Coffin-like structure and life-saving station
By designing an expandable coffin-like structure, the problem of high psychological pressure for participants in small, dark spaces was solved, resulting in a more comfortable funeral culture experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-25
- Publication Date
- 2026-03-06
AI Technical Summary
When existing coffin-like structures are used to simulate funeral environments, participants need to lie in a small, dark space, which increases psychological stress and tension.
Design a coffin-like mechanism that allows the side panels of the coffin to rotate and unfold through a drive mechanism and unfolding components, connecting the interior space of the coffin with the room space and reducing the feeling of cramped space.
By unfolding the side panels of the coffin, the experiencer no longer feels cramped, reducing psychological pressure and tension, and enhancing the experience.
Smart Images

Figure CN116672207B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of funeral science popularization, specifically to coffin-like structures and life stations. Background Technology
[0002] Currently, cremation is the mainstream and promoted funeral method. However, other funeral methods such as burial, water burial, and even sky burial still exist in different regions due to cultural customs, historical traditions, and other reasons. As a process in the complete cycle of life, funeral is an unskippable step. Most people have a deep taboo against funeral culture, which mainly stems from a lack of understanding of funeral culture. To overcome this taboo, it is necessary to experience and understand funeral culture.
[0003] For example, patent CN113539116A, published on October 22, 2021, discloses a funeral culture experience device, including a coffin-like body and a coffin-like lid. The coffin-like body has an experience space for a person to lie down in, and the coffin-like lid is driven to close or open the top opening of the experience space. A display mechanism is provided on the side walls and / or top wall of the experience space, and the display mechanism is used to play videos of different funeral culture processes. The funeral culture experience device provided by this invention uses a coffin-like body to simulate a funeral environment, and a display mechanism to show videos of different funeral culture processes. This allows users to experience different funeral methods firsthand, thereby reducing the difficulty of promoting scientific funeral practices, and also provides a direct and experiential way to popularize funeral culture.
[0004] Existing simulated coffins require participants to lie inside the coffin when simulating a funeral environment, and the room lights must be turned off during the experience. The small and dark space increases the participants' psychological pressure and tension, leading to negative effects. Summary of the Invention
[0005] The purpose of this invention is to provide a coffin-like structure and a life-saving station, thereby solving the technical problems in related technologies.
[0006] To achieve the above objectives, the present invention provides the following technical solution:
[0007] A coffin-like mechanism includes an experiential coffin and a drive mechanism. The experiential coffin includes a coffin body and a coffin lid. The drive mechanism drives the coffin lid to open and close the coffin relative to the coffin body. The coffin body includes a bottom plate and multiple side plates disposed on the bottom plate. Each side plate can rotate relative to the bottom plate to have an unfolded state.
[0008] It also includes a deployment assembly, which drives each side panel to rotate relative to the base plate.
[0009] The aforementioned unfolding assembly also includes multiple sleeves, each corresponding to a corner point of the base plate. The axial direction of the sleeves is not parallel to the surface of the base plate. The side plates are rotatably connected to the sleeves on both sides via shafts. A triggering part is provided at the bottom of the coffin lid, and a deflection part is provided inside the sleeves, which are connected to the shafts.
[0010] The drive mechanism pulls the coffin lid to move relative to the coffin body, opening the coffin body. The triggering part drives the deflection part to deflect, and the deflection part drives the side plate to deflect towards the ground with the axis of the shaft as the center, unfolding the coffin body.
[0011] As mentioned above, notches are symmetrically opened on both sides of the shaft, and a connecting rod is slidably connected in the notch. The sliding direction of the connecting rod is consistent with the axial direction of the shaft. The connecting rod is connected to the shaft through a return spring. An adjusting block is also provided on the side of the connecting rod near the sleeve. The deflection part drives the adjusting block to deflect towards the ground, causing the shaft to move synchronously and unfold the coffin body.
[0012] As mentioned above, the cross-section of the connecting rod has a polygonal structure.
[0013] The aforementioned deflection section includes a driven main rod, which is coaxially arranged with the rod sleeve. The side of the driven main rod away from the coffin lid is rotatably connected to the bottom end of the rod sleeve. A gear is fixedly installed on the side of the driven main rod near the coffin lid, and the gear is coaxially arranged with the driven main rod. Two connection openings are provided on the side of the rod sleeve away from the coffin lid, and the two connection openings correspond one-to-one with the adjacent two side plates of the rod sleeve. A connecting rod is inserted into the connection opening and is connected to the driven main rod through a traction rope. A winding groove is provided on the driven main rod, and the two ends of the traction rope are connected to the winding groove and the connecting rod, respectively. Two deflection blocks are also provided inside the rod sleeve, and the two deflection blocks correspond one-to-one with the two side plates. A deflection groove is provided on the surface of the deflection block, and the side of the adjusting block away from the connecting rod is inserted into the deflection groove.
[0014] The triggering part mentioned above includes multiple drive racks, each drive rack corresponding to a multiple rod sleeve. The drive racks mesh with the gears, driving the deflection part to move, adjusting the side plate to deflect towards the ground, and unfolding the coffin body.
[0015] The aforementioned adjusting block includes a connecting section and a head section. The connecting section is fixedly connected to the connecting rod, and the head section is rotatably connected to the connecting section. The side of the head section closest to the deflection block is arc-shaped.
[0016] The coffin lid is also equipped with an adjustment part, which is used to adjust the engagement or disengagement of the trigger part and the deflection part. When the trigger part and the deflection part are engaged, the coffin lid moves relative to the coffin body, the side panel deflects toward the ground, and the coffin body unfolds. When the trigger part and the deflection part are disengaged, the coffin lid moves relative to the coffin body, the trigger part and the deflection part do not contact each other, and the coffin body is used normally.
[0017] The life station includes a building, with a coffin-like structure placed inside.
[0018] The aforementioned building includes a first chamber and a second chamber that are interconnected. The coffin-like mechanism is placed in one of the chambers, and the drive mechanism is located in the other chamber. The building is also equipped with a communication system for communicating with the outside world, a heart rate monitoring system for monitoring the heart rate of the participants, and an emergency stop system for immediately ending the experience. A playback component is also installed directly above the coffin.
[0019] The beneficial effects of the present invention are as follows: In the above technical solution, when the coffin lid is opened by the driving mechanism, the unfolding component provided by the present invention drives each side plate to rotate relative to the bottom plate, so that the internal space of the coffin body is connected with the room space, so that the experiencer no longer feels the cramped space inside the coffin body, but directly feels the room space, thereby reducing the psychological pressure and tension of the experiencer. Attached Figure Description
[0020] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this invention. For those skilled in the art, other drawings can be obtained based on these drawings.
[0021] Figure 1 This is a schematic diagram of the internal structure of the life-saving station of the present invention;
[0022] Figure 2 This is a top view of the experiential coffin of the present invention;
[0023] Figure 3 This is a schematic diagram of the side panel of the experience coffin of the present invention after it has been unfolded.
[0024] Figure 4 This is a schematic diagram of the internal structure of the sleeve of the present invention;
[0025] Figure 5 This is the invention Figure 4 A schematic diagram of the cross-section of AA;
[0026] Figure 6 This is a schematic diagram of the deflection block of the present invention;
[0027] Figure 7 This is a bottom view of the coffin lid of the present invention;
[0028] Figure 8 This is a schematic diagram showing the distribution of the playback components of the present invention;
[0029] Figure 9 This is the invention Figure 8 Enlarged view of point C;
[0030] Figure 10This is a schematic diagram of the connection between the roll and the projection cloth of the present invention;
[0031] Figure 11 This is the invention Figure 10 A schematic diagram of the cross-section of BB;
[0032] Figure 12 This is a schematic diagram of the cross-section of the scroll after the extension portion of the present invention has been unfolded;
[0033] Figure 13 This is a top view of the base plate of the present invention;
[0034] Figure 14 This is a top view schematic diagram of the deformable pad of the present invention.
[0035] Explanation of reference numerals in the attached figures:
[0036] 1. Experience Coffin; 11. Coffin Body; 12. Coffin Lid; 13. Drive Mechanism; 14. Base Plate; 15. Side Plate; 16. Shaft; 161. Notch; 162. Connecting Rod; 163. Return Spring; 164. Adjusting Block; 165. Compression Spring; 17. Trigger Part; 171. Drive Rack; 2. Playback Component; 21. Reel; 211. Bushing; 212. Inner Shaft; 213. Opening; 214. Trigger Block; 22. Projection Cloth; 23. Extension Part; 231. Extension Block; 24. Adjustment Mechanism; 241. Drive Motor; 3. Unfolding Component; 31. Rod Sleeve; 32. Deflection section; 321. Driven main rod; 322. Gear; 323. Connecting opening; 324. Traction rope; 325. Winding groove; 326. Deflection block; 327. Deflection slot; 4. Building; 41. First cavity; 42. Second cavity; 5. Communication system; 6. Heart rate monitoring system; 7. Emergency stop system; 8. Deformation pad; 81. Internal support frame; 811. First cavity; 812. Second cavity; 813. Third cavity; 814. Fourth cavity; 815. First conduit; 816. Second conduit; 82. Package; 83. Bag; 84. Partition; 9. Power unit. Detailed Implementation
[0037] To enable those skilled in the art to better understand the technical solution of the present invention, the following will be described in conjunction with the appendix. Figure 1 - Figure 14 The present invention will now be described in further detail.
[0038] An embodiment of the present invention provides a coffin-like mechanism, including an experience coffin 1 and a driving mechanism 13. The experience coffin 1 includes a coffin body 11 and a coffin lid 12. The driving mechanism 13 drives the coffin lid 12 to open and close the coffin relative to the coffin body 11. The coffin body 11 includes a bottom plate 14 and a plurality of side plates 15 disposed on the bottom plate 14. Each side plate 15 can rotate relative to the bottom plate 14 to have an unfolded state. The invention also includes an unfolding component 3, which is used to drive each side plate 15 to rotate relative to the bottom plate 14.
[0039] Specifically, in this embodiment, the unfolding component 3 includes multiple motors, each corresponding to a side plate 15. The motors drive the side plates 15 to deflect away from the bottom plate 14, thereby unfolding the experience coffin 1. This connects the interior space of the coffin 11 with the room space, allowing the user to no longer feel the cramped space inside the coffin 11, but to directly experience the room space, thus reducing the user's psychological pressure and tension.
[0040] The experiential coffin 1 is a device for users to experience funeral culture. In this embodiment, it is rectangular in shape, with the coffin body 11 being rectangular. The surface of the coffin body 11 has a groove for users to lie down in, and a pad is placed inside the groove. The coffin lid 12 is also rectangular and fits the coffin body 11. The coffin lid 12 is light-blocking, so when users lie flat inside the coffin body 11, they cannot watch the video played on the projection screen 22. In this embodiment, the drive mechanism 13 is an electrically controlled telescopic rod. The telescopic end of the electrically controlled telescopic rod is connected to the coffin lid 12. As the electrically controlled telescopic rod extends or retracts, it adjusts the movement of the coffin lid 12 relative to the coffin body 11, controlling the opening and closing of the experiential coffin 1.
[0041] In another embodiment of the present invention, the unfolding assembly 3 further includes a plurality of rod sleeves 31, each corresponding to a corner point of the base plate 14. The rod sleeves 31 are vertically fixed to the corners of the base plate 14. The side plate 15 is rotatably connected to the rod sleeves 31 on both sides of it through a shaft 16. A trigger part 17 is provided at the bottom of the coffin lid 12. A deflection part 32 is provided inside the rod sleeve 31. The deflection part 32 is connected to the shaft 16.
[0042] In this embodiment, the drive mechanism 13 is an electrically controlled telescopic rod. The telescopic end of the electrically controlled telescopic rod is connected to the coffin lid 12. By retracting the electrically controlled telescopic rod, the coffin lid 12 moves horizontally, causing a relative displacement between the coffin lid 12 and the coffin body 11, thus opening the experience coffin 1. Furthermore, as the coffin lid 12 moves, the trigger part 17 drives the deflection part 32 to move, unfolding the side panel 15. The side panel 15 changes from being perpendicular to the bottom plate 14 in its initial state to being parallel to the bottom plate 14, thus connecting the internal space of the coffin body 11 with the room space. This allows the experiencer to no longer feel the cramped space inside the coffin body 11, but to directly experience the room's interior space, thereby reducing the experiencer's psychological pressure and tension.
[0043] It should be noted that the base plate 14 can be any polygonal structure with more than two sides. In this embodiment, the base plate 14 is quadrilateral in shape, and the four rod sleeves 31 are placed at the four corner points of the base plate 14. It should be noted that in this embodiment, the axial direction of the rod sleeves 31 is perpendicular to the base plate 14.
[0044] The shaft 16 has symmetrical notches 161 on both sides, and a connecting rod 162 is slidably connected in the notch 161. The sliding direction of the connecting rod 162 is consistent with the axial direction of the shaft 16. The connecting rod 162 is connected to the shaft 16 through a return spring 163. An adjusting block 164 is also provided on the side of the connecting rod 162 near the sleeve 31. The deflection part 32 drives the adjusting block 164 to deflect towards the ground, causing the shaft 16 to move synchronously and unfold the coffin body 11. The cross-section of the connecting rod 162 is polygonal.
[0045] It should be noted that in this embodiment, the cross-section of the connecting rod 162 can be any polygonal structure. The connecting rod 162 can be a triangular prism, a quadrangular prism, a pentagonal prism, etc. The only requirement is that when the connecting rod 162 rotates around its axis, it can drive the side plate 15 to rotate synchronously.
[0046] Among them, the connecting rod 162 is the main component that drives the side plate 15 to deflect. After long-term use, the connecting rod 162 is prone to wear, which affects the normal unfolding of the side plate 15. Therefore, the connecting rod 162 and the side plate 15 should be detachably connected to facilitate the replacement of the connecting rod 162.
[0047] Preferably, in this example, the side plate 15 has a mounting groove for placing the connecting rod 162 on the side closest to the ground, and the connecting rod 162 is installed in the mounting groove by snap-fit.
[0048] The deflection part 32 includes a driven main rod 321, which is coaxially arranged with the rod sleeve 31. The side of the driven main rod 321 away from the coffin lid 12 is rotatably connected to the bottom end of the rod sleeve 31. A gear 322 is fixedly installed on the side of the driven main rod 321 near the coffin lid 12. The gear 322 is coaxially arranged with the driven main rod 321. Two connecting openings 323 are opened on the side of the rod sleeve 31 away from the coffin lid 12. The two connecting openings 323 correspond one-to-one with the two adjacent side plates 15 of the rod sleeve 31. The connecting rod 162 Inserted into the connecting opening 323, the connecting rod 162 is connected to the driven main rod 321 via the traction rope 324. The driven main rod 321 has a winding groove 325. The two ends of the traction rope 324 are connected to the winding groove 325 and the connecting rod 162 respectively. The rod sleeve 31 is also provided with two deflection blocks 326. The two deflection blocks 326 correspond one-to-one with the two side plates 15. The surface of the deflection block 326 has a deflection groove 327. The side of the adjusting block 164 away from the connecting rod 162 is inserted into the deflection groove 327.
[0049] It should be noted that in this embodiment, the deflection groove 327 is in the shape of a quarter spiral. When the adjusting block 164 slides along the deflection groove 327, the deflection block 326 deflects by 90 degrees. It should be noted that the spiral length of the deflection groove 327 is proportional to the angle between the side plate 15 and the ground. The side plate 15 can lie on the ground as long as the deflection block 326 slides along the deflection groove 327 to the end of the deflection groove 327.
[0050] It should also be noted that both the driven main rod 321 and the rod sleeve 31 can be telescopic structures. After the side plate 15 completes the unfolding action, the driven main rod 321 and the rod sleeve 31 retract, causing the height of the driven main rod 321 and the rod sleeve 31 to decrease. This prevents the driven main rod 321 and the rod sleeve 31 from affecting the viewing experience of the user when watching the movie.
[0051] In this embodiment, the component that drives the driven main rod 321 and the sleeve 31 to retract is an electrically controlled telescopic component. The electrically controlled telescopic component is installed on the ground, and its telescopic end is connected to a linkage pin. The side wall of the driven main rod 321 has an annular groove, which is coaxial with the driven main rod 321. The surface of the sleeve 31 has a clearance opening for the linkage pin to pass through. The axis of the clearance opening is perpendicular to the axis of the sleeve 31. One end of the linkage pin is inserted into the annular groove, and the other end is fixedly connected to the telescopic end of the electrically controlled telescopic component. When it is necessary to control the retraction of the driven main rod 321 and the sleeve 31, the electrically controlled telescopic component retracts, and the linkage pin drives the driven main rod 321 and the sleeve 31 to retract synchronously. Conversely, the electrically controlled telescopic component extends, controlling the driven main rod 321 and the sleeve 31 to return to their original positions.
[0052] The triggering part 17 includes multiple drive racks 171, which correspond one-to-one with multiple rod sleeves 31. The drive racks 171 mesh with the gears 322, driving the deflection part 32 to move, adjusting the side plate 15 to deflect towards the ground, and unfolding the coffin body 11.
[0053] Specifically, the participant lies inside the coffin body 11 of the experience coffin 1. Then, the drive mechanism 13 starts working, pulling the coffin lid 12 to slide along the length of the coffin body 11, causing the coffin body 11 to separate from the lid 12, creating an open coffin state. As the lid 12 slides along the coffin body 11, the drive rack 171 meshes with the gear 322, causing the gear 322 to rotate around its axis. The gear 322 drives the driven main rod 321 to rotate synchronously. As the driven main rod 321 rotates, it winds up the traction rope 324, which winds into the winding groove 325 on the driven main rod 321. At this time, as the traction rope 324 winds up, it pulls the connecting rod. 162 slides towards the rod sleeve 31. At this time, the return spring 163 is stretched. As the traction rope 324 pulls on the connecting rod 162, the adjusting block 164 on the connecting rod 162 also slides along the deflection groove 327 on the deflection block 326. When the drive rack 171 separates from the gear 322, the adjusting block 164 slides along the deflection groove 327 and deflects away from the bottom plate 14. In this embodiment, when the adjusting block 164 moves along the deflection groove 327 to the end of the deflection groove 327, the adjusting block 164 deflects the connecting rod 162 by ninety degrees, causing the side plate 15 to deflect towards the ground and lie on the ground, thereby completing the unfolding action of the side plate 15 of the experience coffin 1.
[0054] The sleeve 31 is also equipped with a compression spring 165, which abuts against the adjusting block 164.
[0055] Preferably, the side of the adjusting block 164 closest to the deflecting block 326 is arc-shaped. When the adjusting block 164 slides along the deflection groove 327, the adjusting block 164 deflects. When the adjusting block 164 deflects, it compresses the compression spring 165, which is compressed and stores force. When the side plate 15 needs to be reset, as the adjusting block 164 slides in the opposite direction along the deflection groove 327, the adjusting block 164 gradually moves away from the compression spring 165. At this time, the compression spring 165 releases the stored elastic force and pushes the adjusting block 164, thus preventing the adjusting block 164 from getting stuck when sliding along the deflection groove 327, which would affect the normal reset of the side plate 15.
[0056] When the adjusting block 164 slides along the deflection groove 327, the arc-shaped structure of the adjusting block 164 can reduce the friction between the adjusting block 164 and the deflection groove 327, making the adjusting block 164 deflect more smoothly.
[0057] The coffin lid 12 is also provided with an adjustment part, which is used to adjust the engagement or disengagement of the trigger part 17 and the deflection part 32. When the trigger part 17 and the deflection part 32 are engaged, the coffin lid 12 moves relative to the coffin body 11, the side plate 15 deflects toward the ground, and the coffin body 11 is unfolded. When the trigger part 17 and the deflection part 32 are disengaged, the coffin lid 12 moves relative to the coffin body 11, the trigger part 17 and the deflection part 32 do not contact each other, and the coffin body 11 is used normally.
[0058] In this embodiment, the adjustment unit includes a connecting rod that connects two drive racks 171 located on the same side. The connecting rod is slidably mounted on the coffin lid 12, and the sliding direction of the connecting rod is perpendicular to the moving direction of the drive racks 171. A pressing block is also provided on the coffin lid 12, with the side of the pressing block near the connecting rod inclined. When the user lies inside the experience coffin 1, if they are not afraid during the experience, they can press the control button. The telescopic unit moves the pressing block, which drives the connecting rod to move to both sides of the coffin lid 12, causing the drive racks 171 to move away from the gear 322. The drive racks 171 separate from the gear 322. As the coffin lid 12 moves, the drive racks 171 do not drive the gear 322 to rotate, so the side plate 15 of the experience coffin 1 does not flip. The user can experience normally. If they are afraid, they do not need to press the control button. As the coffin lid 12 moves, the drive racks 171 drive the gear 322 to rotate, and the gear 322 drives the driven main rod 321 to rotate, driving the side plate 15... The side panel 15 unfolds, tilting towards the ground, connecting the interior space of the experience coffin 1 with the indoor space, reducing the experiencer's fear. After completing the experience, the experiencer leaves the experience coffin 1, and the drive mechanism 13 pulls the coffin lid 12 to slide back along the length of the coffin body 11. The drive rack 171 and gear 322 mesh again, and gear 322 rotates in the opposite direction with its axis as the center. Gear 322 drives the driven main rod 321 to rotate synchronously. As the driven main rod 321 rotates, the driven main rod... 321 Release the traction rope 324. At this time, the reset spring 163 loosens its restriction and begins to reset. The reset spring 163 pulls the adjusting block 164 to slide along the deflection groove 327. The adjusting block 164 deflects away from the ground. When the adjusting block 164 moves along the deflection groove 327 to the end of the deflection groove 327, the adjusting block 164 deflects 90 degrees in the opposite direction with the connecting rod 162, so that the side plate 15 is perpendicular to the ground. This completes the reset action of the side plate 15 of the experience coffin 1, waiting for the next experiencer to experience it.
[0059] It should be noted that the adjustment unit is not limited to the structure described above. The adjustment unit only needs to be able to make the drive rack 171 and the gear 322 move away from each other.
[0060] Combination Figure 1 and Figure 8 - Figure 14Another embodiment of the present invention discloses a life station, including a building 4, with a coffin-like mechanism placed inside the building 4.
[0061] Building 4 includes a first chamber 41 and a second chamber 42 that are interconnected. The curtain experience coffin 1 is placed in one of the chambers, and the drive mechanism 13 is located in the other chamber. Building 4 is also equipped with a communication system 5 for communicating with the outside world, a heart rate monitoring system 6 for monitoring the heart rate of the experiencer, and an emergency stop system 7 for immediately ending the experience. A playback component 2 is also installed directly above the experience coffin 1.
[0062] It should be noted that, in this embodiment, the playback component 2 includes a scroll 21 and two projection cloths 22. The two projection cloths 22 are arranged in an inverted V shape and are wound around the scroll 21. The scroll 21 is provided with an extension portion 23 that can move radially. One end of the scroll 21 is connected to an adjustment mechanism 24. The adjustment mechanism 24 includes a drive motor 241. The output shaft of the drive motor 241 is coaxially arranged with the scroll 21. The drive motor 241 drives the scroll 21 to rotate with its axis as the center, thereby adjusting the projection cloths 22 to be wound up and unwound.
[0063] The scroll 21 includes a bushing 211 and an inner shaft 212. The inner shaft 212 is coaxially connected to the output shaft of the drive motor 241. An opening 213 is provided on the surface of the bushing 211. The extension 23 passes through the opening 213 and is inserted into the bushing 211. A trigger block 214 is installed on the side wall of the inner shaft 212. When the projection cloth 22 is in the unfolded state, the drive motor 241 drives the inner shaft 212 to rotate around its axis. The trigger block 214 presses the extension 23 to move and expand radially along the scroll 21, causing two adjacent projection cloths 22 to fit together. The extension 23 includes an extension block 231, which is slidably mounted on the bushing 211 and slides radially along the bushing 211. When the projection cloth 22 is in the unfolded state, the extensions 23 on the two adjacent scrolls 21 expand radially so that the two adjacent projection cloths 22 fit together.
[0064] The bushing 211 is movably sleeved with the end of the inner shaft 212. The bushing 211 has a cavity in the middle, and the trigger block 214 is located in the cavity. The end of the extension block 231 away from the inner shaft 212 is connected to the projection cloth 22. The projection cloth 22 is wrapped around the outside of the bushing 211. When the projection cloth 22 on the surface of the bushing 211 is wrapped in multiple layers, the multiple layers of projection cloth 22 squeeze the extension block 231, and the extension block 231 retracts into the opening 213. When the projection cloth 22 on the surface of the bushing 211 gradually decreases, the restrictive force of the projection cloth 22 on the extension block 231 also gradually decreases. At this time, with the squeezing of the trigger block 214, the extension part 23 gradually extends outward, so that the projection cloth 22 on the two rolls 21 approach each other until they fit together.
[0065] Preferably, a first spring is also connected between the extension 23 and the opening 213. When the extension 23 moves away from the inner shaft 212, the first spring is compressed. When the projection cloth 22 is rolled up, the first spring releases the traction trigger block 214 and returns to its initial position.
[0066] Specifically, in this embodiment, because multiple layers of projection cloth 22 are wound around the surface of the scroll 21, the projection cloth 22 constricts the extension portion 23, preventing the extension portion 23 from sliding away from the axis of the scroll 21. Consequently, the trigger block 214 on the inner shaft 212 is blocked by the extension portion 23, causing the inner shaft 212 and the bushing 211 to rotate synchronously. The scroll 21 releases the projection cloth 22 wound around its surface, and the connector connected to the projection cloth 22 slides along the guide rail to both sides under the influence of gravity, pulling the loosened projection cloth 22 to unfold to both sides. As the pressure of the projection cloth 22 on the scroll 21 on the extension part 23 decreases, the extension block 231 gradually moves away from the inner shaft rod 212. When the two projection cloths 22 are fully unfolded, only one ring of projection cloth 22 remains on the surface of the scroll 21. At this time, as the drive motor 241 continues to rotate, the drive motor 241 drives the inner shaft rod 212 to rotate around its axis. The trigger block 214 squeezes the extension part 23 to move and expand radially along the scroll 21, causing the two adjacent projection cloths 22 to fit together, thereby eliminating the gap between the two scrolls 21.
[0067] Furthermore, the surface of the opening 213 should also be provided with a guide groove, and the surface of the extension block 231 should be provided with a slider. The slider is inserted into the guide groove, and a limit block is also provided at the end of the opening 213 away from the inner shaft 212. When the slider slides along the guide groove until it is blocked by the limit block, the extension block 231 reaches its maximum extension distance, which means that the two projection cloths 22 are in contact.
[0068] The coffin-like curtain device also includes a deformable pad 8 and a power unit 9. The deformable pad 8 is placed inside the coffin body 11, and the power unit 9 adjusts the expansion or contraction of the deformable pad 8.
[0069] The deformable pad 8 includes an inner support frame 81 and a wrapping component 82. The wrapping component 82 is wrapped around the outside of the inner support frame 81. A bladder 83 is placed inside the inner support frame 81. The bladder 83 is connected to the power unit 9. The power unit 9 adjusts the expansion or contraction of the bladder 83.
[0070] The deformable pad 8 can be either an air pad or a liquid pad. When the deformable pad 8 is an air pad, the power unit 9 is an air pump; when the deformable pad 8 is a liquid pad, the power unit 9 is a liquid pump.
[0071] In this embodiment, the power unit 9 is an air pump. When the power unit 9 is working, it delivers gas into the deformable pad 8 and controls the expansion or contraction of the deformable pad 8. Through the expansion or contraction of the deformable pad 8, the experiencer lying on the surface of the deformable pad 8 moves up and down with the deformable pad 8, which can simulate the shaking of the coffin under external factors during a funeral, so that the experiencer can intuitively feel the shaking and improve the experience effect of the experiencer.
[0072] Specifically, the shaking of a coffin during funeral rites due to external factors mainly includes the following: First, during cremation, the flames burn the coffin, causing the wooden material to carbonize. The body, pressed against the carbonized wood, may break, leading to the body sinking and causing a shaking sensation. Second, during burial, the soil covering the coffin's surface during burial can cause it to shake and make noise due to the impact between the soil and the coffin. Third, during sky burial, the coffin is located at a high position, and the airflow can cause it to shake.
[0073] It should be noted that the power unit 9 can not only fill the deformable pad 8 with gas, but also inject liquid into the deformable pad 8 to make the deformable pad 8 inflate. Therefore, the choice of the power unit 9 is not unique, as long as it can make the deformable pad 8 inflate or contract.
[0074] The deformable pad 8 includes an inner support frame 81 and a wrapping component 82. The wrapping component 82 is wrapped around the outside of the inner support frame 81. A bladder 83 is placed inside the inner support frame 81. The bladder 83 is connected to the power unit 9. The power unit 9 adjusts the expansion or contraction of the bladder 83.
[0075] Preferably, in this embodiment, the bladder 83 should be made of a material with high elasticity that can expand, such as rubber. A soft rubber bladder 83 can not only adapt to shape changes when inflated or filled with water, but also improve the comfort of the user when lying flat.
[0076] The package 82 and the inner support frame 81 are also detachably connected. The package 82 is made of elastic material and can be adaptively adjusted according to the deformation of the package 83.
[0077] The inner support frame 81 is a rectangular frame adapted to the space of the coffin. Inside the inner support frame 81, there are three sets of parallel partitions 84. The length direction of the three sets of partitions 84 is perpendicular to the length direction of the inner support frame 81. The three sets of partitions 84 divide the inner side of the inner support frame 81 into four chambers: chamber 1 811, chamber 2 812, chamber 3 813, and chamber 4 814. Chamber 1 811 corresponds to the head area of the experiencer, and chamber 2 812 corresponds to the torso area of the experiencer. Correspondingly, cavity 3 813 corresponds to the buttocks area of the tester, and cavity 4 814 corresponds to the leg area of the tester. Cavity 1 811, cavity 2 812, cavity 3 813 and cavity 4 814 are each equipped with a sac 83. The sacs 83 in cavity 1 811 and cavity 2 812 are connected by a first conduit 815, and the sacs 83 in cavity 3 813 and cavity 4 814 are connected by a second conduit 816.
[0078] It should be noted that the number of partitions 84 is not unique. The number of partitions 84 can be any odd number. By setting an odd number of partitions 84, the inner cavity of the inner support frame 81 is divided into an even number of chambers. When there are multiple chambers, each chamber can be paired up. As the number of chambers increases, the shaking experience for the user becomes more realistic.
[0079] The partition 84 and the inner support frame 81 are detachably connected. The inner support frame 81 has multiple parallel and spaced mounting slots. The mounting slots are perpendicular to the ground. The partition 84 is inserted into the mounting slots, and the inner support frame 81 is placed in multiple chambers to complete the installation of the partition 84.
[0080] Specifically, when the user is experiencing the experience, the user lies on the surface of the deformable pad 8 inside the coffin body 11 of the experience coffin 1. The experience coffin 1 is closed, and then the staff turns off the lights in the room. At this time, the power unit 9 injects gas into the capsule 83, adjusting the capsule 83 to continuously expand and contract, thereby causing the user lying on the deformable pad 8 to rise and fall, making the user feel shaking inside the experience coffin 1. This increases the level of experience for the user and improves the experience effect.
[0081] The communication system 5 and the emergency stop system 7 are both located inside the coffin body 11 of the experience coffin 1, within the reach of the user's hands. Both the communication system 5 and the emergency stop system 7 are existing technologies, and their specific structures will not be described in detail. The heart rate detection system is a wristband structure worn on the user's wrist to monitor the user's heart rate. The data detected by the wristband is exchanged with data from an external computer to monitor the user's heart rate in real time, ensuring the user's safety. Furthermore, a ventilation port connected to the outside is provided at the bottom of the coffin body 11 to supply oxygen inside the experience coffin 1, preventing the user from inhaling oxygen excessively due to tension when the coffin is closed, which could lead to a reduction in oxygen inside the coffin.
[0082] The foregoing has only described certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the foregoing drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A coffin-like mechanism, comprising an experiential coffin (1) and a drive mechanism (13), wherein the experiential coffin (1) comprises a coffin body (11) and a coffin lid (12), and the drive mechanism (13) drives the coffin lid (12) to open and close relative to the coffin body (11), characterized in that, The coffin body (11) comprises a bottom plate (14) and a plurality of side plates (15) arranged on the bottom plate (14), each side plate (15) being capable of rotating relative to the bottom plate (14) to have an unfolded state; The unfolded assembly (3) is further provided, which is used for driving each side plate (15) to rotate relative to the bottom plate (14); The unfolded assembly (3) further comprises a plurality of rod sleeves (31), the plurality of rod sleeves (31) correspond to the corner points of the bottom plate (14) one by one, the axial direction of the rod sleeve (31) is not parallel to the plate surface of the bottom plate (14), the side plate (15) is rotationally connected with the rod sleeves (31) on both sides thereof through shaft members (16), the bottom end of the coffin cover (12) is provided with a triggering part (17), the inside of the rod sleeve (31) is provided with a deflection part (32), the deflection part (32) is connected with the shaft member (16); The driving mechanism (13) drives the coffin cover (12) to move relative to the coffin body (11), the coffin body (11) is unfolded, the triggering part (17) drives the deflection part (32) to deflect, the deflection part (32) drives the side plate (15) to deflect towards the ground along the axis of the shaft member (16), and the coffin body (11) is unfolded; The two sides of the shaft member (16) are symmetrically provided with notches (161), a connecting rod (162) is slidably connected in the notches (161), the sliding direction of the connecting rod (162) is consistent with the axial direction of the shaft member (16), the connecting rod (162) is connected with the shaft member (16) through a return spring (163), and one side of the connecting rod (162) close to the rod sleeve (31) is further provided with an adjusting block (164). The deflection part (32) drives the adjusting block (164) to deflect towards the ground, drives the shaft member (16) to move synchronously, and unfolds the coffin body (11). The deflection part (32) comprises a driven main rod (321), the driven main rod (321) is coaxially arranged with the rod sleeve (31), one side of the driven main rod (321) away from the coffin cover (12) is rotationally connected with the bottom end of the rod sleeve (31), and a gear (322) is fixedly installed on one side of the driven main rod (321) close to the coffin cover (12). The gear (322) is coaxially arranged with the driven main rod (321), two connecting openings (323) are formed in the side of the rod sleeve (31) away from the coffin cover (12), the two connecting openings (323) correspond to the two side plates (15) adjacent to the rod sleeve (31) one by one, the connecting rod (162) is inserted into the connecting openings (323), the connecting rod (162) is connected with the driven main rod (321) through a traction rope (324), a wire slot (325) is formed in the driven main rod (321), the two ends of the traction rope (324) are connected with the wire slot (325) and the connecting rod (162) respectively, and two deflection blocks (326) are further arranged in the rod sleeve (31). The two deflection blocks (326) correspond to the two side plates (15) one by one, a deflection groove (327) is formed in the surface of the deflection block (326), and one side of the adjusting block (164) away from the connecting rod (162) is inserted into the deflection groove (327).
2. A simulated coffin mechanism according to claim 1, wherein, The cross section of the connecting rod (162) is a polygonal structure.
3. A simulated coffin mechanism according to claim 1, wherein, The trigger part (17) comprises a plurality of driving racks (171), the plurality of driving racks (171) correspond to the plurality of rod sleeves (31) one by one, the driving rack (171) is engaged with the gear (322), drives the deflection part (32) to act, adjusts the side plate (15) to deflect to the ground direction, and unfolds the coffin body (11).
4. A simulated coffin mechanism according to claim 3, wherein, The adjusting block (164) comprises a connecting section (165) and a head section (166), the connecting section (165) is fixedly connected with the connecting rod (162), the head section (166) is rotationally connected with the connecting section (165), and the side of the head section (166) close to the deflection block (326) is arc-shaped.
5. A simulated coffin mechanism according to claim 4, wherein, The coffin cover (12) is further provided with an adjusting part, the adjusting part is used for adjusting the cooperation or separation of the trigger part (17) and the deflection part (32), when the trigger part (17) cooperates with the deflection part (32), the coffin cover (12) moves relative to the coffin body (11), the side plate (15) deflects to the ground, and the coffin body (11) is unfolded, when the trigger part (17) is separated from the deflection part (32), the coffin cover (12) moves relative to the coffin body (11), the trigger part (17) does not contact with the deflection part (32), and the coffin body (11) is normally used.
6. Life station, comprising a building (4) in which a coffin-like mechanism is placed, characterized in that, The imitation coffin mechanism is the imitation coffin mechanism according to any one of claims 1-5.
7. The life station according to claim 6, characterized in that The building (4) comprises a first cavity (41) and a second cavity (42) which are communicated with each other, the imitation coffin mechanism is placed in one of the rooms, the driving mechanism (13) is arranged in the other room, the building (4) is further provided with a communication system (5) for communicating with the outside world, a heart rate monitoring system (6) for monitoring the heart rate of the experimenter and an emergency stop system (7) for immediately ending the experience, and a playing assembly (2) is further installed above the experience coffin (1).
Citation Information
Patent Citations
Funeral culture experience device
CN113539116A
Assembled coffin with refrigeration function
CN216777479U