Collection and transportation equipment for vaccinia virus seeds
By designing a vaccinia virus seed collection and transportation device with fixed, protective, and mounting components, the problems of shaking and difficulty in removing vaccine test tubes during transportation were solved, achieving effective protection and efficient operation.
Patent Information
- Application Number
- CN202511571794.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-30
- Publication Date
- 2025-12-02
AI Technical Summary
Existing equipment for collecting and transporting vaccinia virus seeds is prone to damage to vaccine tubes during transportation due to shaking or collisions, and the fixed bracket design makes it time-consuming and laborious to remove the vaccine tubes.
A device comprising a housing, a support, and a protective cover is designed. The vaccine tubes are secured by a fixing component, the protective component prevents shaking, the support component provides support, and the mounting component facilitates the removal of the support as a whole, avoiding the need to handle the vaccine tubes individually.
It effectively prevents vaccine tubes from being shaken and damaged during transportation, while improving the efficiency of retrieving vaccine tubes and reducing operation time and effort.
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Figure CN121044152A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of insulated box technology, specifically to a device for collecting and transporting vaccinia virus seeds. Background Technology
[0002] Vaccines are preventive biological products used for human immunization to prevent and control the occurrence and spread of infectious diseases. Biological products are preparations made from microorganisms or their toxins, enzymes, human or animal serum, cells, etc., for prevention, diagnosis, and treatment. Biological products used for immunization include vaccines, bacterial vaccines, and toxoids. Among these, those made from pathogens are called bacterial vaccines; those made from viruses, rickettsiae, or spirochetes are called vaccines, and sometimes they are collectively referred to as vaccines.
[0003] Existing vaccinia virus seed collection and transportation equipment is prone to damage during transport due to shaking or collisions within the container. Furthermore, the supports holding the vaccine tubes are often fixed, requiring individual tube removal, which is time-consuming and labor-intensive. Therefore, this invention provides a vaccinia virus seed collection and transportation device to address the aforementioned problems. Summary of the Invention
[0004] The purpose of this invention is to provide a device for collecting and transporting vaccinia virus seeds, so as to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A collection and transportation device for vaccinia virus seeds includes a box, a support, and a protective cover. The box has a sealing plate and a movably connected sealing cover. A protective component is located inside the sealing cover. The support is located inside the box, with mounting blocks at the front, rear, left, and right ends. Mounting components are located on the inner wall of the box corresponding to the mounting blocks. The support has several through holes, with protective pads inside each through hole. Fixing components are located on the support corresponding to each through hole. A support plate is located on the lower side of the support plate, with a protective cover located at the upper end of the support plate corresponding to each through hole. Several sliders are located on the outer wall of the support plate, with pull rods at the upper ends of the sliders. Fixing posts are located inside the box corresponding to the sliders, and the sliders are slidably connected to the fixing posts. A second sliding groove is located on the fixing post corresponding to the slider, and a support component is located in the second sliding groove corresponding to the slider.
[0007] When using this device, open the sealing cap and insert the vaccine tube into the through hole. The fixed component secures the vaccine tube, preventing it from shaking or colliding and being damaged inside the chamber. Then, pull the lever to move the slider, support plate, and protective cover upwards. The support component provides support for the rising slider and support plate, making it easier for the bottom of the vaccine tube to be inserted into the protective cover, further improving the protection of the vaccine tube. Then, close the sealing cap. The protective component fits tightly against the top of the vaccine tube, preventing it from shaking up and down, further improving the protection of the vaccine tube. When it is necessary to remove the vaccine tube, the installation component allows the entire support to be easily removed from the chamber, eliminating the need to remove the vaccine tube separately, saving time and effort.
[0008] As a further embodiment of the present invention, the protective component includes a damper, a first spring, and a protective plate. The sealing cover is provided with a plurality of dampers, and the other end of the damper is provided with a protective plate. The damper is fitted with a first spring, one end of the first spring is fixedly connected to the sealing cover, and the other end of the first spring is fixedly connected to the protective plate. Through the coordinated use of the protective plate, the first spring, and the damper structure, the protective plate is tightly attached to the top of the vaccine tube.
[0009] As a further embodiment of the present invention, the fixing component includes a clamping plate, and a plurality of clamping plates are provided on the upper side of the through hole. A threaded rod is provided on the clamping plate, and a threaded sleeve is threadedly connected to the threaded rod. A bearing is provided on the outer wall of the threaded sleeve, and a fixing plate is provided on the outer wall of the bearing and fixedly connected to the bracket. Telescopic rods are symmetrically provided on the upper and lower ends of the fixing plate near the clamping plate, and the other end of the telescopic rods is fixedly connected to the clamping plate. By rotating the threaded sleeve, the threaded sleeve drives the threaded rod and the clamping plate to move towards the vaccine tube, thereby fixing the vaccine tube through the clamping plate.
[0010] As a further embodiment of the present invention, the threaded sleeve is provided with a bevel gear, the lower end of which meshes with a bevel gear ring, and the lower end of the bevel gear ring is provided with a support ring. The support ring is slidably connected to the bracket, and the upper end of the bracket is provided with an annular groove corresponding to the support ring. By rotating the bevel gear ring, the bevel gear ring drives the bevel gear and the threaded sleeve to rotate.
[0011] As a further embodiment of the present invention, a fixing block is provided at one end of the fixing plate near the bevel ring. A locking rod is slidably connected to the fixing block. A pull ring is provided at the upper end of the locking rod, and the lower end of the locking rod is engaged with the bevel ring. The upper end of the bevel ring is provided with several slots corresponding to the locking rod. A fixing ring is provided on the locking rod, and a second spring is sleeved on the locking rod. The upper end of the second spring is fixedly connected to the fixing block, and the lower end of the second spring is fixedly connected to the fixing ring. By pulling the pull ring upward, the locking rod and the fixing ring move upward. The fixing ring compresses the second spring. At this time, the locking rod separates from the slots, thereby facilitating the rotation of the bevel ring.
[0012] As a further embodiment of the present invention, the mounting assembly includes a connecting block, a first sliding groove, and a positioning block. The inner wall of the housing is symmetrically provided with the connecting block as the center. The connecting block has a first sliding groove at one end near the mounting block. The positioning block is slidably connected in the first sliding groove and is engaged with the mounting block. The mounting block has a positioning groove corresponding to the positioning block. A third spring is provided in the first sliding groove. One end of the third spring is fixedly connected to the inner wall of the first sliding groove, and the other end of the third spring is fixedly connected to the positioning block. The upper end of the positioning block has a pull block that penetrates the connecting block. The pull block is slidably connected to the connecting block. The connecting block has a first through groove corresponding to the pull block. The positioning block is in the shape of a right trapezoid. When it is necessary to remove the vaccine tube, pulling the pull block will cause the positioning block to separate from the positioning groove, thereby facilitating the removal of the entire support from the housing.
[0013] As a further embodiment of the present invention, the support assembly includes a groove, a pull plate, a second through groove, and a support block. The inner wall of the second through groove is provided with a groove, and a pull plate is provided in the groove. A fixed column passes through the upper end of the pull plate, and the pull plate is slidably connected to the fixed column. A second through groove is provided on the fixed column corresponding to the pull plate. A plurality of support blocks are provided on the pull plate, and a plurality of fourth springs are provided in the groove corresponding to the support blocks. One end of the fourth spring is fixedly connected to the inner wall of the groove, and the other end of the fourth spring is fixedly connected to the support block. The support block is in the shape of a right trapezoid. When the slider moves upward, it will drive the support block to move. The support block compresses the fourth spring. When the slider moves above the support block, the support block returns to its original position under the action of the elastic force of the fourth spring. The support block thus provides support for the raised slider and the support plate.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] 1. In use, the present invention uses a fixed component to secure the vaccine tube, preventing it from shaking or colliding inside the chamber and causing damage. Pulling the lever moves the slider, support plate, and protective cover upwards. The support component provides support for the rising slider and support plate, facilitating the insertion of the bottom of the vaccine tube into the protective cover, further improving the protection of the vaccine tube. Then, the sealing cap is placed on top, and the protective component fits tightly against the top of the vaccine tube, preventing it from shaking up and down, further improving the protection of the vaccine tube.
[0016] 2. When using this invention, if it is necessary to remove the vaccine test tubes, the installation components make it easy to remove the entire support from the box, eliminating the need to remove the vaccine test tubes separately, thus saving time and effort. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of a device for collecting and transporting vaccinia virus seeds.
[0018] Figure 2This is a schematic diagram of the cross-sectional structure of a device for collecting and transporting vaccinia virus seeds.
[0019] Figure 3 A collection and transportation device for vaccinia virus seeds Figure 1 A magnified structural diagram of point A in the middle.
[0020] Figure 4 A collection and transportation device for vaccinia virus seeds Figure 2 A magnified structural diagram at point B in the middle.
[0021] Figure 5 A collection and transportation device for vaccinia virus seeds Figure 2 A magnified structural diagram at point C.
[0022] In the diagram: 1. Housing; 101. Sealing plate; 2. Sealing cover; 3. Protective assembly; 301. Damper; 302. First spring; 303. Protective plate; 4. Bracket; 401. Through hole; 402. Protective pad; 5. Support plate; 501. Protective cover; 502. Slider; 503. Pull rod; 6. Fixing assembly; 601. Clamping plate; 602. Threaded rod; 603. Threaded sleeve; 604. Bearing; 605. Fixing plate; 606. Telescopic rod; 607. Bevel gear; 608. Bevel gear ring; 609. Support ring; 610. Annular ring 611. Groove; 612. Fixing block; 613. Locking rod; 614. Pull ring; 615. Locking groove; 616. Fixing ring; 617. Second spring; 7. Mounting block; 8. Mounting assembly; 801. Connecting block; 802. First sliding groove; 803. Positioning block; 804. Positioning groove; 805. Third spring; 806. Pulling block; 807. First through groove; 9. Fixing post; 901. Second sliding groove; 10. Support assembly; 1001. Groove; 1002. Pulling plate; 1003. Second through groove; 1004. Support block; 1005. Fourth spring. Detailed Implementation
[0023] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0024] In this invention, the term "exemplary" is used to mean "serving as an example, illustration, or description." Any embodiment described as "exemplary" in this invention is not necessarily to be construed as being more preferred or advantageous than other embodiments. The following description is provided to enable any person skilled in the art to make and use the invention. Details are set forth in the following description for purposes of explanation. It should be understood that those skilled in the art will recognize that the invention can be made without using these specific details. In other instances, well-known structures and processes will not be described in detail to avoid obscuring the description of the invention with unnecessary detail. Therefore, the invention is not intended to be limited to the embodiments shown, but is consistent with the broadest scope of the principles and features disclosed herein.
[0025] Example
[0026] Please see Figures 1-5 In this embodiment of the invention, a collection and transportation device for vaccinia virus seeds includes a box 1, a support 4, and a protective cover 501. The box 1 is provided with a sealing plate 101, and a sealing cover 2 is movably connected to the box 1. A protective component 3 is provided inside the sealing cover 2. The support 4 is provided inside the box 1, and mounting blocks 7 are provided at the front, rear, left, and right ends of the support 4. Mounting components 8 are provided on the inner wall of the box 1 corresponding to the mounting blocks 7. The support 4 is provided with several through holes 401, and protective pads 402 are provided inside the through holes 401. A fixing component 6 is provided corresponding to the through hole 401. A support plate 5 is provided on the lower side of the bracket 4. A protective cover 501 is provided on the upper end of the support plate 5 corresponding to the through hole 401. A plurality of sliders 502 are provided on the outer wall of the support plate 5. A pull rod 503 is provided on the upper end of the slider 502. A fixing post 9 is provided in the box 1 corresponding to the slider 502. The slider 502 is slidably connected to the fixing post 9. A second sliding groove 901 is provided on the fixing post 9 corresponding to the slider 502. A support component 10 is provided in the second sliding groove 901 corresponding to the slider 502.
[0027] Specifically, opening the sealing plate 1 allows ice packs to be placed into the box 1. Then, opening the sealing cover 2 allows vaccine tubes to be inserted into the through hole 401. The fixing component 6 secures the vaccine tubes, preventing them from shaking or colliding and causing damage within the box 1. Pulling the lever 503 moves the slider 502, support plate 5, and protective cover 501 upwards. The support component 10 provides support for the rising slider 502 and support plate 5, facilitating the insertion of the bottom of the vaccine tube into the protective cover 501, further enhancing the protection of the vaccine tubes. The sealing cover 2 is then closed, and the protective component 3 fits tightly against the top of the vaccine tube, preventing it from shaking up and down, further improving the protection. When the vaccine tubes need to be removed, the mounting component 8 allows the entire support 4 to be removed from the box 1, eliminating the need to remove the vaccine tubes separately, saving time and effort.
[0028] The protective component 3 includes a damper 301, a first spring 302, and a protective plate 303. The sealing cover 2 is provided with a plurality of dampers 301. The other end of the damper 301 is provided with a protective plate 303. The first spring 302 is sleeved on the damper 301. One end of the first spring 302 is fixedly connected to the sealing cover 2, and the other end of the first spring 302 is fixedly connected to the protective plate 303.
[0029] Specifically, through the combined use of the protective plate 303, the first spring 302, and the damper 301, the protective plate 303 is tightly attached to the top of the vaccine tube to prevent the vaccine tube from shaking up and down.
[0030] The fixing component 6 includes a clamping plate 601. Several clamping plates 601 are provided on the upper side of the through hole 401. A threaded rod 602 is provided on the clamping plate 601. A threaded sleeve 603 is threadedly connected to the threaded rod 602. A bearing 604 is provided on the outer wall of the threaded sleeve 603. A fixing plate 605 is provided on the outer wall of the bearing 604 and is fixedly connected to the bracket 4. A telescopic rod 606 is symmetrically provided on one end of the fixing plate 605 near the clamping plate 601. The other end of the telescopic rod 606 is fixedly connected to the clamping plate 601.
[0031] Specifically, by rotating the threaded sleeve 603, the threaded sleeve 603 drives the threaded rod 602 and the clamping plate 601 to move towards the vaccine test tube. The clamping plate 601 fixes the vaccine test tube, preventing it from shaking or colliding inside the box 1 and causing damage.
[0032] The threaded sleeve 603 is provided with a bevel gear 607, the lower end of which meshes with a bevel gear ring 608. The lower end of the bevel gear ring 608 is provided with a support ring 609, which is slidably connected to the bracket 4. The upper end of the bracket 4 is provided with an annular groove 610 corresponding to the support ring 609.
[0033] Specifically, by rotating the bevel gear ring 608, the bevel gear ring 608 drives the bevel gear 607 and the threaded sleeve 603 to rotate.
[0034] A fixing block 611 is provided on one end of the fixing plate 605 near the bevel ring 608. A locking rod 612 is slidably connected to the fixing block 611. A pull ring 613 is provided at the upper end of the locking rod 612, and the lower end of the locking rod 612 is engaged with the bevel ring 608. The upper end of the bevel ring 608 is provided with several slots 614 corresponding to the locking rod 612. A fixing ring 615 is provided on the locking rod 612. A second spring 616 is sleeved on the locking rod 612. The upper end of the second spring 616 is fixedly connected to the fixing block 611, and the lower end of the second spring 616 is fixedly connected to the fixing ring 615.
[0035] Specifically, by pulling the pull ring 613 upward, the locking rod 612 and the fixing ring 615 move upward. The fixing ring 615 compresses the second spring 616. At this time, the locking rod 612 separates from the locking groove 614, which facilitates the rotation of the bevel ring 608.
[0036] The mounting assembly 8 includes a connecting block 801, a first sliding groove 802, and a positioning block 803. The inner wall of the housing 1 is symmetrically provided with the connecting block 801 centered on the mounting block 7. The connecting block 801 is provided with a first sliding groove 802 at one end near the mounting block 7. The positioning block 803 is slidably connected in the first sliding groove 802 and is engaged with the mounting block 7. The mounting block 7 is provided with a positioning groove 804 corresponding to the positioning block 803. A third spring 805 is provided in the first sliding groove 802. One end of the third spring 805 is fixedly connected to the inner wall of the first sliding groove 802, and the other end of the third spring 805 is fixedly connected to the positioning block 803. The upper end of the positioning block 803 is provided with a pull block 806 that penetrates the connecting block 801. The pull block 806 is slidably connected to the connecting block 801. The connecting block 801 is provided with a first through groove 807 corresponding to the pull block 806.
[0037] Specifically, the positioning block 803 is in the shape of a right trapezoid. When the vaccine test tube needs to be taken out, the pull block 806 is pulled to separate the positioning block 803 from the positioning groove 804, so that the entire bracket 4 can be taken out of the box 1 without having to take out the vaccine test tube separately, saving time and effort.
[0038] The support assembly 10 includes a groove 1001, a pull plate 1002, a second through groove 1003, and a support block 1004. The inner wall of the second sliding groove 901 is provided with a groove 1001, and a pull plate 1002 is provided in the groove 1001. The upper end of the pull plate 1002 passes through the fixing post 9, and the pull plate 1002 is slidably connected to the fixing post 9. The fixing post 9 is provided with a second through groove 1003 corresponding to the pull plate 1002. A plurality of support blocks 1004 are provided on the pull plate 1002, and a plurality of fourth springs 1005 are provided in the groove 1001 corresponding to the support blocks 1004. One end of the fourth spring 1005 is fixedly connected to the inner wall of the groove 1001, and the other end of the fourth spring 1005 is fixedly connected to the support block 1004.
[0039] Specifically, the support block 1004 is in the shape of a right trapezoid. When the slider 502 moves upward, it will drive the support block 1004 to move. The support block 1004 compresses the fourth spring 1005. When the slider 502 moves above the support block 1004, the support block 1004 will return to its original position under the action of the elastic force of the fourth spring 1005. The support block 1004 thus provides support for the raised slider 502 and the support plate 5.
[0040] The working principle of this invention is:
[0041] In use, the ice pack is placed into the box 1 by opening the sealing plate 1, then the sealing cover 2 is opened, and the vaccine tube is inserted into the through hole 401. Pulling the pull ring 613 upwards causes the locking rod 612 and the fixing ring 615 to move upwards. The fixing ring 615 compresses the second spring 616. At this time, the locking rod 612 separates from the locking groove 614. Then, the bevel gear ring 608 is rotated, which drives the bevel gear 607 and the threaded sleeve 603 to rotate. The threaded sleeve 603 then drives the threaded sleeve to rotate. The rod 602 and clamp 601 move towards the vaccine tube, fixing the vaccine tube in place via the clamp 601 to prevent it from shaking or colliding and being damaged within the housing 1. Then, the pull ring 613 is released, and under the force of the second spring 616, the locking rod 612 returns to its original position, inserting into the slot 614 to rotate the bevel ring 608, preventing it from rotating on its own. Finally, the pull rod 503 is pulled, causing the slider 502, support plate 5, and protective cover 5 to move. 01 moves upward, slider 502 moves upward, driving support block 1004 to move. Support block 1004 compresses fourth spring 1005. When slider 502 moves above support block 1004, under the action of the elastic force of fourth spring 1005, support block 1004 returns to its original position. Support block 1004 thus provides support for slider 502 and support plate 5 after rising, making it easier for the bottom of vaccine tube to be inserted into protective cover 501, further improving the protection effect of vaccine tube. Then, sealing cover 2 is closed. Through the coordinated use of the structure of protective plate 303, first spring 302 and damper 301, protective plate 303 is close to the top of vaccine tube, preventing vaccine tube from shaking up and down, further improving the protection effect of vaccine tube. When it is necessary to take out the vaccine tube, pull block 806 to drive positioning block 803 to separate from positioning groove 804, so that the entire bracket 4 can be taken out from box 1 without having to take out the vaccine tube separately, saving time and effort.
[0042] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A device for collecting and transporting vaccinia virus seeds, characterized in that, The enclosure includes a housing (1), a bracket (4), and a protective cover (501). The housing (1) is provided with a sealing plate (101), and a sealing cover (2) is movably connected to the housing (1). A protective component (3) is provided inside the sealing cover (2). The housing (1) is provided with a bracket (4), and mounting blocks (7) are provided at the front, back, left, and right ends of the bracket (4). Mounting components (8) are provided on the inner wall of the housing (1) corresponding to the mounting blocks (7). The bracket (4) is provided with several through holes (401), and a protective pad (402) is provided inside the through holes (401). A fixing device is provided on the bracket (4) corresponding to the through holes (401). The component (6) has a support plate (5) on the lower side of the bracket (4). The upper end of the support plate (5) is provided with a protective cover (501) corresponding to the through hole (401). The outer wall of the support plate (5) is provided with several sliders (502). The upper end of the slider (502) is provided with a pull rod (503). The box (1) is provided with a fixed column (9) corresponding to the slider (502). The slider (502) is slidably connected to the fixed column (9). The fixed column (9) is provided with a second groove (901) corresponding to the slider (502). The second groove (901) is provided with a support component (10) corresponding to the slider (502).
2. The collection and transportation equipment for vaccinia virus seeds according to claim 1, characterized in that, The protective component (3) includes a damper (301), a first spring (302) and a protective plate (303). The sealing cover (2) is provided with a plurality of dampers (301), and the other end of the damper (301) is provided with a protective plate (303). The damper (301) is fitted with a first spring (302). One end of the first spring (302) is fixedly connected to the sealing cover (2), and the other end of the first spring (302) is fixedly connected to the protective plate (303).
3. The collection and transportation equipment for vaccinia virus seeds according to claim 1, characterized in that, The fixing component (6) includes a clamping plate (601). Several clamping plates (601) are provided on the upper side of the through hole (401). A threaded rod (602) is provided on the clamping plate (601). A threaded sleeve (603) is threadedly connected to the threaded rod (602). A bearing (604) is provided on the outer wall of the threaded sleeve (603). A fixing plate (605) is fixedly connected to the bracket (4) on the outer wall of the bearing (604). A telescopic rod (606) is symmetrically provided on one end of the fixing plate (605) near the clamping plate (601). The other end of the telescopic rod (606) is fixedly connected to the clamping plate (601).
4. The collection and transportation equipment for vaccinia virus seeds according to claim 2, characterized in that, The threaded sleeve (603) is provided with a bevel gear (607), the lower end of the bevel gear (607) meshes with a bevel ring (608), the lower end of the bevel ring (608) is provided with a support ring (609), the support ring (609) is slidably connected to the bracket (4), and the upper end of the bracket (4) is provided with an annular groove (610) corresponding to the support ring (609).
5. The collection and transportation equipment for vaccinia virus seeds according to claim 2, characterized in that, A fixing block (611) is provided on one end of the fixing plate (605) near the bevel ring (608). A locking rod (612) is slidably connected on the fixing block (611). A pull ring (613) is provided on the upper end of the locking rod (612), and the lower end of the locking rod (612) is engaged with the bevel ring (608). A number of slots (614) are provided on the upper end of the bevel ring (608) corresponding to the locking rod (612). A fixing ring (615) is provided on the locking rod (612). A second spring (616) is sleeved on the locking rod (612). The upper end of the second spring (616) is fixedly connected to the fixing block (611), and the lower end of the second spring (616) is fixedly connected to the fixing ring (615).
6. The collection and transportation equipment for vaccinia virus seeds according to claim 1, characterized in that, The mounting assembly (8) includes a connecting block (801), a first sliding groove (802), and a positioning block (803). The inner wall of the housing (1) is symmetrically provided with the connecting block (801) centered on the mounting block (7). The first sliding groove (802) is provided at one end of the connecting block (801) near the mounting block (7). The positioning block (803) is slidably connected within the first sliding groove (802). The positioning block (803) engages with the mounting block (7). A positioning groove is provided on the mounting block (7) corresponding to the positioning block (803). 804), a third spring (805) is provided in the first slide groove (802). One end of the third spring (805) is fixedly connected to the inner wall of the first slide groove (802), and the other end of the third spring (805) is fixedly connected to the positioning block (803). The upper end of the positioning block (803) is provided with a pull block (806) that penetrates the connecting block (801). The pull block (806) is slidably connected to the connecting block (801). The connecting block (801) is provided with a first through groove (807) corresponding to the pull block (806).
7. The collection and transportation equipment for vaccinia virus seeds according to claim 1, characterized in that, The support assembly (10) includes a groove (1001), a pull plate (1002), a second through groove (1003), and a support block (1004). The inner wall of the second sliding groove (901) is provided with a groove (1001). A pull plate (1002) is provided in the groove (1001). The upper end of the pull plate (1002) passes through the fixed column (9). The pull plate (1002) is slidably connected to the fixed column (9). The fixed column (9) is provided with a second through groove (1003) corresponding to the pull plate (1002). A number of support blocks (1004) are provided on the pull plate (1002). A number of fourth springs (1005) are provided in the groove (1001) corresponding to the support blocks (1004). One end of the fourth spring (1005) is fixedly connected to the inner wall of the groove (1001), and the other end of the fourth spring (1005) is fixedly connected to the support block (1004).