A container
By using partition components and guide rail systems in containers, the safety hazards and loading complexity of fixing large-diameter cylindrical goods have been solved, achieving flexible fixing and simple storage, adapting to different cargo sizes, and reducing costs and safety risks.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-10
- Publication Date
- 2026-03-10
AI Technical Summary
Existing container methods for transporting large-diameter cylindrical goods are costly, prone to loss, and unable to effectively restrict the movement of goods, leading to safety hazards. The methods for securing goods of different sizes are inconvenient, and the protruding storage components affect loading space and complicate operations.
The system employs a partition assembly, including a baffle bar, interlocking sliders, and detachable sliders. Goods are secured via guide rails and positioning connection holes. The baffle bar can be flexibly adjusted in position. During storage, it is supported by support components or lifting components, reducing the use of sliders and simplifying the internal wall structure.
It reduces safety hazards, meets collision and impact test requirements, adapts to goods of different sizes, simplifies the inner wall structure, avoids cargo interference, is easy to operate, and reduces costs.
Smart Images

Figure CN116639400B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of container design, and in particular to a container. Background Technology
[0002] When transporting large-diameter cylindrical goods such as steel coils and pipes using special steel coil containers, fixed limiting components such as lashing straps are often used to secure the steel coils. This method requires a large number of lashing straps, is costly, and these accessories are easily lost and difficult to recover. The heavier the steel coil being transported, the greater the load-bearing capacity required of the lashing straps, and the higher the stress requirements on the pull rings on the underframe. The lashing straps and pull rings often do not meet the collision and impact test requirements for steel coil transportation. If they are not properly secured, the steel coil may shift during transportation, leading to a disaster. Furthermore, ropes cannot completely restrict the movement of the steel coil. If sudden braking or emergency stops occur during transportation, the strong inertia will cause the ropes to fail to restrain the movement of the steel coil, resulting in an accident.
[0003] Meanwhile, steel coils of different sizes are placed in the box in different ways, such as lying down or standing up. How to effectively fix and limit the position of steel coils placed in different ways is also a problem that needs to be solved.
[0004] In addition, when steel coils are not needed, the fixing and limiting components need to be removed and stored. For this purpose, a large number of storage components can be pre-installed on the side wall surface. However, the existing storage components protrude from the inner wall surface of the container during loading, making the inner wall surface structure complex. Furthermore, the protruding storage components may interfere with or collide with the cargo inside the container, or reduce the loading space. Moreover, the operation is cumbersome, and the insufficient storage support strength can easily lead to danger. Summary of the Invention
[0005] Therefore, it is necessary to provide a container that addresses at least some of the issues raised above.
[0006] A container, comprising:
[0007] Two side walls are respectively located on both sides of the container in the width direction;
[0008] Two guide rails are respectively provided on the side surface of the side wall facing the inside of the container and extend along the length of the container. The guide rails are provided with positioning connection holes along the length.
[0009] The partition assembly includes a stop bar and interlocking sliders and separable sliders respectively connected to both ends of the stop bar. The sliders at both ends are respectively configured to cooperate with guide rails on the same side. The interlocking sliders and the separable sliders are configured to slide along the guide rails on the same side and connect to the positioning connection holes at preset positions to fix the stop bar between two side walls, thereby separating the space inside the container with the stop bar as the boundary.
[0010] The partition assembly has two or more components. The baffle rod of the partition assembly is detachably connected to the separable slider. When space separation is not required, the baffle rod is separated from the separable slider and swings to be parallel to the side wall where the interlocking slider is located. The baffle rod is stored by connecting to the separable slider of the adjacent partition assembly, or by attaching to the support component provided on the side wall surface, or by suspending the baffle rod provided on the side wall.
[0011] In some embodiments, the separable sliders of two adjacent partition components are respectively staggered on two side walls, and the interlocking sliders of two adjacent partition components are respectively staggered on two opposite side walls.
[0012] In some embodiments, the interlocking slider is connected to the end of the stop rod via a rotary connecting mechanism; the rotary connecting mechanism includes:
[0013] The interlocking pin is located near the inner side of the retaining rod, and the diameters of both the pin head and the pin tail are larger than the diameter of the pin hole.
[0014] A one-way plug-in pin is connected to the interlocking pin by a line perpendicular to the length direction of the stop bar and is located near the outer side of the stop bar. The one-way plug-in pin passes through and connects the end of the stop bar and the separable slider.
[0015] In some embodiments, the separable slider is connected to the end of the stop bar via a detachable connecting mechanism; the detachable connecting mechanism includes two pins: pin I and pin II, the line connecting the two pins is perpendicular to the length direction of the stop bar, and passes through and connects the end of the stop bar and the separable slider.
[0016] In some embodiments, the unidirectional insertion pin or the pin is a tapered pin with a gradually decreasing diameter from the pin head to the pin tail, or a straight pin with a constant diameter from the pin head to the pin tail.
[0017] In some embodiments, two movable connecting pins pass through the interlocking slider or the separable slider and into the positioning connecting hole at a preset position, thereby connecting the interlocking slider or the separable slider to the positioning connecting hole at the preset position.
[0018] In some embodiments, the interlocking pin, the one-way insertion pin, and the pin are connected to the stop bar via a connecting chain, and the movable connecting pin is connected to the interlocking slider or the separable slider via a connecting chain.
[0019] In some embodiments, the support component includes:
[0020] A support plate, with one end near the sidewall rotatably connected to the sidewall surface, is used to rotate to a horizontal position to support a stop bar that swings above it;
[0021] The pull rope has one end fixed to the first lifting ring above the support plate, and the other end fixed to the end of the support plate away from the side wall.
[0022] In some embodiments, the partition assembly near the container opening is configured such that, after the baffle bar of the partition assembly separates from the separable slider, it swings and is suspended from a lifting member disposed on the side wall surface, the lifting member comprising:
[0023] The second lifting ring is located at the container opening;
[0024] A lifting rope, one end of which is connected to a second lifting ring, and the other end of which is connected to a pull ring on the surface of the stop bar.
[0025] In some embodiments, the partition assembly near the container opening includes two baffles arranged side by side, with each baffle's ends mounted to a guide rail on the side wall via an interlocking slider and a separable slider, respectively; and the two baffles are connected together by a connecting rope.
[0026] The aforementioned containers have at least the following beneficial technical effects:
[0027] (1) In this embodiment, the blocking bar can be stored in various ways. It can be supported by the separable slider of the adjacent partition assembly, or by the support component on the side wall surface or the lifting component set on the side wall at the container opening. It does not require a large number of sliders for support to be preset on the inner surface of the side wall. The inner wall surface structure of the container is simple during loading, which can avoid interference and collision with the cargo inside the container or reduce the loading space. This embodiment is easy to operate and does not require much effort. It can ensure that the blocking bar has sufficient support strength during storage and reduce safety hazards.
[0028] In this embodiment, since the separable slider is configured to slide along the guide rail on the same side and connect to the positioning connection hole at a preset position, the position of the separable slider on the guide rail can be adjusted according to the position of the movable end after each stop bar swings, so as to achieve free and flexible support of the movable end and fix the stop bar to the side wall surface.
[0029] (2) The number of blocking components used is small and the cost is low. One end is fixedly connected to the interlocking slider and will not be loosened or lost. The blocking components have strong blocking ability for steel coils and can meet the collision impact test requirements for steel coil transportation. The steel coil will not shift during transportation, reducing safety hazards. Even if there is a sudden braking or emergency stop during transportation, the rolling of the steel coil can be restricted.
[0030] (3) Furthermore, this embodiment can also change the position of each slider on the guide rail according to the size of the goods, thereby changing the connection position of the stop bar on the guide rail, thus flexibly adapting to the loading of goods of different sizes. Regardless of whether the steel coil is placed vertically (the steel coil is perpendicular to the floor) or horizontally (the steel coil is parallel to the floor) in the box, it can be limited and fixed by the stop bar. Attached Figure Description
[0031] Figure 1 This is a schematic diagram of a container partition space for loading cylindrical cargo according to an embodiment of the present invention;
[0032] Figure 2 This is a schematic diagram of the stowed state of each baffle when the container does not require partition space, according to an embodiment of the present invention.
[0033] Figure 3 for Figure 1 A schematic diagram showing that the two ends of the first stop lever are connected to the guide rail via an interlocking slider and a separable slider, respectively;
[0034] Figure 4 for Figure 3 Enlarged view of the left half;
[0035] Figure 5 for Figure 3 EE section view;
[0036] Figure 6 A schematic diagram of the support component that is installed on the side wall surface to accommodate the third stop;
[0037] Figure 7 A schematic diagram of the lifting component for suspending and storing the fourth stop lever on the side wall;
[0038] In the picture,
[0039] A. First stop lever; B. Second stop lever; C. Third stop lever; D. Fourth stop lever;
[0040] 1. Interlocking pin; 2. One-way insertion pin; 3. Pin II; 4. Pin I;
[0041] 10. Side walls;
[0042] 20. Guide rail; 21. Positioning connection hole;
[0043] 31. Interlocking slider; 32. Separable slider;
[0044] 40. Supporting component; 41. Support plate; 42. Pull rope; 43. First lifting ring;
[0045] 50. Lifting component; 51. Second lifting ring; 52. Lifting rope; 53. Pull ring; 54. Connecting rope;
[0046] 60. Movable connecting pin;
[0047] 70. Connect the chains;
[0048] 100. Cylindrical goods. Detailed Implementation
[0049] The invention will now be further described with reference to the accompanying drawings.
[0050] To facilitate understanding of the present invention, various embodiments as defined by the claims will be described more fully below with reference to the accompanying drawings. Preferred embodiments of the invention are shown in the drawings, which include various specific details to aid this understanding, but these details should be considered merely exemplary. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Accordingly, those skilled in the art will recognize that variations and modifications can be made to the various embodiments described herein without departing from the scope of the invention as defined by the appended claims. Furthermore, descriptions of well-known functions and constructions may be omitted for clarity and brevity.
[0051] It will be apparent to those skilled in the art that the following description of various embodiments of the invention is provided for illustrative purposes only and is not intended to limit the invention as defined by the appended claims.
[0052] Throughout the specification and claims of this application, the words “comprising” and “including,” as well as variations thereof, such as “comprising of” and “including,” mean “including but not limited to,” and are not intended to exclude other components, elements, or steps. Features, elements, or characteristics described in connection with a particular aspect, embodiment, or example of the invention are to be understood as applicable to any other aspect, embodiment, or example described herein, unless incompatible therewith.
[0053] It should be understood that the singular forms “a,” “an,” and “the” include plural references unless the context explicitly specifies otherwise. The expressions “comprising” and / or “may comprise” as used in this invention are intended to indicate the presence of a corresponding function, operation, or element, and are not intended to limit the presence of one or more functions, operations, and / or elements. Furthermore, in this invention, the terms “comprising” and / or “having” are intended to indicate the presence of the features, quantities, operations, elements, and components disclosed in the applications, or combinations thereof. Therefore, the terms “comprising” and / or “having” should be understood as implying the additional possibility of one or more other features, quantities, operations, elements, and components, or combinations thereof.
[0054] In this invention, the expression "or" includes any or all combinations of the words listed together. For example, "A or B" can include either A or B, or it can include both A and B.
[0055] It should be understood that when an element is said to be "fixed to" another element, it can be directly on the other element or there may be an intervening element; when an element is said to be "connected" or "coupled" to another element, it can be directly connected or coupled to the other element or there may be an intervening element at the same time.
[0056] The terms "up," "down," "left," and "right" mentioned in the text are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may also change accordingly.
[0057] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. It should also be understood that terms (such as those defined in common dictionaries) should be interpreted as having the meaning consistent with the relevant field and the context of this specification, and should not be interpreted in an idealized or overly formal sense unless expressly defined herein. The term “and / or” as used herein includes any and all combinations of one or more of the associated listed items.
[0058] like Figures 1-5 As shown, in one embodiment of the present invention, a container is provided, comprising:
[0059] Two side walls 10 are respectively provided on both sides of the container in the width direction;
[0060] Two guide rails 20 are respectively provided on the side surface of the side wall 10 facing the inside of the container and extend along the length direction of the container. The guide rails 20 are provided with positioning connection holes 21 along the length direction.
[0061] The partition assembly includes a baffle bar and interlocking sliders 31 and detachable sliders 32 respectively connected to both ends of the baffle bar. The sliders at both ends are respectively configured to cooperate with the guide rail 20 on the same side. The interlocking sliders 31 and the detachable sliders 32 are configured to slide along the guide rail 20 on the same side and connect to the positioning connection hole 21 at a preset position to fix the baffle bar between the two side walls 10, thereby separating the space inside the container with the baffle bar as the boundary.
[0062] There are two or more partition components. The baffle of one partition component is detachably connected to the separable slider 32. When space separation is not required, it is separated from the separable slider 32 and swings to be parallel to the side wall 10 where the interlocking slider 31 is located. It is stored by connecting to the separable slider 32 of the adjacent partition component, or by overlapping the support member 40 provided on the surface of the side wall 10, or by suspending the lifting member 50 provided on the side wall 10.
[0063] Specifically, such as Figure 1 When it is necessary to separate the space inside the container, the two ends of the baffle are connected to the interlocking slider 31 and the separable slider 32 respectively, so as to separate the space inside the container with the baffle as the boundary. At this time, each partition component is in the limited state, and cylindrical goods such as coiled steel and steel pipes 100 can be placed in the separated space.
[0064] When transporting large goods, there is no need to separate the space. In this case, the baffle of the baffle assembly is separated from the separable slider 32 and then swings to be parallel to the side wall 10 where the interlocking slider 31 is located.
[0065] like Figure 2 :
[0066] The first stop lever A rotates to be close to the side wall 10 and is connected to the separable slider 32 of the adjacent partition assembly;
[0067] The third stop lever C rotates to be close to the side wall 10 and overlaps with the support member 40 provided on the surface of the side wall 10;
[0068] The fourth stop D rotates toward the container opening and is suspended from the lifting component 50 provided on the surface of the side wall 10.
[0069] Specifically, when there is no need to separate the space, one end of the first stop bar A can be removed. After removal, it can be swung to be parallel to the side wall 10 where the interlocking slider 31 is located. Then, the movable end can be directly connected to the separable slider 32 of the adjacent second stop bar B (the adjacent second stop bar B has been removed from its separable slider 32 and swung to the container opening, and then connected to the separable slider 32 of the third stop bar C). Only the separable slider 32 of each stop bar needs to support the movable end of the adjacent stop bar. There is no need to add more separable sliders 32 on the side wall 10, which saves costs and makes the surface structure of the container side wall 10 simpler.
[0070] When the third stop lever C swings to fit against the side wall 10, there is no separable slider 32 on the side wall 10 for support and connection, so the third stop lever C can be attached to the support component 40 on the surface of the side wall 10.
[0071] In addition, after the fourth stop D near the container opening swings outward from the container opening, it can be suspended by the lifting component 50 provided on the side wall 10 at the container opening.
[0072] Compared with the prior art, this application has the following technical effects:
[0073] (1) The number of blocking components used is small and the cost is low. One end is fixedly connected to the interlocking slider 31 and will not be loosened or lost. The blocking components have strong blocking ability for steel coils and can meet the collision impact test requirements for steel coil transportation. The steel coil will not shift during transportation, reducing safety hazards. Even if there is a sudden braking or emergency stop during transportation, the rolling of the steel coil can be restricted.
[0074] (2) Furthermore, this embodiment can also change the position of each slider on the guide rail 20 according to the size of the goods, thereby changing the connection position of the stop bar on the guide rail 20, so as to flexibly adapt to the loading of goods of different sizes. Regardless of whether the steel coil is placed vertically (the steel coil is perpendicular to the floor) or horizontally (the steel coil is parallel to the floor) in the box, it can be limited and fixed by the stop bar.
[0075] (3) In this embodiment, the blocking bar can be stored in various ways. It can be supported by the separable slider 32 of the adjacent partition assembly, or by the support component 40 on the surface of the side wall 10 or the lifting component 50 set on the side wall 10 at the container opening. It does not require a large number of sliders for support to be preset on the inner surface of the side wall 10. The inner wall surface structure of the container is simple during loading, which can avoid interference and collision with the goods inside the container or reduce the loading space. This embodiment is easy to operate and does not require much effort. It can ensure that the blocking bar has sufficient support strength during storage and reduce safety hazards.
[0076] In this embodiment, since the separable slider 32 is configured to slide along the guide rail 20 on the same side and connect to the positioning connection hole 21 at a preset position, the position of the separable slider 32 on the guide rail 20 can be adjusted according to the position of the movable end after each stop bar swings, so as to achieve free and flexible support of the movable end and fix the stop bar to the surface of the side wall 10.
[0077] refer to Figure 1 In some embodiments, the separable sliders 32 of two adjacent partition components are respectively staggered on two side walls 10, and the interlocking sliders 31 of two adjacent partition components are respectively staggered on two opposite side walls 10.
[0078] Specifically, such as Figure 2One end of the first stop bar A is removed and swung until it is parallel to the side wall 10 where the interlocking slider 31 of the first stop bar A is located. Then, the end of the first stop bar A is directly connected to the separable slider 32 of the second stop bar B (the second stop bar B has been detached from its own separable slider 32 and is swung towards the container opening, and then connected to the separable slider 32 of the third stop bar C). In this way, the sliders of each stop bar are fully utilized by staggering the settings, eliminating the need to pre-set more separable sliders 32 on the side wall 10, saving costs, and making the surface structure of the container side wall 10 simpler. The operation is convenient and effortless, and it can stably support and store the stop bars.
[0079] refer to Figure 3 and Figure 4 In some embodiments, the interlocking slider 31 is connected to the end of the stop rod via a rotating connection mechanism; the rotating connection mechanism includes:
[0080] Interlocking pin 1 is located near the inner side of the storage of the stop bar, and the diameters of both the pin head and the pin tail are larger than the diameter of the pin hole;
[0081] The one-way insertion pin 2 is connected to the interlocking pin 1 by a line perpendicular to the length direction of the stop bar and is located near the outer side of the stop bar. The one-way insertion pin 2 passes through and connects the end of the stop bar and the separable slider 32.
[0082] Specifically, the interlocking pin 1 is positioned close to the inner side of the retaining rod, as shown in the figure. Taking the first retaining rod A as an example, when the first retaining rod A rotates around the interlocking pin 1, the distance between the end of the inner side of the first retaining rod A and the rotation center is small, meaning the rotation radius of the end of the inner side of the first retaining rod A is small, and it will basically not collide with the interlocking slider 31 during rotation. However, if the interlocking pin 1 is positioned close to the outer side of the retaining rod, the distance between the end of the inner side of the first retaining rod A and the rotation center will be larger, meaning the rotation radius of the end of the inner side of the first retaining rod A will be larger. During rotation, it is easy for it to interfere with and collide with the interlocking slider 31, causing damage.
[0083] In this embodiment, when the interlocking pin 1 is positioned near the inner side of the retaining rod, the rotation radius of the end of the inner side of each retaining rod is small, which can prevent the end of the inner side of the retaining rod from interfering with the interlocking slider 31 during swinging. It is worth noting that the aforementioned inner side of the retaining rod refers to the side facing its own retaining position during the swinging process, while the outer side of the retaining rod refers to the side facing away from its own retaining position during the swinging process.
[0084] In this embodiment, the interlocking pin 1 will not come out, ensuring that the stop bar is always connected to the interlocking slider 31 without separation.
[0085] In this embodiment, the line connecting the one-way plug pin 2 and the interlocking pin 1 is perpendicular to the length direction of the stop bar. When it is necessary to separate the internal space of the container, the one-way plug pin 2 and the interlocking pin 1 work together to firmly position the end of the stop bar onto the interlocking slider 31.
[0086] refer to Figure 3 In some embodiments, the separable slider 32 is connected to the end of the stop bar via a detachable connecting mechanism; the detachable connecting mechanism includes two pins: pin I4 and pin II3, the line connecting the two pins is perpendicular to the length direction of the stop bar, and passes through and connects the end of the stop bar and the separable slider 32.
[0087] Specifically, taking the first stop lever A as an example, the end of the first stop lever A can be positioned and connected to its separable slider 32 by the cooperation of pin I4 and pin II3; and when there is no need to separate the space, the end of the stop lever can be separated from the separable slider 32 by simply pulling out the two pins upwards. The first stop lever A swings to a position close to the side wall 10 and is reconnected to the separable slider 32 on the guide rail 20 by a pin I4.
[0088] In this embodiment, the line connecting pin I4 and pin II3 is perpendicular to the length direction of the stop bar. When it is necessary to separate the internal space of the container, the two pins work together to firmly position the end of the stop bar onto the separable slider 32 without any positional shift.
[0089] refer to Figure 3 In some embodiments, the one-way insertion pin 2 or pin I 4 and pin II 3 are tapered pins with a gradually decreasing diameter from the pin head to the pin tail, or straight pins with a constant diameter from the pin head to the pin tail.
[0090] Specifically, the one-way insertion pin 2 or the pin is a combination of a tapered pin and a straight pin. The tapered pin can be inserted into the pin hole more and more tightly to ensure a firm connection, while the straight pin can be effectively positioned and is not easy to come out, thus preventing connection failure.
[0091] refer to Figures 3-5 In some embodiments, two movable connecting pins 60 pass through the interlocking slider 31 or the separable slider 32 and into the positioning connecting hole 21 at a preset position, thereby connecting the interlocking slider 31 or the separable slider 32 to the positioning connecting hole 21 at the preset position. The two movable connecting pins 60 cooperate to securely position the slider to the preset position on the guide rail 20 and prevent positional displacement.
[0092] Furthermore, the aforementioned interlocking pin 1, one-way insertion pin 2, and insertion pin can be connected to the stop bar via the connecting chain 70, and the movable connecting pin 60 can be connected to the interlocking slider 31 or the separable slider 32 via the connecting chain 70 to prevent the pins from being lost.
[0093] refer to Figure 6 In some embodiments, the support member 40 includes:
[0094] The support plate 41 is rotatably connected to the surface of the side wall 10 at one end near the side wall 10. The support plate 41 is used to flip to a horizontal state to support the stop bar that swings above it.
[0095] The pull rope 42 has one end fixed to the first lifting ring 43 above the support plate 41, and the other end fixed to the end of the support plate 41 away from the side wall 10.
[0096] Specifically, when the third stop lever C swings to fit against the side wall 10, there is no separable slider 32 on the side wall 10 for supporting the connection. At this time, the flip-up support plate 41 supports the end of the third stop lever C, and at the same time, the pull rope 42 pulls up the support plate 41 to keep the support plate 41 stable.
[0097] This embodiment does not require the use of sliders or pins for fixing. When not in use, the support plate 41 is attached to the surface of the side wall 10 and does not protrude from the inner surface of the side wall 10. The container wall is simple, which can also avoid interference and collision between the support plate 41 and the cargo inside the container during loading and reduce the loading space. Moreover, when needed, it can be directly flipped over, which is convenient and effortless to operate.
[0098] refer to Figure 7 In some embodiments, the partition assembly near the container opening is configured such that, after the baffle bar of the partition assembly separates from the separable slider 32, it swings and suspends itself from a lifting member 50 disposed on the surface of the side wall 10, the lifting member 50 comprising:
[0099] The second lifting ring 51 is located at the container opening;
[0100] A lifting rope 52, one end of which is connected to the second lifting ring 51, and the other end of which is connected to the pull ring 53 on the surface of the stop bar.
[0101] Specifically, when the fourth stop lever D swings outward from the container to be parallel to the side wall 10, there is no detachable slider 32 on the side wall 10 for support connection. At this time, one end of the lifting rope 52 is connected to the second lifting ring 51 and the other end is connected to the pull ring 53 on the surface of the stop lever to lift the end of the fourth stop lever D, so that the fourth stop lever D is kept in a horizontal and stable state by suspension.
[0102] In this embodiment, one end of the lifting rope 52 is not connected when the cargo is loaded, which can avoid interference with the cargo inside the container and ensure the simplicity of the container's inner wall structure; the lifting rope 52 is only installed when the suspension bar needs to be suspended, which is convenient and effortless to operate, and can effectively lift the suspension bar to keep it in a horizontal state.
[0103] refer to Figure 7 In some embodiments, the partition assembly near the container opening includes two baffles arranged side by side, with each baffle's ends mounted to a guide rail 20 on the side wall 10 via an interlocking slider 31 and a separable slider 32, respectively; and the two baffles are connected together by a connecting rope 54.
[0104] Specifically, to enhance the limiting effect on rolled goods and prevent them from moving due to inertia during transportation, two fourth stop bars D can be installed side by side at the same location. This improves the limiting effect on rolled goods. The two fourth stop bars D are connected by a connecting rope 54, and a lifting rope 52 can simultaneously lift both stop bars, keeping them both horizontal.
[0105] In the above description, although expressions such as "first" and "second" may be used to describe various elements of the invention, they are not intended to limit the corresponding elements. For example, the above expressions are not intended to limit the order or importance of corresponding elements. The above expressions are used to distinguish one component from another.
[0106] The terminology used herein in the specification of this invention is for the purpose of describing particular embodiments only and is not intended to limit the invention. Singular expressions include plural expressions unless there are significant differences in context or approach between them.
[0107] The above description is merely an exemplary embodiment of the present invention and is not intended to limit the scope of protection of the present invention, which is determined by the appended claims.
[0108] Those skilled in the art will understand that the technical features of the above embodiments can be omitted, added, or combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments have been described. However, as long as the combination of these technical features does not contradict each other, and simple transformations that those skilled in the art can conceive of, as well as structural transformations that adapt to and functionally modify the prior art, should be considered within the scope of this specification.
[0109] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the invention. It should be noted that although the present invention has been shown and described with reference to various embodiments, those skilled in the art can make various modifications and improvements in form and detail without departing from the concept of the present invention, and without departing from the scope of the invention as defined by the appended claims. All such modifications and improvements fall within the protection scope of the present invention. Therefore, the protection scope of this patent should be determined by the appended claims.
Claims
1. A container characterized in that, comprises: two side walls respectively arranged on both sides of the container in the width direction of the container; two guide rails respectively arranged on the side surface of the side walls facing the interior of the container and extending along the length direction of the container, the guide rails being provided with positioning connection holes distributed along the length direction; a partition assembly comprising a partition rod and an interlocking slider and a separable slider respectively connected to both ends of the partition rod, the sliders at both ends being respectively arranged in cooperation with the guide rail on the same side; the interlocking slider and the separable slider being configured to slide along the guide rail on the same side and be connected to the positioning connection hole at a preset position to fix the partition rod between the two side walls, thereby partitioning the space inside the container with the partition rod as a boundary; the partition assembly has two or more, the partition rod and the separable slider of the partition assembly being detachably connected, and being separated from the separable slider when no space needs to be partitioned, and then being swung to be parallel to the side wall where the interlocking slider is located, and being stored by being connected to the separable slider of the adjacent partition assembly, or being lapped on the support member arranged on the side wall surface, or being hung on the lifting member arranged on the side wall. 2.The container according to claim 1, characterized in that, the separable sliders of the adjacent two partition assemblies are respectively arranged on the opposite two side walls in a staggered manner, and the interlocking sliders of the adjacent two partition assemblies are respectively arranged on the opposite two side walls in a staggered manner. 3.The container according to claim 1, characterized in that, the interlocking slider is connected to the end of the partition rod through a rotating connection mechanism; the rotating connection mechanism comprises: an interlocking pin shaft arranged close to the storage inner side edge of the partition rod, the diameters of the pin head and the pin tail being both greater than the diameter of the pin hole; a one-way plug-in pin shaft perpendicular to the length direction of the partition rod along the line connecting the interlocking pin shaft, and arranged close to the storage outer side edge of the partition rod, the one-way plug-in pin shaft penetrating and connecting the end of the partition rod and the separable slider. 4.The container according to claim 1, characterized in that, the separable slider is connected to the end of the partition rod through a detachable connection mechanism; the detachable connection mechanism comprises two plugs: plug I and plug II, the line connecting the two plugs being perpendicular to the length direction of the partition rod, and penetrating and connecting the end of the partition rod and the separable slider. 5.The container according to claim 3, characterized in that, the one-way plug-in pin shaft is a tapered pin with a diameter gradually decreasing from the pin head to the pin tail, or a straight pin with a constant diameter from the pin head to the pin tail. 6.The container according to claim 4, characterized in that, the plug is a tapered pin with a diameter gradually decreasing from the pin head to the pin tail, or a straight pin with a constant diameter from the pin head to the pin tail. 7.The container according to claim 1, characterized in that, two movable connection pins penetrate the interlocking slider or the separable slider and penetrate into the positioning connection hole at a preset position, thereby connecting the interlocking slider or the separable slider to the positioning connection hole at the preset position. 8.The container according to claim 3, characterized in that, the interlocking pin shaft and the one-way plug-in pin shaft are connected to the partition rod through a connecting lock chain.
9. The container according to claim 4, wherein the latch is connected to the blocking rod by a connecting chain.
10. The container according to claim 7, wherein the movable connecting pin is connected to the interlocking slider or the separable slider by a connecting chain.
11. The container according to claim 1, wherein the supporting component comprises: a supporting plate reversibly connected to the surface of the side wall near one end of the side wall, the supporting plate being used to be flipped to a horizontal state to support the blocking rod swung above it; and a pull rope, one end of which is fixed to a first ring above the supporting plate and the other end of which is fixed to the end of the supporting plate away from the side wall.
12. The container according to claim 1, wherein the blocking assembly near the opening of the container is configured such that, after the blocking rod of the blocking assembly is separated from the separable slider, the blocking rod swings and hangs on a lifting component arranged on the surface of the side wall, the lifting component comprising: a second ring arranged at the opening of the container; and a lifting rope, one end of which is connected to the second ring and the other end of which is connected to a pull ring on the surface of the blocking rod.
13. The container according to claim 12, wherein the blocking assembly near the opening of the container comprises two blocking rods arranged side by side in an up-down manner, and the two ends of each blocking rod are respectively installed to the guide rail on the side wall through the interlocking slider and the separable slider; and the two blocking rods are connected together by a connecting rope.
Citation Information
Patent Citations
Film roll transportation frame
CN112693744A
Conveniently adjust storage space's container
CN208022151U