Double-station lifting dissecting table
By designing a dual-position lifting dissection table, and utilizing a storage frame and deflection support rod, two human specimens can be stored and their positions switched, solving the problem that existing dissection tables can only store one specimen, thus saving costs and space.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHANGJIAGANG HUAYI SCI & TECH EQUIP CO LTD
- Filing Date
- 2025-04-23
- Publication Date
- 2026-05-19
AI Technical Summary
The existing lifting dissection table can only hold one human specimen, which means that multiple dissection tables are needed when multiple specimens are required for teaching dissection, increasing costs.
Design a dual-position lifting dissection table, including a vertical lifting storage frame in the storage chamber, with upper and lower placement frames and vertical connecting rods on the frame, equipped with a lifting power device and a deflection support rod. The support rod can be stored, and the support rollers facilitate movement, realizing the storage and position switching of two specimens.
It enables the storage of two human specimens on a single dissection table, and facilitates specimen position switching through the cooperation of support rods and power devices, saving space and cost, without increasing the size of the dissection table, and maintaining a neat appearance.
Smart Images

Figure CN224251722U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of human specimen storage and anatomical experimentation technology, and in particular to a dual-position lifting dissection table. Background Technology
[0002] A lifting dissection table is a device used to temporarily store human specimens, facilitating teaching or medical dissection of human specimens by laboratory personnel. Patent No. 202022345040.3 discloses a lifting dissection table, which raises and lowers the tabletop inside the table via a swing rod and a support rod. However, this lifting dissection table can only hold one human specimen at a time. Therefore, when multiple human specimens are needed for teaching dissection experiments, multiple dissection tables are required, thus increasing costs. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a dual-position lifting dissection table, which can accommodate the storage of two human specimens and facilitate the replacement of the upper and lower positions of the human specimens, thus meeting the needs of teaching.
[0004] To solve the above-mentioned technical problems, the technical solution of this utility model is: a dual-position lifting dissection table, including a dissection table body, the dissection table body being provided with a storage chamber, the upper end of the storage chamber being open, a storage frame being vertically and vertically mounted on the dissection table body within the storage chamber, the storage frame including an upper placement frame and a lower placement frame, and multiple vertical connecting rods connecting the upper placement frame and the lower placement frame, the upper placement frame and the lower placement frame respectively constituting placement positions for placing human specimen plates, the storage frame being driven to rise and fall by a lifting power device, the storage... On opposite sides of the upper opening of the chamber, a first buffer support structure and a second buffer support structure with identical structures are respectively installed. The first buffer support structure includes at least two first deflection support rods. One end of the first deflection support rod is rotatably installed around a vertical hinge axis at the edge of the upper opening of the storage chamber. The first deflection support rod swings between the buffer support position and the retraction position. When all the first deflection support rods are deflected to the buffer support position, they jointly support the human specimen platform. The storage frame is provided with an access window to facilitate the entry and exit of the human specimen platform between the placement position and the buffer support position.
[0005] As a preferred embodiment, the upper opening of the storage chamber is provided with a storage groove for accommodating the first deflection support rod. The first deflection support rod is rotatably installed in the storage groove, and the upper end face of the first deflection support rod is adapted to the upper end face of the opening.
[0006] As a preferred embodiment, the first deflection support rod is rotatably mounted with support rollers to facilitate the movement of the human specimen platform.
[0007] As a preferred embodiment, the dissection table body includes an inner cavity and an outer cavity connected together, the storage chamber is disposed on the inner cavity, a gap is provided between the inner cavity and the outer cavity, a connecting seat is fixedly installed on the outer wall of the inner cavity, the connecting seat is located within the gap, and the first deflection support rod is rotatably mounted on the connecting seat through the vertical hinge shaft.
[0008] As a preferred embodiment, a reinforcing connecting plate is also fixed to the outer wall of the inner cavity, and the connecting seat is fixed to the reinforcing connecting plate.
[0009] As a preferred embodiment, the connecting seat includes a connecting part that is welded and fixed to the reinforcing connecting plate. The upper end of the connecting part is provided with a horizontal plate, and the bottom of the horizontal plate is provided with a reinforcing pad. The vertical hinge shaft passes through the bottom of the storage groove, the horizontal plate, and the reinforcing pad, and then hinges the first deflection support rod to the connecting seat.
[0010] As a preferred embodiment, there are four vertical connecting rods arranged in a rectangular shape. The space between the vertical connecting rods and the upper and lower placement frames constitutes the access window. The vertical connecting rods located on both sides of the access window are in a limiting fit with the human specimen platform.
[0011] As a preferred embodiment, the access window corresponds to one side of the length of the dissection table body.
[0012] After adopting the above technical solution, the effect of this utility model is as follows: Because the dissection table body is vertically and vertically equipped with a storage frame located within the storage chamber, the storage frame includes an upper placement frame and a lower placement frame, as well as multiple vertical connecting rods connecting the upper and lower placement frames. The upper and lower placement frames respectively constitute placement positions for placing human specimen trays. The storage frame is driven to rise and fall by a lifting power device. On opposite sides of the upper opening of the storage chamber, a first buffer support structure and a second buffer support structure with identical structures are respectively installed. The first buffer support structure includes at least two first deflection support rods. One end of each first deflection support rod is rotatably installed around a vertical hinge axis at the edge of the upper opening of the storage chamber. The first deflection support rods swing between the buffer support position and the retraction position. When all the first deflection support rods deflect to the buffer support position, they collectively support the human specimen tray. The storage frame is provided with an access window that facilitates the entry and exit of the human specimen tray between the placement position and the buffer support position. Therefore, this… The dissection table utilizes an upper and lower placement frame on a storage frame to support two human specimen platforms, allowing for the placement of two human specimens. A lifting mechanism drives the storage frame to rise and fall. Normally, the uppermost human specimen is used. When the lower specimen is needed, the lifting mechanism controls the storage frame to raise and lower the upper and lower specimen platforms until they are aligned with the first and second deflection support rods, respectively. Simultaneously, the first and second deflection support rods are deflected into buffer support positions, allowing the upper and lower specimen platforms to be pulled onto them. The lifting mechanism then controls the height of the storage frame, moving the lower specimen platform to the upper placement frame and vice versa. This allows for switching the positions of the specimen platforms, facilitating teaching with different human specimens. During normal storage, the first and second deflection support rods deflect to the retracting position, which does not increase the size of the dissection table. Therefore, this lifting dissection table can store one more human specimen than the existing dissection table, thus reducing costs.
[0013] Furthermore, since the upper opening of the storage chamber is provided with a storage groove for accommodating the first deflection support rod, and the first deflection support rod is rotatably installed in the storage groove, with the upper end face of the first deflection support rod matching the upper end face of the opening, the first deflection support rod can be retracted into the storage groove. This makes the whole structure neater, without any protruding parts, without affecting the overall appearance, and without hindering human specimen anatomy teaching.
[0014] Furthermore, since the first deflection support rod is equipped with support rollers that facilitate the movement of the human specimen platform, the movement of the human specimen platform becomes even smoother.
[0015] Furthermore, since a reinforcing connecting plate is fixed on the outer wall of the inner cavity, and the connecting seat is fixed on the reinforcing connecting plate, the load-bearing capacity of the first deflection support rod can be further improved by using the reinforcing connecting plate.
[0016] Furthermore, since there are four vertical connecting rods arranged in a rectangular shape, the space between the vertical connecting rods and the upper and lower placement frames constitutes the entry and exit window. The vertical connecting rods located on both sides of the entry and exit window are in a limiting fit with the human specimen platform. In this way, when the human specimen platform is moved out from the lower placement frame, it will be limited by the vertical connecting rods, thus preventing it from slipping and ensuring that the drawing of the action is accurate.
[0017] Furthermore, since the access window corresponds to one side of the length of the dissection table body, the distance the human specimen platform moves out is relatively small, and the length of the first deflection support rod can also be set to be relatively short. Attached Figure Description
[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] Figure 1 This is a three-dimensional structural view of an embodiment of the present utility model;
[0020] Figure 2 It is a three-dimensional structural diagram that hides the side panel of the outer cavity;
[0021] Figure 3 yes Figure 2 An enlarged view at point A;
[0022] Figure 4 This is a side view of an embodiment of the present utility model;
[0023] Figure 5 yes Figure 4 An enlarged view at point B;
[0024] In the attached diagram: 1. Dissection table body; 101. Rim; 102. Outer cavity; 103. Inner cavity; 104. Storage chamber; 105. Storage slot; 2. Storage frame; 201. Lower placement frame; 202. Upper placement frame; 203. Vertical connecting rod; 3. Human specimen platform; 4. First deflection support rod; 5. Second deflection support rod; 6. Support roller; 7. Connecting seat; 701. Connecting part; 702. Horizontal plate part; 8. Reinforcing connecting plate; 9. Reinforcing pad. Detailed Implementation
[0025] The present invention will be further described in detail below through specific embodiments.
[0026] like Figures 1 to 5 As shown, a dual-position lifting dissection table includes a dissection table body 1, which has a storage chamber 104 with an opening at its upper end. In this embodiment, the dissection table body 1 includes a connected inner cavity 103 and an outer cavity 102. The storage chamber 104 is disposed on the inner cavity 103, and a gap is provided between the inner cavity 103 and the outer cavity 102. A storage frame 2 is vertically and vertically mounted on the dissection table body 1 within the storage chamber 104, and the storage frame 2 is driven to rise and fall by a lifting power device. The specific structure of the lifting power device is omitted in this embodiment. The purpose of the lifting power device is to drive the lifting and falling of the storage frame 2. The driving method can be selected from the technical solution described in patent number 202022345040.3, which uses the deflection of a swing arm to achieve the lifting and falling of the storage frame 2. Since the lifting structure described in the published document of patent number 202022345040.3 is clear, the structural representation of the lifting power device is omitted in this embodiment.
[0027] like Figure 1 and Figure 2 As shown, the storage frame 2 includes an upper placement frame 202 and a lower placement frame 201, as well as multiple vertical connecting rods 203 connecting the upper placement frame 202 and the lower placement frame 201. The upper placement frame 202 and the lower placement frame 201 respectively constitute placement stations for placing the human specimen platform 3. There are four vertical connecting rods 203 arranged in a rectangular shape. The storage frame is provided with access windows to facilitate the movement of the human specimen platform 3 between the placement stations and the buffer support stations. The space between the vertical connecting rods 203 and the upper and lower placement frames 202 constitutes the access windows. Preferably, the access windows correspond to one side of the length of the dissection table body 1. Figure 4 and Figure 5 As shown, the vertical connecting rods 203 located on both sides of the entrance / exit window are in a limiting engagement with the human specimen platform 3. The human specimen platform 3 then moves laterally out from the side, the distance of which is the width of the human specimen platform 3.
[0028] On opposite sides of the upper opening of the storage chamber 104, a first buffer support structure and a second buffer support structure with identical structures are respectively installed. The first buffer support structure includes at least two first deflection support rods 4. One end of each first deflection support rod 4 is rotatably mounted on the upper opening of the storage chamber 104 about a vertical hinge axis. The first deflection support rods 4 swing between the buffer support position and the retraction position. When all the first deflection support rods 4 are deflected to the buffer support position, they collectively support the human specimen platform 3. In this embodiment, the first buffer support structure and the second buffer support structure are identical and installed in the same way. They include two second deflection support rods 5, which are installed in the same way as the first deflection support rods 4.
[0029] like Figures 1 to 5 As shown, the upper opening rim 101 of the storage chamber 104 is provided with a storage groove 105 for accommodating the first deflection support rod 4. The first deflection support rod 4 is rotatably mounted in the storage groove 105, and the upper end face of the first deflection support rod 4 is adapted to the upper end face of the opening rim 101. When the first deflection support rod 4 and the second deflection support rod 5 are not needed, they can be folded into the storage groove 105, thus ensuring that the width of the entire dissection table remains the width of the outer cavity 102.
[0030] In this embodiment, a support roller 6 is rotatably mounted on the first deflection support rod 4 to facilitate the movement of the human specimen platform 3. Similarly, a support roller 6 is also rotatably mounted on the second deflection support rod 5 to facilitate the movement of the human specimen platform 3.
[0031] like Figure 2 As shown, a connecting seat 7 is fixedly installed on the outer wall of the inner cavity 103. The connecting seat 7 is located within the gap. The first deflection support rod 4 is rotatably installed on the connecting seat 7 via the vertical hinge shaft. A reinforcing connecting plate 8 is also fixed on the outer wall of the inner cavity 103, and the connecting seat 7 is fixed on the reinforcing connecting plate 8. The reinforcing connecting plate 8 and the connecting seat 7 can be fixed by welding.
[0032] In this embodiment, there are two first deflection support rods 4, which are located near the two ends of the human specimen platform 3. Of course, the number can also be increased according to the actual use, for example, to three rods.
[0033] like Figure 2 and Figure 3 As shown, the connecting seat 7 includes a connecting part 701 that is welded and fixed to the reinforcing connecting plate 8. A horizontal plate part 702 is provided at the upper end of the connecting part 701, and a reinforcing pad 9 is provided at the bottom of the horizontal plate part 702. The vertical hinge shaft passes through the bottom of the storage groove 105, the horizontal plate part 702 and the reinforcing pad 9, and then hinges the first deflection support rod 4 to the connecting seat 7.
[0034] The working principle of this utility model is as follows: First, the lifting power device drives the storage frame 2 to descend, causing it to sink into the storage chamber 104 for convenient daily storage. When it is necessary to conduct anatomical experiments on the upper human specimens, the lifting power device simply drives the storage frame 2 to rise as a whole, so that the uppermost human specimen platform 3 is higher than the opening rim 101, allowing for experimental teaching. When it is necessary to conduct anatomical experiments on the lower human specimens, the first deflection support rod 4 and the second deflection support rod 5 are both deflected and extended. The lifting power device drives the storage frame 2 to rise so that the upper placement frame 202 is flush with the surfaces of the first deflection support rod 4 and the second deflection support rod 5. Then, the upper human specimen platform 3 is moved horizontally onto the first deflection support rod 4 or the second deflection support rod 5 for buffering. Then, the storage frame 2 continues to rise, so that the lower human specimen platform 3 rises to a position where it is aligned with the first deflection support rod 4 and the second deflection support rod 5. The lower human specimen platform 3 is then moved horizontally onto the idle second deflection support rod 5 or the first deflection support rod 4 for buffering. Then, the human specimen platform 3, which was originally on the upper layer, is moved horizontally onto the lower placement frame 201. Then, the storage frame 2 is lowered so that the upper placement frame 202 is flush with the surfaces of the first deflection support rod 4 and the second deflection support rod 5. Then, the human specimen platform 3, which was originally on the lower layer, is moved horizontally onto the upper placement frame 202, thus completing the switching between the upper and lower human specimens and facilitating experiments on the human specimens that were originally on the lower layer.
[0035] In summary, the dual-position lifting dissection table in this embodiment can realize the storage of two layers of human specimens and the switching of their upper and lower positions, thereby enabling the dissection of two human specimens on one dissection table, saving space and cost.
[0036] The above-described embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Any modifications and alterations to the technical solution of the present utility model without departing from its design spirit shall fall within the protection scope defined by the claims of the present utility model.
Claims
1. A double position lifting autopsy table comprising an autopsy table body provided with a storage chamber, the upper end of which is open, characterized in that: The dissection table body is vertically and vertically mounted on a storage frame within the storage chamber. The storage frame includes an upper placement frame and a lower placement frame, as well as multiple vertical connecting rods connecting the upper and lower placement frames. The upper and lower placement frames respectively constitute placement positions for placing human specimen trays. The storage frame is driven to rise and fall by a lifting power device. On opposite sides of the upper opening of the storage chamber, a first buffer support structure and a second buffer support structure with identical structures are respectively installed. The first buffer support structure includes at least two first deflection support rods. One end of the first deflection support rod is rotatably mounted on the edge of the upper opening of the storage chamber around a vertical hinge axis. The first deflection support rod swings between the buffer support position and the retraction position. When all the first deflection support rods are deflected to the buffer support position, they jointly support the human specimen tray. The storage frame is provided with an access window to facilitate the entry and exit of the human specimen tray between the placement position and the buffer support position.
2. A dual position lifting dissecting table as claimed in claim 1 wherein: The upper opening of the storage chamber is provided with a storage groove for accommodating the first deflection support rod. The first deflection support rod is rotatably installed in the storage groove, and the upper end face of the first deflection support rod is adapted to the upper end face of the opening.
3. A dual position lifting dissecting table as claimed in claim 2 wherein: The first deflection support rod is rotatably equipped with support rollers to facilitate the movement of the human specimen platform.
4. A dual position lifting dissecting table as claimed in claim 3 wherein: The dissection table body includes an inner cavity and an outer cavity connected together. The storage chamber is disposed on the inner cavity. A gap is provided between the inner cavity and the outer cavity. A connecting seat is fixedly installed on the outer wall of the inner cavity. The connecting seat is located within the gap. The first deflection support rod is rotatably mounted on the connecting seat through the vertical hinge shaft.
5. A dual position lifting dissecting table as claimed in claim 4 wherein: A reinforcing connecting plate is also fixed to the outer wall of the inner cavity, and the connecting seat is fixed to the reinforcing connecting plate.
6. A dual position lifting dissecting table as claimed in claim 5 wherein: The connecting seat includes a connecting part that is welded and fixed to the reinforcing connecting plate. The upper end of the connecting part is provided with a horizontal plate, and the bottom of the horizontal plate is provided with a reinforcing pad. The vertical hinge shaft passes through the bottom of the storage groove, the horizontal plate, and the reinforcing pad, and then hinges the first deflection support rod to the connecting seat.
7. A dual position lifting dissecting table as claimed in claim 6 wherein: The vertical connecting rods are four in number and arranged in a rectangle. The space between the vertical connecting rods and the upper and lower placement frames constitutes the access window. The vertical connecting rods located on both sides of the access window are in a limiting fit with the human specimen platform.
8. A dual position lifting dissecting table as claimed in claim 7 wherein: The access window corresponds to one side of the length of the dissection table body.