Packaging assembly of tea bar machine
The packaging component for tea bar machines uses foam pieces with internal and external ribs to create gaps for shock absorption, addressing inefficiencies in existing packaging methods and ensuring comprehensive protection against transport damage.
Patent Information
- Application Number
- CN202422092331.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-27
AI Technical Summary
The existing tea bar machine has a lot of materials and is easily displaced, and lacks effective buffering, which leads to deformation or damage to the shell structure during transportation.
The top corners and edges of the tea bar cabinet are wrapped with foam components, and the buffer ribs on the inner and outer surfaces are set to form a buffer gap. The gap between the foam component and the tea bar machine and the packaging box is used to absorb impact energy and enhance the protection effect.
Simplify packaging steps, reduce material demand, improve protection efficiency, avoid deformation of the shell or internal damage during transportation, and reduce transportation difficulty.
Smart Images

Figure CN223101538U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of packaging structures, and particularly relates to a packaging component for a tea bar machine. Background Art
[0002] At present, the packaging of tea bar machines on the market generally fills multiple mutually separated plastic inflatable bags or foam strips between the tea bar machine and the outer packaging box for anti-collision. Not only are there many packaging materials, but also manual stuffing is required, which is greatly affected by human factors. The stuffed materials are extremely likely to shift within the packaging box. During the transportation of the tea bar machine, there are no materials in the corners with gaps for buffer protection. When subjected to external impacts and knocks, the tea bar machine will directly collide violently with the external structure through the hard outer packaging box, resulting in deformation or even damage to the shell structure of the tea bar machine. Content of the Utility Model
[0003] The technical problem to be solved by the utility model is to provide a packaging component for a tea bar machine to solve at least one of the above problems.
[0004] To solve the above technical problem, the utility model adopts the following technical scheme: A packaging component for a tea bar machine, the tea bar machine includes a cabinet body, the packaging component includes four foam members with the same structure, a packaging groove is provided on the foam member, and the foam member wraps the adjacent two top corners of the cabinet body and the edge connecting the two top corners through the packaging groove. A plurality of buffer ribs are respectively provided on the inner wall of the packaging groove and the outer surface of the foam member, and a buffer gap is formed between adjacent two buffer ribs. The technical scheme has the following technical effects:
[0005] The utility model pre-packages the tea bar machine cabinet before boxing through a foam member. The packaging grooves on the foam member enable the foam member to simultaneously wrap two adjacent top corners of the tea bar machine cabinet. Furthermore, the packaging assembly can protect all the top corner positions of the tea bar machine cabinet with only four foam members, requiring less buffer material for packaging, simplifying the packaging steps, reducing the packaging difficulty, and improving the packaging efficiency. Also, since the four foam members have the same structure, only one type of foam member structure needs to be produced as the buffer material, which also reduces the production and processing difficulty of the buffer material. After boxing, the cooperation of the top corners and the packaging grooves prevents the packaging assembly from shifting between the cabinet and the packaging box, ensuring that the packaging assembly can always protect each top corner of the tea bar machine. By providing buffer ribs on the inner and outer surfaces of the foam member, after the tea bar machine is boxed, the buffer ribs on the packaging grooves of the foam member abut against the outer surface of the tea bar machine cabinet, so as to form multiple buffer gaps between the inner wall of the packaging groove and the outer surface of the cabinet. At the same time, the buffer ribs on the outer surface of the foam member abut against the inner wall of the packaging box, so as to form multiple buffer gaps between the outer surface of the foam member and the packaging box. Since buffer gaps are respectively provided between the foam member and the tea bar machine and the packaging box, even if the packaging box is impacted by a huge external force due to jolting during the transportation of the tea bar machine or collision during handling, the huge external force will not be directly transmitted to the outer shell of the tea bar machine through the packaging box. Instead, during the transmission from the foam member to the tea bar machine, the impact potential energy is greatly reduced through the buffering of the buffer gaps and the absorption of the soft foam member, avoiding deformation of the outer shell or damage to internal parts of the tea bar machine due to excessive force, enhancing the protection of the tea bar machine, and reducing the transportation and handling difficulty of the tea bar machine.
[0006] In the above-mentioned packaging assembly of a tea bar machine, the buffer ribs include a plurality of first buffer ribs protruding from the inner wall of the packaging groove and a plurality of second buffer ribs protruding from the outer surface of the foam member. The first buffer ribs and the second buffer ribs are arranged staggeredly. The staggeredly arranged first buffer ribs and second buffer ribs can form buffer gaps on the foam member and can also enhance the strength of different positions on the foam member respectively, making the overall thickness of the foam member relatively uniform, avoiding the foam member from being easily broken due to uneven thickness, and ensuring the stable protection of the tea bar machine by the foam member.
[0007] In the above-mentioned packaging assembly of a tea bar machine, the width of the first buffer rib is A, and the width of the second buffer rib is B, satisfying A > B. Since the width of the first buffer rib is greater than the width of the second buffer rib, the width of the buffer gap on the outer surface of the foam member is greater than the width of the second buffer rib, that is, the contact area between the foam member and the packaging box is smaller than the area of the buffer gap between the foam member and the packaging box. When the packaging box is impacted by an external force, the larger buffer gap can reserve space for the deformation of the packaging box and the foam member, so as to absorb a large amount of impact potential energy and further reduce the possibility of deformation and damage of the tea bar machine during transportation.
[0008] In the packaging assembly of the tea bar machine, the inner wall of the packaging groove and the outer surface of the foam component are respectively processed by glue removal to form a buffer gap. A raised buffer rib can be formed on the side of the buffer gap. The glue removal process can reduce the overall weight of the foam component and save materials. At the same time, its processing technology is relatively simple, which greatly reduces the production and processing cost.
[0009] In the packaging assembly of the tea bar machine, two of the four foam components are wrapped on opposite sides of the top of the cabinet, and the other two foam components are wrapped on opposite sides of the bottom of the cabinet, so as to wrap the horizontally extending edge of the cabinet and the top corners at the left and right ends of the edge. Each foam component completely wraps a horizontally extending edge and the top corners at both ends of the edge. When packaging, the lower half of the cabinet can be wrapped by tilting the tea bar machine to both sides, which reduces the difficulty of packaging and improves the packaging efficiency. At the same time, the four foam components have a good protective effect on the upper and lower ends of the cabinet. When carrying the tea bar machine, if the upper and lower ends of the packaging box collide with foreign objects, the foam components can fully buffer to minimize damage to the tea bar machine.
[0010] In the packaging assembly of the tea bar machine, the foam component includes three side panels for fitting the side walls of the cabinet and an end panel for fitting the top or bottom of the cabinet, and the buffer ribs on the side panels extend horizontally on the foam component and penetrate the three side panels. The buffer ribs can be used to enhance the connection strength between adjacent side panels, thereby minimizing the possibility of fracture at the connection between two adjacent side panels during installation.
[0011] In the packaging assembly of the tea bar machine, the three side panels are respectively a first side panel and two second side panels vertically connected to both sides of the first side panel, the end panel has a connection end connected to the first side panel and a free end opposite to the connection end, and the buffer rib extends horizontally from the connection end to the free end to be perpendicular to the buffer rib provided on the side panel. The buffer rib provided on the end panel extends horizontally on the end panel to be perpendicular to the buffer rib provided on the side panel, and while enhancing the buffering effect, the connection strength between the end panel and the first side panel is enhanced, and the possibility of fracture at the connection between the end panel and the first side panel during installation is minimized.
[0012] In the packaging assembly of the tea bar machine, the three side panels are respectively a first side panel and two second side panels vertically connected to both sides of the first side panel, and the first side panel is provided with a plurality of through holes horizontally penetrating the first side panel. The through holes can further reduce the weight of the foam component without reducing the strength of the foam component, and at the same time enhance the foam component's absorption effect on impact potential energy, so that the foam component has a better buffering effect.
[0013] In the above-mentioned packaging assembly of a tea bar machine, the four foam members are all arranged on the peripheral side of the cabinet body to wrap the vertically extending edges of the cabinet body and the top corners at both upper and lower ends of the edge. Since the cabinet body of the tea bar machine is relatively tall, the foam members wrap the vertically extending edges of the cabinet body and the top corners at both upper and lower ends of the edge at the same time, so that the packaging assembly can completely protect all the vertically extending edges of the cabinet body. When the middle part of the packaging box is impacted by an external force, the packaging assembly can be fully buffered to avoid excessive force on the middle part of the tea bar machine and bending deformation.
[0014] In the above-mentioned packaging assembly of a tea bar machine, the foam member includes a top plate for fitting the top of the cabinet body, a bottom plate for fitting the bottom of the cabinet body, and a third side plate and a fourth side plate vertically connected between the top plate and the bottom plate. The buffer ribs are arranged crosswise on the surfaces of the third side plate and the fourth side plate. The crosswise arrangement of the horizontally extending buffer ribs and the vertically extending buffer ribs can greatly enhance the overall strength of the foam member to avoid the foam member from breaking, and the protection effect on the tea bar machine is better.
[0015] The features and advantages of the present utility model will be detailedly disclosed in the following specific embodiments and drawings. Brief Description of the Drawings
[0016] The following further describes the present utility model in conjunction with the drawings and specific embodiments:
[0017] Figure 1 Schematic diagram of the packaging assembly and the cabinet body in the packaged state in Embodiment 1;
[0018] Figure 2 Schematic diagram of the packaging assembly and the cabinet body in the separated state in Embodiment 1;
[0019] Figure 3 Schematic diagram of the foam member installed on one side of the cabinet body in Embodiment 1;
[0020] Figure 4 Stereogram of the foam member in Embodiment 1;
[0021] Figure 5 Schematic diagram of the packaging assembly and the cabinet body in the packaged state in Embodiment 2;
[0022] Figure 6 Schematic diagram of the packaging assembly and the cabinet body in the separated state in Embodiment 2.
[0023] Reference Signs:
[0024] 100, cabinet body; 110, top corner; 120, edge;
[0025] 200, foam member; 210, packaging groove; 220, end plate; 221, connecting end; 222, free end; 230, first side plate; 231, through hole; 240, second side plate; 250, top plate; 260, bottom plate; 270, third side plate; 280, fourth side plate;
[0026] 300, buffer rib; 310, first buffer rib; 320, second buffer rib;
[0027] 400, buffer gap. Detailed implementation manner
[0028] A packaging assembly for a tea bar machine proposed by the present utility model. The tea bar machine includes a cabinet body. The packaging assembly includes four foam members with the same structure. The foam members are provided with packaging grooves. The foam members wrap the adjacent two top corners of the cabinet body and the edge connecting the two top corners through the packaging grooves. A plurality of buffer ribs are respectively provided on the inner wall of the packaging groove and the outer surface of the foam member. A buffer gap is formed between adjacent two buffer ribs. The present utility model pre-packages the cabinet body of the tea bar machine before boxing through the foam members. The packaging grooves on the foam members enable the foam members to wrap the adjacent two top corners of the cabinet body of the tea bar machine at the same time, so that the packaging assembly can protect all the top corner positions of the cabinet body of the tea bar machine only through four foam members. The buffer materials required for packaging are less, the packaging steps are simplified, the packaging difficulty is reduced, and the packaging efficiency is improved. Also, because the four foam members have the same structure, only one type of foam member with one structure needs to be produced as the buffer material, which also reduces the production and processing difficulty of the buffer material. After boxing, the cooperation between the top corners and the packaging grooves makes the packaging assembly not displace between the cabinet body and the packaging box, ensuring that the packaging assembly can always protect the top corners of the tea bar machine. By providing buffer ribs on the inner and outer surfaces of the foam member, after the tea bar machine is boxed, the buffer ribs on the packaging groove of the foam member abut against the outer surface of the cabinet body of the tea bar machine, so that a plurality of buffer gaps are formed between the inner wall of the packaging groove and the outer surface of the cabinet body. At the same time, the buffer ribs on the outer surface of the foam member abut against the inner wall of the packaging box, so that a plurality of buffer gaps are formed between the outer surface of the foam member and the packaging box. Because buffer gaps are respectively provided between the foam member and the tea bar machine and the packaging box, even if the packaging box is impacted by a huge external force due to jolting during the transportation of the tea bar machine or collision during handling, the huge external force will not be directly transmitted to the outer shell of the tea bar machine through the packaging box. Instead, during the transmission from the foam member to the tea bar machine, the impact potential energy is greatly reduced through the buffering of the buffer gaps and the absorption of the soft foam member, avoiding deformation of the outer shell of the tea bar machine or damage to internal parts due to excessive force on the tea bar machine, enhancing the protection of the tea bar machine, and reducing the transportation and handling difficulty of the tea bar machine.
[0029] The technical solutions of the embodiments of the present utility model will be explained and described below with reference to the accompanying drawings of the embodiments of the present utility model. However, the following embodiments are only the preferred embodiments of the present utility model and not all of them. Based on the embodiments in the implementation manners, other embodiments obtained by those skilled in the art without creative efforts all fall within the protection scope of the present utility model.
[0030] In the description of the present utility model, it should be understood that the orientation or positional relationships indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise", etc. are based on the orientation or positional relationships shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model.
[0031] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, unless otherwise specified, the meaning of "plurality" is two or more, unless otherwise clearly defined.
[0032] In the present utility model, unless otherwise clearly specified and defined, the terms such as "installation", "connection", "connection", "fixation", etc. should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0033] In the present utility model, unless otherwise clearly specified and defined, the first feature being "above" or "below" the second feature may include the direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through other features between them. Moreover, the first feature being "above", "over" and "on" the second feature includes that the first feature is directly above and obliquely above the second feature, or simply means that the horizontal height of the first feature is higher than that of the second feature. The first feature being "below", "beneath" and "under" the second feature includes that the first feature is directly below and obliquely below the second feature, or simply means that the horizontal height of the first feature is lower than that of the second feature.
[0034] Embodiment 1:
[0035] A packaging component for a tea bar machine, as Figures 1 to 4 shown. The tea bar machine includes a cabinet body 100. The cabinet body 100 is a cuboid, having edge lines 120 and vertex angles 110, specifically including four vertically extending edge lines, eight horizontally extending edge lines and four vertex angles. The packaging component includes four foam members 200. The structures of the four foam members 200 are the same. A packaging groove 210 is provided on the foam member 200. When it is necessary to package the cabinet body 100, the packaging groove 210 of each foam member 200 respectively wraps two vertex angles 110 of the cabinet body 100 and the edge line 120 connected between the two vertex angles 110. The four foam members 200 can wrap all the vertex angles 110 of the cabinet body 100. A plurality of buffer ribs 300 protruding from the inner wall of the packaging groove 210 are provided on the inner wall of the packaging groove 210, and a buffer gap 400 is formed between adjacent two buffer ribs 300. A plurality of buffer ribs 300 protruding from the outer surface of the foam member 200 are also provided on the outer surface of the foam member 200, and a buffer gap 400 is formed between adjacent two buffer ribs 300.
[0036] The utility model pre-packages the tea bar machine cabinet 100 before boxing through the foam member 200. The foam member 200 serves as a buffer material, and the packaging groove 210 provided thereon enables each foam member 200 to simultaneously wrap two adjacent top corners 110 of the tea bar machine cabinet 100. Thus, the packaging assembly can protect all the top corners 110 of the tea bar machine cabinet 100 only through four foam members 200. The buffer material required for packaging is less, the packaging steps are simplified, the packaging difficulty is reduced, and the packaging efficiency is improved. Also, because the four foam members 200 have the same structure, only one type of foam member 200 with a single structure needs to be produced as the buffer material, which also reduces the production and processing difficulty of the buffer material. After boxing, the cooperation between the top corner 110 and the packaging groove 210 prevents the packaging assembly from shifting between the cabinet 100 and the packing box, ensuring that the packaging assembly can always protect each top corner 110 of the tea bar machine. By providing buffer ribs 300 on the inner and outer surfaces of the foam member 200, after the tea bar machine is boxed, the buffer ribs 300 on the packaging groove 210 of the foam member 200 abut against the outer surface of the tea bar machine cabinet 100, so as to form a plurality of buffer gaps 400 between the inner wall of the packaging groove 210 and the outer surface of the cabinet 100. At the same time, the buffer ribs 300 on the outer surface of the foam member 200 abut against the inner wall of the packing box, so as to form a plurality of buffer gaps 400 between the outer surface of the foam member 200 and the packing box. Since buffer gaps 400 are respectively provided between the foam member 200 and the tea bar machine and the packing box, even if the packing box is subjected to a huge external force impact due to jolting during the transportation of the tea bar machine or collision during handling, the huge external force will not be directly transmitted to the outer shell of the tea bar machine through the packing box. Instead, during the transmission from the foam member 200 to the tea bar machine, the impact potential energy is greatly reduced through the buffering of the buffer gaps 400 and the absorption of the soft foam member 200, avoiding deformation of the outer shell of the tea bar machine or damage to internal parts due to excessive force on the tea bar machine, enhancing the protection of the tea bar machine, and reducing the transportation and handling difficulty of the tea bar machine.
[0037] Such as Figure 2As shown in the figure, the buffer ribs 300 include a plurality of first buffer ribs 310 and a plurality of second buffer ribs 320. The first buffer ribs 310 are arranged on the inner wall of the packaging groove 210 and protrude from the inner wall of the packaging groove 210. The second buffer ribs 320 are arranged on the outer surface of the foam member 200 and protrude from the outer surface of the foam member 200. The first buffer ribs 310 and the second buffer ribs 320 are arranged staggeredly. That is, the first buffer ribs 310 are arranged opposite to the buffer gap 400 on the outer surface of the foam member 200, and the second buffer ribs 320 are arranged opposite to the buffer gap 400 on the inner wall of the packaging groove 210. That is, the staggeredly arranged first buffer ribs 310 and second buffer ribs 320 can form the buffer gap 400 on the foam member 200, and can also enhance the strength of different positions on the foam member 200 respectively, making the overall thickness of the foam member 200 relatively uniform, avoiding the foam member 200 from being easily broken due to uneven thickness, and ensuring the stable protection of the foam member 200 for the tea bar machine. As Figure 3 shown, preferably, the width of the first buffer rib 310 is A, and the width of the second buffer rib 320 is B, satisfying A > B. Since the width of the first buffer rib 310 is greater than the width of the second buffer rib 320, the width of the buffer gap 400 on the outer surface of the foam member 200 is greater than the width of the second buffer rib 320. That is, the contact area between the foam member 200 and the packaging box is smaller than the area of the buffer gap 400 between the foam member 200 and the packaging box. When the packaging box is subjected to an external impact, the larger buffer gap 400 can reserve space for the deformation of the packaging box and the foam member 200, so as to absorb a large amount of impact potential energy and further reduce the possibility of deformation damage during the transportation of the tea bar machine.
[0038] The buffer ribs 300 can be formed by a variety of processes. In this embodiment, the inner wall of the packaging groove 210 and the outer surface of the foam member 200 are respectively subjected to glue scooping treatment to form the buffer gap 400. The protruding buffer ribs 300 can be formed on the side of the buffer gap 400. The glue scooping treatment can reduce the overall weight of the foam member 200, save materials, and at the same time, its processing technology is relatively simple, greatly reducing the production and processing cost.
[0039] As Figure 1As shown, in the present embodiment, two foam components 200 are wrapped on opposite sides of the top of the cabinet 100 to wrap the upper half of the cabinet 100, and the other two foam components 200 are wrapped on opposite sides of the bottom of the cabinet 100 to wrap the lower half of the cabinet 100. Each foam component 200 completely wraps a horizontally extending edge 120 and the top corners 110 at both ends of the edge 120. When packaging, it is only necessary to tilt the tea bar machine to both sides to complete the wrapping of the lower half of the cabinet 100, thereby reducing the difficulty of packaging and improving the packaging efficiency. At the same time, the four foam components 200 have a good protective effect on the upper and lower ends of the cabinet 100. When carrying the tea bar machine, if the upper and lower ends of the packaging box collide with foreign objects, the foam components 200 can provide sufficient buffering to minimize damage to the tea bar machine.
[0040] The foam component 200 includes three connected side panels and an end panel 220 connected to the three side panels respectively. The three side panels are a first side panel 230 and two second side panels 240 vertically connected to the first side panel 230 on both sides. The three side panels are respectively used to fit the three adjacent side walls of the cabinet 100. The end panel 220 is used to fit the top or bottom of the cabinet 100 according to the different installation positions of the foam component 200. The buffer ribs 300 arranged on the side panels extend horizontally on the foam component 200 and pass through the three side panels in sequence, so that the buffer ribs 300 pass through the three side panels at the same time, so that the connection strength between adjacent side panels can be enhanced by the buffer ribs 300, and the possibility of fracture at the connection between two adjacent side panels during installation is minimized. Figure 4 As shown, the end plate 220 has a connecting end 221 and a free end 222, the connecting end 221 is an end connected to the first side plate 230, and the free end 222 is an end opposite to the connecting end 221. The buffer rib 300 arranged on the end plate 220 extends horizontally on the end plate 220, and extends from the connecting end 221 to the free end 222 and is connected to the first side plate 230 so as to be perpendicular to the buffer rib 300 arranged on the side plate. The buffer rib 300 arranged on the end plate 220 enhances the buffering effect while enhancing the connection strength between the end plate 220 and the first side plate 230, thereby minimizing the possibility of breakage at the connection between the end plate 220 and the first side plate 230 during installation. In this embodiment, a plurality of through holes 231 with relatively large apertures are further provided on the first side plate 230. The through holes 231 transversely penetrate the middle portion of the first side plate 230. The weight of the foam component 200 can be further reduced without reducing the strength of the foam component 200. At the same time, the absorption effect of the foam component 200 for impact potential energy is enhanced, thereby making the foam component 200 have a better buffering effect.
[0041] Embodiment 2:
[0042] like Figure 5 and Figure 6As shown, the difference between this embodiment and the first embodiment is that in this embodiment, the foam member 200 is strip-shaped. When the packaging assembly is packaged on the cabinet 100 of the tea bar machine, the four foam members 200 are all arranged on the periphery of the cabinet 100, and the foam member 200 wraps the vertically extending edges 120 on the cabinet 100 and the top corners 110 at the upper and lower ends of the edge 120. Because the cabinet 100 of the tea bar machine is relatively high, the foam member 200 wraps the vertically extending edge 120 on the cabinet 100 and the top corners 110 at the upper and lower ends of the edge 120 at the same time, so that the packaging assembly can completely protect all the vertically extending edges 120 of the cabinet 100. When the middle part of the packaging box is impacted by an external force, the packaging assembly can be fully buffered to avoid excessive force on the middle part of the tea bar machine and bending deformation.
[0043] The foam member 200 includes a top plate 250 and a bottom plate 260, and also includes a third side plate 270 and a fourth side plate 280 that are vertically connected to one side. The third side plate 270 and the fourth side plate 280 are vertically connected between the top plate 250 and the bottom plate 260. When the foam member 200 wraps around the cabinet 100 of the tea bar machine, the top plate 250 fits on the top of the cabinet 100, the bottom plate 260 fits on the bottom of the cabinet 100, and the third side plate 270 and the fourth side plate 280 respectively fit on two adjacent outer side walls of the cabinet 100. The buffer ribs 300 provided on the outer surfaces of the third side plate 270 and the fourth side plate 280 (i.e., the side facing away from the packaging groove 210) are arranged crosswise on the surface of the foam member 200. The buffer gaps provided on the inner surfaces of the third side plate 270 and the fourth side plate 280 are arranged opposite to the buffer ribs 300 provided on the outer surfaces of the third side plate 270 and the fourth side plate 280. That is, on the outer surfaces of the third side plate 270 and the fourth side plate 280, there are buffer ribs 300 extending horizontally to enhance the strength of the foam member 200 in the transverse direction, and there are also buffer ribs 300 extending vertically to enhance the strength of the foam member 200 in the longitudinal direction. The horizontally extending buffer ribs 300 and the vertically extending buffer ribs 300 are arranged crosswise, which can greatly enhance the overall strength of the foam member 200 to avoid the foam member 200 from breaking and have a better protection effect on the tea bar machine.
[0044] The above is only the preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions within the idea of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements should also be regarded as the protection scope of the present invention.
Claims
1. A packaging component for a tea bar machine, the tea bar machine including a cabinet body, characterized in that: The packaging component includes four foam members with the same structure. Packaging grooves are provided on the foam members. The foam members wrap the adjacent two top corners of the cabinet body and the edge connecting the two top corners through the packaging grooves. A plurality of buffer ribs are respectively provided on the inner wall of the packaging groove and the outer surface of the foam member, and a buffer gap is formed between adjacent two buffer ribs.
2. The packaging component of a tea bar machine according to claim 1, wherein: The buffer ribs include a plurality of first buffer ribs protruding from the inner wall of the packaging groove and a plurality of second buffer ribs protruding from the outer surface of the foam member. The first buffer ribs and the second buffer ribs are arranged staggeredly.
3. The packaging component of a tea bar machine according to claim 2, characterized in that: The width of the first buffer rib is A, and the width of the second buffer rib is B, satisfying A > B.
4. A packaging component of a tea bar machine according to any one of claims 1 to 3, characterized in that: The inner wall of the packaging groove and the outer surface of the foam member are respectively subjected to degumming treatment to form the buffer gap.
5. The packaging component of a tea bar machine according to claim 1, characterized in that: Two of the four foam members are wrapped on the opposite sides of the top of the cabinet body, and the other two foam members are wrapped on the opposite sides of the bottom of the cabinet body to wrap the horizontally extending edges of the cabinet body and the top corners at the left and right ends of the edge.
6. The packaging component of a tea bar machine according to claim 5, characterized in that: The foam member includes three side plates for fitting the side wall of the cabinet body and an end plate for fitting the top or bottom of the cabinet body. The buffer ribs on the side plates horizontally extend on the foam member and penetrate through the three side plates.
7. The packaging component of a tea bar machine according to claim 6, wherein: The three side plates are respectively a first side plate and two second side plates vertically connected to both sides of the first side plate. The end plate has a connection end connected to the first side plate and a free end opposite to the connection end. The buffer ribs horizontally extend from the connection end to the free end to be perpendicular to the buffer ribs provided on the side plates.
8. The packaging component of a tea bar machine according to claim 6, characterized in that: The three side plates are respectively a first side plate and two second side plates vertically connected to both sides of the first side plate. A plurality of through holes horizontally penetrating the first side plate are provided on the first side plate.
9. The packaging component of a tea bar machine according to claim 1, characterized in that: The four foam members are all arranged on the periphery of the cabinet body to wrap the vertically extending edges of the cabinet body and the top corners at the upper and lower ends of the edge.
10. The packaging component of a tea bar machine according to claim 9, characterized in that: The foam member includes a top plate for fitting the top of the cabinet body, a bottom plate for fitting the bottom of the cabinet body, and a third side plate and a fourth side plate vertically connected between the top plate and the bottom plate. The buffer ribs are cross - arranged on the surfaces of the third side plate and the fourth side plate.