Production method of cremated remains storage rack with turnover hidden function

By using a prefabricated frame and automated assembly methods, combined with a support structure and drive motor, a flip-up concealed urn storage rack has been created. This solves the problems of low production efficiency and high cost of traditional urn storage racks, and improves production efficiency and privacy protection.

CN115647729BActive Publication Date: 2026-06-02JIANGXI GUANGQUAN STEEL ART

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JIANGXI GUANGQUAN STEEL ART
Filing Date
2022-08-29
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Traditional cremation urn storage racks are inefficient to produce, costly, and fail to effectively preserve the original characteristics of cremated remains.

Method used

The columbarium storage rack, which uses a prefabricated frame and automated assembly method, combined with a support structure, drive motor and proximity switch, achieves a flip-out concealed function. The installation efficiency and accuracy are improved by welding protrusions and grooves to connect prefabricated panels and strips. It is also equipped with a heat dissipation plate and control panel to achieve automated production and privacy protection.

Benefits of technology

It improves the production efficiency and yield rate of urn storage racks, reduces production costs, ensures the privacy and storage stability of urns, and realizes automated control and monitoring functions to prevent unauthorized opening.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application belongs to the technical field of funeral supplies, and specifically discloses a production method of an urn storage rack with a turnover hidden function, which comprises the following steps: S1, generating a prefabricated frame; S2, installing a support structure on the prefabricated frame; and S3, installing a box door and a heat dissipation plate on the prefabricated frame provided with the support structure. The prefabricated frame can improve the installation efficiency of the urn storage rack and the production efficiency of the urn storage rack, the prefabricated assembly method can upgrade from manual operation to automatic production execution, greatly improve the production efficiency and precision, and reduce the cost, the detection step can detect the internal electronic components and improve the yield of the device, and the prefabricated structure is not prone to deformation at various positions compared with the traditional structure, and the prefabricated frame can well fix the prefabricated piano shell plate even in the case of cold, heat and dampness.
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Description

Technical Field

[0001] The present invention relates to a production method of an ash storage rack with a flip - hidden function, belonging to the technical field of funeral supplies. Background Art

[0002] Human ashes are the ashes formed after a human body is burned. In the X - ray powder diffraction of human ashes, it shows a close resemblance to apatite. Because after cremation, all the organic matter in the human body has been burned, and the remaining components are inorganic matter, with the main elemental components being calcium, phosphorus, oxygen, and carbon. The ashes are placed in an urn, and the urn is placed in an ash storage rack. A shrine is a small cabinet used to enshrine Buddha statues, divine positions, etc., such as a Buddhist shrine or a shrine for gods. Generally, it is made of wood. The grotto sculptures in ancient China were generally in the form of shrines, and a small shrine is also called a casket. After the body is cremated, the container used to hold the ashes. The urn will be placed in a columbarium for worship. The earliest unearthed urn was found in Jerusalem more than two thousand years ago. In ancient China, burial was prevalent, and most people were buried in wooden coffins after death. With the development of the times, to save resources, the ancient coffins have gradually evolved into urns. The earliest unearthed ones were found in Jerusalem. Styles: coffin - type, palace - type, box - type, boat - type, urn - type, etc. Materials: There are many types of materials for urns, including wood, stone, jade, ceramics, plastics, crystal, metal, etc. The urn is used to place ashes, so the most important thing to judge the quality of an urn is whether it can protect the ashes well. Whether the selected material has strong corrosion resistance and can maintain the original characteristics of the ashes for a long time. The traditional production methods of ash storage racks have problems of low production efficiency and high production cost. Summary of the Invention

[0003] The purpose of the present invention is to provide a production method of an ash storage rack with a flip - hidden function to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solutions: A production method of an ash storage rack with a flip - hidden function, including the following steps:

[0005] S1. Produce and generate a pre - fabricated frame;

[0006] S2. Install a support structure on the pre - fabricated frame;

[0007] S3. Install a box door and a heat dissipation plate on the pre - fabricated frame with the support structure installed.

[0008] Preferably, step S1 specifically includes: fabricating and assembling precast panels and precast strips; machining connecting protrusions and connecting grooves at the connection points of the precast panels and precast strips; connecting the precast panels and precast strips to form the precast frame; splicing and assembling the precast panels and precast strips together through the connecting protrusions and connecting grooves; and welding the connecting protrusions and connecting grooves to fix the precast panels and precast strips. The connecting protrusions and connecting grooves facilitate the assembly and welding of the precast panels and precast strips.

[0009] Preferably, step S2 specifically includes:

[0010] S2.1. A fixing groove for installing the support structure is opened on the inside of the prefabricated frame. After the bearings are installed at both ends of the support plate, the support plate is installed into the fixing groove, and the support plate is welded and fixed to the prefabricated frame.

[0011] S2.2 Install both ends of the hidden plate onto the bearings respectively, and weld the hidden plate to the bearings to fix them in place;

[0012] S2.3. A mounting groove is made at the top of the support plate, and a proximity switch is installed in the mounting groove;

[0013] S2.4 Install the drive motor on the side of the support plate, place the drive motor in the support frame, and then insert the support frame into the slot opened on the side of the support plate.

[0014] S2.5 Install the drive gear at the end of the output shaft of the drive motor, and install the rack that meshes with the drive gear inside the hidden plate. During installation, keep the positions of the drive gear and the rack corresponding to each other.

[0015] Preferably, step S2.3 further includes: after the proximity switch is installed, the proximity switch is debugged to confirm its normal operation. Debugging the proximity switch can ensure that the proximity switch operates normally after assembly, and prevent a faulty proximity switch from affecting the normal operation of the device after installation.

[0016] Preferably, step S2.4 further includes: after the drive motor is installed, electrically connecting the proximity switch to the drive motor, testing the operating status of the drive motor to confirm its normal operation, and testing the connection status between the proximity switch and the drive motor to confirm that the proximity switch controls the drive motor.

[0017] Preferably, step S2.5 further includes: after installing the drive gear and rack respectively, confirming the meshing state of the drive gear and rack, and at the same time confirming the control state between the drive motor and the hidden plate.

[0018] Preferably, step S3 specifically includes:

[0019] S3.1. Open heat dissipation holes on the heat dissipation plate, weld the heat dissipation fan to the inside of the heat dissipation plate, install the completed heat dissipation plate to both sides of the prefabricated frame, and weld the heat dissipation plate to the prefabricated frame for fixation.

[0020] S3.2 Weld a limiting plate to the back of the door and weld sliders to both sides of the door. At the same time, open a sliding groove on the front of the frame, install the sliders on both sides into the sliding groove, and complete the installation of the door.

[0021] S3.3 Weld the support legs to the bottom of the prefabricated frame, install the control panel to the back of the prefabricated frame, and electrically connect the proximity switch to the control panel to complete the assembly of the urn storage rack.

[0022] Preferably, step S3.3 specifically includes, after completing the installation of the control panel, confirming the connection status between each proximity switch and the control panel, testing the connection status of the proximity switches, and testing the control of the proximity switches through the control panel.

[0023] Compared with the prior art, the beneficial effects of the present invention are:

[0024] This invention belongs to the field of funeral supplies technology, specifically disclosing a method for producing a cremated urn storage rack with a flip-up, concealed function. The invention improves the installation and production efficiency of the urn storage rack through a prefabricated frame. The prefabricated assembly method upgrades manual operation to automated production, significantly improving production efficiency and precision while reducing costs. The included testing steps allow for the inspection of internal electronic components, improving the yield rate of the device. Compared to traditional structures, the prefabricated structure is less prone to deformation, and even under conditions of temperature and humidity, the prefabricated frame effectively secures the prefabricated urn shell. To prevent deformation and improve quality, this method produces a reliably concealed urn storage rack that can completely seal the stored urns. The storage unit containing the urns can be flipped open to provide privacy. Simultaneously, the flip-open structure allows for synchronized control of the door, locking it to prevent staff from reopening the storage unit containing the urns. The control panel can control and monitor the internal proximity switches, facilitating monitoring of the internal storage status and individual control of the doors of stored urns, allowing staff to easily open the doors when needed to retrieve the urns. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the process of the present invention;

[0026] In the diagram: 1. Prefabricated frame; 2. Support structure; 3. Support plate; 4. Bearing; 5. Hidden plate; 6. Proximity switch; 7. Drive motor; 8. Drive gear; 9. Rack; 10. Heat dissipation hole; 11. Heat dissipation fan; 12. Box door; 13. Limit plate; 14. Slider; 15. Slide groove; 16. Control panel. Detailed Implementation

[0027] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0028] In the description of this invention, it should be noted that the terms "vertical," "upper," "lower," "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0029] In the description of this invention, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0030] Please see Figure 1The process includes the following steps: S1, fabricating a prefabricated frame 1; S2, installing a support structure 2 on the prefabricated frame 1; S3, installing a door 12 and a heat dissipation plate on the prefabricated frame 1 with the support structure 2 installed. Step S1 specifically includes fabricating and assembling prefabricated panels and strips, machining connecting protrusions and connecting grooves at the connection points of the prefabricated panels and strips, connecting the prefabricated panels and strips to form the prefabricated frame 1, splicing and assembling the prefabricated panels and strips together through the connecting protrusions and connecting grooves, and welding the connecting protrusions and connecting grooves to fix the prefabricated panels and strips. Step S2 specifically includes: S2.1, opening a fixing groove for installing the support structure 2 on the inner side of the prefabricated frame 1, and installing the bearing. 4. After installing the support plate 3 at both ends, install the support plate 3 into the fixing groove and weld the support plate 3 to the prefabricated frame 1; S2.2. Install the hidden plate 5 at both ends onto the bearing 4 respectively, and weld the hidden plate 5 to the bearing 4; S2.3. Open the mounting groove at the top of the support plate 3 and install the proximity switch 6 in the mounting groove; S2.4. Install the drive motor 7 on the side of the support plate 3, place the drive motor 7 in the support frame, and insert the support frame into the groove opened on the side of the support plate 3; S2.5. Install the drive gear 8 at the end of the output shaft of the drive motor 7, and at the same time install the rack 9 that meshes with the drive gear 8 into the inside of the hidden plate 5, keeping the drive gear 8 and rack 9 in the same position during installation. The steps are as follows: Step S2.3 further includes: after installing the proximity switch 6, debugging the proximity switch 6 to confirm its normal operation; Step S2.4 further includes: after installing the drive motor 7, electrically connecting the proximity switch 6 and the drive motor 7, and testing the operating status of the drive motor 7 to confirm its normal operation, and testing the connection status between the proximity switch 6 and the drive motor 7 to confirm that the proximity switch 6 controls the drive motor 7; Step S2.5 further includes: after installing the drive gear 8 and the rack 9 respectively, confirming the meshing status of the drive gear 8 and the rack 9, and confirming the control status between the drive motor 7 and the hidden plate 5; Step S3 Specifically, the steps include: S3.1, opening heat dissipation holes 10 on the heat dissipation plate, welding the heat dissipation fan 11 to the inside of the heat dissipation plate, installing the completed heat dissipation plate to both sides of the prefabricated frame 1, and welding and fixing the heat dissipation plate to the prefabricated frame 1; S3.2, welding the limiting plate 13 to the back of the box door 12, welding the sliders 14 to both sides of the box door 12, and opening the sliding groove 15 on the front of the frame, installing the sliders 14 on both sides into the sliding groove 15, and completing the installation of the box door 12; S3.3, welding and installing the support legs to the bottom of the prefabricated frame 1, installing the control panel 16 to the back of the prefabricated frame 1, and electrically connecting the proximity switch 6 to the control panel 16 to complete the assembly of the urn storage rack; Step S3.Specifically, this includes, after completing the installation of the control panel 16, confirming the connection status between each proximity switch 6 and the control panel 16, testing the connection status of the proximity switches 6, and testing the control of the proximity switches 6 through the control panel 16.

[0031] Working Principle: This invention relates to a method for producing a receptacle storage rack with a flip-up concealed function. In use, the storage compartments can be opened via the door 12. The internal structure is divided into several storage units by several support plates 3 and concealed plates 5, facilitating the isolation of different urns. When the worker places the urn on the support plate 3 and closes the door 12, the urn controls the proximity switch 6 and starts the drive motor 7. The drive motor 7 drives the concealed plate 5 to rotate via the drive gear 8. The concealed plate 5, through the limiting plate 13, fixes the door 12 and, together with the support plate 3, seals the urn for storage. When the worker stores subsequent urns, the door 12, which already contains an urn, will... 2. Because the hidden plate 5 is restricted from opening, the storage status within a single storage unit can be easily confirmed. Simultaneously, when retrieving the urn, the control panel 16 controls the support plate 3 to be retrieved, activating the proximity switch 6. The proximity switch 6, via the drive motor 7, controls the rotation of the hidden plate 5, allowing the urn door 12 to open without restriction. The hidden plate 5 is connected to the support plate 3 via a bearing 4, enabling easy rotation. Simultaneously, the hidden plate 5 is restricted by the rack 9 and drive gear 8, and after rotation, it remains fixed by the drive gear 8. The heat dissipation holes 10 and the cooling fan 11 dissipate heat from the internal components of the device. This invention has a simple structure, is easy to operate, and is suitable for widespread use.

[0032] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A method for producing a cremation urn storage rack with a flip-up concealment function, characterized in that: Includes the following steps: S1. Create and generate a prefabricated frame (1); S2. Install the support structure (2) on the prefabricated frame (1); S3. Install the box door (12) and heat dissipation plate on the prefabricated frame (1) on which the support structure (2) is installed; S1 specifically includes: making precast panels and precast strips and assembling them; processing connecting protrusions and connecting grooves at the connection points of the precast panels and precast strips; connecting the precast panels and precast strips to form the precast frame (1); splicing and assembling the precast panels and precast strips together through the connecting protrusions and connecting grooves; and welding the connecting protrusions and connecting grooves to fix the precast panels and precast strips. Step S2 specifically includes: S2.

1. A fixing groove for installing the support structure (2) is opened on the inside of the prefabricated frame (1). After the bearing (4) is installed at both ends of the support plate (3), the support plate (3) is installed into the fixing groove and the support plate (3) is welded and fixed to the prefabricated frame (1). S2.2 Install both ends of the hidden plate (5) onto the bearing (4) respectively, and weld the hidden plate (5) to the bearing (4) for fixation; S2.

3. A mounting groove is opened at the top of the support plate (3), and a proximity switch (6) is installed in the mounting groove. S2.4 Install the drive motor (7) on the side of the support plate (3), place the drive motor (7) in the support frame, and then insert the support frame into the slot opened on the side of the support plate (3); S2.5 Install a drive gear (8) at the end of the output shaft of the drive motor (7), and install a rack (9) that meshes with the drive gear (8) inside the hidden plate (5). During installation, keep the positions of the drive gear (8) and the rack (9) corresponding to each other. Step S3 specifically includes: S3.

1. Open heat dissipation holes (10) on the heat dissipation plate, weld the heat dissipation fan (11) to the inside of the heat dissipation plate, install the completed heat dissipation plate on both sides of the prefabricated frame (1), and weld the heat dissipation plate to the prefabricated frame (1) for fixation. S3.2 Weld a limiting plate (13) to the back of the box door (12), and weld sliders (14) to both sides of the box door (12). At the same time, open a groove (15) on the front of the frame, install the sliders (14) on both sides into the groove (15) and complete the installation of the box door (12). S3.3 Weld the support feet to the bottom of the prefabricated frame (1), install the control panel (16) on the back of the prefabricated frame (1), and make an electrical connection between the proximity switch (6) and the control panel (16) to complete the assembly operation of the urn storage rack.

2. The method for producing a cremation urn storage rack with a flip-up concealment function according to claim 1, characterized in that: The step S2.3 further includes: after the proximity switch (6) is installed, the proximity switch (6) is debugged to confirm the normal operation of the proximity switch (6).

3. The method for producing a cremation urn storage rack with a flip-up concealment function according to claim 2, characterized in that: The step S2.4 further includes: after the drive motor (7) is installed, the proximity switch (6) is electrically connected to the drive motor (7), and the operating status of the drive motor (7) is tested to confirm the normal operation of the drive motor (7). At the same time, the connection status between the proximity switch (6) and the drive motor (7) is tested to confirm that the proximity switch (6) controls the drive motor (7).

4. The method for producing a cremation urn storage rack with a flip-up concealment function according to claim 3, characterized in that: The step S2.5 further includes: after installing the drive gear (8) and rack (9) respectively, confirming the meshing state of the drive gear (8) and rack (9), and at the same time confirming the control state between the drive motor (7) and the hidden plate (5).

5. A method for producing a cremation urn storage rack with a flip-up concealment function according to claim 4, characterized in that: The specific steps of step S3.3 include: after completing the installation of the control panel (16), confirming the connection status between each proximity switch (6) and the control panel (16), testing the connection status of the proximity switches (6), and testing the control of the proximity switches (6) through the control panel (16).