CN114562148B - Crematory urn storage rack convenient to take and place - Google Patents

Crematory urn storage rack convenient to take and place Download PDF

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Publication number
CN114562148B
CN114562148B CN202210229263.4A CN202210229263A CN114562148B CN 114562148 B CN114562148 B CN 114562148B CN 202210229263 A CN202210229263 A CN 202210229263A CN 114562148 B CN114562148 B CN 114562148B
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plates
sliding
plate
sides
placing
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CN114562148A (en
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陈俊康
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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

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Support Devices For Sliding Doors (AREA)
  • Housing For Livestock And Birds (AREA)

Abstract

The invention relates to a cinerary casket storage rack, in particular to a cinerary casket storage rack convenient to take and place. The invention provides a crematory urn storage rack which can clamp a crematory urn by itself and is convenient to take and place. A crematory urn storage rack convenient to take and place, which comprises a connecting rack; the middle part of the connecting frame is provided with a first connecting plate; the placing frame is arranged at the bottom of the connecting frame and the top of the first connecting plate; the centering mechanism is connected between the two placing frames; the automatic pushing mechanism is connected between the two placing frames. Under the reset action of the first spring, the clamping plate moves inwards to clamp the crematory urn, so that the stability of the crematory urn can be improved.

Description

Crematory urn storage rack convenient to take and place
Technical Field
The invention relates to a cinerary casket storage rack, in particular to a cinerary casket storage rack convenient to take and place.
Background
Patent publication number is CN208870485U, discloses a cinerary casket storage rack that practicality is good, including the base, fixed mounting has the storage rack on the roof of base, evenly has offered a plurality of storage mouths on the storage rack, all installs sealed lid on the lateral wall of every storage mouthful, is equipped with the pin in the storage mouthful, is equipped with the mounting panel in the storage mouthful, has placed the cinerary casket on the roof of mounting panel, and the bottom of mounting panel is equipped with buffer. The clamping plate can fix the crematory urn on the mounting plate, and prevent the crematory urn from moving left and right. However, when the device is used for fixing the crematory urn, the threaded rod needs to be manually rotated, so that the movable rod drives the clamping plate to move inwards to clamp the crematory urn, and therefore, the manual operation is troublesome.
In view of the foregoing, it is desirable to provide a urn storage rack that is convenient to take and place to solve the above-mentioned technical problems.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides the cinerary casket storage rack which can clamp the cinerary casket by itself and is convenient to take and place, so as to overcome the defect that the prior device needs to manually rotate a threaded rod to realize the clamping when fixing the cinerary casket, thus being more troublesome.
In order to achieve the above object, the present invention is realized by the following scheme: a crematory urn storage rack convenient to take and place, which comprises:
a connecting frame;
the middle part of the connecting frame is provided with a first connecting plate;
the bottom of the connecting frame and the top of the first connecting plate are respectively provided with a placing frame for storing the crematory urn;
the centering mechanism is connected between the two placing frames and used for clamping the crematory urn;
the automatic pushing mechanism is connected between the two placing frames and is used for driving the crematory urn to move out of the placing frames.
Further described, the centering mechanism comprises:
the left side and the right side of the two placing frames are symmetrically and longitudinally connected with the first connecting rods in a sliding mode;
the clamping plates are connected between the inner sides of the two adjacent first connecting rods and used for clamping the crematory urn;
and the inner sides of the eight first connecting rods are sleeved with the first springs, and two ends of the eight first springs are respectively connected with the clamping plates on the same side and the placing frames on the same side.
Further described, the automatic push-out mechanism includes:
the lower sides of the inner parts of the two placing frames are symmetrically connected with the second connecting rods in a left-right mode;
the first sliding plate is connected between the rear sides of the two second connecting rods on the same lateral side in a sliding manner and is used for pushing the crematory urn;
the second springs are connected between the front sides of the four second connecting rods and the front lower side of the first sliding plate on the same side;
the rear lower sides of the inner parts of the two placing frames are connected with the third connecting rods;
the lower sides of the two third connecting rods are connected with a blocking plate in a sliding mode, and the blocking plate is used for limiting the first sliding plate;
the top parts of the two blocking plates are connected with the upper sides of the third connecting rods on the same side by two third springs;
the pressing rods are connected with the pressing rods for driving the blocking plates to move in a sliding mode on the front lower sides of the two placing frames, and the rear sides of the two pressing rods are connected with the tops of the blocking plates on the same side.
Further, the device also comprises a buffer mechanism for decelerating the first sliding plate, and the buffer mechanism comprises:
the left side and the right side of the upper part in the two placing frames are connected with four first sliding sleeve plates;
the sixteen first sliding sleeve plates are respectively connected with a buffer plate for decelerating the first sliding plates in a sliding manner;
and the sixteen buffer plates are connected with the fourth springs between the first sliding sleeve plates at the same side.
Further, the device also comprises a shielding mechanism for closing the placing frame, and the shielding mechanism comprises:
the front lower sides of the two placing frames are symmetrically connected with the second connecting plates in a left-right mode;
the shielding plates are rotatably connected between the two second connecting plates at the same lateral side and are used for closing the placing frame;
torsion springs are connected between the left and right sides of the lower parts of the two shielding plates and the second connecting plates on the same side;
the front lower sides of the two placing frames are respectively connected with a first driving rod in a sliding mode, and the two first driving rods are respectively connected with the front sides of the bottoms of the pressing rods on the same side;
the rear sides of the two shielding plates are connected with two locking plates;
the front walls of the two placing frames are symmetrically connected with the second sliding sleeve plates;
the clamping rods are connected with the clamping rods used for clamping the locking plate in a sliding manner in the four second sliding sleeve plates;
and a fifth spring is connected between the upper sides of the four clamping rods and the top of the second sliding sleeve plate at the same side.
Further, the device also comprises an automatic closing mechanism for driving the shielding plate to rotate, and the automatic closing mechanism comprises:
the lower sides of the inner parts of the two placing frames are symmetrically connected with the fourth connecting rod in a left-right mode;
the front sides of the four fourth connecting rods are respectively connected with rack plates in a sliding manner;
the sixth springs are connected between the lower sides of the four rack plates and the front side of the fourth connecting rod on the same side;
the front sides of the lower parts in the two placing frames are symmetrically connected with the third connecting rings in a left-right mode, and the four third connecting rings are rotationally connected with rotating shafts;
the four rotating shafts are connected with spur gears, and the four rack plates are meshed after moving with the spur gears on the same side;
the left side and the right side of the lower parts of the two shielding plates are connected with the inner sides of the rotating shafts on the same side in a winding way through belt pulleys;
the front lower sides of the two placement frames are symmetrically connected with the second driving rods;
the lower parts of the two first sliding plates are symmetrically connected with the third sliding sleeve plate;
the four third sliding sleeve plates are connected with the third driving rod in a sliding manner;
and a seventh spring is connected between the outer sides of the four third driving rods and the third sliding sleeve plate at the same side.
Further, the device also comprises a supporting mechanism for supporting the shielding plate, and the supporting mechanism comprises:
the front lower sides of the two placing frames are symmetrically connected with the second sliding plates in a sliding mode in a left-right symmetry mode, and the second sliding plates are used for supporting the shielding plates;
the rear sides of the four second sliding plates are connected with driving plates;
and the eighth springs are sleeved on the four second sliding plates, and two ends of the four eighth springs are respectively connected with the driving plates on the same side and the placing frames on the same side.
Further, the inside of the two placing frames are symmetrically provided with sliding grooves.
The invention has at least one of the following advantages: 1. under the reset action of the first spring, the clamping plate moves inwards to clamp the crematory urn, so that the stability of the crematory urn can be improved.
2. According to the invention, the buffer plate is arranged, so that the first sliding plate can be limited in speed when the first sliding plate moves forwards, and the situation that the crematory urn falls on the ground due to the fact that the first sliding plate is forced too hard can be avoided.
3. The shielding plate is arranged, so that the shielding plate can close the placing frame, and dust can be prevented from entering the placing frame.
4. According to the invention, the rack plate moves forwards to be meshed with the spur gear, so that the spur gear rotates to drive the rotating shaft to rotate, and the rotating shaft drives the shielding plate to rotate upwards through the flat belt, so that the shielding plate can automatically rotate, and the placing frame is not required to be closed by manually controlling the shielding plate to rotate upwards.
5. According to the invention, the driving plate and the second sliding plate are driven to move forwards by the first sliding plate, so that the second sliding plate can support the shielding plate when the shielding plate rotates downwards.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a schematic cross-sectional perspective view of the present invention.
Fig. 3 is a schematic perspective view of a second embodiment of the present invention.
Fig. 4 is a schematic perspective view of a centering mechanism according to the present invention.
Fig. 5 is a schematic view of a second perspective of the centering mechanism of the present invention.
Fig. 6 is a schematic view of a first perspective structure of the automatic pushing mechanism of the present invention.
Fig. 7 is a schematic view of a second perspective structure of the automatic pushing mechanism of the present invention.
Fig. 8 is a schematic view of a first perspective structure of a buffer mechanism according to the present invention.
Fig. 9 is a schematic diagram of a second perspective structure of the buffering mechanism of the present invention.
Fig. 10 is a schematic perspective view of a shielding mechanism according to the present invention.
Fig. 11 is a schematic cross-sectional perspective view of a shielding mechanism of the present invention.
Fig. 12 is a schematic view showing a partial perspective structure of a first shielding mechanism according to the present invention.
Fig. 13 is a schematic view showing a partial perspective structure of a second shielding mechanism according to the present invention.
Fig. 14 is a schematic view showing a first perspective structure of the automatic closing mechanism of the present invention.
Fig. 15 is a schematic view showing a second perspective structure of the automatic closing mechanism of the present invention.
Fig. 16 is a schematic view showing a partial perspective structure of the automatic closing mechanism of the present invention.
Fig. 17 is a schematic view showing a partial perspective structure of the supporting mechanism of the present invention.
Fig. 18 is a schematic perspective view of a supporting mechanism according to the present invention.
The reference symbols in the drawings: 1: connecting frame, 2: first connection plate, 3: placing a frame, 4: centering mechanism, 41: first connecting rod, 42: clamping plate, 43: first spring, 5: automatic push-out mechanism, 51: second connecting rod, 52: first slide plate, 53: second spring, 54: third connecting rod, 55: blocking plate, 56: third spring, 57: pressing a rod, 6: buffer mechanism, 61: first slip-on plate, 62: buffer plate, 63: fourth spring, 7: shielding mechanism, 71: second connection plate, 72: shielding plate, 73: torsion spring, 74: first drive lever, 75: locking plate, 76: second slip-on plate, 77: detent lever, 78: fifth spring, 8: automatic closing mechanism, 81: fourth connecting rod, 82: rack plate, 83: sixth spring, 84: third connecting ring, 85: spur gear, 86: flat belt, 87: second driver bar, 88: third slip-on plate, 89: third drive bar, 810: seventh spring, 9: supporting mechanism, 91: second slide plate, 92: drive plate, 93: and an eighth 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, 2 and 3, the crematory urn storage rack convenient to take and place comprises a connecting rack 1, a first connecting plate 2, a placing frame 3, a centering mechanism 4 and an automatic pushing mechanism 5, wherein the first connecting plate 2 is arranged in the middle of the connecting rack 1, the placing frame 3 is arranged at the bottom in the connecting rack 1 and at the top of the first connecting plate 2, the placing frame 3 is used for storing the crematory urn, a centering mechanism 4 is connected between the two placing frames 3, the centering mechanism 4 is used for clamping the crematory urn, the automatic pushing mechanism 5 is connected between the two placing frames 3, and the automatic pushing mechanism 5 is used for driving the crematory urn to move out of the placing frame 3.
Referring to fig. 2, 4 and 5, the centering mechanism 4 includes a first connecting rod 41, a clamping plate 42 and a first spring 43, the left and right sides of two placement frames 3 are symmetrically connected with the first connecting rod 41 in a sliding mode, the clamping plate 42 is welded between the inner sides of the two adjacent first connecting rods 41, the clamping plate 42 is used for clamping the urn, the inner sides of eight first connecting rods 41 are sleeved with the first springs 43, and two ends of the eight first springs 43 are respectively connected with the clamping plate 42 on the same side and the placement frames 3 on the same side.
Referring to fig. 2, 6 and 7, the automatic pushing mechanism 5 includes a second connecting rod 51, a first sliding plate 52, a second spring 53, a third connecting rod 54, a blocking plate 55, a third spring 56 and a pressing rod 57, the second connecting rods 51 are symmetrically welded on the lower sides of the inner portions of the two placement frames 3, the first sliding plates 52 are slidably connected between the rear sides of the two second connecting rods 51 on the same lateral sides, the first sliding plates 52 are used for pushing the urn, sliding grooves are symmetrically opened on the inner portions of the two placement frames 3, the two first sliding plates 52 are slidably connected with the two sliding grooves on the same lateral sides, the second springs 53 are connected between the front sides of the four second connecting rods 51 and the front lower sides of the first sliding plates 52 on the same lateral sides, the inside downside of two frame 3 that place all welds third connecting rod 54, the equal slidingtype of two third connecting rod 54 downside is connected with barrier plate 55, the left and right sides of barrier plate 55 all is provided with the sloping block, the sloping block on the barrier plate 55 is used for spacing first sliding plate 52, two barrier plates 55 all contact with the first sliding plate 52 of homonymy, be connected with two third springs 56 between the third connecting rod 54 upside of two barrier plate 55 tops and homonymy, the equal slidingtype of two frame 3 front downside is connected with pressing rod 57, pressing rod 57 is used for driving barrier plate 55 and removes, two pressing rod 57 rear sides all are connected with the barrier plate 55 top of homonymy.
In use, the family members of the dead place the urn of the dead in the placement frame 3, manually push the urn to move backward to drive the first slide plate 52 to move backward, the second spring 53 is stretched, the clamping plate 42 is driven to move outward when the first slide plate 52 moves backward to be in contact with the clamping plate 42, the first spring 43 is compressed so that the clamping plate 42 does not block the urn, the first slide plate 52 is just separated from the clamping plate 42 when the first slide plate 52 moves backward to be in contact with the blocking plate 55, the first spring 43 is reset to drive the clamping plate 42 to move inward to reset, the clamping plate 42 clamps the urn, the first slide plate 52 drives the blocking plate 55 to move downward through the sloping block, the third spring 56 is stretched, the third spring 56 is reset when the first slide plate 52 moves backward to be separated from the blocking plate 55, when the first sliding plate 52 is required to be taken out, the pressing rod 57 is manually pressed, the pressing rod 57 moves downwards to drive the blocking plate 55 to move downwards, the third spring 56 is stretched at the moment, the blocking plate 55 is separated from the first sliding plate 52, the second spring 53 resets, the first sliding plate 52 is driven to move forwards, the first sliding plate 52 moves forwards to be in contact with the clamping plate 42, the clamping plate 42 is further outwards spread, the first spring 43 is compressed at the moment, when the first sliding plate 52 moves forwards to be separated from the clamping plate 42, the first sliding plate 52 moves forwards to drive the cinerary casket to move forwards out of the placing frame 3, and meanwhile the first spring 43 resets to drive the clamping plate 42 to move inwards to reset, so that the family members of the dead can take out the cinerary casket conveniently, after the movable block is taken out, the pressing rod 57 is released, and at the moment, the third spring 56 is reset, so that the blocking plate 55 is driven to move upwards for resetting.
Example 2
On the basis of embodiment 1, please refer to fig. 2, 8 and 9, further include a buffer mechanism 6, the buffer mechanism 6 is used for decelerating the first sliding plate 52, the buffer mechanism 6 includes a first sliding sleeve plate 61, a buffer plate 62 and a fourth spring 63, four first sliding sleeve plates 61 are welded on the left and right sides of the upper portion in the two placement frames 3, the sixteen first sliding sleeve plates 61 are slidably connected with the buffer plate 62, the buffer plate 62 is used for decelerating the first sliding plate 52, and the fourth spring 63 is connected between the sixteen buffer plates 62 and the first sliding sleeve plates 61 on the same side.
When the first sliding plate 52 drives the crematory urn to move forward, the first sliding plate 52 moves forward to be in contact with the buffer plate 62, the buffer plate 62 is driven to move downward, the fourth spring 63 is compressed at the moment, when the first sliding plate 52 moves forward to be separated from the buffer plate 62, the fourth spring 63 resets, and the buffer plate 62 is driven to move upward for resetting, so that the first sliding plate 52 can be decelerated under the action of the buffer plate 62, the situation that the first sliding plate 52 is forced too hard under the resetting action of the second spring 53 is avoided, the crematory urn moves forward too fast, the crematory urn is difficult to be caught by the family members of the dead, and the crematory urn is easy to drop on the ground is caused.
Please refer to fig. 2, fig. 10, fig. 11, fig. 12 and fig. 13, still including shielding mechanism 7, shielding mechanism 7 is used for the closed frame 3 of placing, shielding mechanism 7 is including second connecting plate 71, shielding plate 72, torsion spring 73, first drive rod 74, locking plate 75, second slide bushing 76, screens pole 77 and fifth spring 78, the equal bilateral symmetry in front of two frame 3 of placing has second connecting plate 71 through the bolt rigid coupling, all articulate shielding plate 72 between the two second connecting plates 71 of horizontal homonymy, shielding plate 72 is used for the closed frame 3 of placing, be connected with torsion spring 73 between the second connecting plates 71 of two shielding plate 72 lower part left and right sides and homonymy, two locking plates 75 have all been welded to two rear sides of shielding plate 72, four locking plates 75 all pass the frame 3 of placing of homonymy, the equal bilateral symmetry welding has second slide bushing 76 in the front wall of two frame 3 of placing, four second slide bushing 76 all are located the locking plate 75 downside of homonymy, four second slide bushing 76 inside the equal side have the screens pole 77 to be connected with the both sides of the equal left and right sides, the equal side of connecting plate 77 is connected with the two sides of the upper and lower side of the same side drive rod 77, the equal left and right sides are connected with the upper and lower side of the two side of the second clamp pole 77, the upper and the upper side of the two side of the side 74 is connected with the upper and lower side of the front side 77 is connected with the upper side of the front side 74.
After the crematory urn is placed into the placing frame 3 by the home of the dead, the shielding plate 72 is manually rotated upwards, the torsion spring 73 is deformed at the moment, the shielding plate 72 drives the locking plate 75 to move upwards, when the locking plate 75 rotates upwards to pass through the placing frame 3 to be in contact with the clamping rod 77, the clamping rod 77 is driven to move downwards, the fifth spring 78 is compressed at the moment, when the locking plate 75 rotates to be separated from the clamping rod 77, the fifth spring 78 is reset at the moment, the clamping rod 77 is driven to move upwards to reset, the clamping rod 77 is used for limiting the locking plate 75, the shielding plate 72 is further limited, so that the placing frame 3 can be closed, dust is prevented from entering the placing frame 3, when the shielding plate 72 needs to be opened, the pressing rod 57 is pressed, the pressing rod 57 drives the first driving rod 74 to move downwards, the clamping rod 77 is driven to move downwards, the fifth spring 78 is compressed at the moment, the clamping rod 77 is separated from the locking plate 75, the torsion spring 73 is reset at the moment, the shielding plate 72 and the locking plate 75 is driven to rotate downwards to reset, and then the home of the dead can be taken out.
Please refer to fig. 2, fig. 14, fig. 15 and fig. 16, still including automatic closing mechanism 8, automatic closing mechanism 8 is used for driving shielding plate 72 and rotates, automatic closing mechanism 8 is including fourth connecting rod 81, rack plate 82, sixth spring 83, third go-between 84, straight gear 85, even belt 86, the second drive pole 87, third slip sheet 88, third drive pole 89 and seventh spring 810, the equal bilateral symmetry welding in lower part front side has third go-between 84 in two place frame 3, all be connected with the pivot in the equal bilateral symmetry formula on the four third go-between 84, all be connected with straight gear 85 through the one-way clutch in the four pivot, the equal bilateral symmetry welding in the inside downside of two place frame 3 has fourth connecting rod 81, the equal sliding connection in four fourth connecting rod 81 front sides has rack plate 82, all meshes with the straight gear 85 of homonymy after moving, all with the fourth connecting rod 81 front side of homonymy, be connected with sixth spring 83 between the equal left and right sides of four rack plate 82, the equal bilateral symmetry welding in the four connecting rod 88 has the equal bilateral symmetry to drive pole 87 in the same side with the fourth connecting rod 88, the equal bilateral symmetry between the side of two shielding plate 82 and the fourth connecting rod 88, the equal bilateral symmetry is placed through the equal bilateral symmetry in the four side of the fourth connecting rod 88, the equal bilateral symmetry welding has the fourth connecting rod 87.
When the first sliding plate 52 moves backwards, the third sliding sleeve plate 88 and the third driving rod 89 are driven to move backwards, the third driving rod 89 drives the rack plate 82 to move backwards, the sixth spring 83 is stretched, when the rack plate 82 moves backwards to be meshed with the spur gear 85, the spur gear 85 idles under the action of the one-way clutch, when the third driving rod 89 moves backwards to be contacted with the second driving rod 87, the third driving rod 89 moves inwards under the action of the second driving rod 87, the seventh spring 810 is compressed, the third driving rod 89 is separated from the rack plate 82, the sixth spring 83 is reset, the rack plate 82 is driven to move forwards to be reset, when the rack plate 82 moves forwards to be meshed with the spur gear 85, the spur gear 85 is driven to rotate, and the rotating shaft is driven to rotate, the rotating shaft drives the shielding plate 72 to rotate upwards through the flat belt 86, so that the shielding plate 72 can automatically rotate, the shielding plate 72 does not need to be manually controlled to rotate upwards to close the placement frame 3, when the first sliding plate 52 drives the third sliding sleeve plate 88 and the third driving rod 89 to move forwards for resetting, the third driving rod 89 moves forwards to be separated from the second driving rod 87, at the moment, the seventh spring 810 resets to drive the third driving rod 89 to move outwards for resetting, when the third driving rod 89 moves forwards to be in contact with the rack plate 82, the third driving rod 89 moves inwards, at the moment, the seventh spring 810 is compressed, and when the third driving rod 89 moves forwards to be separated from the rack plate 82, the seventh spring 810 resets to drive the third driving rod 89 to move outwards for resetting.
Referring to fig. 3, 17 and 18, the shielding plate 72 is further provided with a supporting mechanism 9, the supporting mechanism 9 is used for supporting the shielding plate 72, the supporting mechanism 9 comprises a second sliding plate 91, a driving plate 92 and an eighth spring 93, the second sliding plates 91 are symmetrically connected to the front lower sides of the two placement frames 3 in a sliding mode, the second sliding plates 91 are used for supporting the shielding plate 72, the driving plates 92 are welded to the rear sides of the four second sliding plates 91, the eighth springs 93 are sleeved on the four second sliding plates 91, and two ends of the four eighth springs 93 are respectively connected with the driving plates 92 on the same side and the placement frames 3 on the same side.
When the first sliding plate 52 moves forward to contact with the driving plate 92, the driving plate 92 and the second sliding plate 91 are driven to move forward, and the eighth spring 93 is compressed at this time, so when the shielding plate 72 rotates downward, the second sliding plate 91 can support the shielding plate 72, and when the first sliding plate 52 moves backward to reset, the eighth spring 93 resets at this time, the second sliding plate 91 is driven to move backward to reset, and at this time, the shielding plate 72 also rotates upward to reset.
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 (5)

1. An easy-to-take and put cinerary casket storage rack, which is characterized in that: comprises the following steps:
a connecting frame (1);
the middle part of the connecting frame (1) is provided with a first connecting plate (2);
the placing frame (3) is arranged at the inner bottom of the connecting frame (1) and the top of the first connecting plate (2), and the placing frame (3) is used for storing the crematory urn;
a centering mechanism (4), a centering mechanism (4) used for clamping the crematory urn is connected between the two placing frames (3);
the centering mechanism (4) comprises:
the first connecting rods (41) are symmetrically connected with the left side and the right side of the two placing frames (3) in a sliding mode in a front-back mode;
the clamping plates (42) are connected between the inner sides of the two adjacent first connecting rods (41) and are used for clamping the crematory urn (42);
an automatic pushing mechanism (5), wherein an automatic pushing mechanism (5) for driving the crematory urn to move out of the placing frame (3) is connected between the two placing frames (3);
the centering mechanism (4) further comprises:
the first springs (43) are sleeved on the inner sides of the eight first connecting rods (41), and two ends of the eight first springs (43) are respectively connected with the clamping plates (42) on the same side and the placing frame (3) on the same side;
the automatic push-out mechanism (5) comprises:
the second connecting rods (51) are symmetrically connected with the second connecting rods (51) at the left and right sides of the lower sides of the inner parts of the two placing frames (3);
a first sliding plate (52), a first sliding plate (52) for pushing the crematory urn is connected between the rear sides of the two second connecting rods (51) on the same lateral side in a sliding manner;
the second springs (53) are connected between the front sides of the four second connecting rods (51) and the front lower sides of the first sliding plates (52) on the same side;
the third connecting rods (54) are connected to the lower rear sides of the inner parts of the two placing frames (3);
the blocking plates (55) are connected to the lower sides of the two third connecting rods (54) in a sliding mode, and the blocking plates (55) are used for limiting the first sliding plates (52);
the top parts of the two blocking plates (55) are connected with two third springs (56) between the upper sides of the third connecting rods (54) on the same side;
the front lower sides of the two placing frames (3) are respectively connected with a pressing rod (57) for driving the blocking plate (55) to move in a sliding mode, and the rear sides of the two pressing rods (57) are respectively connected with the tops of the blocking plates (55) on the same side;
the buffer mechanism (6) is used for decelerating the first sliding plate (52), and the buffer mechanism (6) comprises:
the left side and the right side of the inner upper part of the two placing frames (3) are respectively connected with four first sliding sleeve plates (61);
the buffer plates (62) are connected to the sixteen first sliding sleeve plates (61) in a sliding manner, and the buffer plates (62) are used for decelerating the first sliding plates (52);
and the fourth springs (63) are connected between the sixteen buffer plates (62) and the first sliding sleeve plate (61) on the same side.
2. The urn storage rack convenient for taking and placing as claimed in claim 1, wherein: the shielding mechanism (7) is used for closing the placement frame (3), and the shielding mechanism (7) comprises:
the second connecting plates (71) are symmetrically connected with the second connecting plates (71) from left to right at the front lower sides of the two placing frames (3);
a shielding plate (72) for closing the placement frame (3) is rotatably connected between the two second connecting plates (71) on the same lateral side;
a torsion spring (73), wherein the torsion spring (73) is connected between the left side and the right side of the lower part of the two shielding plates (72) and the second connecting plate (71) on the same side;
the front lower sides of the two placing frames (3) are respectively connected with a first driving rod (74) in a sliding mode, and the two first driving rods (74) are respectively connected with the front sides of the bottoms of the pressing rods (57) on the same side;
the locking plates (75) are connected to the rear sides of the two shielding plates (72);
the front walls of the two placing frames (3) are symmetrically connected with the second sliding sleeve plates (76) left and right;
the clamping rods (77) are connected with the clamping rods (77) used for clamping the locking plates (75) in a sliding manner in the four second sliding sleeve plates (76);
and a fifth spring (78), wherein the fifth spring (78) is connected between the upper sides of the four clamping rods (77) and the top of the second sliding sleeve plate (76) on the same side.
3. The urn storage rack convenient for taking and placing as claimed in claim 2, wherein: the automatic closing mechanism (8) is used for driving the shielding plate (72) to rotate, and the automatic closing mechanism (8) comprises:
the fourth connecting rods (81) are symmetrically connected with the fourth connecting rods (81) at the left and right sides of the lower sides of the inner parts of the two placing frames (3);
the rack plates (82) are connected to the front sides of the four fourth connecting rods (81) in a sliding manner;
a sixth spring (83), wherein the sixth spring (83) is connected between the lower sides of the four rack plates (82) and the front side of the fourth connecting rod (81) on the same side;
the third connecting rings (84) are symmetrically connected with the third connecting rings (84) from left to right at the front sides of the inner lower parts of the two placing frames (3), and the four third connecting rings (84) are respectively and rotationally connected with a rotating shaft;
the four rotating shafts are connected with straight gears (85), and the four rack plates (82) are meshed after moving with the straight gears (85) on the same side;
a flat belt (86) is wound and connected between the left side and the right side of the lower part of the two shielding plates (72) and the inner side of the rotating shaft on the same side through a belt pulley;
the second driving rods (87) are symmetrically connected with the second driving rods (87) at the front lower sides of the inner parts of the two placing frames (3) in a left-right mode;
the lower parts of the two first sliding plates (52) are symmetrically connected with the third sliding sleeve plate (88) left and right;
the third driving rods (89) are connected to the four third sliding sleeve plates (88) in a sliding manner;
and seventh springs (810) are connected between the outer sides of the four third driving rods (89) and the third sliding sleeve plates (88) on the same side.
4. A urn storage holder for easy access as claimed in claim 3, wherein: the device also comprises a supporting mechanism (9) for supporting the shielding plate (72), and the supporting mechanism (9) comprises:
the second sliding plates (91) are symmetrically connected with the front lower sides of the two placing frames (3) in a sliding mode, and the second sliding plates (91) are used for supporting the shielding plates (72);
the driving plates (92) are connected to the rear sides of the four second sliding plates (91);
and the eighth springs (93) are sleeved on the four second sliding plates (91), and two ends of the four eighth springs (93) are respectively connected with the driving plates (92) on the same side and the placing frame (3) on the same side.
5. The urn storage rack convenient for taking and placing as claimed in claim 1, wherein: the inside of the two placing frames (3) is symmetrically provided with sliding grooves.
CN202210229263.4A 2022-03-09 2022-03-09 Crematory urn storage rack convenient to take and place Active CN114562148B (en)

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* Cited by examiner, † Cited by third party
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CN115012722B (en) * 2022-07-12 2023-06-30 江西金辰科技有限公司 Crematory urn storage rack convenient for sacrifice
CN115199126A (en) * 2022-07-18 2022-10-18 江西天境精藏科技有限公司 Firm type bone ash storage rack is opened to intelligence
CN115126331B (en) * 2022-07-18 2023-04-28 江西天境精藏科技有限公司 Intelligent automatic door opening and closing bone ash storage rack
CN115324417B (en) * 2022-08-16 2023-12-29 江西广泉钢艺集团有限公司 Tower type cinerary casket storage rack

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CN208870485U (en) * 2018-07-30 2019-05-17 浙江仙庭智能科技有限公司 A kind of cinerary casket frame that practicability is good
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CN211640711U (en) * 2019-12-23 2020-10-09 江西国计纳米科技有限公司 Die-casting forming device is used in production of polymer cinerary casket storage rack
CN112431473A (en) * 2020-12-11 2021-03-02 江西渡海科技有限公司 Courtyard type cinerary casket automatic storage rack capable of recording life story
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KR20010046372A (en) * 1999-11-12 2001-06-15 민한식 A Charnel
DE202005008315U1 (en) * 2005-05-24 2005-07-28 Vianden, Helmut System for storing funeral urns has a number of non flammable storage racks with access flaps to separate compartments
CN208870485U (en) * 2018-07-30 2019-05-17 浙江仙庭智能科技有限公司 A kind of cinerary casket frame that practicability is good
CN208966127U (en) * 2018-07-30 2019-06-11 浙江仙庭智能科技有限公司 A kind of Assembled cinerary casket deposit frame
CN210316781U (en) * 2019-07-22 2020-04-14 王功顺 Cemetery coffin chamber
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CN211640711U (en) * 2019-12-23 2020-10-09 江西国计纳米科技有限公司 Die-casting forming device is used in production of polymer cinerary casket storage rack
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CN113124408A (en) * 2021-05-10 2021-07-16 江西南方环保机械制造总公司 Be used for cremation back bone ash collator of corpse

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