CN114482684B - Cinerary casket storage rack capable of preventing moisture and mildew - Google Patents

Cinerary casket storage rack capable of preventing moisture and mildew Download PDF

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Publication number
CN114482684B
CN114482684B CN202210076317.8A CN202210076317A CN114482684B CN 114482684 B CN114482684 B CN 114482684B CN 202210076317 A CN202210076317 A CN 202210076317A CN 114482684 B CN114482684 B CN 114482684B
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shell
clamping
plates
connecting rods
sides
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CN114482684A (en
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聂迎
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Jiangxi Jinchen Technology Co ltd
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Jiangxi Jinchen 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
    • 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
    • E04H13/005Ventilation systems therefor
    • 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)

Abstract

The invention relates to a cinerary casket storage rack, in particular to a cinerary casket storage rack capable of preventing moisture and mold. The invention provides a cinerary casket storage rack with high ventilation performance and moisture and mildew resistance. A cinerary casket storage rack capable of preventing moisture and mildew comprises a base; the top of the base is connected with a shell for storing cinerary casket, the middle part in the shell is uniformly spaced with a first through hole, and the middle part in the shell is uniformly spaced with a second through hole; the opening assembly is arranged at the front side of the shell; and the ventilation assembly is arranged outside the shell. According to the invention, through the cooperation between the first through hole, the second through hole and the fan, the fan can accelerate the flow speed of air in the shell, so that the air circulation is ensured, and the dampproof effect is improved.

Description

Cinerary casket storage rack capable of preventing moisture and mildew
Technical Field
The invention relates to a cinerary casket storage rack, in particular to a cinerary casket storage rack capable of preventing moisture and mold.
Background
Along with the innovation and development of the times, in order to save land resources, the development direction of funeral innovation changes the cremation into cremation and then puts the bone ash into a cremation urn for storage, and the innovation is favorable for saving land and protecting the environment.
The patent publication number is CN211258018U, a waterproof and moistureproof storage rack with good sealing performance is disclosed, the storage rack comprises a cinerary casket storage cabinet body, the cinerary casket storage cabinet body is formed by enclosing a top plate, a bottom plate, two side plates and a back plate, a plurality of parallel transverse partition plates and longitudinal partition plates are arranged in the cinerary casket storage cabinet body, the cinerary casket storage cabinet body is divided into a plurality of cinerary casket storage unit cells by the transverse partition plates and the longitudinal partition plates, moistureproof cushion units are arranged in the cinerary casket storage unit cells, each moistureproof cushion unit comprises two parallel longitudinal moistureproof cushion plates and two parallel transverse moistureproof cushion plates, and the adjacent longitudinal moistureproof cushion plates and the transverse moistureproof cushion plates are spliced to form a square which is suitable for the inner cavity of the cinerary casket storage unit cells; the back of the longitudinal dampproof backing plate and the transverse dampproof backing plate are provided with clamping convex edges, the side surfaces of the top plate, the bottom plate, the transverse partition plate and the longitudinal partition plate are provided with clamping grooves corresponding to the clamping convex edges, and the cross sections of the clamping convex edges and the clamping grooves are T-shaped. But this equipment is dampproofing through dampproofing backing plate only, and does not possess the function of ventilation, leads to the inside air fluxion of storage rack relatively poor, so, dampproofing performance is relatively poor.
In view of the foregoing, it is desirable to provide a urn storage rack that is moisture-proof and mildew-proof to solve the above-mentioned problems.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides the cinerary casket storage rack with higher ventilation performance and moisture and mildew resistance, so as to overcome the defect of poor moisture resistance caused by poor air circulation in the existing storage rack.
In order to achieve the above object, the present invention is realized by the following scheme: a cinerary casket storage rack capable of preventing moisture and mildew, which comprises:
a base;
the top of the base is connected with a shell for storing the crematory urn, the middle part in the shell is uniformly spaced with first through holes for ensuring the air circulation in the shell, and the middle part in the shell is uniformly spaced with second through holes for ensuring the air circulation in the shell;
an opening assembly for closing the shell is arranged on the front side of the shell;
and the ventilation assembly is arranged outside the shell and used for accelerating the air flow speed inside the shell.
Furthermore, it is particularly preferred that the opening assembly comprises:
the baffle plate is symmetrically and rotationally connected with the left side and the right side of the front part of the shell and is used for closing the shell;
the inner sides of the four baffles are respectively connected with a handle in a sliding manner, and the handles are used for driving the baffles to rotate;
the rear sides of the four handles are respectively and vertically symmetrically connected with the first limiting rods;
and the first springs are connected between the eight first limiting rods and the baffle plates on the same side.
Furthermore, it is particularly preferred that the ventilation assembly comprises:
the left side and the right side of the shell are connected with two first connecting plates;
the protection cover is connected between the two first connecting plates at the same side and used for wrapping the part;
the fans are uniformly and rotatably connected with 6 fans which are used for accelerating the air flow speed in the shell at intervals.
In addition, it is especially preferable that the baffle plate positioning device further comprises a positioning component for limiting the baffle plate, and the positioning component comprises:
the upper side and the lower side of the front side inside the shell are both provided with two clamping blocks for clamping the baffle in a sliding manner;
the outer sides of the four clamping blocks are connected with the shell through the third springs;
the U-shaped connecting rods are connected with one sides, close to the handles, of the four baffles in a sliding manner, and are used for driving the clamping blocks to move;
the outer sides of the U-shaped connecting rods are connected with the baffle plates on the same side;
the limiting blocks are connected to the rear sides of the two first limiting rods at the uppermost side and the rear sides of the two first limiting rods at the lowermost side;
and the middle parts of the four U-shaped connecting rods are respectively provided with a third connecting rod.
Furthermore, it is particularly preferred that a clamping assembly for clamping the urn is also included, the clamping assembly comprising:
the shell is in a four-square grid structure, and two second limiting rods are arranged on the left side and the right side of the inner wall of each grid in a sliding mode;
the second connecting plates are connected between the rear sides of the second limiting rods in the same grid;
the second springs are connected between the rear sides of the four second connecting plates and the inner rear wall of the shell;
the inner sides of the front parts of the four second connecting plates are connected with first connecting rods for driving the second connecting plates to move;
the left side and the right side of the inner wall of the four lattices are respectively connected with four second connecting rods;
the thirty-two second connecting rods are respectively and rotatably connected with a clamping plate for clamping the crematory urn;
and two first torsion springs are connected between the outer sides of the thirty-two clamping plates and the second connecting rod on the same side.
In addition, it is particularly preferable that the drying device further comprises a drying assembly for drying the interior of the casing, and the drying assembly comprises:
the front sides of the four grids are connected with two connecting blocks;
the tops of the eight connecting blocks are connected with rotating shafts;
the placing plates are rotationally connected between the eight rotating shafts and the connecting blocks on the same side;
resistance rings are arranged in the eight placing plates;
and the drying agent is clamped inside the eight resistance rings, and is used for drying the inside of the shell.
In addition, it is particularly preferable that the device further comprises a driving component for driving the placing plate to rotate, and the driving component comprises:
the inner rear walls of the four grids are connected with two fourth connecting rods;
the fifth connecting rods are connected with the eight fourth connecting rods in a sliding mode;
the rear sides of the eight fourth connecting rods are sleeved with the fifth springs, and two ends of each of the eight fifth springs are respectively connected with the fifth connecting rods on the same side and the machine shell;
the opposite sides of the eight placing plates are respectively wound with a pull wire, and one ends of the eight pull wires are respectively connected with the front sides of the fifth connecting rods on the same side;
and the second torsion springs are connected between the eight rotating shafts and the placing plates on the same side.
In addition, it is particularly preferable that the material of the baffle plate is wood.
In addition, it is particularly preferable that the inner sides of the four clips are toothed.
The invention has at least one of the following advantages: 1. according to the invention, through the cooperation between the first through hole, the second through hole and the fan, the fan can accelerate the flow speed of air in the shell, so that the air circulation is ensured, and the dampproof effect is improved.
2. According to the invention, the baffle is made of wood, and the clamping blocks are toothed, so that the clamping blocks can clamp the baffle and limit the baffle, and the baffle can be prevented from being opened by itself.
3. The invention makes the clamping plate reverse to clamp the crematory urn under the reset action of the first torsion spring, thus avoiding the crematory urn from being dithered in the shell due to the impact of the equipment by external factors and damaging the crematory urn.
4. The invention is provided with the drying agent, so that the drying agent can dry the interior of the shell, and the problem that the cinerary casket is affected with damp and moldy due to over-moist air in the shell is avoided.
5. According to the invention, the pull wire is tensioned and loosened through the fifth connecting rod, so that the placing plate can automatically rotate under the reset action of the second torsion spring, and therefore, people do not need to manually rotate the placing plate, and the trouble of manual operation is further reduced.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a schematic perspective view of a second embodiment of the present invention.
Fig. 3 is a schematic cross-sectional perspective view of the opening assembly of the present invention.
Fig. 4 is an enlarged perspective view of the present invention at a.
Fig. 5 is a schematic cross-sectional perspective view of the vent assembly of the present invention.
Fig. 6 is a schematic perspective view of a detent assembly of the present invention.
Fig. 7 is an enlarged perspective view of the structure of the present invention at B.
Fig. 8 is a schematic cross-sectional perspective view of a detent assembly of the present invention.
Fig. 9 is an enlarged perspective view of the present invention at C.
Fig. 10 is a schematic perspective view of a clamping assembly according to the present invention.
Fig. 11 is an enlarged perspective view of the present invention at D.
Fig. 12 is a schematic perspective view of a drying module according to the present invention.
Fig. 13 is an enlarged perspective view of the present invention at E.
Fig. 14 is a schematic perspective view of a driving assembly according to the present invention.
Wherein the above figures include the following reference numerals: 1. the base, 2, the casing, 3, the first through hole, 4, the second through hole, 5, the opening component, 51, the baffle, 52, the handle, 53, the first stop lever, 54, the first spring, 6, the ventilation component, 61, the first connecting plate, 62, the protective cover, 63, the fan, 7, the clamping component, 71, the clamping block, 72, the third spring, 73, the U-shaped connecting rod, 74, the fourth spring, 75, the limiting block, 76, the third connecting rod, 8, the clamping component, 81, the second connecting plate, 82, the first connecting rod, 83, the second stop lever, 84, the second spring, 85, the second connecting rod, 86, the clamping plate, 87, the first torsion spring, 9, the drying component, 91, the connecting block, 92, the placing plate, 93, the resistance ring, 94, the drying agent, 95, the rotating shaft, 10, the driving component, 101, the fourth connecting rod, 102, the fifth connecting rod, 103, the fifth spring, 104, the stay wire, 105, the second torsion spring.
Detailed Description
The invention will be further described with reference to the accompanying drawings and detailed description below:
example 1
Referring to fig. 1 and 2, the cinerary casket storage rack capable of preventing moisture and mildew comprises a base 1, a shell 2, a first through hole 3, a second through hole 4, an opening component 5 and a ventilation component 6, wherein the top of the base 1 is welded with the shell 2, the shell 2 is used for storing cinerary caskets, the first through holes 3 are uniformly spaced in the middle of the shell 2, the first through holes 3 are used for guaranteeing the air circulation inside the shell 2, the second through holes 4 are uniformly spaced in the middle of the shell 2, the second through holes 4 are used for guaranteeing the air circulation inside the shell 2, the second through holes 4 are positioned below the first through holes 3, the opening component 5 is arranged on the front side of the shell 2 and used for closing the shell 2, the ventilation component 6 is arranged on the outer side of the shell 2, and the ventilation component 6 is used for accelerating the air flow speed inside the shell 2.
Referring to fig. 1, 3 and 4, the opening assembly 5 includes a baffle plate 51, a handle 52, a first limiting rod 53 and a first spring 54, the baffle plate 51 is hinged on the left side and the right side of the front portion of the casing 2 in an up-down symmetrical manner, the baffle plate 51 is used for closing the casing 2, the baffle plate 51 is made of wood, the inner sides of the four baffle plates 51 are all connected with the handle 52 in a sliding manner, the handle 52 is used for driving the baffle plate 51 to rotate, the first limiting rods 53 are welded on the rear sides of the four handle 52 in an up-down symmetrical manner, and the first springs 54 are connected between the eight first limiting rods 53 and the baffle plate 51 on the same side.
Referring to fig. 1 and 5, the ventilation assembly 6 includes a first connecting plate 61, a protecting cover 62 and fans 63, two first connecting plates 61 are welded on the left and right sides of the casing 2, a protecting cover 62 is welded between the two first connecting plates 61 on the same side, the protecting cover 62 is used for wrapping components, 6 fans 63 are uniformly and rotatably connected in the two protecting covers 62 at intervals, and the fans 63 are used for accelerating the air flow velocity in the casing 2.
When the cinerary casket is used, the user manually grasps the handle 52 to pull the handle 52 forwards, the handle 52 drives the first limiting rod 53 to move forwards, the first spring 54 is compressed at the moment, the baffle plate 51 is driven to rotate forwards to be opened, the first limiting rod 53 is released, the first spring 54 is reset at the moment, the user places the cinerary casket of the user into the machine shell 2, then the baffle plate 51 is reversed, the baffle plate 51 drives the handle 52 and the first limiting rod 53 to rotate backwards to reset, the first through hole 3 and the second through hole 4 can ensure the air circulation, the fan 63 is started, the fan 63 can accelerate the air circulation in the machine shell 2, so that ventilation can be carried out in the machine shell 2, the phenomenon that the interior of the machine shell 2 is too wet is avoided, the cinerary casket is mildewed is avoided, when the cinerary casket needs to be taken out, the operation is repeated, and when the user does not need to use, the fan 63 is closed.
Example 2
On the basis of embodiment 1, please refer to fig. 2, fig. 6, fig. 7, fig. 8 and fig. 9, still including screens subassembly 7, screens subassembly 7 is used for spacing baffle 51, screens subassembly 7 is including fixture block 71, third spring 72, U-shaped connecting rod 73, fourth spring 74, stopper 75 and third connecting rod 76, the upper and lower both sides of the inside front side of casing 2 all are equipped with two fixture blocks 71, fixture block 71 is used for blocking baffle 51, four fixture block 71 inboard is the cusp, four fixture blocks 71 all contact with baffle 51 of homonymous, all be connected with third spring 72 between four fixture block 71 outsides and casing 2, the inside one side that is close to handle 52 of four baffle 51 all is connected with U-shaped connecting rod 73, U-shaped connecting rod 73 all is connected with fourth spring 74 between the baffle 51 of homonymous, four U-shaped connecting rod 73 outsides all contact with the first gag lever 53 of homonymous side, four U-shaped connecting rod 73 inboard all contacts with the homonymous fixture block 71, the two sides of the first side and the third connecting rod 53 of homonymous side are equipped with stopper 76 all welded with the third connecting rod 75 at the bottom of the same side.
Because the baffle plate 51 is made of wood, and the clamping blocks 71 are toothed, the baffle plate 51 cannot be opened, when the handle 52 is pulled forwards by the family members of the dead, the handle 52 drives the first limiting rod 53 to move forwards, and then drives the limiting block 75 to move forwards, so that the first limiting rod 53 and the limiting block 75 are separated from the third connecting rod 76, the fourth spring 74 in the initial state is in the compressed state, and drives the U-shaped connecting rod 73 and the third connecting rod 76 to move inwards, so that the U-shaped connecting rod 73 drives the clamping blocks 71 to move inwards, and the third spring 72 is compressed, so that the clamping blocks 71 are separated from the baffle plate 51, so that the family members of the dead can open the baffle plate 51, and when the baffle plate 51 is reversely reset, the first limiting rod 53 and the limiting block 75 are driven to move and reset, the limiting block 75 is driven to move backwards to contact the third connecting rod 76, and then drives the third connecting rod 76 and the U-shaped connecting rod 73 to move outwards for reset, and the fourth spring 74 is compressed, and the third spring 72 is reset, so that the clamping blocks 71 are driven to move outwards for reset, and the clamping blocks 71 are blocked on the same side, and the baffle plate 51 can be prevented from being opened by oneself.
Referring to fig. 2, 10 and 11, the cinerary casket clamping device further comprises a clamping assembly 8, the clamping assembly 8 is used for clamping the cinerary casket, the clamping assembly 8 comprises a second connecting plate 81, a first connecting rod 82, a second limiting rod 83, a second spring 84, a second connecting rod 85, clamping plates 86 and a first torsion spring 87, the structure of the casing 2 is a four-grid, two second limiting rods 83 are slidably arranged on the left side and the right side of each grid inner wall, the second connecting plates 81 are welded between the rear sides of the second limiting rods 83 in the same grid, the rear sides of the four second connecting plates 81 are connected with the second springs 84 between the rear walls in the casing 2, the inner sides of the front parts of the four second connecting plates 81 are welded with the first connecting rods 82, the first connecting rods 82 are used for driving the second connecting plates 81 to move, the front sides of the four first connecting rods 82 are in contact with the baffle plates 51 on the same side, the left side and the right side of the four grid inner walls are welded with the four second connecting rods 85, the thirty-second connecting rods 85 are rotationally connected with the clamping plates 86, and the clamping plates 86 are used for clamping the cinerary casket clamping plates 86 and are connected with the second torsion springs on the outer sides of the two second connecting plates 85.
When the baffle plate 51 is opened, the baffle plate 51 is separated from the first connecting rod 82, the second spring 84 in the initial state is in a compressed state at this time, the second connecting plate 81 is driven to move forwards, the second connecting plate 81 drives the second limiting rod 83 to move forwards, the second limiting rod 83 is driven to move forwards to be in contact with the clamping plate 86, the clamping plate 86 is driven to rotate backwards, the first torsion spring 87 is compressed at this time, then the deceased family members put the crematory urn into the shell 2, the baffle plate 51 is reversely reset, the baffle plate 51 is enabled to be in contact with the first connecting rod 82, the first connecting rod 82 is driven to move backwards, the first connecting rod 82 drives the second connecting plate 81 to move backwards, at this time, the second spring 84 is compressed, and then the second limiting rod 83 is driven to move backwards to reset, the second limiting rod 83 is enabled to be separated from the clamping plate 86, at this time, the first torsion spring 87 is driven to reversely reset, the clamping plate 86 is enabled to clamp the crematory urn, and the purpose of limiting the crematory urn is achieved, and the crematory urn is prevented from being dithered inside the shell 2 due to external factors.
Please refer to fig. 2, 12 and 13, still including drying assembly 9, drying assembly 9 is used for drying casing 2 inside, drying assembly 9 is including connecting block 91, place board 92, resistance ring 93, drier 94 and pivot 95, four inside front sides of check all weld two connecting blocks 91, eight connecting block 91 tops all weld the pivot 95, eight pivot 95 all are connected with between the connecting block 91 of homonymy rotation formula and place board 92, eight are placed the inside resistance ring 93 that all is equipped with of board 92, eight resistance ring 93 inside all the joint has drier 94. The desiccant 94 is used to dry the interior of the cabinet 2.
Through being equipped with drier 94, drier 94 can dry casing 2 inside, and when drier 94 need change, manual rotation places board 92, places board 92 and drives drier 94, resistance ring 93 and place board 92 rotation, later change drier 94 can, with changing, reverse place board 92 for place board 92 drives drier 94 and resistance ring 93 and resets.
Referring to fig. 2 and 14, the driving assembly 10 is further included, the driving assembly 10 is configured to drive the placement plate 92 to rotate, the driving assembly 10 includes a fourth link 101, a fifth link 102, a fifth spring 103, a pull wire 104 and a second torsion spring 105, two fourth links 101 are welded on inner rear walls of four grids, fifth links 102 are slidably connected to each of the eight fourth links 101, pull wires 104 are wound on opposite sides of the eight placement plate 92, one ends of the eight pull wires 104 are connected to front sides of the fifth links 102 on the same side, the rear sides of the eight fourth links 101 are sleeved with the fifth springs 103, two ends of the eight fifth springs 103 are connected to the fifth links 102 and the casing 2 on the same side, and the second torsion springs 105 are connected between the eight rotating shafts 95 and the placement plate 92 on the same side.
When the second connecting plate 81 moves forward to be separated from the fifth connecting rod 102, the fifth spring 103 resets to drive the fifth connecting rod 102 to move forward, so that the fifth connecting rod 102 relaxes the stay wire 104, the second torsion spring 105 which is in a deformed state at the moment resets to drive the placing plate 92 to rotate, so that the placing plate 92 winds the stay wire 104, the placing plate 92 does not need to be manually rotated, the trouble of manual operation is reduced, then people can check whether the drying agent 94 needs to be replaced, when the second connecting plate 81 moves backward to be in contact with the fifth connecting rod 102, the fifth connecting rod 102 is driven to move backward to reset, the fifth spring 103 is compressed, the fifth connecting rod 102 drives the stay wire 104 to move, the placing plate 92 is driven to reversely reset through the stay wire 104, and the second torsion spring 105 deforms at the moment.
It will be apparent to those skilled in the art from this disclosure that various other changes and modifications can be made which are within the scope of the invention as defined in the appended claims.

Claims (6)

1. A cinerary casket storage rack capable of preventing moisture and mold, which is characterized in that: comprises the following steps:
a base (1);
the crematory urn cabinet comprises a machine shell (2), wherein the top of a base (1) is connected with the machine shell (2) for storing the crematory urn, first through holes (3) for guaranteeing the air circulation inside the machine shell (2) are uniformly spaced at the middle part inside the machine shell (2), and second through holes (4) for guaranteeing the air circulation inside the machine shell (2) are uniformly spaced at the middle part inside the machine shell (2);
an opening component (5), wherein the front side of the machine shell (2) is provided with the opening component (5) for closing the machine shell (2);
the ventilation assembly (6) is arranged outside the machine shell (2) and used for accelerating the air flow speed inside the machine shell (2);
the ventilation assembly (6) comprises:
the first connecting plates (61) are connected with the two first connecting plates (61) on the left side and the right side of the shell (2);
a protective cover (62), wherein the protective cover (62) used for wrapping the component is connected between the two first connecting plates (61) on the same side;
the fans (63) are uniformly and rotatably connected with 6 fans (63) for accelerating the air flow speed in the shell (2) at intervals in the two protective covers (62);
the opening assembly (5) comprises:
the baffle plate (51) is symmetrically and rotationally connected with the baffle plate (51) for closing the shell (2) from top to bottom at the left side and the right side of the front part of the shell (2);
the handles (52) are connected with the inner sides of the four baffles (51) in a sliding manner, and the handles (52) are used for driving the baffles (51) to rotate;
the rear sides of the four handles (52) are respectively and vertically symmetrically connected with the first limiting rods (53);
the first springs (54) are connected between the eight first limiting rods (53) and the baffle plates (51) on the same side;
still including being used for carrying out spacing screens subassembly (7) to baffle (51), screens subassembly (7) including:
the upper side and the lower side of the front side inside the shell (2) are both provided with two clamping blocks (71) for clamping the baffle plate (51) in a sliding manner;
a third spring (72) connected between the outer sides of the four clamping blocks (71) and the casing (2)
A third spring (72);
the U-shaped connecting rods (73) are connected with one sides, close to the handles (52), of the four baffles (51) in a sliding mode, and the U-shaped connecting rods (73) are used for driving the clamping blocks (71) to move;
a fourth spring (74), wherein the fourth spring (74) is connected between the outer sides of the U-shaped connecting rods (73) and the baffle plates (51) on the same side;
the limiting blocks (75) are connected to the rear sides of the two first limiting rods (53) at the uppermost side and the rear sides of the two first limiting rods (53) at the lowermost side;
and the third connecting rods (76) are arranged in the middle of the four U-shaped connecting rods (73).
2. A moisture and mildew resistant urn storage as set forth in claim 1, wherein: the cinerary casket is characterized by further comprising a clamping assembly (8) for clamping the cinerary casket, wherein the clamping assembly (8) comprises:
the second limiting rods (83) are arranged on the left side and the right side of the inner wall of each grid in a sliding mode, and the two second limiting rods (83) are arranged on the left side and the right side of the inner wall of each grid in a sliding mode;
the second connecting plates (81) are connected between the rear sides of the second limiting rods (83) in the same grid;
the second springs (84) are connected between the rear sides of the four second connecting plates (81) and the inner rear wall of the shell (2);
the inner sides of the front parts of the four second connecting plates (81) are respectively connected with a first connecting rod (82) for driving the second connecting plates (81) to move;
the left side and the right side of the inner wall of the four grids are connected with four second connecting rods (85);
a clamping plate (86), wherein the thirty-two second connecting rods (85) are respectively and rotatably connected with the clamping plate (86) for clamping the crematory urn;
and two first torsion springs (87) are connected between the outer sides of the thirty-two clamping plates (86) and the second connecting rod (85) on the same side.
3. A moisture and mildew resistant urn storage as claimed in claim 2, wherein: the drying assembly (9) is used for drying the interior of the shell (2), and the drying assembly (9) comprises:
the front sides of the four grids are connected with two connecting blocks (91);
the tops of the eight connecting blocks (91) are connected with the rotating shafts (95);
the placing plates (92) are rotatably connected between the eight rotating shafts (95) and the connecting blocks (91) on the same side;
resistance rings (93), wherein the resistance rings (93) are arranged in the eight placing plates (92);
and the drying agents (94) are respectively clamped inside the eight resistance rings (93), and the drying agents (94) used for drying the inside of the machine shell (2) are respectively clamped inside the eight resistance rings.
4. A moisture and mildew resistant urn storage as claimed in claim 3, wherein: the device also comprises a driving component (10) for driving the placing plate (92) to rotate, and the driving component (10) comprises:
the inner rear walls of the four grids are connected with two fourth connecting rods (101);
the fifth connecting rods (102) are connected with the eight fourth connecting rods (101) in a sliding mode, and the fifth connecting rods (102) are connected to the eight fourth connecting rods (101) in a sliding mode;
the rear sides of the eight fourth connecting rods (101) are sleeved with the fifth springs (103), and two ends of each of the eight fifth springs (103) are respectively connected with the fifth connecting rods (102) and the machine shell (2) on the same side;
the pull wires (104) are wound on one sides of the eight placing plates (92) which are opposite to each other, and one ends of the eight pull wires (104) are connected with the front sides of the fifth connecting rods (102) on the same side; and the second torsion springs (105) are connected between the eight rotating shafts (95) and the placing plates (92) on the same side.
5. A moisture and mildew resistant urn storage as set forth in claim 1, wherein: the baffle plate (51) is made of wood.
6. A moisture and mildew resistant urn storage as set forth in claim 1, wherein: the inner sides of the four clamping blocks (71) are toothed.
CN202210076317.8A 2022-01-24 2022-01-24 Cinerary casket storage rack capable of preventing moisture and mildew Active CN114482684B (en)

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