CN115030596A - Bone ash storage rack with dovetail mortise-tenon structure - Google Patents

Bone ash storage rack with dovetail mortise-tenon structure Download PDF

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Publication number
CN115030596A
CN115030596A CN202210739421.0A CN202210739421A CN115030596A CN 115030596 A CN115030596 A CN 115030596A CN 202210739421 A CN202210739421 A CN 202210739421A CN 115030596 A CN115030596 A CN 115030596A
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Prior art keywords
plate
storage rack
bone ash
ash storage
slide bar
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CN202210739421.0A
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CN115030596B (en
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熊楠
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Jiangxi Tianjing Jingcang Technology Co ltd
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Jiangxi Tianjing Jingcang Technology Co ltd
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H13/00Monuments; Tombs; Burial vaults; Columbaria
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W90/00Enabling technologies or technologies with a potential or indirect contribution to greenhouse gas [GHG] emissions mitigation
    • Y02W90/10Bio-packaging, e.g. packing containers made from renewable resources or bio-plastics

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Drying Of Solid Materials (AREA)
  • Rigid Containers With Two Or More Constituent Elements (AREA)

Abstract

The invention relates to a bone ash storage rack, in particular to a bone ash storage rack with a dovetail mortise and tenon structure. The bone ash storage rack is convenient for high-level storage and more convenient for people to use and has a dovetail mortise-tenon structure. A bone ash storage rack with a dovetail mortise-tenon structure comprises a mounting base, side plates, a top plate, a transverse plate, a partition plate and the like; the side plate is connected to the upper side of the mounting base, the top plate is connected to the upper portion of the side plate, the transverse plate is connected to the middle of the side plate, the partition plates are connected to the upper side and the lower side of the middle of the transverse plate, and the partition plates are connected with the base and the top plate respectively. The cinerary casket can be directly placed into the tray at the lower part, the bottom plate moves downwards to be more convenient for a worker to place the cinerary casket in the tray at the upper part of a person in the cinerary casket, and after the cinerary casket is placed, the tray moves backwards to enter a compartment formed by the side plates, the top plate, the transverse plate and the partition plate, so that the cinerary casket is stored.

Description

Bone ash storage rack with dovetail mortise-tenon structure
Technical Field
The invention relates to a bone ash storage rack, in particular to a bone ash storage rack with a dovetail mortise-tenon structure.
Background
The bone ash storage rack is a rack for storing cinerary urns, the dovetail joint is formed by connecting two wood boards in a right angle mode, the head of the dovetail joint is wide, the tail of the dovetail joint is narrow, the shape of the dovetail joint is similar to the tail of a swallow, and therefore the bone ash storage rack is called as a dovetail joint, and the bone ash storage rack with the dovetail mortise and tenon structure has higher stability.
Patent No. CN212957954U discloses a bone ash storage rack with high shock resistance, which comprises a box body, guide rails arranged at the tops of the side walls of the two sides of the box body and an inner rack arranged inside the box body, wherein a damping base is arranged at the bottom of the box body, a suspension assembly is arranged at the top of the box body, a rubber plate is arranged between the box body and the inner rack, when the bone ash storage rack is influenced by earthquakes and the like, the storage rack cannot always exist in a state of resisting vibration, but can displace along the direction of vibration along with the bottom round beads and sliding grooves on the damping base, the shock is absorbed by an elastic part after a certain amplitude, the shock resistance purpose is achieved, the inner rack for storing bone ash can be suspended in the box body by a tension elastic part, the rubber plates are arranged at the two sides of the shock absorption part to avoid shaking during vibration, and a rubber cover on the tension elastic part can also protect the inner rack during up-down vibration, the inner frame can be pushed out through the movable plate, and cleaning and repairing are facilitated. However, the cinerary casket is placed in multiple layers, and when the cinerary casket is placed in a high-rise storage space, workers need to use tools such as ladders and the like, so that the cinerary casket is inconvenient for people to store.
Therefore, the bone ash storage rack with the dovetail mortise-tenon structure is convenient for high-level storage and more convenient for people to use.
Disclosure of Invention
The invention aims to overcome the defect that the existing bone ash storage rack is inconvenient to place a bone ash box in a high-rise storage space, and provides a bone ash storage rack with a dovetail mortise-tenon structure, which is convenient for high-rise storage and more convenient for people to use.
The utility model provides a bone ash storage rack of forked tail mortise structure, including the installation base, the curb plate, the roof, the diaphragm, the baffle, pull opening mechanism and elevating system, installation base upside is connected with the curb plate, curb plate upper portion is connected with the roof, the curb plate middle part is connected with the diaphragm, both sides all are connected with the baffle about the diaphragm middle part, the baffle is connected with installation base and roof respectively, be equipped with the pull opening mechanism that is used for placing the cinerary casket between curb plate and the baffle, be equipped with the elevating system that is used for making things convenient for the staff to place high-rise cinerary casket between roof and the pull opening mechanism.
As the improvement of the scheme, the pull-up mechanism comprises a tray, a first handle and a first sliding rod, wherein the left side and the right side in the side plate are both connected with the two first sliding rods in a sliding manner, the inner ends of the first sliding rods are both connected with an adjacent partition plate in a sliding manner, the first sliding rods are both connected with the tray, and the lower part of the front side of the tray is both connected with the first handle.
As the improvement of above-mentioned scheme, elevating system is including the baffle, the second slide bar, first elastic component, the fixture block, the lantern ring, bottom plate and dog, two tray upper right sides on upper portion all sliding type are connected with the second slide bar, second slide bar rear end all is connected with the baffle, all be connected with first elastic component between second slide bar and the adjacent tray, the lower part left and right sides all is connected with the lantern ring in two trays on upper portion, all sliding type is connected with the fixture block in the lantern ring, second slide bar front end all inserts in adjacent a fixture block, all be connected with the bottom plate between two fixture block bottoms on left two and right sides, the middle part and the right part of roof bottom all are connected with the dog, the baffle all contacts with adjacent a dog forward movement.
As the improvement of above-mentioned scheme, still including being used for carrying out spacing stop gear to the cinerary casket, stop gear is including the connecting piece, the third slide bar, second elastic component and stopper, the bottom plate rear portion all is connected with a set of connecting piece, the rear portion position of bottom all is connected with the same a set of connecting piece in two trays of lower part, the connecting piece is a set of two, all be connected with the third slide bar between two connecting pieces of every group, the equal slidingtype in two portions is connected with the stopper about the third slide bar, all be connected with the second elastic component between stopper and the adjacent third slide bar.
As the improvement of above-mentioned scheme, still including the data plate mechanism that is used for placing the data plate portrait of deceiving, the frame is placed including the portrait to the data plate mechanism, the apron, the mount, the shadoof, third elastic component and transparent plate, tray front side middle part all is connected with the portrait and places the frame, the equal rotary type in frame upper portion is placed to the portrait is connected with the apron, the apron right part all is connected with the mount, equal sliding type is connected with the shadoof on the mount, the shadoof lower part all inserts in the frame is placed to adjacent portrait, all be connected with the third elastic component between shadoof and the adjacent mount, the portrait is placed the frame front side and all is connected with the transparent plate.
As the improvement of above-mentioned scheme, still including being used for carrying out clear clean mechanism to the transparent plate, clean mechanism is including fourth slide bar, rubber strip and carrying the board, and the portrait is placed all slidingly and is connected with the fourth slide bar on the frame, and fourth slide bar middle part all is connected with the rubber strip, and the rubber strip all laminates with an adjacent transparent plate, and the rubber strip middle part all is connected with carries the board.
As the improvement of above-mentioned scheme, still including being used for preventing that the cinerary casket from weing the dampproofing mechanism, box and second handle are placed including connecting plate, moisture collection box, drier to dampproofing mechanism, and first slide bar middle part all is connected with two connecting plates, all is connected with the moisture between two adjacent connecting plate tops and collects the box, and the box is placed to equal sliding connection has the drier in the moisture collection box, and the box left side is placed to the drier all is connected with the second handle.
As the improvement of the scheme, the anti-skidding device further comprises anti-skidding strips, and the middle part of the bottom plate is connected with a row of anti-skidding strips.
The invention has the following advantages: 1. the cinerary casket can be directly placed into the tray at the lower part, the bottom plate moves downwards to be more convenient for a worker to place the cinerary casket in the tray at the upper part of a person in the cinerary casket, and after the cinerary casket is placed, the tray moves backwards to enter a compartment formed by the side plates, the top plate, the transverse plate and the partition plate, so that the cinerary casket is stored.
2. The two limit blocks can clamp the cinerary casket after sliding oppositely, so as to fix the cinerary casket and avoid the cinerary casket from shaking in the tray.
3. The staff can put the deadee's deadee into the deadee placing frame, which is convenient for the staff to distinguish the cinerary casket.
4. The rubber strip moves upwards to clean the dust on the surface of the transparent plate, and the phenomenon of deception is observed due to the influence of the dust.
5. In the process of storing the cinerary casket, moisture in the device can enter the moisture collecting box and is adsorbed by the desiccant in the desiccant storing box, so that the aim of moisture prevention is fulfilled.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
FIG. 2 is a schematic view of a first partial body structure according to the present invention.
FIG. 3 is a schematic view of a second partial body structure according to the present invention.
Fig. 4 is a schematic perspective view of the pull-open mechanism of the present invention.
Fig. 5 is a schematic perspective view of the lifting mechanism of the present invention.
Fig. 6 is a schematic view of a first partially-separated body structure of the lifting mechanism of the present invention.
Fig. 7 is a schematic view of a second partial body structure of the lifting mechanism of the present invention.
Fig. 8 is a schematic perspective view of the spacing mechanism of the present invention.
Fig. 9 is a schematic perspective view of a first nameplate mechanism of the present invention.
Fig. 10 is a schematic perspective view of a second nameplate mechanism of the present invention.
Fig. 11 is a perspective view of the cleaning mechanism of the present invention.
Fig. 12 is a schematic perspective view of a first moisture barrier mechanism of the present invention.
Fig. 13 is a schematic perspective view of a second moisture barrier mechanism of the present invention.
The meaning of the reference symbols in the figures: 1: installation base, 2: side plate, 3: top plate, 4: transverse plate, 5: separator, 6: pull-open mechanism, 61: tray, 62: first handle, 63: first slide bar, 7: elevating mechanism, 71: baffle, 72: second slide bar, 73: first elastic member, 74: a latch, 75: collar, 76: bottom plate, 77: stopper, 8: stop gear, 81: connecting member, 82: third slide bar, 83: second elastic member, 84: stopper, 9: data plate mechanism, 91: deadee placement frame, 92: cover plate, 93: mount, 94: lifting rod, 95: third elastic member, 96: transparent plate, 10: cleaning mechanism, 101: fourth slide bar, 102: rubber strip, 103: lifting plate, 11: moisture-proof mechanism, 1101: connection plate, 1102: moisture collection box, 1103: desiccant storage box, 1104: second handle, 12: and (4) an anti-slip strip.
Detailed Description
The invention is further described below with reference to the figures and examples.
Example 1
The utility model provides a bone ash storage rack of forked tail mortise and tenon joint structure, as shown in fig. 1-7, including installation base 1, curb plate 2, roof 3, diaphragm 4, baffle 5, draw opening mechanism 6 and elevating system 7, installation base 1 upside is connected with curb plate 2, the welding of 2 upper portions of curb plate has roof 3, the welding of 2 middle parts of curb plate has diaphragm 4, baffle 5 has all been welded to both sides about 4 middle parts of diaphragm, baffle 5 is connected with installation base 1 and roof 3 respectively, be equipped with between curb plate 2 and the baffle 5 and draw opening mechanism 6, draw opening mechanism 6 and can place the cinerary casket, be equipped with elevating system 7 between roof 3 and the drawing opening mechanism 6, elevating system 7 can make things convenient for the staff to place high-rise cinerary casket.
As shown in fig. 1, fig. 3 and fig. 4, the pull-up mechanism 6 comprises a tray 61, a first handle 62 and a first slide bar 63, two first slide bars 63 are connected to the left and right sides of the side plate 2 in a sliding manner, the inner ends of the first slide bars 63 are connected to an adjacent partition plate 5 in a sliding manner, the first slide bars 63 are connected to the tray 61, the tray 61 is used for placing cinerary urns, and the first handle 62 is welded to the lower portion of the front side of the tray 61.
As shown in fig. 3-7, the lifting mechanism 7 comprises a baffle 71, a second sliding rod 72, a first elastic member 73, fixture block 74, lantern ring 75, bottom plate 76 and dog 77, the upper right portion of two trays 61 on upper portion all is connected with second slide bar 72 by slidable way, baffle 71 has all been welded to second slide bar 72 rear end, all be connected with first elastic component 73 between second slide bar 72 and the adjacent tray 61, first elastic component 73 is extension spring, lantern ring 75 has all been welded to the lower part left and right sides in two trays 61 on upper portion, all be connected with fixture block 74 in the lantern ring 75 by slidable way, second slide bar 72 front end all inserts in an adjacent fixture block 74, all be connected with bottom plate 76 between two left and two fixture block 74 bottoms on right side, bottom plate 76 is used for placing the cinerary casket, dog 77 has all been welded to the middle part and the right part of roof 3 bottom, baffle 71 all contacts with an adjacent dog 77 along moving.
As shown in fig. 5, the anti-skid device further comprises anti-skid strips 12, and six anti-skid strips 12 are connected to the middle part of the bottom plate 76.
When the device is used, a worker pulls the tray 61 to move forwards and extend through the first handle 62, the tray 61 moves forwards to drive the first sliding rod 63 to slide forwards, after the tray 61 at the lower part moves forwards and extends, the worker can directly place a cinerary casket in the tray 61, how to push the tray 61 to move backwards and reset, when the tray 61 at the upper part moves forwards, the second sliding rod 72 drives the baffle 71 to move forwards, when the baffle 71 moves forwards to be contacted with the baffle 77, the baffle 71 is extruded by the baffle 77 to move backwards by the continuous forward movement of the tray 61 at the upper part, the baffle 71 moves backwards to drive the second sliding rod 72 to slide backwards on the tray 61 at the upper part, the first elastic piece 73 deforms, the clamping block 74 is not clamped any more after the second sliding rod 72 slides backwards, under the action of the clamping block 74, the clamping block 74 slides downwards to drive the bottom plate 76 to move downwards to extend out of the tray 61, at this time, the operator can place the cinerary casket on the bottom plate 76 from the lower part of the tray 61, the antislip strip 12 can prevent the cinerary casket from moving on the bottom plate 76, after the cinerary casket is placed, the operator pushes the bottom plate 76 to move upwards, the bottom plate 76 moves upwards to drive the fixture block 74 to slide upwards to reset, the bottom plate 76 moves upwards and simultaneously drives the cinerary casket to move upwards to enter the tray 61, after the cinerary casket is placed, the operator pushes the tray 61 on the upper part to move backwards, the tray 61 moves backwards to drive the first slide bar 63 to slide backwards to reset, the tray 61 on the upper part moves upwards and simultaneously causes the second slide bar 72 to drive the baffle 71 to move backwards and not to be extruded by the stop block 77, at this time, under the reset action of the first elastic member 73, the second slide bar 72 slides forwards on the tray 61 on the upper part to reinsert in the fixture block 74, and further, the position of the bottom plate 76 is fixed, so that the cinerary casket is kept in the tray 61, the rearward movement of the tray 61 causes the cinerary urn to enter the compartment formed by the side plates 2, the top plate 3, the cross plate 4 and the partition 5, thereby storing the cinerary urn.
Example 2
On the basis of embodiment 1, as shown in fig. 3, fig. 5 and fig. 8, the cinerary casket further comprises a limiting mechanism 8, the limiting mechanism 8 can limit the cinerary casket, the limiting mechanism 8 comprises connecting pieces 81, third slide bars 82, second elastic pieces 83 and limiting blocks 84, a group of connecting pieces 81 are welded at the rear part of the bottom plate 76, the same group of connecting pieces 81 are welded at the rear part of the bottom in the two trays 61 at the lower part, the connecting pieces 81 are two in a group, the connecting pieces 81 in each group are arranged in bilateral symmetry, the third slide bars 82 are connected between the two connecting pieces 81 in each group, the limiting blocks 84 are connected at the left part and the right part in a sliding manner, the second elastic pieces 83 are connected between the limiting blocks 84 and the adjacent third slide bars 82, and the second elastic pieces 83 are compression springs.
When the device is used, a worker pushes the two limit blocks 84 on the same third sliding rod 82 to slide back to back, the second elastic piece 83 deforms, the limit blocks 84 slide back to back and stretch, the cinerary casket is placed between the two limit blocks 84, after the cinerary casket is placed, the worker loosens the limit blocks 84, and under the reset effect of the second elastic piece 83, the limit blocks 84 slide in opposite directions to reset and clamp the cinerary casket, so that the cinerary casket is prevented from shaking in the tray 61.
As shown in fig. 1, fig. 9 and fig. 10, the multifunctional desk further comprises a nameplate mechanism 9, a nameplate portrait can be placed on the nameplate mechanism 9, the nameplate mechanism 9 comprises a portrait placing frame 91, a cover plate 92, a fixing frame 93, a lifting rod 94, a third elastic piece 95 and a transparent plate 96, the middle of the front side of the tray 61 is connected with the portrait placing frame 91, the upper portion of the portrait placing frame 91 is rotatably connected with the cover plate 92, the cover plate 92 is attached to the top of the adjacent portrait placing frame 91, the right portion of the cover plate 92 is welded with the fixing frame 93, the lifting rod 94 is slidably connected onto the fixing frame 93, the lower portion of the lifting rod 94 is inserted into the adjacent portrait placing frame 91, the third elastic piece 95 is connected between the lifting rod 94 and the adjacent fixing frame 93, the third elastic piece 95 is a compression spring, and the front side of the portrait placing frame 91 is connected with the transparent plate 96.
When using the device, the staff pulls the shadoof 94 and upwards slides, third elastic component 95 takes place deformation, shadoof 94 no longer blocks the portrait after upwards sliding and places frame 91, at this moment, the staff alright promote apron 92 and rotate forward and open, then the staff puts into the portrait from the top and places in the frame 91, the portrait is put well the back, the staff promotes apron 92 and rotates backward and closes, then loosen shadoof 94, under the effect that third elastic component 95 resets, shadoof 94 slides downwards thereupon and resets and inserts in the portrait places frame 91, and then the position of fixed apron 92, and staff's transparent plate 96 is watched the portrait of deceased in placing frame 91.
As shown in fig. 10 and 11, the multifunctional deadee statue placing device further comprises a cleaning mechanism 10, the cleaning mechanism 10 can clean the transparent plate 96, the cleaning mechanism 10 comprises a fourth slide bar 101, a rubber strip 102 and a lifting plate 103, the deadee placing frame 91 is connected with the fourth slide bar 101 in a sliding manner, the middle of the fourth slide bar 101 is connected with the rubber strip 102, the rubber strip 102 is attached to the adjacent transparent plate 96, and the middle of the rubber strip 102 is connected with the lifting plate 103.
When the device is used, a worker pushes the lifting plate 103 to move upwards, the lifting plate 103 drives the rubber strip 102 to move upwards, the rubber strip 102 moves upwards to drive the fourth sliding rod 101 to slide upwards, dust on the surface of the transparent plate 96 can be cleaned when the rubber strip 102 moves upwards, the dust is prevented from influencing and viewing the portrait of the dead, after cleaning is completed, the worker pushes the lifting plate 103 to move downwards, and the lifting plate 103 moves downwards to drive the fourth sliding rod 101 to slide downwards through the rubber strip 102 to reset.
As shown in fig. 12 and fig. 13, the cinerary casket moisture-proof device further comprises a moisture-proof mechanism 11, the moisture-proof mechanism 11 can prevent the cinerary casket from being wetted, the moisture-proof mechanism 11 comprises a connecting plate 1101, a moisture collecting box 1102, a desiccant placing box 1103 and a second handle 1104, the middle part of the first sliding bar 63 is connected with the two connecting plates 1101, the moisture collecting box 1102 is welded between the tops of the two adjacent connecting plates 1101, the desiccant placing box 1103 is connected in the moisture collecting box 1102 in a sliding manner, the desiccant placing box 1103 is used for placing desiccant, and the second handle 1104 is welded on the left side of the desiccant placing box 1103.
When using the device, the staff places box 1103 and slides left through second handle 1104 pulling drier and open, then the staff puts into the drier with the drier and places the box 1103 in, put the back, the staff places box 1103 and slides right and get into in the moisture collects box 1102 through second handle 1104 promotion drier, at the in-process of depositing the cinerary casket, the inside moisture of this device can enter into in the moisture collects box 1102, place the drier in the box 1103 through the drier and adsorb, thereby realize damp-proof purpose.
The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, various changes, modifications and substitutions can be made without departing from the spirit of the present invention, and these are all within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (8)

1. The utility model provides a bone ash storage rack of forked tail mortise-tenon structure, including installation base (1), curb plate (2), roof (3), diaphragm (4) and baffle (5), installation base (1) upside is connected with curb plate (2), curb plate (2) upper portion is connected with roof (3), curb plate (2) middle part is connected with diaphragm (4), both sides all are connected with baffle (5) about diaphragm (4) middle part, baffle (5) are connected with installation base (1) and roof (3) respectively, its characterized in that: the cinerary casket automatic opening device is characterized by further comprising an opening mechanism (6) and a lifting mechanism (7), wherein the opening mechanism (6) for placing cinerary casket is arranged between the side plate (2) and the partition plate (5), and the lifting mechanism (7) for facilitating the placement of high-rise cinerary casket by workers is arranged between the top plate (3) and the opening mechanism (6).
2. The bone ash storage rack of a dovetail mortise and tenon joint structure as claimed in claim 1, wherein: the pull-open mechanism (6) comprises a tray (61), a first handle (62) and a first sliding rod (63), wherein the left side and the right side of the side plate (2) are both connected with the two first sliding rods (63) in a sliding manner, the inner ends of the first sliding rods (63) are both connected with an adjacent partition plate (5) in a sliding manner, the tray (61) is connected onto the first sliding rods (63), and the lower part of the front side of the tray (61) is connected with the first handle (62).
3. The bone ash storage rack of a dovetail mortise and tenon joint structure as claimed in claim 2, wherein: the lifting mechanism (7) comprises a baffle (71), second sliding rods (72), first elastic pieces (73), clamping blocks (74), lantern rings (75), a bottom plate (76) and a stop block (77), the upper right parts of the two trays (61) on the upper part are connected with the second sliding rods (72) in a sliding manner, the rear ends of the second sliding rods (72) are connected with the baffle (71), the first elastic pieces (73) are connected between the second sliding rods (72) and the adjacent trays (61), the left sides and the right sides of the inner lower parts of the two trays (61) on the upper part are connected with the lantern rings (75), the clamping blocks (74) are connected in the lantern rings (75) in a sliding manner, the front ends of the second sliding rods (72) are inserted into the adjacent clamping blocks (74), the bottom plate (76) is connected between the bottoms of the two clamping blocks (74) on the left side and the right side, the middle part and the right part of the bottom of the top plate (3) are connected with the stop block (77), the shutter plates (71) are moved forward to be in contact with an adjacent one of the stoppers (77).
4. The bone ash storage rack of a dovetail mortise and tenon joint structure as claimed in claim 2, wherein: still including being used for carrying out spacing stop gear (8) to the cinerary casket, stop gear (8) are including connecting piece (81), third slide bar (82), second elastic component (83) and stopper (84), bottom plate (76) rear portion all is connected with a set of connecting piece (81), the rear portion position of bottom all is connected with the same a set of connecting piece (81) in two trays (61) of lower part, connecting piece (81) are a set of two, all be connected with third slide bar (82) between two connecting pieces (81) of every group, the equal slidingtype in two portions is connected with stopper (84) about third slide bar (82), all be connected with second elastic component (83) between stopper (84) and adjacent third slide bar (82).
5. The bone ash storage rack of a dovetail mortise and tenon joint structure as claimed in claim 2, wherein: still including data plate mechanism (9) that is used for placing the data plate portrait of deceased, frame (91) is placed including the portrait in data plate mechanism (9), apron (92), mount (93), shadoof (94), third elastic component (95) and transparent plate (96), tray (61) front side middle part all is connected with the portrait and places frame (91), the portrait is placed frame (91) upper portion equal rotary type and is connected with apron (92), apron (92) right part all is connected with mount (93), all sliding type connection has shadoof (94) on mount (93), shadoof (94) lower part all inserts in adjacent portrait places frame (91), all be connected with third elastic component (95) between shadoof (94) and adjacent mount (93), the portrait is placed frame (91) front side and all is connected with transparent plate (96).
6. The bone ash storage rack of a dovetail mortise and tenon joint structure as claimed in claim 5, wherein: still including being used for carrying out clear clean mechanism (10) to transparent plate (96), clean mechanism (10) are including fourth slide bar (101), rubber strip (102) and lifting plate (103), and it is all sliding connection with fourth slide bar (101) on frame (91) to place the portrait, and fourth slide bar (101) middle part all is connected with rubber strip (102), and rubber strip (102) all laminates with adjacent transparent plate (96), and rubber strip (102) middle part all is connected with lifting plate (103).
7. The bone ash storage rack with the dovetail mortise and tenon structure as claimed in claim 2, wherein: still including being used for preventing that the cinerary casket from weing dampproofing mechanism (11), dampproofing mechanism (11) are including connecting plate (1101), box (1102) are collected to the moisture, box (1103) and second handle (1104) are placed to the drier, first slide bar (63) middle part all is connected with two connecting plates (1101), all be connected with moisture between two adjacent connecting plates (1101) tops and collect box (1102), box (1103) are placed to equal sliding connection in moisture collection box (1102) has the drier, box (1103) are placed to the drier all is connected with second handle (1104) on the left side.
8. The bone ash storage rack with a dovetail mortise and tenon structure as claimed in claim 3, wherein: the anti-skid device further comprises anti-skid strips (12), and the middle part of the bottom plate (76) is connected with a row of anti-skid strips (12).
CN202210739421.0A 2022-06-28 2022-06-28 Bone ash storage rack with dovetail mortise and tenon structure Active CN115030596B (en)

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Citations (10)

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