffer the impact generated when the urn placement seat 5 moves backward. When the urn placement seat 5 drives the urn to move forward, under the action of the fourth telescopic spring 82, the slider 81 moves forward to reset. Through the buffering effect of the slider 81 and the fourth telescopic spring 82 on the urn placement seat 5, when the urn placement seat 5 moves backward and contacts the outer shell 1, the urn will not shake and fall, effectively providing anti - fall protection for the urn.
[0043] In order to enable the clamping mechanism 7 to clamp and fix an urn with a higher height, rotate the screw rod 92 to make the second fixed block 91 move upward. The second fixed block 91 drives the sliding block 74 to move upward, and the sliding block 74 drives the wedge block 75 to move upward, so that the wedge block 75 can contact the upper side of an urn with a higher height. When it is necessary to clamp an urn with a lower height subsequently, rotate the screw rod 92 in the reverse direction to make the second fixed block 91 move downward to reset, so that the sliding block 74 and the wedge block 75 move downward to reset. By rotating the screw rod 92 to adjust the height of the sliding block 74 and the wedge block 75, the clamping mechanism 7 can also clamp an urn with a higher height, expanding the applicable range of this anti - fall protection urn storage rack and effectively providing anti - fall protection for more kinds of urns with different heights.
[0044] After the urn is placed in the urn placement seat 5, the air pump 101 is started. The air pump 101 inflates the protection pad 103 through the inflation pipe 102, causing the protection pad 103 to expand. At this time, when the outer shell 1 is impacted and shaken as a whole, the urn can be prevented from being knocked and the impact on the urn can be buffered. After the urn is removed from the urn placement seat 5, the air pump 101 is turned off, causing the protection pad 103 to deflate. By using the air pump 101 to inflate and expand the protection pad 103, the urn can be protected from being knocked and the impact on the urn can be buffered when the outer shell 1 is impacted and shaken, thereby effectively providing anti-toppling protection for the urn.
[0045] To further facilitate people's use, when the urn is placed in the urn placement seat 5, the pressure plate 61 moves downward, the first telescopic spring 63 is compressed, and the clamping plates 62 move toward the side where they approach each other. Driven by the clamping plates 62, the second rotating rod 112 rotates toward the side where they approach each other. Under the extrusion of the second rotating rod 112, the rotating seat 113 moves upward, and the sliding rod 114 moves upward. When the urn is removed from the urn placement seat 5, the rotating seat 113 is pressed downward, the sliding rod 114 moves downward, causing the two second rotating rods 112 to rotate toward the side where they move away from each other. Driven by the second rotating rods 112, the clamping plates 62 move toward the side where they move away from each other. At this time, the pressure plate 61 moves upward and resets under the action of the first telescopic spring 63 and limits the clamping plates 62. By only pressing the rotating seat 113 downward, the two second rotating rods 112 rotate toward the side where they move away from each other, and the pressure plate 61 can move upward and reset. In this way, the operation of resetting the pressure plate 61 and the clamping plates 62 by people is made simpler and more convenient for people to use.
[0046] The technical principle of the embodiments of the present invention has been described above in conjunction with specific embodiments. These descriptions are only for explaining the principle of the embodiments of the present invention and cannot be construed in any way as a limitation on the protection scope of the embodiments of the present invention. Based on the explanations herein, those skilled in the art can readily conceive of other specific embodiments of the embodiments of the present invention without creative efforts, and these embodiments will fall within the protection scope of the embodiments of the present invention.
Claims
1. An anti - tipping protection urn storage rack, comprising a housing (1), doors (2), first fixing blocks (3), first rotating rods (4) and urn placing seats (5). On the left and right sides of the front part of the housing (1), doors (2) are rotatably connected. At the lower front parts of the sides of the doors (2) close to each other, first fixing blocks (3) are provided. On the first fixing blocks (3), first rotating rods (4) are rotatably connected. Between the rear parts of the first rotating rods (4), an urn placing seat (5) is connected. The first rotating rods (4) are rotatably connected to the urn placing seat (5). The urn placing seat (5) and the first rotating rods (4) are in extrusion fit. The urn placing seat (5) is slidably connected to the lower inner part of the housing (1). It is characterized in that: It also includes a locking mechanism (6) and a clamping mechanism (7). The locking mechanism (6) is provided at the inner lower part of the urn placement seat (5), and the clamping mechanism (7) is provided at the rear of the urn placement seat (5). The locking mechanism (6) includes a pressure plate (61), a clamping plate (62), a first telescopic spring (63) and a second telescopic spring (64). The pressure plate (61) is slidably connected inside the urn placement seat (5). A first telescopic spring (63) is connected between the lower part of the pressure plate (61) and the inner lower part of the urn placement seat (5). The clamping plates (62) are slidably connected to both the left and right sides inside the urn placement seat (5). A second telescopic spring (64) is connected between the side of each clamping plate (62) away from the pressure plate (61) and the urn placement seat (5). The clamping plates (62) and the pressure plate (61) are in extrusion cooperation.
2. The anti - fall protection urn storage rack according to claim 1, characterized in that: The clamping mechanism (7) includes a rodless cylinder (71), a connecting block (72), a first slide rail (73), a sliding block (74), a wedge block (75) and a third telescopic spring (76). The rodless cylinder (71) is provided at the upper rear part of the urn placement seat (5). The connecting block (72) is slidably connected to the upper part of the rodless cylinder (71). The front part of the connecting block (72) is connected to the first slide rail (73). The front part of the first slide rail (73) is slidably connected to the sliding block (74). The wedge block (75) is slidably connected to the sliding block (74). A third telescopic spring (76) is connected between the lower part of the wedge block (75) and the inner lower part of the sliding block (74).
3. The urn storage rack with anti - tipping protection according to claim 2, characterized in that: It also includes a buffer mechanism (8) for buffering the impact generated when the urn placement seat (5) moves backward and hits the outer shell (1). The buffer mechanism (8) includes sliders (81) and fourth telescopic springs (82). The sliders (81) are slidably connected to both the left and right sides of the inner lower part of the outer shell (1). The sliders (81) are in extrusion cooperation with the urn placement seat (5). Fourth telescopic springs (82) are connected between the rear parts of the sliders (81) and the outer shell (1).
4. The urn storage rack with anti - tipping protection according to claim 3, characterized in that: It also includes an adjusting mechanism (9) for adjusting the height of the wedge block (75) so that the wedge block (75) can clamp a taller urn. The adjusting mechanism (9) includes a second fixing block (91) and a screw rod (92). The screw rod (92) is rotatably connected to the right part of the first slide rail (73). The second fixing block (91) is threadedly connected to the screw rod (92). The second fixing block (91) is connected to the sliding block (74). The second fixing block (91) is in extrusion cooperation with the sliding block (74), and the second fixing block (91) is slidably connected to the first slide rail (73).
5. The urn storage rack with anti - tipping protection according to claim 4, characterized in that: It also includes an inflatable protection mechanism (10) for preventing the urn from being bumped. The inflatable protection mechanism (10) includes an air pump (101), an air filling pipe (102) and a protection pad (103). The air pump (101) is connected to the front left part of the urn placement seat (5). The protection pad (103) is annularly provided on the upper part of the urn placement seat (5). An air filling pipe (102) is connected between the protection pad (103) and the air pump (101).
6. The urn storage rack with anti - tipping protection according to claim 5, characterized in that: Further included is a reset mechanism (11) for facilitating the reset of the pressure plate (61) and the clamping plate (62). The reset mechanism (11) includes a third fixing block (111), a second rotating rod (112), a rotating seat (113), a sliding rod (114), and a second sliding rail (115). Third fixing blocks (111) are connected to the upper rear sides of the clamping plates (62). A second sliding rail (115) is connected to the rear side of the urn placement seat (5). The upper part of the second sliding rail (115) is slidably connected to a sliding rod (114). The front part of the sliding rod (114) is connected to a rotating seat (113). The front part of the rotating seat (113) is rotatably connected to a second rotating rod (112). This second rotating rod (112) is in extrusion fit with the rotating seat (113). The front part of this second rotating rod (112) is rotatably connected to another second rotating rod (112). The lower part of the front second rotating rod (112) is rotatably connected to the left third fixing block (111). The lower part of the rear second rotating rod (112) is rotatably connected to the right third fixing block (111). The second rotating rods (112) are all in extrusion fit with the adjacent third fixing blocks (111).
7. The urn storage rack with anti - toppling protection according to claim 6, characterized in that: The slider (81) is made of rubber material.
Citation Information
Patent Citations
Cinerary casket storage rack
CN217326718U
Anti-toppling cinerary casket storage rack
CN115749419A
Anti-oxidation cinerary casket storage rack
CN217151487U