Bone ash storage mechanism and anti-corrosion equipment

By using an exhaust check mechanism and a gas delivery system, and through dry air replacement and purification, the problems of increased humidity in the urn storage rack and corrosion of the wooden box are solved, achieving a dry and clean environment inside the cabinet, extending its service life and simplifying maintenance.

CN121381975APending Publication Date: 2026-01-23JIANGXI TIANJING JINGZANG TECH CO LTD
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Patent Information

Application Number
CN202511482720.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-16
Publication Date
2026-01-23

AI Technical Summary

Technical Problem

After cleaning, the residual moisture in traditional urn storage racks leads to increased internal humidity and accelerated corrosion. Wooden urns are also susceptible to the effects of humid air and require regular maintenance.

Method used

It employs an exhaust check mechanism and a gas delivery mechanism to replace the moisture inside the cabinet with dry air, purifies the air using silica gel desiccant and activated carbon filter material, and sterilizes it with ultraviolet light.

Benefits of technology

It effectively prevents the humidity inside the cabinet from rising, prevents corrosion, keeps the inside of the cabinet dry and clean, extends the life of the storage rack, prevents the wooden urn from corroding, and simplifies the maintenance process.

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Abstract

The invention discloses a bone ash storage mechanism and anti-corrosion equipment, and relates to the field of bone ash storage and anti-corrosion, the bone ash storage mechanism comprises a cabinet body, the upper surface of the cabinet body is provided with an exhaust non-return mechanism, the exhaust non-return mechanism comprises an air outlet pipe, the upper surface of the cabinet body is provided with a first through hole, the air outlet pipe is fixedly connected in the first through hole, and the first through hole is communicated with the air outlet pipe. By means of the arranged exhaust non-return mechanism, when dry air is conveyed in the cabinet, the air pressure in the cabinet is gradually increased, the waterproof cap is jacked upwards, wet air enters the air outlet pipe through an opened channel, rising air flow rotates through a spiral air guide piece, and the air outlet pipe is driven by the spiral air guide piece to rotate. A preset and smooth path is provided for air flow, the rising air flow is finally discharged out of the cabinet from the air outlet holes in the side wall of the waterproof cap, internal humidity rise and corrosion acceleration caused by residual water after the bone ash storage rack is cleaned are avoided, and meanwhile the wood carving cinerary casket is prevented from being affected by wet air.
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Description

Technical Field

[0001] This invention relates to the field of cremated remains storage and preservation, and particularly to a cremated remains storage facility and preservation equipment. Background Technology

[0002] Embalming facilities for storing ashes (such as columbariums, columbarium towers, columbarium corridors, indoor burial cemeteries, etc.) are dedicated places for families to place the ashes of their loved ones.

[0003] Traditional cremation urn storage racks are usually made of wood, which is susceptible to moisture and corrosion. Therefore, existing cremation urn storage racks are usually made of metal materials, such as aluminum alloy, galvanized sheet, and titanium-magnesium alloy. Among them, titanium-magnesium alloy storage racks have a service life of more than 30 years and have good sound insulation.

[0004] Even if the storage rack is made of corrosion-resistant materials, it still needs regular maintenance and cleaning to prevent the surface from being corroded by the external environment. However, water is usually used for cleaning. If this water is not cleaned up in time, it may remain in the storage rack for a long time after the door is closed, which will increase the humidity inside the storage rack, causing the storage rack to corrode slowly and reducing its service life. In addition, depending on the different needs of the family, some urns are made of wood, which is also easily affected by humid air and will accelerate corrosion.

[0005] Therefore, it is necessary to propose a cremation storage facility and preservation equipment to solve the above problems. Summary of the Invention

[0006] The purpose of this invention is to provide a cremated ash storage mechanism and anti-corrosion equipment to solve the problems of increased internal humidity and accelerated corrosion caused by residual moisture after cleaning of traditional cremated ash storage racks, as well as the susceptibility of wooden cremated ash boxes to the effects of humid air.

[0007] To achieve the above objectives, the present invention provides the following technical solution: a cremated remains storage mechanism and anti-corrosion equipment, comprising a cabinet, wherein an exhaust and backflow prevention mechanism is provided on the upper surface of the cabinet;

[0008] The exhaust check mechanism includes an exhaust pipe. A first through hole is provided on the upper surface of the cabinet. The exhaust pipe is fixedly connected to the first through hole. An air guide cover is fixedly connected to one end of the exhaust pipe near the inside of the cabinet. A spiral air guide plate is fixedly connected to the inner wall of the exhaust pipe. A first through groove is provided on the inner wall of the exhaust pipe. A slider is slidably connected to the groove wall of the first through groove. A waterproof cap is slidably connected to the inner wall of the exhaust pipe. The outer side of the waterproof cap is fixedly connected to the side of the slider away from the first through groove. A spring is fixedly connected to the opposite side of the slider and the exhaust pipe. An exhaust hole is provided on the side wall of the waterproof cap.

[0009] Preferably, the cabinet has an internal compartment, the side wall of the compartment is rotatably connected to a sealing door, and the air guide cover is located inside the compartment.

[0010] Preferably, the side wall of the grid cavity is provided with a flow diversion mechanism, the flow diversion mechanism includes a mounting frame, the mounting frame is fixedly connected to the side wall of the grid cavity, the outer surface of the mounting frame is provided with a fixing groove, the inside of the fixing groove is provided with an elastic baffle, both ends of the elastic baffle are fixedly connected to the fixing groove, and the side wall of the grid cavity is fixedly connected with a guide plate.

[0011] Preferably, a UV lamp is fixedly connected to the cavity wall of the grid cavity, and a second through groove is opened on the cavity surface of the grid cavity relative to the UV lamp, with an air inlet baffle fixedly connected inside the second through groove.

[0012] Preferably, multiple sets of the sealing door, grid cavity, ultraviolet lamp, diversion mechanism, and air inlet baffle are provided, and the number of the sealing door, grid cavity, ultraviolet lamp, diversion mechanism, and air inlet baffle are matched.

[0013] Preferably, the lower surface of the cabinet is provided with a gas delivery mechanism, the gas delivery mechanism includes an isolation frame, the isolation frame is fixedly connected to the lower surface of the cabinet, a filter box is detachably connected inside the isolation frame, an air intake fan is fixedly connected inside the isolation frame, and the opening on the upper surface of the isolation frame corresponds to the second through groove of the grid cavity.

[0014] The present invention also discloses anti-corrosion equipment, including a cremated ash storage facility.

[0015] The technical effects and advantages of this invention are as follows:

[0016] 1. In this invention, the exhaust check mechanism allows the air pressure inside the cabinet to gradually increase when dry air is supplied, pushing the waterproof cap upward. Moist air enters the exhaust pipe through the open channel, and the spiral air guide plate causes the rising airflow to rotate, providing a preset and smooth path for the airflow. The rising airflow is finally discharged from the exhaust hole on the side wall of the waterproof cap, avoiding residual moisture after cleaning of the urn storage rack, which would cause the internal humidity to increase and corrosion to accelerate. At the same time, it prevents the wooden urn from being affected by the moist air.

[0017] 2. In this invention, a gas delivery mechanism is used. The filter box is usually filled with adsorbent materials such as silica gel desiccant and activated carbon to ensure that the incoming air is dry and clean. When the air intake fan is working, it generates positive pressure in the cabinet, which continuously and forcefully blows the dry air after it has been treated by the filter box into each compartment.

[0018] 3. In this invention, a guide plate is used to guide the airflow into the cavity, and an elastic baffle can disperse the airflow, so that dry air covers every corner of the cavity and improves the uniformity of dehumidification. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the external structure of the corrosion protection equipment of the present invention.

[0020] Figure 2 This is a front cross-sectional view of the corrosion protection device and exhaust check mechanism of the present invention.

[0021] Figure 3 For the present invention Figure 2 Enlarged structural diagram at point A in the middle.

[0022] Figure 4 This is a front cross-sectional view of the corrosion protection equipment of the present invention.

[0023] Figure 5 For the present invention Figure 4 Enlarged structural diagram at point B.

[0024] Figure 6 This is a schematic diagram of the unfolded structure of the exhaust check mechanism of the present invention.

[0025] Figure 7 This is a schematic diagram of the unfolded structure of the gas delivery mechanism of the present invention.

[0026] In the diagram: 1. Cabinet; 2. Sealed door; 3. Exhaust check mechanism; 4. Gas delivery mechanism; 5. Compartment; 6. Ultraviolet lamp; 7. Diverting mechanism; 8. Inlet baffle; 31. Outlet pipe; 32. Spiral air guide plate; 33. Slider; 34. Waterproof cap; 35. Air outlet; 36. Spring; 37. Air guide cover; 41. Isolation frame; 42. Filter box; 43. Inlet fan; 71. Mounting bracket; 72. Fixing groove; 73. Elastic baffle; 74. Deflector plate. Detailed Implementation

[0027] This invention provides, for example Figures 1-7 The invention relates to a cremated urn storage facility and an anti-corrosion device, which aims to solve the problems of increased internal humidity and accelerated corrosion caused by residual moisture after cleaning of traditional cremated urn storage racks, as well as the susceptibility of wooden cremated urns to humid air.

[0028] It includes a cabinet 1, a sealing door 2, an exhaust check mechanism 3, and a gas delivery mechanism 4. The interior of the cabinet 1 is divided into multiple independent compartments 5 by partitions. Each compartment 5 is equipped with a sealing door 2 for storing a single urn, thus achieving intensive use of space.

[0029] The gas delivery mechanism 4 is located below the cabinet 1 and includes an isolation frame 41 fixed to the lower surface of the cabinet 1. A filter box 42 is detachably connected inside the isolation frame 41, and an air intake fan 43 is fixedly installed behind the filter box 42. The opening on the upper surface of the isolation frame 41 is connected to the air intake channel at the bottom of the internal compartment 5 of the cabinet 1.

[0030] The filter box 42 is usually filled with silica gel desiccant, activated carbon to absorb odors and other adsorption materials. Its function is to deeply dehumidify and purify the air that is about to be sent into the cabinet, ensuring that the air entering is dry and clean.

[0031] As the power source of the system, the intake fan 43 generates positive pressure inside the cabinet when it is working, and continuously and forcibly blows the dry air that has been processed by the filter box 42 into each compartment 5.

[0032] The internal structure of the compartment 5 includes a diversion mechanism 7 on the side wall of each compartment 5, a UV lamp 6 fixedly installed on the wall, and a second through groove on the cavity surface opposite to the UV lamp 6, with an air inlet baffle 8 fixed thereon.

[0033] The air inlet baffle 8 allows the dry air delivered from the lower gas delivery mechanism 4 to be evenly distributed into the compartment, preventing it from blowing directly into the urn.

[0034] The side walls of each set of gratings 5 ​​are fixed with the mounting bracket 71 of the diversion mechanism 7 by bolts. The outer surface of the mounting bracket 71 has a fixing groove 72. The two ends of the elastic baffle 73 are fixed to the inner wall of the fixing groove 72 by glue. The elastic baffle 73 is made of rubber. The side walls of the gratings 5 ​​are welded with a guide plate 74. The guide plate 74 is inclined and located below the mounting bracket 71. When working, the dry air entering from the air inlet plate 8 is guided by the guide plate 74 to flow into the gratings 5. The elastic baffle 73 can disperse the airflow, and the dry air covers all corners of the gratings 5, improving the uniformity of dehumidification.

[0035] The UV lamp 6 emits short-wave ultraviolet (UVC) light to sterilize the air inside the compartment and the surface of the urn, effectively killing bacteria and mold and preventing biological corrosion and odor.

[0036] The exhaust check mechanism 3 is installed on the upper surface of the cabinet 1, including an exhaust pipe 31 fixed in the opening of the cabinet. One end of the exhaust pipe 31 extends into the cabinet and is connected to an air guide cover 37. A spiral air guide plate 32 is fixed inside the pipe. A waterproof cap 34 is slidably connected inside the pipe by a slider 33. The slider 33 is connected to the pipe wall by a spring 36. An exhaust hole 35 is opened on the side wall of the waterproof cap 34.

[0037] During normal use, when the intake fan 43 stops working, the pressure inside and outside the cabinet is balanced. Under the pushing force of the spring 36 and the weight of the waterproof cap 34 itself, the waterproof cap 34 falls and tightly covers the bottom inlet of the exhaust pipe 31, forming a seal. At this time, the entire cabinet is in a closed state, effectively preventing the entry of external humid air. When the exhaust is turned on during operation, and the intake fan 43 starts to deliver dry air into the cabinet, the air pressure inside the cabinet gradually increases. The high-pressure gas overcomes the elastic force of the spring 36 and pushes the waterproof cap 34 upward. Humid air enters the exhaust pipe 31 through the opened channel. 1. The air rises along the gap between the waterproof cap 34 and the pipe wall, and the spiral air guide 32 causes the rising airflow to rotate, providing a preset, smooth path for the airflow, transforming disordered turbulence into orderly laminar flow or organized swirling flow. This reduces the resistance of airflow, and the rising airflow eventually reaches the upper part of the waterproof cap 34 and is discharged outside the cabinet from the air outlet 35 on its side wall. When external airflow attempts to backflow from the air outlet 35 during non-dehumidification periods, it will force the waterproof cap 34 to press down, making it seal the pipe opening more tightly, and the backflow prevention function will take effect to prevent humid air from backflowing.

[0038] Simultaneously, during the placement of the urn, open the sealing door 2, place the urn into the compartment 5, close and lock the sealing door 2, connect the power supply, and the gas delivery mechanism 4 and ultraviolet lamp 6 will start working. Intermittent timed operation can be set to save energy. The intake fan 43 operates, drawing in outside air and forcing it through the filter box 42. Moisture and impurities in the air are adsorbed, becoming dry and clean air. The dry air enters the compartment 5 evenly through the intake baffle 8. Under the action of the guide plate 74 and the elastic baffle 73, the dry air diffuses evenly, gradually replacing the humid air in the compartment 5, carrying away internal moisture and volatile organic compounds. While removing pollutants, the ultraviolet lamp 6 irradiates and sterilizes the interior. The air carrying moisture rises to the top of the cabinet and, under the positive pressure inside the cabinet, pushes open the waterproof cap 34 of the exhaust check mechanism 3. After passing through the spiral air guide plate 32, the air is discharged outside the cabinet through the air outlet 35. After the system stops working, the waterproof cap 34 of the exhaust check mechanism 3 automatically closes under the action of spring force and gravity, creating a dry, clean, and sealed stable environment inside the cabinet until the next startup. Periodically opening the isolation frame 41 and taking out the filter box 42 for replacement or regeneration can restore the dehumidification performance of the equipment. Maintenance is very simple.

Claims

1. An urn repository comprising a cabinet (1) characterised in that: The upper surface of the cabinet body (1) is provided with an exhaust check mechanism (3); The exhaust check mechanism (3) comprises an air outlet pipe (31), the upper surface of the cabinet body (1) is provided with a first through hole, the air outlet pipe (31) is fixedly connected in the first through hole, the end surface of the air outlet pipe (31) close to the inside of the cabinet body (1) is fixedly connected with a gas guide cover (37), the inner wall of the air outlet pipe (31) is fixedly connected with a spiral gas guide fin (32), the inner wall of the air outlet pipe (31) is provided with a first through slot, the slot wall of the first through slot is slidably connected with a sliding block (33), the inner wall of the air outlet pipe (31) is slidably connected with a waterproof cap (34), the outer side surface of the waterproof cap (34) is fixedly connected with the side of the sliding block (33) away from the first through slot, the opposite surface of the sliding block (33) and the air outlet pipe (31) is fixedly connected with a spring (36), and the side wall of the waterproof cap (34) is provided with an air outlet hole (35).

2. A cremated remains storage mechanism as in claim 1, wherein: The inside of the cabinet body (1) is provided with a grid cavity (5), the side cavity wall of the grid cavity (5) is rotatably connected with a sealing door (2), and the gas guide cover (37) is arranged in the inside of the grid cavity (5).

3. A cremated remains storage mechanism as defined in claim 2, wherein: The side cavity wall of the grid cavity (5) is provided with a shunt mechanism (7), the shunt mechanism (7) comprises a mounting frame (71), the mounting frame (71) is fixedly connected to the side cavity wall of the grid cavity (5), the outer surface of the mounting frame (71) is provided with a fixed slot (72), the inside of the fixed slot (72) is provided with an elastic blocking strip (73), and the two ends of the elastic blocking strip (73) are fixedly connected with the fixed slot (72).

4. A cremated remains storage mechanism as in claim 3, wherein: The cavity wall of the grid cavity (5) is fixedly connected with a purple light lamp (6), the cavity surface of the grid cavity (5) opposite to the purple light lamp (6) is provided with a second through slot, and the inside of the second through slot is fixedly connected with an air inlet leakage plate (8).

5. A cremated remains storage mechanism as in claim 4, wherein: The sealing door (2), the grid cavity (5), the purple light lamp (6), the shunt mechanism (7) and the air inlet leakage plate (8) are provided with multiple groups, and the number of the sealing door (2), the grid cavity (5), the purple light lamp (6), the shunt mechanism (7) and the air inlet leakage plate (8) is matched.

6. A cremated remains storage mechanism as in claim 5, wherein: The lower surface of the cabinet body (1) is provided with a gas conveying mechanism (4), the gas conveying mechanism (4) comprises an isolation frame (41), the isolation frame (41) is fixedly connected to the lower surface of the cabinet body (1), the inside of the isolation frame (41) is detachably connected with a filter box (42), the inside of the isolation frame (41) is fixedly connected with an air inlet fan (43), and the opening of the upper surface of the isolation frame (41) corresponds to the second through slot of the grid cavity (5).

7. A corrosion protection apparatus characterized by, The bone ash storage mechanism comprises the bone ash storage mechanism according to any one of claims 1-6. The bone ash storage mechanism comprises the bone ash storage mechanism according to any one of claims 1-6.