A type of packaging box
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2026-08-11
AI Technical Summary
现有技术中,通常将面料缠绕于辊轴上以形成面料辊,在面料辊的外表面包裹塑料以包装运输,随着运输途中的颠簸,最外层面料会出现磨损和刮花,无法正常使用,造成了材料的浪费
[0026]此包装箱包括底箱、支撑机构和箱盖,底箱一端敞口,且底箱具有容纳空间,容纳空间与敞口连通;支撑机构包括两个支撑组件,两个支撑组件沿X轴方向相对设置于容纳空间且与底箱的侧壁抵接,支撑组件开设有多个沿Y轴方向间隔分布的卡槽,面料辊的两端分别卡设于两个支撑组件相应的卡槽内,面料辊与底箱存在间隙,且相邻面料辊之间存在间隙;箱盖盖设于敞口,面料辊与箱盖存在间隙。
Smart Images

Figure CN224618358U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fabric packaging technology, and in particular to a packaging box. Background Technology
[0002] For some expensive and easily deformed fabrics, outer packaging is usually necessary for protection to prevent them from coming into contact with other items. In existing technology, the fabric is typically wound onto a roller to form a fabric roller, and then wrapped in plastic for packaging and transportation. However, due to the bumps and jostles during transport, the outermost layer of fabric can become worn and scratched, rendering it unusable and resulting in material waste.
[0003] Therefore, there is a need to provide a packaging box to solve the above problems. Utility Model Content
[0004] The purpose of this invention is to provide a packaging box that can avoid friction and collision between the fabric roller and the packaging box, as well as friction between the fabric rollers, effectively reducing wear and scratches on the fabric surface of the fabric roller and reducing fabric waste.
[0005] To achieve this objective, the present invention adopts the following technical solution:
[0006] A packaging box, comprising:
[0007] The bottom box has an open end and a receiving space that is connected to the open end;
[0008] The support mechanism includes two support components, which are arranged opposite each other in the accommodating space along the X-axis and abut against the side wall of the bottom box. Each support component has a plurality of slots spaced apart along the Y-axis. The two ends of the fabric roller are respectively engaged in the corresponding slots of the two support components. There is a gap between the fabric roller and the bottom box, and there is a gap between adjacent fabric rollers.
[0009] A lid is provided over the opening.
[0010] Preferably, the number of the support mechanisms is multiple sets, and the multiple sets of support mechanisms are stacked in the accommodating space along the Z-axis direction, with gaps between adjacent fabric rollers along the Z-axis direction.
[0011] Preferably, the two side walls of the base box, spaced apart along the X-axis, each include a fixed part and a bent part. The fixed part has a notch that extends along the Z-axis. The bent part is bent and connected to the fixed part. The shape of the bent part is adapted to the notch, and the bent part can seal the notch.
[0012] Preferably, the support component includes:
[0013] A tube frame has a receiving groove that extends through the Y-axis direction. The tube frame is formed by folding a single sheet of paper. The tube frame has multiple first slots that are spaced apart along the Y-axis direction.
[0014] Multiple support cards are stacked in the receiving groove. Each support card has multiple second slots spaced apart along the Y-axis. Multiple first slots and multiple second slots overlap to form the card slot.
[0015] Preferably, the packaging box further includes a pressure-bearing mechanism, which includes:
[0016] A positioning assembly includes multiple positioning elements and a mounting plate. The multiple positioning elements are distributed along the Z-axis. The two ends of the mounting plate are respectively clamped between two adjacent support mechanisms, between the support mechanism and the bottom wall of the base box, and between the support mechanism and the box cover. The multiple positioning elements are arranged on the mounting plate along the Y-axis and are located between two adjacent fabric rollers. The positioning elements have positioning slots through them along the Z-axis. The multiple positioning elements facing each other along the Z-axis form a positioning element group, and the multiple positioning slots of the positioning element group are facing each other along the Z-axis.
[0017] Multiple pressure-bearing components extend along the Z-axis direction and are respectively inserted into multiple positioning slots of multiple positioning component groups. The two ends of the pressure-bearing components abut against the bottom box and the box cover, respectively.
[0018] Preferably, there is a gap between the positioning member and the two adjacent fabric rollers, and there is a gap between the pressure bearing member and the two adjacent fabric rollers.
[0019] Preferably, the lid includes a lid body and a lid side panel. The lid side panel surrounds the lid body, and when the lid is closed over the opening, the lid side panel surrounds the side wall of the bottom box.
[0020] Preferably, the packaging box also includes:
[0021] A base support, on which the base box is placed;
[0022] Multiple sets of load-bearing blocks are spaced apart at the bottom of the base along the X-axis, and the load-bearing block sets include multiple load-bearing blocks spaced apart along the Y-axis.
[0023] Preferably, the packaging box also includes cable ties, which are tied to the outer periphery of the bottom box, the lid, and the base.
[0024] Preferably, the base box, the support mechanism, the box cover, the base support, and the load-bearing block are all made of paper.
[0025] The beneficial effects of this utility model are:
[0026] This packaging box includes a base box, a support mechanism, and a lid. One end of the base box is open, and the base box has a receiving space that communicates with the open end. The support mechanism includes two support components, which are arranged opposite each other in the receiving space along the X-axis and abut against the side wall of the base box. The support components have multiple slots spaced apart along the Y-axis. The two ends of the fabric roller are respectively engaged in the corresponding slots of the two support components. There is a gap between the fabric roller and the base box, and there is also a gap between adjacent fabric rollers. The lid is placed over the open end, and there is a gap between the fabric roller and the lid.
[0027] When packaging fabric rollers using this box, first open the box lid. Place the two support components of the support mechanism opposite each other along the X-axis within the accommodating space, and adjust the position of the support components so that they abut against the side wall of the bottom box. Then, secure both ends of the fabric rollers into the slots of the two support components. The number of slots on the support components corresponds to the number of fabric rollers that can be placed within them. The accommodating space of the bottom box can accommodate the fabric rollers, thus protecting them. The box lid covers the open end of the bottom box, sealing the entire packaging box and preventing external impurities from entering and contaminating the fabric rollers. The slot design securely fixes the position of the fabric rollers, preventing them from shaking or rolling during transportation. Gaps exist between the fabric rollers and the bottom box and lid, as well as between adjacent fabric rollers, preventing direct contact between the fabric rollers and the packaging box or adjacent fabric rollers, thus preventing damage to the outermost layer of fabric on the fabric rollers due to friction during transportation.
[0028] Compared with the prior art, the packaging box of this utility model forms a complete packaging structure with the bottom box, support mechanism and box cover, which can withstand a certain external impact and protect the fabric roller in the containment space; the fabric roller is fixed by the slot of the support mechanism, and there are gaps between the fabric roller and the bottom box, box cover and adjacent fabric rollers, to avoid friction and collision between the fabric roller and the packaging box and friction between the fabric rollers, effectively reducing the wear and scratches of the fabric on the surface of the fabric roller, thereby reducing fabric waste. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the packaging box provided by this utility model;
[0030] Figure 2 This is a schematic diagram of the base box, base support, load-bearing block, support mechanism and fabric roller provided by this utility model;
[0031] Figure 3 This is a schematic diagram of the support component provided by this utility model;
[0032] Figure 4 This is one of the schematic diagrams of the base box provided by this utility model;
[0033] Figure 5 This is the second schematic diagram of the base box provided by this utility model;
[0034] Figure 6 This is a schematic diagram of the base box, base support, load-bearing block and positioning components provided by this utility model;
[0035] Figure 7 This is a schematic diagram of the positioning component provided by this utility model;
[0036] Figure 8 This is a schematic diagram of the base box, base support, load-bearing block, fabric roller, support assembly and pressure-bearing component provided by this utility model.
[0037] In the picture:
[0038] 100. Fabric roller;
[0039] 1. Base box; 11. Accommodation space; 12. Fixing part; 121. Notch; 13. Bending part;
[0040] 21. Support component; 211. Card slot; 212. Tube roll frame; 213. Support clip;
[0041] 3. Box lid; 31. Box lid body; 32. Box lid side panel;
[0042] 41. Positioning assembly; 411. Positioning component; 4111. Positioning slot; 412. Mounting plate; 42. Pressure-bearing component;
[0043] 5. Base support;
[0044] 6. Load-bearing piers;
[0045] 7. Cable ties. Detailed Implementation
[0046] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.
[0047] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0048] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0049] In the description of this embodiment, the terms "upper," "lower," "left," "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.
[0050] For some expensive and easily deformed fabrics, outer packaging is usually necessary for protection to prevent them from coming into contact with other items. In existing technology, the fabric is typically wound onto a roller to form a fabric roller, and then wrapped in plastic for packaging and transportation. However, due to the bumps and jostles during transport, the outermost layer of fabric can become worn and scratched, rendering it unusable and resulting in material waste.
[0051] Therefore, such as Figures 1-8As shown, this embodiment provides a packaging box, which includes a base box 1, a support mechanism, and a lid 3. One end of the base box 1 is open, and the base box 1 has a receiving space 11, which is connected to the open. The support mechanism includes two support components 21, which are arranged opposite to each other in the receiving space 11 along the X-axis and abut against the side wall of the base box 1. The support components 21 have multiple slots 211 spaced apart along the Y-axis. The two ends of the fabric roller 100 are respectively engaged in the corresponding slots 211 of the two support components 21. There is a gap between the fabric roller 100 and the base box 1, and there is a gap between adjacent fabric rollers 100. The lid 3 covers the open, and there is a gap between the fabric roller 100 and the lid 3.
[0052] When packaging the fabric roller 100 using this packaging box, first open the box cover 3, place the two support components 21 of the support mechanism opposite each other in the accommodating space 11 along the X-axis direction, and adjust the position of the support components 21 so that the support components 21 abut against the side wall of the bottom box 1. Then, respectively, the two ends of the fabric roller 100 are locked in the slots 211 of the two support components 21. It can be understood that the number of slots 211 opened on the support components 21 is the number of fabric rollers 100 that can be placed. The bottom box 1 has a accommodating space 11 that can accommodate the fabric roller 100, so that the bottom box 1 can protect the fabric roller 100 located in the accommodating space 11; the box cover 3 is placed over the opening of the bottom box 1 to seal the entire packaging box and prevent external impurities from entering the accommodating space 11 and contaminating the fabric roller 100; the design of the slot 211 can firmly fix the position of the fabric roller 100 and prevent the fabric roller 100 from shaking or rolling during transportation; there are gaps between the fabric roller 100 and the bottom box 1 and the box cover 3, and there are gaps between two adjacent fabric rollers 100, which avoids direct contact between the fabric roller 100 and the packaging box or with adjacent fabric rollers 100, and prevents the outermost layer of fabric on the fabric roller 100 from being damaged by mutual friction during transportation.
[0053] Compared with the prior art, the packaging box in this embodiment, consisting of the bottom box 1, the support mechanism, and the box lid 3, forms a complete packaging structure that can withstand certain external impacts and protect the fabric roller 100 within the accommodating space 11. The fabric roller 100 is fixed by the slot 211 of the support mechanism, and gaps exist between the fabric roller 100 and the bottom box 1, the box lid 3, and adjacent fabric rollers 100. This avoids friction and collision between the fabric roller 100 and the packaging box, as well as friction between the fabric rollers 100, effectively reducing wear and scratches on the surface of the fabric roller 100, thereby reducing fabric waste.
[0054] Optionally, such as Figure 3As shown, the support assembly 21 includes a rolled tube frame 212 and multiple support clips 213. The rolled tube frame 212 has a receiving groove extending along the Y-axis. The rolled tube frame 212 is formed by folding a single sheet of paper. The rolled tube frame 212 has multiple first slots spaced apart along the Y-axis. The multiple support clips 213 are stacked in the receiving groove. The support clips 213 have multiple second slots spaced apart along the Y-axis. The multiple first slots and multiple second slots overlap to form a clip slot 211. The rolled tube frame 212 is the frame of the entire support assembly 21. The single-sheet folding method makes the manufacturing process of the rolled tube frame 212 simple and inexpensive, while ensuring the stability of the structure. By stacking multiple support clips 213 in the receiving groove of the rolled tube frame 212, the structural strength of the rolled tube frame 212 can be further increased, thereby improving the stability and reliability of the support assembly 21.
[0055] Optionally, the support mechanism is arranged in multiple sets, stacked along the Z-axis within the accommodating space 11, with gaps between adjacent fabric rollers 100 along the Z-axis. By stacking multiple sets of support mechanisms along the Z-axis, multiple layers of fabric rollers 100 can be placed within the accommodating space 11, allowing the packaging box to accommodate more fabric rollers 100, reducing the number of packaging boxes required and lowering packaging costs. Gaps between each layer of fabric rollers 100 prevent collisions or friction between the fabric rollers 100 arranged along the Z-axis, reducing the risk of surface wear and scratches on the fabric rollers 100.
[0056] In this embodiment, multiple sets of support mechanisms are stacked, that is, the upper support component 21 is directly stacked on the lower support component 21. During packaging, the two bottom support components 21 are placed, and the fabric roller 100 is secured to the two support components 21. Then, the two second-layer support components 21 are stacked on the two bottom support components 21, and the fabric roller 100 is secured to the two second-layer support components 21, and so on, until the fabric roller 100 is placed.
[0057] Optionally, such as Figure 4 , Figure 5As shown, the two side walls of the base box 1, spaced along the X-axis, each include a fixing part 12 and a bending part 13. The fixing part 12 has a notch 121 extending along the Z-axis. The bending part 13 is bent and connected to the fixing part 12, and the shape of the bending part 13 is adapted to the notch 121, thus sealing the notch 121. Before placing the support mechanism and the fabric roller 100 into the receiving space 11, the bending part 13 is bent to detach from the notch 121, thereby reducing the height of the side wall with the notch 121. This makes it easier to place the support mechanism into the receiving space 11, making it easier to adjust the position of the support assembly 21 and avoiding placement difficulties caused by the excessive height of the base box 1. It also makes it easier to place the fabric roller 100, which is mounted on the support mechanism. After all the support mechanisms and fabric rollers 100 are placed, the bending part 13 is bent to seal the notch 121. By bending the bending part 13, the height of the bottom box 1 can be reduced, making it easier to place the support mechanism and fabric roller 100, which need to be placed at the bottom of the receiving space 11, inside the receiving space 11, thereby improving work efficiency.
[0058] Optionally, such as Figure 1 As shown, the box lid 3 includes a box lid body 31 and a box lid side plate 32. The box lid side plate 32 surrounds the box lid body 31. When the box lid 3 is closed, the box lid side plate 32 surrounds the side wall of the bottom box 1. The box lid side plate 32 surrounds the side wall of the bottom box 1, which can form a tight fit with the bottom box 1, reducing the possibility of external dust, moisture or other pollutants entering the packaging box. During transportation, multiple packaging boxes may need to be stacked along the Z-axis. The tight fit between the box lid side plate 32 and the side wall of the bottom box 1 enhances the structural stability of the entire packaging box and reduces the risk of the side wall of the bottom box 1 expanding outwards after bearing the load.
[0059] In one alternative embodiment, such as Figures 6-8 As shown, the packaging box also includes a pressure-bearing mechanism, which includes a positioning component 41 and multiple pressure-bearing parts 42. The positioning component 41 includes multiple positioning parts 411 and a mounting plate 412. The multiple positioning components 41 are distributed along the Z-axis direction. The two ends of the mounting plate 412 are respectively clamped between two adjacent support mechanisms, between the support mechanism and the bottom wall of the bottom box 1, and between the support mechanism and the box cover 3. The multiple positioning parts 411 are arranged on the mounting plate 412 along the Y-axis direction, and the positioning parts 411 are located between two adjacent fabric rollers 100. The positioning parts 411 have a positioning slot 4111 through them along the Z-axis direction. The multiple positioning parts 411 facing each other along the Z-axis direction form a positioning part group. The multiple positioning slots 4111 of the positioning part group are facing each other along the Z-axis direction. The pressure-bearing parts 42 extend along the Z-axis direction. The multiple pressure-bearing parts 42 are correspondingly inserted into the multiple positioning slots 4111 of the multiple positioning part groups. The two ends of the pressure-bearing parts 42 abut against the bottom box 1 and the box cover 3, respectively.
[0060] The two ends of the mounting plate 412 are respectively clamped between the support components 21 of two adjacent support mechanisms, thereby fixing the positioning component 41 between the two adjacent support mechanisms. Alternatively, the two ends of the mounting plate 412 are respectively clamped between the support mechanism and the bottom wall of the bottom box 1, thereby fixing the positioning component 41 between the support mechanism and the bottom wall of the bottom box 1. Alternatively, the two ends of the mounting plate 412 are respectively clamped between the support mechanism and the box cover 3, thereby fixing the positioning component 41 between the support mechanism and the box cover 3. Multiple positioning elements 411 are arranged on the mounting plate 412 along the Y-axis direction, and each positioning element 411 is located between two adjacent fabric rollers 100. The positioning slot 4111 on the positioning component 411 extends along the Z-axis, providing an installation position for the pressure-bearing component 42. The pressure-bearing component 42 extends along the Z-axis, and multiple pressure-bearing components 42 are correspondingly inserted into the positioning slots 4111 of multiple positioning component groups, so that the pressure-bearing component 42 is stably installed in the accommodating space 11. The two ends of the pressure-bearing component 42 abut against the box cover 3 and the bottom box 1, respectively. When the packaging boxes are stacked, the pressure on the top of the packaging box can be transmitted to the pressure-bearing component 42 through the box cover 3. Multiple pressure-bearing components 42 jointly disperse the pressure, avoiding deformation or damage to the packaging box due to excessive local stress, and significantly improving the stability of the packaging box during stacking and transportation.
[0061] It should be noted that the position and number of positioning components 41 can be set according to actual needs, and this embodiment does not limit this. For example, in this embodiment, there are three support mechanisms and two positioning components 41, which are located between the first and second support mechanisms and between the third support mechanism and the box cover 3, respectively.
[0062] Furthermore, there is a gap between the positioning element 411 and the two adjacent fabric rollers 100, and there is also a gap between the pressure bearing element 42 and the two adjacent fabric rollers 100. The existence of the gaps ensures that the positioning element 411 and the pressure bearing element 42 do not directly contact the outer surface of the fabric roller 100, thus preventing the outer surface of the fabric roller 100 from being damaged by friction with the positioning element 411 and the pressure bearing element 42, and effectively protecting the fabric roller 100.
[0063] Optionally, such as Figure 1As shown, the packaging box also includes a base tray 5 and multiple sets of load-bearing blocks. The base box 1 is placed on the base tray 5. The multiple sets of load-bearing blocks are spaced apart along the X-axis at the bottom of the base tray 5, and each load-bearing block includes multiple load-bearing blocks 6 spaced apart along the Y-axis. The base tray 5 serves as a support platform for the base box 1, effectively protecting it from damp, dusty, or uneven ground. The load-bearing blocks maintain a certain distance between the bottom of the packaging box and the ground, allowing the packaging box to be easily moved by forklifts without additional handling tools. The spacing of the load-bearing blocks provides sufficient space for the forklift forks, making the handling process smoother. The layout of the multiple sets of load-bearing blocks ensures that the weight of the packaging box is evenly distributed, avoiding excessive local stress caused by concentrated weight.
[0064] In one alternative embodiment, such as Figure 1 As shown, the packaging box also includes cable ties 7, which are tied around the outer perimeter of the bottom box 1, the lid 3, and the base 5. The cable ties 7 tightly bind the bottom box 1, the lid 3, and the base 5 together, ensuring that the components will not separate due to external forces and preventing the packaging box structure from becoming loose.
[0065] Optionally, the base box 1, support mechanism, box cover 3, base support 5, and load-bearing block 6 are all made of paper. Paper is a recyclable material, and the used packaging box can be easily recycled and reused, reducing environmental pollution and conforming to modern environmental protection concepts.
[0066] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A packaging box, characterized in that, include: The bottom box (1) has an open end and has a receiving space (11) that is connected to the open end; The support mechanism includes two support components (21), which are arranged opposite to each other in the accommodating space (11) along the X-axis and abut against the side wall of the bottom box (1). Each support component (21) has a plurality of slots (211) spaced apart along the Y-axis. The two ends of a plurality of fabric rollers (100) are respectively engaged in the corresponding slots (211) of the two support components (21). There is a gap between the fabric rollers (100) and the bottom box (1), and there is a gap between adjacent fabric rollers (100). A box cover (3) is placed over the opening, and there is a gap between the fabric roller (100) and the box cover (3).
2. The packaging box according to claim 1, characterized in that, The number of the support mechanisms is multiple sets, and the multiple sets of support mechanisms are stacked in the accommodating space (11) along the Z-axis direction, and there is a gap between adjacent fabric rollers (100) along the Z-axis direction.
3. The packaging box according to claim 2, characterized in that, The bottom box (1) has two side walls spaced along the X-axis, each including a fixed part (12) and a bent part (13). The fixed part (12) has a notch (121) that extends along the Z-axis. The bent part (13) is bent and connected to the fixed part (12). The shape of the bent part (13) is adapted to the notch (121), and the bent part (13) can block the notch (121).
4. The packaging box according to claim 1, wherein The support component (21) includes: The tube frame (212) has a receiving groove that runs through it along the Y-axis. The tube frame (212) is formed by folding a piece of paper. The tube frame (212) has a plurality of first slots that are spaced apart along the Y-axis. Multiple support cards (213) are stacked in the receiving groove. Each support card (213) has multiple second slots spaced apart along the Y-axis. The multiple first slots and the multiple second slots overlap to form the card slot (211).
5. The packaging box according to claim 2, wherein The packaging box also includes a pressure-bearing mechanism, which comprises: The positioning component (41) includes multiple positioning elements (411) and a mounting plate (412). The multiple positioning components (41) are distributed along the Z-axis direction. The two ends of the mounting plate (412) are respectively clamped between two adjacent support mechanisms / between the support mechanism and the bottom wall of the bottom box (1) / between the support mechanism and the box cover (3). The multiple positioning elements (411) are arranged on the mounting plate (412) along the Y-axis direction, and the positioning elements (411) are located between two adjacent fabric rollers (100). The positioning elements (411) have a positioning slot (4111) through them along the Z-axis direction. The multiple positioning elements (411) facing each other along the Z-axis direction form a positioning element group. The multiple positioning slots (4111) of the positioning element group are facing each other along the Z-axis direction. Multiple pressure-bearing components (42) extend along the Z-axis direction. The multiple pressure-bearing components (42) are respectively inserted into the multiple positioning slots (4111) of the multiple positioning component groups. The two ends of the pressure-bearing components (42) abut against the bottom box (1) and the box cover (3) respectively.
6. The packaging box according to claim 5, characterized in that There is a gap between the positioning member (411) and the two adjacent fabric rollers (100), and there is a gap between the pressure bearing member (42) and the two adjacent fabric rollers (100).
7. The packaging box according to claim 1, wherein The box cover (3) includes a box cover body (31) and a box cover side plate (32). The box cover side plate (32) surrounds the box cover body (31). When the box cover (3) is placed over the opening, the box cover side plate (32) surrounds the side wall of the bottom box (1).
8. The package of any one of claims 1-7, wherein, The packaging box also includes: The base (5) is on which the base box (1) is placed; Multiple sets of load-bearing blocks are spaced apart at the bottom of the base (5) along the X-axis direction, and the load-bearing block sets include multiple load-bearing blocks (6) spaced apart along the Y-axis direction.
9. The packaging box according to claim 8, characterized in that The packaging box also includes cable ties (7), which are tied to the outer periphery of the bottom box (1), the box cover (3) and the bottom support (5).
10. The packaging box according to claim 8, characterized in that, The base box (1), the support mechanism, the box cover (3), the base support (5), and the load-bearing block (6) are all made of paper.