Scrubber packaging structure
By using a packaging structure made of folded paper materials, the high cost, heavy weight, and environmental unfriendliness of cordless upright floor scrubber packaging have been solved, achieving a cost-reducing, space-optimized, and user-friendly packaging solution.
Patent Information
- Application Number
- CN202423266171.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-30
AI Technical Summary
The existing packaging of cordless upright floor scrubbers is costly, heavy, bulky, difficult to disassemble, and environmentally unfriendly, which affects logistics and user experience.
The floor scrubber packaging structure, made of folded paper material, includes a box, bottom tray, mop surround, handle box, and accessory box. Through stacking and cushioning, it limits and protects the machine, mop, and accessories, reducing packaging material usage and optimizing space utilization.
It reduces packaging costs and weight, optimizes logistics and transportation space, facilitates user disassembly, enhances user experience and improves brand image, while also possessing environmental advantages.
Smart Images

Figure CN223736490U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of packaging technology, and in particular to a packaging structure for a floor scrubber. Background Technology
[0002] With the continuous development of technology, people are beginning to choose convenient and intelligent home appliances to assist in completing household chores. Intelligent cordless upright floor scrubbers integrate vacuuming, mopping, washing, and self-cleaning functions, offering multiple uses and suitability for cleaning various types of floors, making them widely applicable in daily life. During the packaging and transportation of floor scrubbers, cushioning and protective packaging plays a crucial role. Due to the product's large weight and irregular shape, current domestic packaging for cordless upright floor scrubbers typically uses foam materials such as polystyrene or pearl cotton. While these materials offer good cushioning and protection, they also present problems such as high cost, excessively large and heavy packaging boxes, space occupation during logistics and transportation, and difficulty for users to disassemble. Furthermore, the waste cannot be naturally degraded, and incineration produces harmful gases, exacerbating environmental degradation and contradicting the current international and domestic emphasis on environmental protection.
[0003] Therefore, there is an urgent need to propose a packaging mechanism for floor scrubbers to solve the above problems. Utility Model Content
[0004] The purpose of this utility model is to provide a packaging mechanism for floor scrubbers, which protects the floor scrubbers, reduces the cost and weight of the packaging structure, reduces the volume of the packaging structure, optimizes logistics and transportation space, facilitates user disassembly, and is energy-saving and environmentally friendly.
[0005] To achieve this objective, the present invention adopts the following technical solution:
[0006] A floor scrubber packaging structure is disclosed for packaging a floor scrubber and its accessories. The floor scrubber includes a body, a mop, a handle, and a main unit. The packaging structure is made of folded paper material and includes a box, a bottom tray, a mop cover, a handle box, and an accessory box. The bottom tray has a first receiving space for accommodating the body; the mop cover has a second receiving space for accommodating the mop; the handle box accommodates the handle; and the accessory box accommodates the accessories.
[0007] The bottom tray, the handle box, and the accessory box are stacked sequentially inside the housing. The mop guard is located at one end of the housing along its length and can abut against the bottom tray and the handle box. The mop guard and the accessory box form a third accommodating space for accommodating the main unit.
[0008] Furthermore, the bottom tray includes a first base plate, a first buffer structure, and a second buffer structure. The first buffer structure and the second buffer structure are respectively connected to the two side lines of the first base plate along the length direction and are erected on the first base plate. The first buffer structure and the second buffer structure are spaced apart to form the first accommodating space.
[0009] Furthermore, the height of the first buffer structure is higher than the height of the second buffer structure, forming a stepped space for placing the handle box; when the handle box is placed in the stepped space, the handle box covers the first accommodating space, and the top surface of the handle box and the top surface of the first buffer structure together form a bearing plane for supporting the accessory box and the host.
[0010] Furthermore, the mop is connected to the body at an angle, wherein the mop enclosure is erected inside the box, and the second accommodating space is connected to the first accommodating space at an angle.
[0011] Furthermore, the top of the mop enclosure can be folded upward to form an opening for the mop to enter and exit the second accommodating space.
[0012] Furthermore, the ground-mounted enclosure includes a second base plate, a third buffer structure, a fourth buffer structure, a fifth buffer structure, and a sixth buffer structure. The third buffer structure, the fourth buffer structure, the fifth buffer structure, and the sixth buffer structure are respectively connected to one side line of the second base plate and erected on the second base plate to enclose and form the second accommodating space.
[0013] The fourth, fifth, and sixth buffer structures are all fixedly connected to the base plate, and the third buffer structure is connected to the top edge of the second base plate and can be folded upward to form the opening.
[0014] Furthermore, a touch screen is provided at one end of the machine body, and the packaging structure of the floor scrubber also includes a shock-absorbing clip, which is disposed between the touch screen and the housing.
[0015] Furthermore, the shock-absorbing clip is installed in the first accommodating space.
[0016] Furthermore, the shock absorber includes a first buffer portion and a second buffer portion connected to each other. Both the first buffer portion and the second buffer portion have a first elastic buffer structure, and a second elastic buffer structure is formed between the first buffer portion and the second buffer portion. Both the first elastic buffer structure and the second elastic buffer structure are compressible along the length direction of the first accommodating space.
[0017] Furthermore, the shock-absorbing card is formed by folding a third folding plate, which includes a seventh folding plate, a third base plate, and an eighth folding plate connected in sequence. The seventh folding plate and the eighth folding plate can be folded to form the first elastic buffer structure, and two first elastic buffer structures are connected to form the second elastic buffer structure.
[0018] The beneficial effects of this utility model are:
[0019] This utility model provides a packaging structure for a floor scrubber, used to package a floor scrubber and its accessories. The floor scrubber includes a body, a mop, a handle, and a main unit. The packaging structure is made of folded paper material and includes a box, a bottom tray, a mop cover, an accessory box, and a handle box. The bottom tray has a first accommodating space for holding the body, which limits and protects the body when it is located in the first accommodating space. The mop cover has a second accommodating space for holding the mop, which limits and protects the mop when it is located in the second accommodating space. The accessory box is used to hold accessories, and the handle box is used to hold the handle. The bottom tray, handle box, and accessory box are stacked sequentially inside the box. The mop guard is located at one end of the box along its length and abuts against the bottom tray and handle box, ensuring stable and compact installation of the bottom tray and mop guard within the box, thus achieving better limiting and protection effects. A third storage space is formed between the mop guard and the accessory box to accommodate the main unit. When the main unit is placed in this third storage space, the accessory box and mop guard provide limiting and protection, eliminating the need for separate packaging of the main unit. This design minimizes packaging material usage, reducing cost and weight while maintaining both protective and aesthetic appeal. The floor scrubber packaging structure in this embodiment is rationally laid out and compact, reducing its volume and optimizing logistics space. Furthermore, the packaging structure is made of folded paper material, facilitating user disassembly, and is energy-efficient and environmentally friendly, enhancing user experience and brand image. Attached Figure Description
[0020] Figure 1 This is one of the schematic diagrams illustrating the assembly process of the floor scrubber packaging structure provided by this utility model;
[0021] Figure 2 This is the second schematic diagram of the assembly process of the floor scrubber packaging structure provided by this utility model;
[0022] Figure 3 This is a schematic diagram of the packaging structure of the assembled floor scrubber provided by this utility model;
[0023] Figure 4 This is a schematic diagram of the unfolded bottom tray provided by this utility model;
[0024] Figure 5 This is a schematic diagram of the folding and forming process of the bottom tray provided by this utility model;
[0025] Figure 6 This is a schematic diagram of the bottom tray structure provided by this utility model;
[0026] Figure 7 This is a schematic diagram of the unfolded floor mop enclosure provided by this utility model;
[0027] Figure 8 This is a schematic diagram of the folding and forming process of the floor mop cover provided by this utility model;
[0028] Figure 9 This is a schematic diagram of the structure of the floor mop enclosure provided by this utility model;
[0029] Figure 10 This is a schematic diagram of the unfolded shock-absorbing clip provided by this utility model;
[0030] Figure 11 This is one of the schematic diagrams of the folding and forming process of the shock-absorbing card provided by this utility model;
[0031] Figure 12 This is the second schematic diagram of the folding and forming process of the shock-absorbing card provided by this utility model;
[0032] Figure 13 This is a structural schematic diagram of the shock-absorbing card provided by this utility model;
[0033] Figure 14 This is an unfolded schematic diagram of the accessory box provided by this utility model;
[0034] Figure 15 This is a schematic diagram of the folding and forming process of the accessory box provided by this utility model;
[0035] Figure 16 This is a structural schematic diagram of the accessory box provided by this utility model;
[0036] Figure 17 This is an unfolded schematic diagram of the handle box provided by this utility model;
[0037] Figure 18 This is a schematic diagram of the folding and forming process of the handle box provided by this utility model;
[0038] Figure 19 This is a structural schematic diagram of the handle box provided by this utility model;
[0039] Figure 20 This is a schematic diagram of the unfolded sixth fold plate provided by this utility model;
[0040] Figure 21 This is a structural schematic diagram of the box provided by this utility model.
[0041] In the picture:
[0042] 100. Floor scrubber; 110. Machine body; 120. Mop; 130. Handle; 140. Main unit; 200. Accessories;
[0043] 1. Bottom tray; 11. First buffer structure; 12. Second buffer structure; 13. First base plate; 131. First tongue; 132. Second tongue; 14. First folding plate; 141. First plate; 142. Second plate; 143. Third plate; 144. Fourth plate; 145. First socket; 15. Second folding plate; 151. Fifth plate; 152. Sixth plate; 153. Seventh plate; 154. Eighth plate; 155. Second socket;
[0044] 2. Mop enclosure; 21. Third buffer structure; 22. Fourth buffer structure; 23. Fifth buffer structure; 24. Sixth buffer structure; 25. Second base plate; 251. Third tongue; 26. Third folding plate; 261. Ninth plate; 2611. Fourth tongue; 262. Tenth plate; 263. Eleventh plate; 264. Twelfth plate; 265. Thirteenth plate; 2651. Fourth insertion port; 266. First stop tongue; 27. Fourth folding plate; 271. Fourteenth plate; 272. Fifteenth plate; 273. Sixteenth plate; 274. Seventeenth plate; 28. Fifth folding plate; 281. Eighteenth plate; 282. Nineteenth plate; 283. Twentieth plate; 284. Twenty-first plate; 285. Second stop tongue; 29. Sixth folding plate; 30. Third insertion port;
[0045] 3. Handle box; 31. Fifth base plate; 32. Ninth folding plate; 321. Thirty-third plate; 322. Thirty-fourth plate; 33. Tenth folding plate; 331. Thirty-fifth plate; 332. Thirty-sixth plate; 34. Eleventh folding plate; 35. Twelfth folding plate; 351. Thirty-seventh plate; 352. Thirty-eighth plate; 36. Protrusion; 37. Sixth insertion port; 38. Sixth insertion tongue;
[0046] 4. Accessory box; 41. Removal port; 42. Baffle; 43. Twenty-eighth plate; 431. Fifth insertion port; 44. Twenty-ninth plate; 45. Thirtieth plate; 46. Thirty-first plate; 47. Thirty-second plate; 471. Fifth insertion tongue; 48. Observation port;
[0047] 5. Box body; 51. Thirty-ninth panel; 52. Fortieth panel; 53. Forty-first panel; 54. Forty-second panel; 55. Adhesive part;
[0048] 6. Shock-absorbing clip; 61. First elastic buffer structure; 62. Second elastic buffer structure; 63. Seventh folding plate; 631. Twenty-second plate; 632. Twenty-third plate; 633. Twenty-fourth plate; 634. Twenty-fifth plate; 635. Twenty-sixth plate; 636. Twenty-seventh plate; 64. Third base plate; 65. Eighth folding plate; 66. Fitting position; 67. Locking position; 68. Pressure relief port. Detailed Implementation
[0049] 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.
[0050] 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.
[0051] 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.
[0052] In the description of this embodiment, the terms "upper," "lower," "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.
[0053] like Figures 1-3As shown, this embodiment provides a floor scrubber packaging structure for packaging a floor scrubber 100 and its accessories 200. The floor scrubber 100 includes a body 110, a mop 120, a handle 130, and a main unit 140. The floor scrubber packaging structure is made of folded paper material and includes a box 5, a bottom tray 1, a mop enclosure 2, an accessory box 4, and a handle box 3. The bottom tray 1 has a first accommodating space for accommodating the body 110. When the body 110 is located in the first accommodating space, the bottom tray 1 can limit and protect the body 110. The mop enclosure 2 has a second accommodating space for accommodating the mop 120. When the mop 120 is located in the second accommodating space, the mop enclosure 2 can limit and protect the mop 120. The accessory box 4 is used to accommodate the accessories 200. The handle box 3 is used to accommodate the handle 130.
[0054] In this embodiment, the bottom tray 1, handle box 3, and accessory box 4 are stacked sequentially inside the housing 5. The mop enclosure 2 is located at one end of the housing 5 along its length and abuts against the bottom tray 1 and handle box 3, ensuring stable installation and a compact structure within the housing 5, thus achieving better limiting and protection effects. The mop enclosure 2 and accessory box 4 form a third accommodating space for housing the main unit 140. When the main unit 140 is housed in this third accommodating space, the accessory box 4 and mop enclosure 2 can limit and protect the main unit 140, eliminating the need for separate packaging of the main unit 140. While ensuring the effectiveness and aesthetics of the packaging, this design minimizes the use of packaging materials, reducing the cost and weight of the packaging structure. The floor scrubber packaging structure of this embodiment has a reasonable layout and compact structure, reducing the volume of the packaging structure and optimizing the logistics transportation space. Furthermore, the floor scrubber packaging structure is made of folded paper material, making it easy for users to disassemble, and it is energy-saving and environmentally friendly, which helps improve user experience and enhance brand image.
[0055] Furthermore, such as Figure 6 As shown, the bottom tray 1 includes a first base plate 13, a first buffer structure 11, and a second buffer structure 12. The first buffer structure 11 and the second buffer structure 12 are respectively connected to the two side lines along the length direction of the first base plate 13 and are erected on the first base plate 13. The first buffer structure 11 and the second buffer structure 12 are spaced apart to form a first accommodating space. When the body 110 is accommodated in the first accommodating space, the first buffer structure 11 and the second buffer structure 12 can absorb the impact and vibration received by the body 110 along the width direction, providing buffer protection for the body 110 and preventing damage to the body 110.
[0056] The height of the first buffer structure 11 is higher than that of the second buffer structure 12, forming a stepped space for placing the handle box 3. This provides an installation position for the handle box 3, resulting in a reasonable and compact layout between the handle box 3 and the bottom tray 1, which helps reduce the volume of the floor scrubber's packaging structure. Figure 2 As shown, when the handle box 3 is placed in the stepped space, the handle box 3 covers the first accommodating space, which limits the vertical displacement of the body 110 and can absorb the impact and vibration of the body 110 along the height direction. The top surface of the handle box 3 and the top surface of the first buffer structure 11 together form a bearing plane for supporting the accessory box 4 and the main unit 140, so that the bottom tray 1, handle box 3, accessory box 4 and main unit 140 can fit tightly to each other and fully fill the space inside the box 5, further preventing the contents of the box 5 from shaking and improving the protection effect.
[0057] like Figure 4 and Figure 5 The diagram shows the folding and forming process of the bottom tray 1. Specifically, as shown... Figure 4 The diagram shows the unfolded bottom tray 1. The bottom tray 1 is formed by folding a first folding plate. The first folding plate includes a first folding plate 14, a first base plate 13, and a second folding plate 15 connected in sequence, with indentation lines at the connection points. The first folding plate 14 can be folded to form a first buffer structure 11, and the second folding plate 15 can be folded to form a second buffer structure 12. Both the first buffer structure 11 and the second buffer structure 12 can be fixedly connected to the first base plate 13 to form a first accommodating space for accommodating the body 110. The first buffer structure 11 and the second buffer structure 12 are used to buffer both sides of the body 110 along the width direction, preventing the body 110 from directly contacting the side wall of the housing 5. The first buffer structure 11 and the second buffer structure 12 are both fixedly connected to the first base plate 13, which facilitates the forming and installation of the bottom tray 1 and can improve the structural strength of the bottom tray 1, thereby improving the buffering effect.
[0058] like Figure 4 As shown, the first folding plate 14 includes a first plate 141, a second plate 142, a third plate 143, and a fourth plate 144 connected in sequence. The fourth plate 144 is connected to one side of the first base plate 13. Indentation lines are provided at the joints of each plate. The first plate 141, the second plate 142, the third plate 143, and the fourth plate 144 are folded along the indentation lines to form the first buffer structure 11. After the first buffer structure 11 is folded into shape, the first plate 141 abuts against the first base plate 13 to enhance the structural strength of the first buffer structure 11, thereby enhancing its support and buffering effect on the body 110.
[0059] Furthermore, a first insertion port 145 is provided on the first folding plate 14, and a first insertion tongue 131 is correspondingly provided on the first base plate 13. When the first buffer structure 11 is folded into shape, the first insertion tongue 131 is inserted into the first insertion port 145 to lock the first buffer structure 11 and the base plate, thereby enhancing the structural strength and buffering effect of the first buffer structure 11.
[0060] Similarly, the second folding plate 15 includes a fifth plate 151, a sixth plate 152, a seventh plate 153, and an eighth plate 154 connected in sequence. The fifth plate 151 is connected to the other side of the base plate. Indentation lines are provided at the joints of the plates. The fifth plate 151, the sixth plate 152, the seventh plate 153, and the eighth plate 154 are folded along the indentation lines to form the second buffer structure 12. After the second buffer structure 12 is folded, the first plate 141 abuts against the base plate. A second insertion slot 155 is provided on the second folding plate 15, and a corresponding second insertion tongue 132 is provided on the base plate. After the second buffer structure 12 is folded, the second insertion tongue 132 is inserted into the second insertion slot 155 to lock the second buffer structure 12 and the base plate. Further details are omitted here. The widths of the second plate 142 and the fourth plate 144 are greater than the widths of the fifth plate 151 and the seventh plate 153, so that the first buffer structure 11 is higher than the second buffer structure 12.
[0061] like Figure 1 As shown, the mop 120 of the floor scrubber 100 is connected to the body 110 at an angle, and its irregular shape makes it difficult to package. To solve this problem, as... Figure 2 Combination Figure 6 As shown, the mop enclosure 2 is erected inside the box 5. The second accommodating space is connected to the first accommodating space at an angle, and can be adapted to the mop 120 and the body 110 connected at an angle, thereby realizing the packaging of the mop 120 and the body 110. When the body 110 and the mop 120 are respectively accommodated in the first accommodating space and the second accommodating space, the mop 120 can abut against the side of the bottom tray 1 to limit the movement space of the mop 120 along the length direction of the bottom tray 1, further preventing the mop 120 and the body 110 from shaking, improving the safety of protection, and the layout is reasonable and the structure is compact.
[0062] like Figure 1As shown, the top of the mop enclosure 2 can be folded upwards to form an opening for the mop 120 to enter and exit the second accommodating space. During packaging, the bottom tray 1 and the mop enclosure 2 are first installed into the box 5, and the top of the mop enclosure 2 is folded upwards so that the mop 120 can enter the second accommodating space through the opening. After completion, the top of the mop enclosure 2 is folded towards the second accommodating space to close the opening, thus limiting and protecting the mop 120. When the user unpacks the box, the top of the mop enclosure 2 is folded upwards, allowing a direct view of the shape of the mop 120, improving the display effect, strengthening the linkage of the various paper cards inside the box 5, facilitating the removal of the mop 120 and the machine body 110, improving the user's unpacking experience, and enhancing the brand image.
[0063] Specifically, such as Figures 7-9 As shown, the mop enclosure 2 includes a second base plate 25, a third buffer structure 21, a fourth buffer structure 22, a fifth buffer structure 23, and a sixth buffer structure 24. The third buffer structure 21, the fourth buffer structure 22, the fifth buffer structure 23, and the sixth buffer structure 24 are respectively connected to one side of the second base plate 25 and are erected on the second base plate 25 to enclose and form a second accommodating space. Among them, the fourth buffer structure 22, the fifth buffer structure 23, and the sixth buffer structure 24 are all fixedly connected to the second base plate 25 to ensure the stability of the mop enclosure 2 structure. The third buffer structure 21 is connected to the top edge of the second base plate 25 and can be folded upward to form an opening. Its structure is simple, easy to operate, and reasonably designed, improving the user's opening experience while taking into account economic benefits.
[0064] The ground-mounted barrier 2 is formed by folding a second folding plate, which includes a second base plate 25, a third folding plate 26, a fourth folding plate 27, a fifth folding plate 28, and a sixth folding plate 29. The third folding plate 26 is connected to the top edge of the base plate, the fourth folding plate 27 is connected to the bottom edge of the base plate, and the fifth folding plate 28 and the sixth folding plate 29 are respectively connected to one side edge of the base plate. The third folding plate 26 can be folded to form a third buffer structure 21, the fourth folding plate 27 can be folded to form a fourth buffer structure 22, the fifth folding plate 28 can be folded to form a fifth buffer structure 23, and the sixth folding plate 29 can be folded to form a sixth buffer structure 24.
[0065] Furthermore, the fourth fold plate 27, the fifth fold plate 28, and the sixth fold plate 29 are provided with third insertion slots 30, and the second base plate 25 is provided with corresponding third insertion tongues 251. After the ground trailer guard 2 is folded into shape, the third insertion tongues 251 are inserted into the corresponding third insertion slots 30 to lock the fourth buffer structure 22, the fifth buffer structure 23, and the sixth buffer structure 24 to the second base plate 25 respectively, thereby enhancing the structural strength and buffering effect of the ground trailer guard 2.
[0066] like Figure 7As shown, the third folding plate 26 includes a ninth plate 261, a tenth plate 262, an eleventh plate 263, a twelfth plate 264, and a thirteenth plate 265, which are sequentially connected to the top side of the second base plate 25. Each plate has an indentation line at its connection point. Folding along the indentation lines forms the third buffer structure 21. After the third buffer structure 21 is folded, the thirteenth plate 265 abuts against the ninth plate 261. The thirteenth plate 265 has a fourth insertion slot 2651, and the ninth plate 261 has a corresponding fourth insertion tongue 2611. The fourth insertion tongue 2611 can be inserted into the corresponding fourth insertion slot 2651 to fix the third buffer structure 21 in place. This allows the third buffer structure 21 to have good structural stability without needing to be locked to the second base plate 25, and enables the third buffer structure 21 to fold along the top side of the second top plate.
[0067] Furthermore, a first stop tongue 266 is provided at the connection between the tenth plate 262 and the eleventh plate 263. When the third buffer structure 21 is folded and formed, the first stop tongue 266 is coplanar with the tenth plate 262 and protrudes into the second accommodating space. When the mop 120 is accommodated in the second accommodating space, the first stop tongue 266 can abut against the mop 120, play a supporting role for the third buffer structure 21, assist in the formation of the mop cover 2, and can also serve as a force application handle for folding the third buffer structure 21.
[0068] The fourth folding plate 27 includes fourteenth plates 271, fifteenth plates 272, sixteenth plates 273, and seventeenth plates 274, which are sequentially connected to the bottom side of the second base plate 25. Indentation lines are provided at the joints of each plate, and folding along these lines forms the fourth buffer structure 22. After the fourth buffer structure 22 is folded into shape, the seventeenth plate 274 abuts against the second base plate 25 to enhance the structural strength of the fourth buffer structure 22.
[0069] Both the fifth fold plate 28 and the sixth fold plate 29 include the eighteenth plate 281, the nineteenth plate 282, the twentieth plate 283, and the twenty-first plate 284, which are sequentially connected to the side of the second base plate 25. Indentation lines are provided at the joints of each plate. Folding along these lines forms the fifth buffer structure 23 and the sixth buffer structure 24. A second stop tongue 285 protrudes from the joint between the nineteenth plate 282 and the twentieth plate 283. When the fifth buffer structure 23 and the sixth buffer structure 24 are folded, the second stop tongue 285 is coplanar with the tenth plate 262 and can abut against the fourth buffer structure 22, providing mutual support and improving the buffering effect of the floor-mounted retainer 2.
[0070] In this embodiment, a touch screen is provided at one end of the body 110. The touch screen is the most fragile and delicate part of the floor scrubber 100, and it is easily broken by impact. Therefore, if... Figure 1 and Figure 2As shown, the floor scrubber packaging structure also includes a shock-absorbing card 6, which is placed between the touch screen and the housing 5 to absorb and disperse external impact forces and reduce vibration and collision of the machine body 110 during transportation, protecting the touch screen from damage.
[0071] Furthermore, the shock-absorbing card 6 is installed in the first accommodating space. It occupies little space and does not affect the layout of the bottom tray 1, the floor tray 2, the handle box 3 and the box body 5, which helps to make the whole packaging structure compact.
[0072] like Figure 13 As shown, the two ends of the shock absorber 6 abut against the first buffer structure 11 and the second buffer structure 12 respectively. The first buffer structure 11 and the second buffer structure 12 support and limit the shock absorber 6, so that the shock absorber 6 is always between the touch screen and the housing 5, and can be compressed or extended along the length direction of the first accommodating space, which is beneficial to improving the protection effect of the shock absorber 6 on the touch screen.
[0073] The shock absorber 6 includes two connected first elastic buffer structures 61, and a second elastic buffer structure 62 is formed between the two first elastic buffer structures 61. Both the first elastic buffer structure 61 and the second elastic buffer structure 62 are compressible along the length of the first accommodating space, forming an integrated three-spring folding structure, which has excellent effect in absorbing impact and vibration.
[0074] like Figures 10-13 As shown, the shock absorber 6 is formed by folding a third folding plate. The third folding plate includes a seventh folding plate 63, a third base plate 64, and an eighth folding plate 65 connected in sequence. The seventh folding plate 63 and the eighth folding plate 65 can be folded to form a first elastic buffer structure 61. Two first elastic buffer structures 61 are connected to form a second elastic buffer structure 62.
[0075] Specifically, both the seventh fold plate 63 and the eighth fold plate 65 include a 22nd plate 631, a 23rd plate 632, a 24th plate 633, a 25th plate 634, a 26th plate 635, and a 27th plate 636 that are sequentially connected to the side of the third base plate 64. Indentation lines are provided at the joints of each plate. The 22nd plate 631, the 24th plate 633, the 25th plate 634, and the 27th plate 636 are inclined towards the third base plate 64, while the 23rd plate 632 and the 26th plate 635 are inclined away from the third base plate 64. When the first elastic buffer structure 61 is folded and formed, the 22nd plate 631 and the 23rd plate 632 form a first side portion inclined inwards towards the first elastic buffer structure 61, and the 25th plate 634 and the 26th plate 635 form a second side portion inclined inwards towards the first elastic buffer structure 61 and opposite to the first side portion. The first side portion and the second side portion form a spring-like structure, giving the first elastic buffer structure 61 elastic buffering capability.
[0076] One of the first elastic buffer structures 61 has a mating part 66, and the other first elastic buffer structure 61 has a corresponding locking part 67. The locking part 67 can be inserted into the mating part 66 to connect the two first elastic buffer structures 61. The second sides of the two first buffer structures 11 are opposite each other to form a second elastic buffer structure 62. The first elastic buffer structure 61 and the second elastic buffer structure 62 are linked to enhance the ability to buffer and disperse impact forces, thereby achieving effective protection for the touch screen.
[0077] When the first elastic buffer structure 61 is folded and formed, the twenty-seventh plate 636 abuts against the third base plate 64 to enhance the structural strength and buffering effect of the first elastic buffer structure 61.
[0078] In addition, since the cardboard has a certain thickness, it is easy to be squeezed and deformed when the folding angle is large. Therefore, the connection between the third base plate 64 and the second twelfth plate 631 is processed with a pressure relief port 68 to facilitate the folding and forming of the shock-absorbing card 6.
[0079] like Figure 16 As shown, the accessory box 4 has a pick-up and put-out opening 41 on both sides along its width direction. The pick-up and put-out opening 41 is equipped with a foldable baffle 42 for limiting the accessory 200.
[0080] Specifically, such as Figures 14-16 As shown, the accessory box 4 is formed by folding a fourth folding plate, which includes a 28th plate 43, a 29th plate 44, a 30th plate 45, a 31st plate 46, and a 32nd plate 47 connected in sequence. The joints of each plate are provided with crease lines. Folding along the crease lines can form an accessory box 4 with access openings 41 on both sides along the width direction. The 32nd plate 47 is connected to baffles 42 on both sides. The baffles 42 are folded along the crease lines to block the lower part of the access openings 41, thereby limiting the position of the accessory 200 in the accessory box 4. Its structure is simple, easy to access, and helps to save materials and reduce costs.
[0081] In addition, an observation port 48 is provided on the thirtieth plate 45. Users can see the accessory 200 through the observation port 48 when they open the box 5, which solves the problem that users may easily overlook the accessory 200 when unpacking and lose it.
[0082] Furthermore, the twenty-eighth plate 43 is provided with a fifth socket 431, and the thirty-second plate 47 is provided with a corresponding fifth tongue 471. When the accessory box 4 is folded into shape, the twenty-eighth plate 43 and the thirty-second plate 47 abut against each other, and the fifth tongue 471 is inserted into the fifth socket 431 to achieve the fixed shape of the accessory box 4.
[0083] like Figures 17-19As shown, the handle box 3 is formed by folding the fifth folding plate. The fifth folding plate includes the fifth base plate 31, the ninth folding plate 32, the tenth folding plate 33, the eleventh folding plate 34, and the twelfth folding plate 35. The ninth folding plate 32, the tenth folding plate 33, the eleventh folding plate 34, and the twelfth folding plate 35 are connected to one side of the fifth base plate 31. The ninth folding plate 32 includes the thirty-third plate 321 and the thirty-fourth plate 322, which are connected to the fifth base plate 31 in sequence. The tenth folding plate 33 is opposite to the ninth folding plate 32 and includes the thirty-fifth plate 331 and the thirty-sixth plate 332, which are connected to the fifth base plate 31 in sequence. The eleventh folding plate 34 is opposite to the twelfth folding plate 35. The eleventh folding plate 34 and the twelfth folding plate 35 each include the thirty-seventh plate 351 and the thirty-eighth plate 352, which are connected to the base plate in sequence. Each plate has a crease line at the joint. Folding along the crease line can form a box body for packaging the handle 130. The connection between the thirty-sixth plate 332 and the thirty-fifth plate 331 is provided with a sixth insertion slot 37, and the thirty-fourth plate 322 is provided with a corresponding sixth insertion tongue 38. When the handle box 3 is folded into shape, the sixth insertion tongue 38 is inserted into the sixth insertion slot 37 to fix the handle box 3 into shape. The end of the thirty-sixth plate 332 away from the thirty-fifth plate 331 is also provided with a protrusion 36, which can serve as a force point for folding the thirty-sixth plate 332 upward to open the handle box 3, thereby improving the user's opening experience.
[0084] The handle box 3 is sandwiched between the bottom tray 1 and the accessory box 4. The first buffer structure 11, the second buffer structure 12 and the accessory box 4 provide buffer protection for the handle 130. Compared with other parts of the floor scrubber 100, the handle 130 is a part that is not easily damaged. Therefore, the above arrangement makes the handle box 3 simple in structure and easy to process, which helps to reduce the volume and cost of the floor scrubber packaging structure.
[0085] like Figure 20 and Figure 21 As shown, the box body 5 is formed by folding and bonding two sixth-fold panels. Each sixth-fold panel includes a connected thirty-ninth panel 51 and a fortieth panel 52. Forty-first panels 53 are connected to both sides of the thirty-ninth panel 51, and forty-second panels 54 are connected to both sides of the fortieth panel 52. An adhesive portion 55 is provided at the end of the thirty-ninth panel 51 furthest from the fortieth panel 52. The two sixth-fold panels are arranged symmetrically opposite each other. The adhesive portion 55 of one sixth-fold panel is used to bond with the fortieth panel 52 of the other sixth-fold panel to form the side wall of the box body 5. Indentation lines are provided at the joints of each panel, and the box body 5 is formed by folding along these indentation lines. The box body 5 is formed by bonding two sixth-fold panels. The shape of the sixth-fold panels is approximately rectangular, which facilitates processing and reduces cardboard waste, thus helping to lower production costs.
[0086] 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 floor cleaning machine packaging structure for packaging a floor cleaning machine (100) and an accessory (200) of the floor cleaning machine (100), the floor cleaning machine (100) comprising a machine body (110), a floor mop (120), a handle (130) and a main machine (140), characterized in that, The floor cleaning machine packaging structure is folded by paper material, including a bottom supporting card (1), a mop surrounding card (2), a handle box (3), an accessory box (4) and a box body (5), the bottom supporting card (1) has a first accommodating space for accommodating the machine body (110); the mop surrounding card (2) has a second accommodating space for accommodating the mop (120); the handle box (3) is used for accommodating the handle (130); the accessory box (4) is used for accommodating the accessory (200); Wherein, the bottom supporting card (1), the handle box (3) and the accessory box (4) are sequentially stacked in the box body (5), the mop surrounding card (2) is arranged at one end of the box body (5) along the length direction, and can abut against the bottom supporting card (1) and the handle box (3), the third accommodating space for accommodating the main machine (140) is formed between the mop surrounding card (2) and the accessory box (4).
2. The floor washer packaging structure of claim 1, wherein The bottom supporting card (1) includes a first bottom plate (13), a first buffer structure (11) and a second buffer structure (12), the first buffer structure (11) and the second buffer structure (12) are respectively connected with two side lines of the first bottom plate (13) along the length direction and are vertically arranged on the first bottom plate (13), and the first buffer structure (11) and the second buffer structure (12) are oppositely spaced to form the first accommodating space.
3. The floor washer packaging structure of claim 2, wherein, The height of the first buffer structure (11) is higher than the height of the second buffer structure (12), forming a step space for placing the handle box (3); when the handle box (3) is placed in the step space, the handle box (3) is arranged above the first accommodating space, and the top surface of the handle box (3) and the top surface of the first buffer structure (11) jointly form a bearing plane for bearing the accessory box (4) and the main machine (140).
4. The walk behind cleaner packaging structure of claim 1, wherein the mop (120) is connected to the cleaner body (110) at an angle. The mop surrounding card (2) is vertically arranged in the box body (5), and the second accommodating space is communicated with the first accommodating space at an angle.
5. The floor washer packaging structure of claim 4, wherein, The top of the mop surrounding card (2) can be folded upward to form an opening for the mop (120) to enter and exit the second accommodating space.
6. The floor washer packaging structure of claim 5, wherein, The mop surrounding card (2) includes a second bottom plate (25), a third buffer structure (21), a fourth buffer structure (22), a fifth buffer structure (23) and a sixth buffer structure (24), the third buffer structure (21), the fourth buffer structure (22), the fifth buffer structure (23) and the sixth buffer structure (24) are respectively connected with one edge line of the second bottom plate (25) and are vertically arranged on the second bottom plate (25) to form the second accommodating space; Wherein, the fourth buffer structure (22), the fifth buffer structure (23) and the sixth buffer structure (24) are fixedly connected with the second bottom plate (25), and the third buffer structure (21) is connected with the top edge line of the second bottom plate (25) and can be folded upward to form the opening.
7. The package structure of the scrubber according to any one of claims 1-6, wherein one end of the machine body (110) is provided with a touch screen. The floor cleaning machine packaging structure further comprises a shock absorption card (6) arranged between the touch screen and the box (5).
8. The floor washer packaging structure of claim 7, wherein, The shock absorption card (6) is arranged in the first accommodating space.
9. The floor washer packaging structure of claim 7, wherein, The shock absorption card (6) comprises two first elastic buffering structures (61) connected with each other, a second elastic buffering structure (62) is formed between the two first elastic buffering structures (61), and the first elastic buffering structure (61) and the second elastic buffering structure (62) are compressible along the length direction of the first accommodating space.
10. The floor washer packaging structure of claim 9, wherein, The shock absorption card (6) is folded by a third folding plate, the third folding plate comprises a seventh folding plate (63), a third bottom plate (64) and an eighth folding plate (65) connected in sequence, the seventh folding plate (63) and the eighth folding plate (65) can be folded to form the first elastic buffering structure (61), and the two first elastic buffering structures (61) are connected to form the second elastic buffering structure (62).