Transport device
By using a first and second protective plate in the transportation device to fit tightly with the buffer assembly and utilizing elastic elements for cushioning, the problem of denitrification catalyst being damaged by vibration during transportation is solved, thus achieving safer transportation.
Patent Information
- Application Number
- CN202410724773.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-05
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2044-06-05
AI Technical Summary
During transportation, denitrification catalysts are easily damaged by vibration and impact. In existing technologies, the buffer mechanism is prone to collision between the plate and the buffer mechanism, resulting in economic losses.
Design a transport device in which a first protective plate and a second protective plate are tightly fitted with a buffer assembly. The first and second buffer assemblies provide elastic cushioning to prevent the denitrification catalyst from moving in the vertical direction and reduce impacts.
It effectively reduces bumps and vibrations during transportation, protects the integrity of the denitrification catalyst, and improves transportation safety.
Smart Images

Figure CN118597564B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of denitration catalyst transportation, in particular to a transportation device. BACKGROUND
[0002] Denitration catalyst refers to a catalyst applied to an SCR denitration system of a power plant, which promotes a chemical reaction between a reducing agent and nitrogen oxides in flue gas at a certain temperature in an SCR reaction.
[0003] Denitration catalysts can be generally divided into three types in terms of shape, namely, plate type, honeycomb type and corrugated plate type. During transportation, denitration catalysts are prone to breakage due to knocking caused by vibration, resulting in economic loss.
[0004] In related technologies, plate type waste denitration catalysts are usually stacked with a buffering mechanism to achieve a buffering effect. However, this method is prone to knocking between the plate and the buffering mechanism, resulting in breakage. SUMMARY
[0005] The purpose of the present disclosure is to provide a transportation device, so that the first protective plate and the second protective plate are closely attached to the preliminarily assembled denitration catalyst, achieving a better buffering effect, to at least partially solve the above problems.
[0006] To achieve the above purpose, the present disclosure provides a transportation device, comprising:
[0007] a box body having a storage space, two side walls of the box body located on opposite sides of the storage space in a first direction each having an installation space; and
[0008] a buffering mechanism including a buffering assembly and a protective piece, the buffering assembly being arranged in each of the installation spaces, the buffering assembly including a first buffering assembly and a second buffering assembly, the protective piece being located in the storage space and including a first protective plate and a second protective plate arranged at intervals in a vertical direction, two ends of the first protective plate in the first direction being connected to the two first buffering assemblies respectively, two ends of the second protective plate in the first direction being connected to the two second buffering assemblies respectively, the first buffering assembly including a first elastic piece having elasticity for resisting movement of the first protective plate in the vertical direction, and the second buffering assembly including a second elastic piece having elasticity for resisting movement of the second protective plate in the vertical direction.
[0009] Optionally, the first buffering assembly comprises a first sliding member movably arranged along a vertical direction and two groups of first buffering mechanisms arranged along a horizontal second direction, each of the first buffering mechanisms comprises a link and a moving part, a top end of the link is hinged to an inner wall of the mounting space, a bottom end of the link is hinged to the moving part, the moving part is movably connected to the first sliding member along the second direction, and the first elastic member is arranged between the moving part and the first sliding member to stretch or contract along the second direction.
[0010] Optionally, the second buffering assembly comprises a second sliding member movably arranged along a vertical direction, and at least one second elastic member arranged between a top end of the second sliding member and the box.
[0011] Optionally, the first buffering assembly comprises a first connecting rod fixedly connected to the first sliding member, the second buffering assembly comprises a second connecting rod fixedly connected to the second sliding member, and the first connecting rod and the second connecting rod are selectively locked or unlocked by the locking assembly.
[0012] Optionally, the locking assembly comprises a third sliding member movably arranged along the second direction to push the locking member to move along the second direction with the third sliding member to lock or unlock the first connecting rod and the second connecting rod, and the locking member is movably connected to the third sliding member along the vertical direction to be synchronously moved along the vertical direction with the first connecting rod and the second connecting rod.
[0013] Optionally, the locking member comprises a first locking rod and a second locking rod, the first locking rod is used to be selectively inserted into or separated from the first connecting rod, and the second locking rod is used to be selectively inserted into or separated from the second connecting rod.
[0014] Optionally, the locking assembly comprises a lead screw and a knob, the lead screw extends into the mounting space through the box, the lead screw is rotatably arranged along an axis thereof parallel to the second direction, the knob is fixedly connected to an end of the lead screw outside the box, and the third sliding member is threadedly connected to the lead screw to move along the second direction with the rotation of the lead screw.
[0015] Optionally, the first protection plate comprises a bottom plate and two first side plates located on opposite sides of the bottom plate along the first direction, the bottom plate is used to support the transported object, and the first side plates are used to stop the transported object; and / or the second protection plate comprises a top plate and two second side plates located on opposite sides of the top plate along the first direction, the top plate is used to be located on top of the transported object, and the second side plates are used to stop the transported object.
[0016] Optionally, a side of the box along a horizontal second direction is provided with a storage access opening in communication with the storage space, the box is hinged with a door plate capable of closing the storage access opening, the box is provided with a sliding groove and a latch slidably connected to the sliding groove, the door plate is provided with a plug-in slot and a plug hole opened on the inner wall of the plug-in slot, the latch comprises a plug rod capable of moving synchronously in the plug-in slot with the movement of the latch, and the plug rod is used for being inserted into the plug hole to lock the door plate and the box.
[0017] Optionally, the latch further comprises a pushing part outside the box, so that the latch is moved by the pushing part; and / or the plug hole and the plug rod are provided with magnets capable of being attracted to each other.
[0018] Through the above technical solution, the storage space in the box is used to accommodate the transported objects, such as waste denitration catalysts, the mounting space of the box is used to set the buffer assembly, the buffer assembly comprises the first buffer assembly and the second buffer assembly, the protection piece is used to fix the transported objects, the protection piece comprises the first protection plate and the second protection plate, the two ends of the first protection plate along the first direction are connected to the two first buffer assemblies respectively, and the two ends of the second protection plate along the first direction are connected to the second buffer assemblies respectively, so that when the transported objects are placed on the protection piece, if external jolting and vibration is encountered, the first elastic member of the first buffer assembly and the second elastic member of the second buffer assembly will prevent the transported objects from moving in the vertical direction, so as to achieve the buffering effect. Therefore, the first buffer assembly and the second buffer assembly are used to alleviate the collision between the transported objects and the box due to jolting and vibration during transportation, so as to improve the safety of the transportation process.
[0019] Other features and advantages of the present disclosure will be described in detail in the following detailed description section. BRIEF DESCRIPTION OF DRAWINGS
[0020] The accompanying drawings are included to provide a further understanding of the present disclosure and constitute a part of the specification, and are used together with the following detailed description to explain the present disclosure, but do not constitute a limitation on the present disclosure. In the drawings:
[0021] Figure 1 is a structural schematic diagram of a transportation device in a normal state provided in an exemplary embodiment;
[0022] Figure 2 is a structural schematic diagram of the internal structure of the box provided in an exemplary embodiment;
[0023] Figure 3 is a structural schematic diagram of the energy reduction assembly provided in an exemplary embodiment;
[0024] Figure 4 is a structural schematic diagram of the energy reduction assembly provided in an exemplary embodiment;Figure 3 Enlarged view of middle A part;
[0025] Figure 5 is the overall structure schematic view of the limiting piece provided in the disclosed exemplary embodiments;
[0026] Figure 6 is the overall structure schematic view of the bolt provided in the disclosed exemplary embodiments;
[0027] Figure 7 is the partial structure schematic view of the door panel provided in the disclosed exemplary embodiments.
[0028] Explanation of reference signs
[0029] 1, box; 101, fixed frame; 102, support leg; 2, buffer assembly; 201, first sliding piece; 202, second sliding piece; 203, first accommodating cavity; 204, third accommodating cavity; 205, second accommodating cavity; 210, first buffer mechanism; 211, limiting part; 212, connecting rod; 213, moving part; 214, first elastic piece; 215, limiting groove; 216, guide rod; 222, second elastic piece; 223, second connecting piece; 224, first connecting piece; 231, first connecting rod; 232, second connecting rod; 233, knob; 234, lead screw; 235, third sliding piece; 236, round rod; 240, locking piece; 241, second locking rod; 242, first locking rod; 250, first buffer assembly; 260, second buffer assembly; 270, locking assembly; 3, protection piece; 301, first protection plate; 302, second protection plate; 312, bottom plate; 311, first side plate; 321, second side plate; 322, top plate; 401, door panel; 411, plug-in slot; 412, insertion hole; 420, bolt; 421, sliding slot; 422, pushing part; 423, plug rod; 425, female magnet block; 426, male magnet block. DETAILED DESCRIPTION
[0030] The detailed description of the specific embodiments of the present disclosure will be described below in conjunction with the accompanying drawings. It should be understood that the specific embodiments described herein are only for the purpose of illustration and explanation of the present disclosure, and are not intended to limit the present disclosure.
[0031] In the present disclosure, "inner and outer" refers to the inner and outer of the profile of the corresponding components, and in addition, the terms "first" and "second" used in the present disclosure are used to distinguish one element from another element, and do not have sequentiality and importance, and in addition, the following description refers to the drawings, and unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.
[0032] According to Figures 1 to 7As shown, the transport device provided by the examples of the present disclosure is used to alleviate the impact force generated by the jolt of the transported object during the transportation process. Specifically, the transport device comprises a box body 1 and a buffering mechanism, the box body 1 has a storage space 103 for placing the transported object, each of the two side walls of the box body 1 located on the opposite sides of the storage space 103 along the first direction Y is provided with a mounting space, the buffering mechanism is used to alleviate the impact generated by the jolt of the transported object, the buffering mechanism comprises a buffering assembly 2 and a protective piece 3, the buffering assembly 2 is arranged in each of the mounting spaces, the buffering assembly 2 comprises a first buffering assembly 250 and a second buffering assembly 260, the protective piece 3 is located in the storage space 103 and comprises a first protective plate 301 and a second protective plate 302 arranged in a vertical direction, the two ends of the first protective plate 301 along the first direction Y are connected to the two first buffering assemblies 250 respectively, the two ends of the second protective plate 302 along the first direction Y are connected to the two second buffering assemblies 260 respectively, the first buffering assembly 250 comprises a first elastic piece 214 having elasticity for preventing the first protective plate 301 from moving along the vertical direction, and the second buffering assembly 260 comprises a second elastic piece 222 having elasticity for preventing the second protective plate 302 from moving along the vertical direction.
[0033] Through the above technical solution, the transport device of the present disclosure can make the protective piece 3 closely fit the transported object when the external jolt occurs, and reduce the impact force on the transported object through the buffering assembly 2, so as to ensure the integrity of the transported object and be more safe and stable.
[0034] The denitration catalyst can be a used waste denitration catalyst or an unused denitration catalyst, and the present disclosure does not make specific limitations thereon.
[0035] The structure of the mounting space can be adaptively adjusted according to actual conditions. In some embodiments, for example, as shown in Figure 3 As shown, the mounting space can comprise a first accommodating cavity 203 for accommodating the first buffering assembly 250, a third accommodating cavity 204 for accommodating the second buffering assembly 260, and a second accommodating cavity 205 for accommodating the locking assembly 270.
[0036] It should be noted that the structure of the mounting space of the present disclosure is only for the present disclosure, and the structure of the mounting space can be adaptively adjusted according to actual conditions, for example, the mounting space can be constructed as a separate accommodating cavity. The present disclosure does not make special limitations thereon as long as the function can be realized.
[0037] The first elastic piece 214 and the second elastic piece 222 can be constructed in any suitable manner according to the actual needs, and in some embodiments, for example, as shown in Figure 3 andFigure 5 As shown, the second elastic member 222 can be configured as a spring or other material or structure with elasticity, and the first elastic member 214 can be configured as a spring or other material or structure with elasticity.
[0038] It should be noted that the configuration of the first elastic member 214 and the second elastic member 222 disclosed in the present disclosure is only for the present disclosure, and the first elastic member 214 and the second elastic member 222 can also be configured as a spring damper and other adaptive structures.
[0039] The configuration of the protective member 3 can be adaptively adjusted according to actual conditions, for example, the protective member 3 can also be configured as a square container with an opening, and the two sides of the square container are movably connected to the two groups of buffer assemblies 2, and the transport object is placed in the square container to alleviate the influence of external jolting.
[0040] The connection mode of the first protective plate 301 and the second protective plate 302 with the first buffer assembly 250 and the second buffer assembly 260 can be adaptively adjusted according to actual conditions, for example, in some embodiments, referring to Figure 3 As shown, the first protective plate 301 can be connected to the first buffer assembly 250 through the first connecting member 224, and the second protective plate 302 can be connected to the second buffer assembly 260 through the second connecting member 223.
[0041] It can be understood that the first connecting member 224 and the second connecting member 223 can be adaptively adjusted according to actual conditions, for example, they can be rubber pads. The present disclosure does not make special limitations on this, as long as the functions can be realized.
[0042] In order to facilitate the carrying and placing of the box 1, in some embodiments, for example, referring to Figure 1 and Figure 2 As shown, the box 1 can include a fixed frame 101 and a support leg 102, and the fixed frame 101 can be used to accommodate the support leg 102, so that a plurality of boxes 1 can be stacked with each other.
[0043] In some embodiments, for example, referring to Figure 3 and Figure 5As shown, the first buffer assembly 250 can include a first slider 201 movably arranged along a vertical direction and two groups of first buffer mechanisms 210 arranged along a horizontal second direction X, each of the first buffer mechanisms 210 including a connecting rod 212 and a moving part 213, a top end of the connecting rod 212 being hinged to an inner wall of the mounting space, a bottom end of the connecting rod being hinged to the moving part 213, the moving part 213 being movably connected to the first slider 201 along the second direction X, a first elastic member 214 being arranged between the moving part 213 and the first slider 201 and being stretchable along the second direction X, when the box 1 is subjected to a bumping vibration, the connecting rod 212 drives the moving part 213 to move under the action of a force, and the moving part 213 compresses or stretches the first elastic member 214, so as to relieve the impact.
[0044] The arrangement position of the first elastic member 214 can be adaptively adjusted according to actual conditions, and the purpose is to be able to provide a buffer elastic force.
[0045] The structure of the first slider 201 can be adaptively adjusted according to actual conditions, for example, in some embodiments, referring to Figure 5 As shown, the first slider 201 can be configured as a rectangular slider with two limiting grooves 215, a guide rod 216 can be arranged in each of the limiting grooves 215, the moving part 213 is sleeved on the guide rod 216, the guide rod 216 can ensure the stability of the movement of the moving part 213, in addition, the first elastic member 214 configured as a spring can be sleeved on the guide rod 216 and located between the moving part 213 and the inner wall of the limiting groove 215, so as to provide a buffer elastic force. The present disclosure does not make special limitation on this, as long as the function can be realized.
[0046] It should be noted that the number of the first buffer mechanisms 210 is limited by the present disclosure only, and the number of the first buffer mechanisms 210 can be multiple groups, for example, three groups or four groups, the present disclosure does not make special limitation on this, as long as the function can be realized.
[0047] In some embodiments, referring to Figure 5 As shown, the top end of the connecting rod 212 can be hinged to a limiting part 211 fixedly connected to the top wall of the first accommodating cavity 203, so that the connecting rod 212 is hinged to the top wall of the first accommodating cavity 203 through the limiting part 211, and the limiting part 211 can include two limiting plates arranged symmetrically to each other and connected by a rod. The present disclosure does not make special limitation on this, as long as the function can be realized.
[0048] In other alternative embodiments not shown, the end of the connecting rod 212 away from the first sliding member 201 can be connected to the same sliding structure as the moving part 213, that is, the connecting rod 212 can also be slidably connected to the top wall of the first accommodating cavity 203 through the sliding structure, and the sliding structure and the first accommodating cavity 203 are also provided with elastic members such as springs, so that when subjected to external jolts, a buffering effect can be achieved.
[0049] In some embodiments, the second buffering assembly 260 can include a second sliding member 202 movably arranged in the vertical direction, and at least one second elastic member 222 is arranged between the top end of the second sliding member 202 and the box 1, which is used to alleviate the impact force in the vertical direction caused by external jolts and vibrations.
[0050] The number of second elastic members 222 can be adjusted adaptively according to actual conditions, for example, referring to Figure 3 As shown, the number of second elastic members 222 can be two groups, and the two groups of second elastic members 222 are movably connected to the second sliding member 202 and are arranged at intervals, so that the structure is more stable.
[0051] In other possible embodiments, the number of second elastic members 222 can also be multiple groups, for example, three groups or four groups, which are not specially limited by the present disclosure as long as the functions can be achieved.
[0052] In addition, the second elastic member 222 can be sleeved on a guide column, one end of the guide column is connected to the second sliding member 202, and the other end is arranged at intervals with the top wall of the third accommodating cavity 204, which can play a certain guiding role to guide the extension direction of the spring. Alternatively, the second elastic member 222 can also be sleeved on a telescopic rod connected between the second sliding member 202 and the top wall of the third accommodating cavity 204, which can also play a role in guiding the extension direction of the spring.
[0053] In some embodiments, for example, referring to Figure 3 As shown, the first buffering assembly 250 can include a first connecting rod 231 fixedly connected to the first sliding member 201, the second buffering assembly 260 includes a second connecting rod 232 fixedly connected to the second sliding member 202, and the first connecting rod 231 and the second connecting rod 232 are selectively locked or unlocked by the locking assembly 270.
[0054] It should be noted that when the locking assembly 270 locks the first connecting rod 231 and the second connecting rod 232, the first buffer assembly 250 and the second buffer assembly 260 will be displaced in the same direction under external jolt, which is more conducive to relieving impact, and when the locking assembly 270 is unlocked from the first connecting rod 231 and the second connecting rod 232, it is convenient to assemble and transport goods such as a cargo box.
[0055] In some embodiments, for example, referring to Figure 4 The locking assembly 270 can further include a third sliding piece 235 and a locking piece 240, the third sliding piece 235 is movably arranged along the second direction X to push the locking piece 240 to move along the second direction X with the third sliding piece 235, so as to lock or unlock the first connecting rod 231 and the second connecting rod 232, and the locking piece 240 is movably connected to the third sliding piece 235 along the vertical direction, so as to be able to move synchronously with the first connecting rod 231 and the second connecting rod 232 along the vertical direction.
[0056] The structure of the third sliding piece 235 can be adjusted adaptively according to actual conditions, for example, in some embodiments, referring to Figure 3 and Figure 4 The third sliding piece 235 can be configured as a push plate. The present disclosure does not make special limitations on this, as long as it can achieve its function.
[0057] It should be noted that the number of locking pieces 240, first connecting rods 231 and second connecting rods 232 can be adjusted adaptively according to actual conditions, and the number of locking pieces 240, first connecting rods 231 and second connecting rods 232 can also be multiple groups, for example, two groups or four groups. The present disclosure does not make special limitations on this, as long as it can achieve its function.
[0058] In some embodiments, for example, referring to Figure 4 The locking piece 240 can be configured to have a first locking rod 242 and a second locking rod 241, the first locking rod 242 is used to selectively plug or separate from the first connecting rod 231, and the second locking rod 241 is used to selectively plug or separate from the second connecting rod 232.
[0059] The locking piece 240 can be adjusted adaptively according to actual conditions, for example, referring to Figure 4 The locking piece 240 can include a square frame structure movably connected to the third sliding piece 235 along the vertical direction, for example, movably connected to a fixed block on the third sliding piece 235 along the vertical direction, so that the structure is more stable, and the first locking rod 242 and the second locking rod 241 are connected to the square frame structure. The present disclosure does not make special limitations on this, as long as it can achieve its function.
[0060] In some embodiments, for example, as shown in Figure 3 The locking assembly 270 can further include a lead screw 234 extending into the mounting space through the box 1, the lead screw 234 being rotatably arranged about its own axis parallel to the second direction X, and a knob 233 fixedly connected to one end of the lead screw 234 outside the box 1, and a third sliding member 235 threadedly connected to the lead screw 234 to move along the second direction X with rotation of the lead screw. Thus, the position of the third sliding member 235 can be adjusted by rotating the knob 233 to lock or unlock the first connecting rod 231 and the second connecting rod 232.
[0061] In some embodiments, for example, as shown in Figure 3 A round rod 236 can be further arranged in the mounting space, and a through hole is formed in the third sliding member 235 for the round rod 236 to pass through, so that the movement of the third sliding member 235 is more stable, and thus the round rod can play a guiding role.
[0062] The number of round rods 236 can be adjusted as appropriate according to actual conditions, and the round rods 236 can be multiple groups, for example, two groups.
[0063] In some embodiments, for example, as shown in Figure 2 The first protective plate 301 can include a bottom plate 312 for supporting the transported object and first side plates 311 located on opposite sides of the bottom plate 312 along the first direction Y for stopping the transported object, and the cooperation of the bottom plate 312 and the first side plates 311 can prevent the transported object from being violently shaken and colliding in the box 1 due to bumps of the vehicle during transportation.
[0064] To further protect the transported object, the second protective plate 302 can further include a top plate 322 for being located on the top of the transported object and second side plates 321 located on opposite sides of the top plate 322 along the first direction Y for stopping the transported object.
[0065] It can be understood that the bottom plate 312 and the first side plates 311 of the first protective plate 301 can be configured as an integrally formed structure, and the top plate 322 and the second side plates 321 of the second protective plate 302 can be configured as an integrally formed structure.
[0066] The configuration of the first protective plate 301 and the second protective plate 302 disclosed in the present disclosure is only for the present disclosure, and the configuration of the first protective plate 301 and the second protective plate 302 can be adjusted as appropriate according to actual conditions. The present disclosure does not specially limit this, as long as the function can be achieved.
[0067] In some embodiments, for example, as shown inFigure 1 , Figure 2 , Figure 6 and Figure 7 As shown, a storage and retrieval port communicating with the storage space 103 is provided on one side of the box body 1 along the second horizontal direction X. The box body 1 is hinged to a door panel 401 that can close the storage and retrieval port. The box body 1 is provided with a sliding groove 421 and a pin 420 that can be slidably connected to the sliding groove 421. The door panel 401 is provided with an insertion groove 411 and an insertion hole 412 opened on the inner wall of the insertion groove 411. The pin 420 includes a plug rod 423 that can move synchronously in the insertion groove 411 as the pin 420 moves. The plug rod 423 is used to insert into the insertion hole 412 to lock the door panel 401 and the box body 1.
[0068] In other feasible embodiments, the two sides of the housing 1 along the first direction Y can be constructed as slide rails, and the door panel 401 is movably connected to the slide rails so that the door panel 401 can be opened or closed by pulling.
[0069] In some implementations, for example, refer to Figure 6 and Figure 7 As shown, in order to facilitate the locking or unlocking of the pin 420 in the socket 412, the pin 420 may also include a toggle part 422 located outside the housing 1, so that the pin 420 can be moved by the toggle part 422.
[0070] To ensure a more secure fit between the insertion rod 423 and the insertion hole 412, and to prevent the insertion rod 423 and the insertion hole 412 from becoming detached due to vehicle bumps during transportation of the housing 1, in some embodiments, for example, refer to... Figure 6 and Figure 7 As shown, the socket 412 and the plug 423 may also be provided with magnets that can attract each other.
[0071] It is understandable that a sub-magnet block 426 can be provided on the socket 412 and a female magnet block 425 can be provided on the plug rod 423. Through the mutual attraction between the sub-magnet block 426 and the female magnet block 425, the socket 412 and the plug rod 423 are more stably matched.
[0072] The present disclosure exemplarily describes the transportation process of the transportation device, for example: placing the transportation object to be transported into the storage space 103, and placing the bottom of the transportation object on the bottom plate 312 of the first protective plate, and placing the top of the transportation object on the top plate 322 of the second protective plate, and determining whether to adjust the knob 233 according to actual needs, for example, when the road surface on which the vehicle travels is an uneven road surface, the knob 233 can be rotated to cause the lead screw 234 to displace, and the locking piece 240 is locked to the first connecting rod 231 and the second connecting rod 232 under the driving of the third sliding piece 235, so that the first sliding piece 201 and the second sliding piece 202 move in the same direction when subjected to the impact force generated by external jolting, so as to better alleviate the displacement of the transportation object in the storage space 103 due to vibration, and avoid the transportation object from being bumped. It can be understood that the knob 233 can also not be adjusted when transportation is needed, and the first buffer assembly 250 and the second buffer assembly 260 can still play a buffering role on the transportation object when the transportation object is subjected to external jolting, so as to ensure the integrity of the transportation object.
[0073] The preferred embodiments of the present disclosure are described in detail above in combination with the drawings, but the present disclosure is not limited to the specific details in the above-described embodiments. Within the technical concept range of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all belong to the protection range of the present disclosure.
[0074] In addition, it should be noted that various specific technical features described in the above specific embodiments can be combined in any appropriate manner without contradiction, and in order to avoid unnecessary repetition, various possible combination manners are not described again in the present disclosure.
[0075] In addition, various different embodiments of the present disclosure can also be combined in any manner, as long as they do not deviate from the idea of the present disclosure, and they should also be considered as disclosed by the present disclosure.
Claims
1. A transport device, characterized in that The utility model relates to a box body, which has a storage space, two side walls of the box body located on opposite sides of the storage space in a first direction each have an installation space arranged therein, and a buffering mechanism including a buffering assembly and a guard, each of the installation spaces is provided with the buffering assembly, the buffering assembly includes a first buffering assembly and a second buffering assembly, the guard is located in the storage space and includes a first guard plate and a second guard plate arranged in a vertical direction, two ends of the first guard plate in the first direction are connected to the two first buffering assemblies respectively, two ends of the second guard plate in the first direction are connected to the two second buffering assemblies respectively, the first buffering assembly includes a first elastic member having elasticity for providing resistance to movement of the first guard plate in the vertical direction, and the second buffering assembly includes a second elastic member having elasticity for providing resistance to movement of the second guard plate in the vertical direction. The first buffering assembly includes a first sliding member and two groups of first buffering mechanisms arranged in a horizontal second direction. The second buffering assembly includes a second sliding member movably arranged in the vertical direction. The first buffering assembly includes a first connecting rod fixedly connected to the first sliding member, the second buffering assembly includes a second connecting rod fixedly connected to the second sliding member, and the first connecting rod and the second connecting rod are selectively locked or unlocked by a locking assembly. The locking assembly includes a third sliding member movably arranged in the second direction to push the locking member to move in the second direction with the third sliding member to lock or unlock the first connecting rod and the second connecting rod, and the locking member is movably connected to the third sliding member in the vertical direction to be synchronously moved in the vertical direction with the first connecting rod and the second connecting rod. The first sliding member is movably arranged in the vertical direction, the first buffering mechanism includes a connecting rod and a moving part, a top end of the connecting rod is hinged to an inner wall of the installation space, a bottom end of the connecting rod is hinged to the moving part, the moving part is movably connected to the first sliding member in the second direction, and the first elastic member is arranged between the moving part and the first sliding member to be stretched or contracted in the second direction. There is at least one second elastic member between a top end of the second sliding member and the box body. The locking member has a first locking rod and a second locking rod, the first locking rod is used for being selectively inserted into or separated from the first connecting rod, and the second locking rod is used for being selectively inserted into or separated from the second connecting rod.
2. The transport device of claim 1, wherein, The locking assembly includes a lead screw and a knob, the lead screw extends into the installation space through the box body, the lead screw is rotatably arranged around an axis thereof parallel to the second direction, the knob is fixedly connected to one end of the lead screw outside the box body, and the third sliding member is threadedly connected to the lead screw to move in the second direction with rotation of the lead screw.
3. The transport apparatus of claim 1, wherein, 4. The transport apparatus of claim 1, wherein, 5. The transport apparatus of claim 1, wherein, 6. The transport apparatus of claim 1, wherein, The first protection plate comprises a bottom plate for supporting the transported object and two first side plates for stopping the transported object, the two first side plates being located on opposite sides of the bottom plate along a first direction; and / or, The second protection plate comprises a top plate for being located on top of the transported object and two second side plates for stopping the transported object, the two second side plates being located on opposite sides of the top plate along the first direction.
7. The transport apparatus of claim 1, wherein, One side of the box along a horizontal second direction is provided with a storage space, and an access opening is in communication with the storage space, the box is hinged with a door plate capable of closing the access opening, the box is provided with a sliding groove and a latch slidably connected to the sliding groove, the door plate is provided with a plug-in slot and a plug hole opened on the inner wall of the plug-in slot, the latch comprises a plug rod capable of moving synchronously in the plug-in slot with the movement of the latch, and the plug rod is used for being inserted into the plug hole to lock the door plate and the box.
8. The transport apparatus of claim 7, wherein, The latch further comprises a pushing part located outside the box, so that the latch is moved by the pushing part; and / or, The plug hole and the plug rod are provided with magnets capable of being attracted to each other. The plug hole and the plug rod are provided with magnets capable of being attracted to each other.
Citation Information
Patent Citations
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