Transportation reinforcing device and operation method thereof

By combining a fixed base plate, a reinforced support mechanism, and a buffer reinforcement mechanism, the problem of glass tubes being easily broken during transportation was solved, achieving stable fixation and buffer protection for the glass tubes and reducing the risk of breakage.

CN121553511APending Publication Date: 2026-02-24SUZHOU INST OF TRADE & COMMERCE
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Patent Information

Application Number
CN202511683622.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-17
Publication Date
2026-02-24

AI Technical Summary

Technical Problem

During express delivery, glass tubes are prone to breakage due to collisions caused by stacking, and the lack of effective limiting protection devices makes them easy to be damaged during installation and disassembly.

Method used

A transport reinforcement device was designed, including a fixed base plate, a reinforcement support mechanism, a tensioning reinforcement mechanism, and a buffer reinforcement mechanism. By combining multiple fixed grooves, reinforcement support mechanisms, tensioning reinforcement mechanisms, and buffer reinforcement mechanisms, stable fixation and buffer protection of the glass tube can be achieved.

Benefits of technology

It effectively prevents glass tubes from colliding and shaking during transportation, reduces the probability of breakage, and improves stability and safety during transportation.

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Abstract

The invention discloses a transportation reinforcing device and an operation method thereof, and the transportation reinforcing device comprises a fixed bottom plate, a reinforcing supporting mechanism, a tightening reinforcing mechanism and a buffering reinforcing mechanism. A plurality of fixing sliding grooves are formed in the fixing bottom plate, a plurality of plugging pieces are arranged on the fixing bottom plate, the reinforcing supporting mechanisms are evenly arranged in the fixing sliding grooves, each reinforcing supporting mechanism comprises a supporting bottom block and a fixing column pipe, a mounting groove is formed in each fixing column pipe, and a buffering cavity is formed in each supporting bottom block. The tightening and reinforcing mechanism comprises a lifting sliding ring, a plurality of connecting column rods and a clamping patch, and the lifting sliding ring is tightly arranged on the fixing column pipe in a sleeving mode. According to the invention, through the arrangement of the corresponding mechanisms, the glass tubes can be reinforced in the transportation process, so that a plurality of glass tubes cannot collide with one another, the probability of damage to the glass tubes is reduced, the probability of damage to the glass tubes in the mounting and dismounting processes is reduced, and unnecessary loss is reduced for manufacturers.
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Description

Technical Field

[0001] This invention belongs to the field of fragile goods transportation technology, specifically relating to a transportation reinforcement device and its operating method. Background Technology

[0002] With the rapid development of e-commerce and the fast pace of life, online shopping is becoming increasingly popular, leading to a rapid increase in express delivery services. During the delivery process, different types of goods and their destinations require sorting and handling to facilitate transportation by delivery vehicles.

[0003] During the express delivery sorting process, fragile items are frequently encountered. Among them, glass tubes in the current technology are often stacked together during transportation, which can easily cause the glass tubes to collide and break. Moreover, the lack of limiting and protective devices for the glass tubes makes them prone to breakage during installation and disassembly, thus causing unnecessary losses to manufacturers or users.

[0004] Therefore, in view of the above-mentioned technical problems, it is necessary to provide a transportation reinforcement device and its operation method.

[0005] The information disclosed in this background section is intended only to enhance the understanding of the overall background of the invention and should not be construed as an admission or in any way implying that the information constitutes prior art known to those skilled in the art. Summary of the Invention

[0006] The purpose of this invention is to provide a transport reinforcement device and its operating method, which can solve the problem of glass tubes being inconvenient to transport in the prior art.

[0007] To achieve the above objectives, a specific embodiment of the present invention provides the following technical solution:

[0008] A transport reinforcement device includes: a fixed base plate, a reinforcement support mechanism, a tensioning reinforcement mechanism, and a buffer reinforcement mechanism.

[0009] The fixed base plate has multiple fixed grooves and multiple sealing components.

[0010] Multiple reinforcement support mechanisms are evenly arranged in multiple fixed sliding grooves. Each reinforcement support mechanism includes a support base block and a fixed column tube. The fixed column tube has an installation groove. The bottom end of the fixed column tube is inserted into the support base block. A buffer cavity is formed in the support base block.

[0011] Each pair of the tensioning and reinforcing mechanisms is sleeved on the fixed column tube. The tensioning and reinforcing mechanism includes a lifting sliding ring, multiple connecting rods, and clamping patches. The lifting sliding ring is tightly sleeved on the fixed column tube. The two ends of the connecting rods are respectively fixedly connected to the clamping patches and the lifting sliding ring. Multiple clamping patches are all located in the mounting grooves. Arc grooves are chiseled on the multiple mounting grooves.

[0012] The buffer reinforcement mechanism is located inside the buffer cavity. The buffer reinforcement mechanism is used to provide buffer for the fixed column tube, avoid violent impact on the fixed column tube, and thus protect the glass tube fixed inside the fixed column tube.

[0013] In one or more embodiments of the present invention, a plurality of fastening bolts are threadedly connected to the side of the fixed base plate for supporting and driving the top clamping patch, so that the top clamping patch can be pressed against the side wall of the transport vehicle, and it is convenient for the staff to operate. The top clamping patch is fixedly installed at the end of the fastening bolt away from the fixed base plate for pressing against the transport vehicle, thereby preventing the fixed base plate from shaking or shifting, and thus ensuring that the glass tube will not shake or be damaged.

[0014] The fixed base plate has multiple fixing slots, and multiple first fixing bolts are threaded onto the fixed base plate. The first fixing bolts are used to fix the support base block by cooperating with the fixing slots, so that the support base block can no longer move, thereby achieving the purpose of fixing the column tube and ensuring that there will be no displacement or shaking during transportation.

[0015] In one or more embodiments of the present invention, a plurality of evenly distributed support columns are fixed on the side wall of the fixed slide groove, and auxiliary wheels are rotatably mounted on the plurality of support columns to facilitate the sliding of the support base into the fixed slide groove, making operation easier and the device easier to disassemble, thus avoiding jamming during the sliding process.

[0016] In one or more embodiments of the present invention, the sealing member includes a sealing plug for sealing one end of the fixed slide groove to prevent the support block from sliding out during transportation, thereby preventing the glass tube from tipping over. The sealing plug is threaded with a tightening bolt for supporting the rubber pad and driving the rubber pad to slide.

[0017] One end of the tightening bolt is fixedly installed with a rubber pad, which is used to press against the side of the support base block, so that the multiple support base blocks will no longer slide, thereby ensuring the stability of multiple glass tubes and reducing the probability of shaking during the transportation of glass tubes. The sealing plug is threaded with multiple second fixing bolts for fixing the sealing plug to the fixed base plate, so as to prevent the sealing plug from falling off.

[0018] In one or more embodiments of the present invention, a pair of fixing slots matching the first fixing bolts are chiseled on the support base block, so as to facilitate the first fixing bolts to fix the support base block, and make the support base block and the fixing column tube that are first inserted into the fixing slots less likely to shake or tilt.

[0019] The fixed column tube has multiple evenly distributed limiting grooves. The connecting column rod passes through the limiting grooves to facilitate the insertion of the connecting column rod and to allow the connecting column rod to move up and down. This allows the lifting sliding ring to drive multiple clamping pads to move up and down. A buffer pad is fixedly installed inside the support base block to support the glass tube, so that the glass tube will not directly hit the bottom of the installation groove when it is inserted into the installation groove, thus providing buffer protection and reducing the probability of damage to the glass tube during installation and disassembly.

[0020] In one or more embodiments of the present invention, the lifting sliding ring is provided with a first engagement groove and a second engagement groove. Through the mutual engagement of the first engagement groove and the second engagement groove, a pair of lifting sliding rings can be linked together, thereby facilitating the fixing and linkage of a pair of fixed column tubes. This prevents multiple fixed column tubes and glass tubes from shaking or tilting during transportation, thus improving the protection effect on the glass tubes. Linkage rod holes are provided on the side walls of both the first engagement groove and the second engagement groove to facilitate the insertion of the linkage rod, thereby improving the linkage effect of a pair of lifting sliding rings and preventing them from loosening and separating due to bumps during transportation, thus improving the linkage effect of the device.

[0021] In one or more embodiments of the present invention, a linkage bent rod is slidably provided on the lifting sliding ring for linking a pair of lifting sliding rings together, thereby enabling multiple fixed column tubes to be linked together, reducing the probability of shaking during transportation. The linkage bent rod is chiseled with a limiting bent groove to facilitate the insertion of the limiting bent rod, thereby limiting the linkage bent rod and enabling the linkage bent rod to slide.

[0022] The lifting sliding ring is fixed with a limiting bent rod that matches the limiting bent groove. A push spring is fixedly connected between the linkage bent rod and the lifting sliding ring. The push spring is sleeved on the limiting bent rod and slides through the linkage bent rod. Moreover, the push spring pushes the linkage bent rod so that the linkage bent rod will not rotate when it is not subjected to external force, thereby preventing the pair of lifting sliding rings from separating.

[0023] In one or more embodiments of the present invention, a sliding groove is provided on the lifting sliding ring, and a drive lever is fixed on the linkage bent rod to facilitate the sliding of the linkage bent rod and make it easy for the user to operate.

[0024] In one or more embodiments of the present invention, the buffer reinforcement mechanism includes a plurality of retractable frames to provide space for retractable buffer rods, thereby providing buffer space for the fixed column tube and preventing direct impact to the fixed column tube. Buffer rods are inserted into the retractable frames to support the fixed column tube, and one end of the buffer rod outside the retractable frame is fixedly connected to the fixed column tube.

[0025] A sealing plug is slidably disposed within the shrinkage frame. The sealing plug is fixedly connected to the lower end of the buffer rod. Inert gas is filled below the sealing plug. The inert gas is compressed to buffer the fixed column tube, making it less susceptible to direct impact. A limit ring is fixed to the bottom of the fixed column tube to limit its movement and prevent it from tilting, thereby improving the protection of the glass tube.

[0026] A method for operating a transport reinforcement device includes the following steps:

[0027] S1. First, insert the glass tube into the mounting groove so that the glass tube passes between multiple clamping pads. The bottom of the glass tube is supported by a buffer pad to prevent the glass tube from directly hitting the bottom of the fixed column tube. Then, press the lifting sliding ring so that the lifting sliding ring drives multiple clamping pads to slide, so that a pair of tensioning and reinforcing mechanisms can fix the upper and lower ends of the glass tube respectively.

[0028] S2. Then slide the reinforcing support mechanism and the fixed glass tube into the innermost part of the fixed groove, and then fix the support base block with the first fixing bolt so that the support base block and the fixed column tube can no longer slide, thereby achieving the effect of fixing the glass tube and preventing the glass tube from tipping over. Then slide the fixed column tube with the fixed glass tube and the support base block into the fixed groove in sequence.

[0029] S3. Moreover, after the new fixed column tube slides into the fixed groove, the lifting sliding ring needs to be pushed up and down to slide so that a pair of lifting sliding rings can be connected in parallel by the first and second meshing grooves that mesh with each other. Before insertion, the drive lever needs to be slid so that the first and second meshing grooves on the pair of lifting sliding rings can mesh together. Then, the drive lever is released, and the push spring pushes the linkage bent rod to be inserted through the linkage rod hole on the pair of lifting sliding rings to achieve the fixing effect. This allows the fixed column tubes that slide into the fixed groove to be linked together, thereby reducing the probability of the fixed column tube shaking and further improving the stability of the glass tube.

[0030] S4. After filling the fixed groove, the sealing plug is clamped on one side of the fixed groove. Then, the sealing plug is fixed to the fixed base plate by multiple second fixing bolts. Then, the tightening bolt is rotated to move the rubber pad, so that the rubber pad can press against the outermost support block, thereby clamping multiple support blocks and preventing the support blocks from shaking or sliding, further improving the fixing effect on the glass tube.

[0031] S5. Then, move the fixed base plate onto the transport vehicle, and rotate multiple fastening bolts. The fastening bolts drive the top clamping patch to move, so that the top clamping patch can press against the side wall of the transport vehicle, thereby fixing the fixed base plate and preventing it from sliding or shaking, thus ensuring the stability of multiple fixed column tubes and glass tubes.

[0032] S6. Finally, if bumpy sections occur during transportation, the fixed column tube will easily squeeze the buffer rod downwards, causing the buffer rod to push the sealing plug downwards. This allows the sealing plug to compress the inert gas, and the increased pressure of the inert gas absorbs the impact force, thereby reducing the shock on the fixed column tube and improving the protection of the glass tube.

[0033] Compared with the prior art, the present invention reinforces the glass tubes during transportation by setting up corresponding mechanisms, preventing multiple glass tubes from colliding with each other, thereby reducing the probability of glass tube damage. It also reduces the probability of glass tube breakage during installation and disassembly, reducing unnecessary losses for manufacturers. Attached Figure Description

[0034] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0035] Figure 1 This is a perspective view of a transportation reinforcement device according to an embodiment of the present invention;

[0036] Figure 2 This is a schematic diagram of the structure of the fixed base plate in one embodiment of the present invention;

[0037] Figure 3 This is a partial cross-sectional view of the fixed base plate in one embodiment of the present invention;

[0038] Figure 4 This is a schematic diagram of the reinforcing support device in one embodiment of the present invention;

[0039] Figure 5 for Figure 4 The structural diagram shown at point A in the middle;

[0040] Figure 6 This is a cross-sectional view of a reinforcing support device according to an embodiment of the present invention;

[0041] Figure 7 for Figure 6 The structural diagram shown at point B in the middle;

[0042] Figure 8 This is a schematic diagram of the tensioning and reinforcing device in one embodiment of the present invention;

[0043] Figure 9 This is a cross-sectional view of a tensioning and reinforcing device according to an embodiment of the present invention.

[0044] Explanation of key figure labels:

[0045] 1-Fixed base plate, 101-Fixed slide groove, 102-Fasting bolt, 103-Tightening patch, 104-Fixed screw groove, 105-First fixing bolt, 106-Support column, 107-Auxiliary wheel, 108-Sealing plug, 109-Tightening bolt, 110-Rubber pad, 111-Second fixing bolt, 2-Reinforced support mechanism, 201-Support base block, 202-Fixed column tube, 203-Installation groove, 204-Buffer cavity, 205-Fixed slot, 206-Limiting groove, 207-Buffer 3-Punching pad block, 301-Tightening and reinforcing mechanism, 302-Lifting sliding ring, 303-Connecting column rod, 304-Clamping patch, 305-Second engagement groove, 306-Linkage rod hole, 307-Linkage bent rod, 308-Limiting bent groove, 309-Limiting bent rod, 310-Pushing spring, 311-Sliding groove, 312-Drive lever, 4-Buffering and reinforcing mechanism, 401-Retracting frame, 402-Buffering insert rod, 403-Sealing plug, 404-Inert gas, 405-Limiting ring. Detailed Implementation

[0046] To enable those skilled in the art to better understand the technical solutions in this disclosure, the technical solutions in the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this disclosure, and not all embodiments. Based on the embodiments in this disclosure, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of this disclosure.

[0047] like Figures 1-9 As shown, a transportation reinforcement device according to one embodiment of the present invention includes: a fixed base plate 1, a reinforcement support mechanism 2, a tensioning reinforcement mechanism 3, and a buffer reinforcement mechanism 4.

[0048] like Figures 1-9 As shown, the fixed base plate 1 has multiple fixed grooves 101 for sliding the reinforcing support mechanism 2, thereby facilitating the fixed base plate 1 to support the multiple reinforcing support mechanisms 2 and thus facilitating the simultaneous transport of multiple glass tubes. The fixed base plate 1 is provided with multiple sealing components. The multiple reinforcing support mechanisms 2 are evenly arranged in the multiple fixed grooves 101. The reinforcing support mechanism 2 includes a support base block 201 and a fixed column tube 202. The fixed column tube 202 has an installation groove 203, and the bottom end of the fixed column tube 202 is inserted into the support base block 201. The support base block 201 has a buffer cavity 204.

[0049] like Figures 1-9 As shown, a pair of tensioning and reinforcing mechanisms 3 are both sleeved on the fixed column tube 202. The tensioning and reinforcing mechanism 3 includes a lifting sliding ring 301, multiple connecting rods 302, and clamping patches 303. The lifting sliding ring 301 is tightly sleeved on the fixed column tube 202. The two ends of the connecting rods 302 are fixedly connected to the clamping patches 303 and the lifting sliding ring 301, respectively. Multiple clamping patches 303 are all located in the mounting grooves 203, and each mounting groove 203 has an arc groove. The buffering and reinforcing mechanism 4 is located in the buffer cavity 204. The buffering and reinforcing mechanism 4 is used to provide buffering for the fixed column tube 202, preventing the fixed column tube 202 from being violently impacted, thereby protecting the glass tube fixed in the fixed column tube 202.

[0050] Specifically, the glass tube is fixed by inserting it into the mounting groove 203, and then fixing the support base 201 and the fixing column tube 202. The glass tube is then clamped by multiple clamping patches 303 to improve the fixing effect. The buffer reinforcement mechanism 4 can buffer the fixing column tube 202 and the glass tube, making it easier to move and prevent it from shaking and breaking during transportation.

[0051] like Figures 1-2 As shown, several fastening bolts 102 are threaded onto the sides of the fixed base plate 1 to support and drive the clamping patch 103, ensuring that the clamping patch 103 is firmly pressed against the side wall of the transport vehicle and facilitating operation by staff. The clamping patch 103 is fixedly installed at the end of the fastening bolt 102 away from the fixed base plate 1, for adhering to the transport vehicle, thereby preventing the fixed base plate 1 from shaking or shifting, and thus ensuring that the glass tube will not shake or be damaged.

[0052] The fixed base plate 1 has multiple fixing screw grooves 104, and multiple first fixing bolts 105 are threaded onto the fixed base plate 1. The first fixing bolts 105 cooperate with the fixing grooves 205 to fix the support base block 201, so that the support base block 201 can no longer move, thereby achieving the purpose of fixing the fixed column tube 202 and ensuring that there will be no displacement or shaking during transportation.

[0053] like Figures 1-3 As shown, multiple evenly distributed support columns 106 are fixed on the side wall of the fixed slide groove 101. Each of the multiple support columns 106 is rotatably mounted with an auxiliary rotating wheel 107, which is used to facilitate the sliding of the support base block 201 into the fixed slide groove 101, making it easy to operate and to facilitate the disassembly of the device, thus avoiding jamming during the sliding process.

[0054] like Figures 1-3 As shown, the sealing component includes a sealing plug 108, used to seal one end of the fixed slide 101 to prevent the support base 201 from sliding out during transportation, thereby preventing the glass tube from tipping over. A tightening bolt 109 is threaded onto the sealing plug 108 to support the rubber pad 110 and to drive the rubber pad 110 to slide. A rubber pad 110 is fixedly installed at one end of the tightening bolt 109, which is used to press against the side of the support base 201, thus preventing the multiple support bases 201 from sliding, thereby ensuring the stability of the multiple glass tubes and reducing the probability of shaking during transportation. Multiple second fixing bolts 111 are threaded onto the sealing plug 108 to fix it to the fixed base plate 1, preventing the sealing plug 108 from falling off.

[0055] like Figures 1-7 As shown, a pair of fixing slots 205 are drilled on the support base block 201 to match the first fixing bolt 105, so that the first fixing bolt 105 can fix the support base block 201, making it less likely for the support base block 201 and the fixing column tube 202, which are first inserted into the fixing slot 101, to shake or tilt.

[0056] Specifically, the fixed column tube 202 has multiple evenly distributed limiting grooves 206. The connecting column rod 302 passes through the limiting grooves 206 to facilitate the passage of the connecting column rod 302 and to allow the connecting column rod 302 to move up and down. This allows the lifting sliding ring 301 to drive the multiple clamping pads 303 to move up and down. A buffer pad 207 is fixedly installed inside the support base block 201 to support the glass tube. This prevents the glass tube from directly impacting the bottom of the mounting groove 203 when it is inserted into the mounting groove 203, thus providing buffer protection and reducing the probability of damage to the glass tube during installation and disassembly.

[0057] like Figures 1-9As shown, the lifting sliding ring 301 has a first engagement groove 304 and a second engagement groove 305. Through the interlocking of the first engagement groove 304 and the second engagement groove 305, a pair of lifting sliding rings 301 can be linked together, facilitating the fixing and linkage of a pair of fixed column tubes 202. This prevents the multiple fixed column tubes 202 and the glass tube from shaking or tilting during transportation, thus improving the protection of the glass tube. Linkage rod holes 306 are carved on the side walls of both the first engagement groove 304 and the second engagement groove 305 to facilitate the insertion of the linkage bent rod 307, thereby improving the linkage effect of the pair of lifting sliding rings 301 and preventing them from loosening and separating during transportation, thus enhancing the linkage effect of the device.

[0058] like Figures 1-9 As shown, a linkage bent rod 307 is slidably provided on the lifting sliding ring 301 to link a pair of lifting sliding rings 301 together, thereby enabling multiple fixed column tubes 202 to be linked together and reducing the probability of shaking during transportation. A limiting bent groove 308 is chiseled on the linkage bent rod 307 to facilitate the insertion of the limiting bent rod 309, thereby limiting the linkage bent rod 307 and allowing it to slide.

[0059] like Figures 1-9 As shown, a limiting rod 309 matching the limiting groove 308 is fixed inside the lifting sliding ring 301. A push spring 310 is fixedly connected between the linkage rod 307 and the lifting sliding ring 301. The push spring 310 is sleeved on the limiting rod 309 and slides through the linkage rod 307. Moreover, the push spring 310 pushes the linkage rod 307, preventing the linkage rod 307 from rotating when no external force is applied, thus preventing the pair of lifting sliding rings 301 from separating. A sliding groove 311 is carved on the lifting sliding ring 301, and a drive lever 312 is fixed on the linkage rod 307 to facilitate the sliding of the linkage rod 307, making it easy for the user to operate.

[0060] like Figures 1-7 As shown, the buffer reinforcement mechanism 4 includes multiple retractable frames 401, providing space for the retractable buffer rods 402, thereby giving the fixed column tube 202 a buffering space and preventing direct impact to the fixed column tube 202. Buffer rods 402 are inserted into the retractable frames 401 to support the fixed column tube 202, and one end of the buffer rod 402 located outside the retractable frame 401 is fixedly connected to the fixed column tube 202.

[0061] like Figures 1-9As shown, a sealing plug 403 is slidably disposed within the shrinkage frame 401. The sealing plug 403 is fixedly connected to the lower end of the buffer rod 402. Inert gas 404 is filled below the sealing plug 403. The compression of the inert gas 404 buffers the fixed column tube 202, making it less susceptible to direct impact. A limit ring 405 is fixed to the bottom of the fixed column tube 202, which limits the movement of the fixed column tube 202 and prevents it from tilting, thereby improving the protection of the glass tube.

[0062] A method for operating a transport reinforcement device includes the following steps:

[0063] S1. First, insert the glass tube into the mounting groove 203, so that the glass tube passes between multiple clamping pads 303, and the bottom of the glass tube is supported by a buffer pad 207 to prevent the glass tube from directly hitting the bottom of the fixed column tube 202. Then press the lifting sliding ring 301, so that the lifting sliding ring 301 drives the multiple clamping pads 303 to slide, so that a pair of tensioning and reinforcing mechanisms 3 can fix the upper and lower ends of the glass tube respectively.

[0064] S2. Then, the reinforcing support mechanism 2 and the fixed glass tube are slid into the innermost part of the fixed slide groove 101, and the support base block 201 is fixed by the first fixing bolt 105, so that the support base block 201 and the fixed column tube 202 can no longer slide, thereby achieving the effect of fixing the glass tube and preventing the glass tube from tipping over. Then, the fixed column tube 202 with the fixed glass tube and the support base block 201 are slid into the fixed slide groove 101 in sequence.

[0065] S3. Moreover, after the new fixed column tube 202 slides into the fixed slide groove 101, it is necessary to push the lifting sliding ring 301 to slide up and down so that a pair of lifting sliding rings 301 can be connected together by the first engagement groove 304 and the second engagement groove 305 that mesh with each other. Before insertion, the drive lever 312 needs to be slid, and then the first engagement groove 304 and the second engagement groove 305 on the pair of lifting sliding rings 301 can mesh together. Then, the drive lever 312 is released, and the push spring 310 pushes the linkage bent rod 307 to penetrate and insert into the linkage rod hole 306 on the pair of lifting sliding rings 301 to achieve the fixing effect. This allows the fixed column tube 202 that slides into the fixed slide groove 101 to be linked together, thereby reducing the probability of the fixed column tube 202 shaking and further improving the stability of the glass tube.

[0066] S4. After filling the fixed groove 101, the sealing plug 108 is clamped on one side of the fixed groove 101. Then, the sealing plug 108 is fixed to the fixed base plate 1 by multiple second fixing bolts 111. Then, the tightening bolt 109 is rotated to move the rubber pad 110, so that the rubber pad 110 can press against the outermost support block 201, thereby achieving the effect of clamping multiple support blocks 201, so that the support blocks 201 have no space to shake or slide, further improving the fixing effect of the glass tube.

[0067] S5. Then, the fixed base plate 1 is moved to the transport vehicle, and multiple fastening bolts 102 are rotated. The fastening bolts 102 drive the top clamping patch 103 to move, so that the top clamping patch 103 can press against the side wall of the transport vehicle, thereby achieving the function of fixing the fixed base plate 1, preventing the fixed base plate 1 from sliding or shaking, and thus ensuring the stability of multiple fixed column tubes 202 and glass tubes.

[0068] S6. Finally, if bumpy sections occur during transportation, the fixed column tube 202 will easily press down on the buffer rod 402, causing the buffer rod 402 to push down on the sealing plug 403. This allows the sealing plug 403 to compress the inert gas 404, and the increased pressure of the inert gas 404 will absorb the impact force, thereby providing a shock absorption effect for the fixed column tube 202 and improving the protection of the glass tube.

[0069] It will be apparent to those skilled in the art that this disclosure is not limited to the details of the exemplary embodiments described above, and that this disclosure can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of this disclosure is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this disclosure. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0070] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A transport reinforcement device, characterized in that, include: A fixed base plate is provided, wherein multiple fixed grooves are cut into the fixed base plate, and multiple sealing components are provided on the fixed base plate; Multiple reinforcing support mechanisms are evenly arranged in multiple fixed sliding grooves. Each reinforcing support mechanism includes a support base block and a fixed column tube. The fixed column tube has an installation groove. The bottom end of the fixed column tube is inserted into the support base block. A buffer cavity is formed in the support base block. A pair of tensioning and reinforcing mechanisms are both sleeved on the fixed column tube. The tensioning and reinforcing mechanism includes a lifting sliding ring, multiple connecting rods and clamping patches. The lifting sliding ring is tightly sleeved on the fixed column tube. The two ends of the connecting rods are respectively fixedly connected to the clamping patches and the lifting sliding ring. Multiple clamping patches are all disposed in the mounting grooves. Arc grooves are carved on the multiple mounting grooves. A buffer reinforcement mechanism is provided inside the buffer cavity. The buffer reinforcement mechanism is used to provide buffer for the fixed column tube, avoid violent impact on the fixed column tube, and thus protect the glass tube fixed inside the fixed column tube.

2. The transport reinforcement device according to claim 1, characterized in that, Several fastening bolts are threaded onto the side of the fixed base plate. A top-tightening patch is fixedly installed at the end of the fastening bolt away from the fixed base plate. Multiple fixing screw grooves are chiseled into the fixed base plate, and multiple first fixing bolts are threaded onto the fixed base plate.

3. The transport reinforcement device according to claim 1, characterized in that, Multiple evenly distributed support columns are fixed on the side wall of the fixed slide, and auxiliary wheels are rotatably mounted on each of the multiple support columns.

4. The transport reinforcement device according to claim 1, characterized in that, The sealing component includes a sealing plug, a tightening bolt is threaded onto the sealing plug, a rubber gasket is fixedly installed at one end of the tightening bolt, and a plurality of second fixing bolts for fixing the sealing plug are threaded onto the sealing plug.

5. A transport reinforcement device according to claim 2, characterized in that, The supporting base block has a pair of fixing slots that match the first fixing bolt. The fixing column tube has multiple evenly distributed limiting grooves. The connecting column rod passes through the limiting grooves. A buffer pad is fixedly installed inside the supporting base block.

6. The transport reinforcement device according to claim 1, characterized in that, The lifting sliding ring has a first engagement groove and a second engagement groove, and a linkage rod hole is drilled on the side wall of both the first engagement groove and the second engagement groove.

7. A transport reinforcement device according to claim 1, characterized in that, A linkage bent rod is slidably arranged on the lifting sliding ring. A limit bend groove is chiseled on the linkage bent rod. A limit bend rod matching the limit bend groove is fixed inside the lifting sliding ring. A push spring is fixedly connected between the linkage bent rod and the lifting sliding ring. The push spring is sleeved on the limit bend rod.

8. A transport reinforcement device according to claim 7, characterized in that, The lifting sliding ring has a sliding groove, and the linkage bent rod has a drive lever fixed on it.

9. A transport reinforcement device according to claim 1, characterized in that, The buffer reinforcement mechanism includes multiple contraction frames, each containing a buffer rod. One end of the buffer rod outside the contraction frame is fixedly connected to a fixed column tube. A sealing plug is slidably disposed inside the contraction frame and is fixedly connected to the lower end of the buffer rod. The bottom of the sealing plug is filled with inert gas. A limit ring is fixed at the bottom of the fixed column tube.

10. The method of operating a transport reinforcement device according to any one of claims 1-9, characterized in that, Includes the following steps: S1. First, insert the glass tube into the mounting groove so that the glass tube passes between multiple clamping pads. The bottom of the glass tube is supported by a buffer pad to prevent the glass tube from directly hitting the bottom of the fixed column tube. Then, press the lifting sliding ring so that the lifting sliding ring drives multiple clamping pads to slide, so that a pair of tensioning and reinforcing mechanisms can fix the upper and lower ends of the glass tube respectively. S2. Then slide the reinforcing support mechanism and the fixed glass tube into the innermost part of the fixed groove, and then fix the support base block with the first fixing bolt so that the support base block and the fixed column tube can no longer slide, thereby achieving the effect of fixing the glass tube and preventing the glass tube from tipping over. Then slide the fixed column tube with the fixed glass tube and the support base block into the fixed groove in sequence. S3. Moreover, after the new fixed column tube slides into the fixed groove, the lifting sliding ring needs to be pushed up and down to slide so that a pair of lifting sliding rings can be connected in parallel by the first and second meshing grooves that mesh with each other. Before insertion, the drive lever needs to be slid so that the first and second meshing grooves on the pair of lifting sliding rings can mesh together. Then, the drive lever is released, and the push spring pushes the linkage bent rod to be inserted through the linkage rod hole on the pair of lifting sliding rings to achieve the fixing effect. This allows the fixed column tubes that slide into the fixed groove to be linked together, thereby reducing the probability of the fixed column tube shaking and further improving the stability of the glass tube. S4. After filling the fixed groove, the sealing plug is clamped on one side of the fixed groove. Then, the sealing plug is fixed to the fixed base plate by multiple second fixing bolts. Then, the tightening bolt is rotated to move the rubber pad, so that the rubber pad can press against the outermost support block, thereby clamping multiple support blocks and preventing the support blocks from shaking or sliding, further improving the fixing effect on the glass tube. S5. Then, move the fixed base plate onto the transport vehicle, and rotate multiple fastening bolts. The fastening bolts drive the top clamping patch to move, so that the top clamping patch can press against the side wall of the transport vehicle, thereby fixing the fixed base plate and preventing it from sliding or shaking, thus ensuring the stability of multiple fixed column tubes and glass tubes. S6. Finally, if bumpy sections occur during transportation, the fixed column tube will easily squeeze the buffer rod downwards, causing the buffer rod to push the sealing plug downwards. This allows the sealing plug to compress the inert gas, and the increased pressure of the inert gas absorbs the impact force, thereby reducing the shock on the fixed column tube and improving the protection of the glass tube.