Anti-impact packaging box

By designing multiple shock-absorbing cavities within the packaging box, the problem of conventional packaging boxes being unable to protect fragile inner packaging from damage during transportation is solved, achieving effective protection against impacts.

CN223751340UActive Publication Date: 2026-01-02SHANGHAI NINE STARS PRINTING PACKAGING CO LTD
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Patent Information

Application Number
CN202520367904.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-01-02
Estimated Expiration
2035-03-04

AI Technical Summary

Technical Problem

Conventional packaging boxes cannot provide adequate shock protection, making fragile inner packaging easily damaged in rear-end collisions during transportation.

Method used

Design an impact-resistant packaging box that forms multiple shock-absorbing cavities through a horizontally movable panel and folding assembly to enhance the box's impact resistance. The box includes a first shock-absorbing cavity, a second shock-absorbing cavity, a third shock-absorbing cavity, and a fourth shock-absorbing cavity, which are formed by the first folding assembly, the second folding assembly, the third folding assembly, and the fourth folding assembly, respectively.

Benefits of technology

It significantly improves the packaging box's resistance to side impacts, prevents fragile inner packaging from being damaged in rear-end collisions, and enhances protection during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-impact packaging box which comprises a first panel, a second panel, a third panel and a fourth panel which are sequentially and movably connected in the transverse direction, and a first rocking wing and a second rocking wing which are movably connected are arranged on the upper side and the lower side of the first panel respectively. A first folding assembly and a second folding assembly which are movably connected are arranged on the upper side and the lower side of the second panel respectively, and a third swing wing and a fourth swing wing which are movably connected are arranged on the upper side and the lower side of the third panel respectively. The second folding assembly and the second panel are combined to form a second shockproof cavity, the first shockproof cavity, the first panel, the second shockproof cavity and the third panel define a box body structure with an opening in the top, and the fourth panel forms a box cover. According to the anti-impact packaging box, due to the anti-shock effect of the first anti-shock cavity and the second anti-shock cavity, the capacity of the anti-impact packaging box for resisting impact on the side edges is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to packing box technical field especially, relate to a kind of anti-impact packing box. BACKGROUND

[0002] Some high-grade cosmetics and liquid medicine, usually with fragile material is packed, for example, glass or porcelain, when the conventional packing box is used to pack these inner package, because conventional packing box cannot provide good shock resistance, when rear-end collision occurs during transportation, the impact generated by rear-end collision is easy to cause the damage of inner package. SUMMARY

[0003] Therefore, it is necessary to provide an anti-impact packing box to solve the above problems.

[0004] An anti-impact packing box, comprising a first panel, a second panel, a third panel and a fourth panel which are sequentially connected in the transverse direction, the upper and lower sides of the first panel are respectively provided with a first swing wing and a second swing wing which are connected in the transverse direction, the upper and lower sides of the second panel are respectively provided with a first folding assembly and a second folding assembly which are connected in the transverse direction, the upper and lower sides of the third panel are respectively provided with a third swing wing and a fourth swing wing which are connected in the transverse direction, after the anti-impact packing box is formed, the first folding assembly and the second panel combine to form a first shock absorption cavity, the second folding assembly and the second panel combine to form a second shock absorption cavity, the first shock absorption cavity, the first panel, the second shock absorption cavity and the third panel are sequentially arranged on the four sides of the second panel, and a box body structure with an open top is formed by the combination, and the fourth panel forms a box cover.

[0005] In one embodiment, the first folding assembly comprises a first folding plate, a second folding plate, a third folding plate and a fourth folding plate which are sequentially connected in the transverse direction from bottom to top, and the fourth folding plate is fixedly connected with the second panel.

[0006] In one embodiment, the second folding assembly comprises a fifth folding plate, a sixth folding plate, a seventh folding plate and an eighth folding plate which are sequentially connected in the transverse direction from top to bottom, and the eighth folding plate is fixedly connected with the second panel.

[0007] In one embodiment, the first panel is provided with a third folding assembly which is connected in the transverse direction on the side away from the second panel.

[0008] In one embodiment, the third folding assembly comprises a ninth folding plate, a tenth folding plate and an eleventh folding plate which are sequentially connected in the transverse direction, and the eleventh folding plate is fixedly connected with the second panel.

[0009] In one embodiment, the fourth panel has a fourth folding assembly that is movably connected to the side of the third panel away from the third panel.

[0010] In one embodiment, the fourth folding assembly includes a twelfth folding plate, a thirteenth folding plate, a fourteenth folding plate, and a fifteenth folding plate that are laterally and sequentially movably connected, wherein the fifteenth folding plate is fixedly connected to the second panel.

[0011] In one embodiment, the twelfth fold panel is the same size as the fourth panel.

[0012] In one embodiment, a fastener is provided at the connection between the first panel and the ninth folding plate, and a lock is provided on the twelfth folding plate.

[0013] In one embodiment, the locking element and the fastener can be combined to form a locking structure.

[0014] After molding, the aforementioned shock-resistant packaging box has a first folding assembly and a second panel forming a first shock-absorbing cavity, and a second folding assembly and a second panel forming a second shock-absorbing cavity. The first shock-absorbing cavity, the first panel, the second shock-absorbing cavity, and the third panel are sequentially arranged on the four sides of the second panel, forming a box structure with an open top. The fourth panel serves as the box lid. Due to the shock-absorbing effect of the first and second shock-absorbing cavities, the shock-resistant packaging box's ability to withstand side impacts is significantly improved, thereby preventing damage to the inner packaging made of fragile materials in rear-end collisions. Attached Figure Description

[0015] Figure 1 A schematic diagram of the unfolded impact-resistant packaging box according to one embodiment;

[0016] Figure 2 For example Figure 1 The diagram shown illustrates the impact-resistant packaging box in a semi-finished state.

[0017] Figure 3 For example Figure 2 The diagram shown illustrates the impact-resistant packaging box in its finished product state.

[0018] Figure 4 A schematic diagram showing the unfolded impact-resistant packaging box according to another embodiment;

[0019] Figure 5 For example Figure 4 The diagram shown illustrates the impact-resistant packaging box in a semi-finished state.

[0020] Figure 6 For example Figure 5 The diagram shown illustrates the impact-resistant packaging box in its finished product state. Detailed Implementation

[0021] In order to make the above objects, features and advantages of the present application more apparent, specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present application. It will be apparent, however, to one skilled in the art that the present application can be practiced without some or all of these details under other conditions and / or methods. Therefore, the specific details disclosed below are not intended to limit the scope of the present application, but merely to illustrate a particular way of making and using the present application.

[0022] It should be noted that when an element is referred to as being "on" another element, it can be directly on the other element or intervening elements can also be present. In addition, it should be noted that when an element is referred to as being "connected", "coupled", or "communicated" to another element, it can be directly connected, coupled, or communicated to the other element or intervening elements can also be present. The terms "above", "below", "upper", "lower", "vertical", "horizontal", "left", "right", and the like as used herein are used for explanation only and not intended to be limiting.

[0023] The anti-impact packaging box will be described in further detail below mainly with reference to the accompanying drawings and specific embodiments.

[0024] Please refer to Figures 1 to 3 , the anti-impact packaging box of an embodiment includes a first panel 10, a second panel 20, a third panel 30 and a fourth panel 40 which are sequentially and movably connected in the horizontal direction. The upper and lower sides of the first panel 10 are respectively provided with a first swing wing 11 and a second swing wing 12 which are movably connected. The upper and lower sides of the second panel 20 are respectively provided with a first folding assembly 50 and a second folding assembly 60 which are movably connected. The upper and lower sides of the third panel 30 are respectively provided with a third swing wing 31 and a fourth swing wing 32 which are movably connected.

[0025] The first panel 10, please refer to Figure 3 , after being formed, the first panel 10 is used to serve as the front face of the anti-impact packaging box. The upper and lower sides of the first panel 10 are respectively provided with a first swing wing 11 and a second swing wing 12 which are movably connected.

[0026] The second panel 20 is movably connected with the first panel 10 in the horizontal direction, please refer to Figure 3 , after being formed, the second panel 20 is used to serve as the bottom face of the anti-impact packaging box. The upper and lower sides of the second panel 20 are respectively provided with a first folding assembly 50 and a second folding assembly 60 which are movably connected.

[0027] The first folding assembly 50 is movably connected with the upper side of the second panel 20 and is used to form a first shockproof cavity.

[0028] Specifically, the first folding assembly 50 comprises a first folding plate 51, a second folding plate 52, a third folding plate 53 and a fourth folding plate 54 connected in sequence from bottom to top, the first folding plate 51 has a width in the longitudinal direction equal to the transverse width of the first panel 10, so that the four edges of the box body have the same height, the third folding plate 53 has the same size as the first folding plate 51, so that the first shockproof cavity has a cuboid shape, the fourth folding plate 54 is fixedly connected with the second panel 20, so that the first folding plate 51, the second folding plate 52, the third folding plate 53, the fourth folding plate 54 and the second panel 20 jointly enclose the first shockproof cavity. As shown in Figure 3 , the first shockproof cavity can enhance the impact resistance of the box body on the right side.

[0029] The second folding assembly 60 is movably connected with the lower side of the second panel 20, and is used for forming a second shockproof cavity.

[0030] Specifically, the second folding assembly 60 comprises a fifth folding plate 61, a sixth folding plate 62, a seventh folding plate 63 and an eighth folding plate 64 connected in sequence from top to bottom, the fifth folding plate 61 has a width in the longitudinal direction equal to the transverse width of the first panel 10, so that the four edges of the box body have the same height, the seventh folding plate 63 has the same size as the fifth folding plate 61, so that the second shockproof cavity has a cuboid shape, the eighth folding plate 64 is fixedly connected with the second panel 20, so that the fifth folding plate 61, the sixth folding plate 62, the seventh folding plate 63, the eighth folding plate 64 and the second panel 20 jointly enclose the second shockproof cavity. As shown in Figure 3 , the second shockproof cavity can enhance the impact resistance of the box body on the left side.

[0031] The third panel 30 is movably connected with the side of the second panel 20 away from the first panel 10, and the third panel 30 has the same size as the first panel 10, so that the impact-resistant packaging box has a cuboid shape after molding. Please refer to Figure 3 , after molding, the third panel 30 is used as the back of the impact-resistant packaging box. The upper and lower sides of the third panel 30 are respectively provided with a third flap 31 and a fourth flap 32 movably connected.

[0032] After molding, the first flap 11 and the third flap 31 are respectively inserted into the two ends of the first shockproof cavity, and the second flap 12 and the fourth flap 32 are respectively inserted into the two ends of the second shockproof cavity, so that the first shockproof cavity, the first panel 10, the second shockproof cavity and the third panel 30 and the second panel 20 jointly enclose a box structure with an open top

[0033] The fourth panel 40 is movably connected with the side of the third panel 30 away from the second panel 20, and the fourth panel 40 has the same size as the second panel 20, please refer to Figure 3 , after molding, the fourth panel 40 is used as the cover of the impact-resistant packaging box, thereby closing the open top.

[0034] After the above anti-impact packaging box is formed, the first folding assembly 50 and the second panel 20 jointly form a first shockproof cavity, the second folding assembly 60 and the second panel 20 jointly form a second shockproof cavity, the first shockproof cavity, the first panel 10, the second shockproof cavity and the third panel 30 are sequentially arranged at the four edges of the second panel 20, and jointly form a box body structure with a top opening, and the fourth panel 40 serves as a box cover. Due to the shockproof effect of the first shockproof cavity and the second shockproof cavity, the anti-impact packaging box greatly improves the ability to resist impact from the side, thereby preventing the inner package made of fragile material from being damaged in a rear-end collision event.

[0035] In another embodiment, referring to Figures 4 to 6 The first panel 10 is further provided with a third folding assembly 70 movably connected on the side away from the second panel 20.

[0036] Specifically, the third folding assembly 70 includes a ninth folding plate 71, a tenth folding plate 72 and an eleventh folding plate 73 movably connected in sequence in the transverse direction, the transverse width of the tenth folding plate 72 is equal to the transverse width of the ninth folding plate 71, so that the four edges of the box body have the same height, and the eleventh folding plate 73 is fixedly connected with the second panel 20, so that the ninth folding plate 71, the tenth folding plate 72, the eleventh folding plate 73 and the second panel 20 jointly form a third shockproof cavity.

[0037] Preferably, a fastener 111 is arranged at the connection between the first panel 10 and the tenth folding plate 72, and the fastener 111 can form a lock structure in combination with a lock 811, thereby fixing the box cover.

[0038] In Figures 4 to 6 In the embodiment shown, the fourth panel 40 is further provided with a fourth folding assembly 80 movably connected on the side away from the third panel 30.

[0039] Specifically, the fourth folding assembly 80 includes a twelfth folding plate 81, a thirteenth folding plate 82, a fourteenth folding plate 83 and a fifteenth folding plate 84 movably connected in sequence in the transverse direction, the twelfth folding plate 81 is equal in size to the fourth panel 40, and after being formed, the twelfth folding plate 81 is reversely folded to jointly form a double-layered box cover with the fourth panel 40, thereby enhancing the structural strength of the anti-impact packaging box, the transverse width of the fourteenth folding plate 83 is equal to the transverse width of the third panel 30, so that the four edges of the box body have the same height, and the fifteenth folding plate 84 is fixedly connected with the second panel 20, so that the third panel 30, the thirteenth folding plate 82, the fourteenth folding plate 83 and the second panel 20 jointly form a fourth shockproof cavity.

[0040] Preferably, the twelfth folding plate 81 is provided with a locking piece 811 near one side of the fourth panel 40, and the locking piece 811 can be combined with the buckling piece 111 to form a locking structure, thereby fixing the cover and preventing the cover from being popped up under the stress of paper.

[0041] By providing the third folding assembly 70 and the fourth folding assembly 80, the four sides of the anti-impact packaging box body are sequentially provided with the first shock-absorbing cavity, the third shock-absorbing cavity, the second shock-absorbing cavity, and the fourth shock-absorbing cavity, and the four shock-absorbing cavities can greatly enhance the ability of the anti-impact packaging box to resist impact in different directions in a rear-end event.

[0042] The following is a specific embodiment.

[0043] Embodiment 1

[0044] Please refer to Figures 1 to 3 , the embodiment provides an anti-impact packaging box, which comprises a first panel 10, a second panel 20, a third panel 30, and a fourth panel 40 which are sequentially and movably connected in the transverse direction. The upper and lower sides of the first panel 10 are respectively provided with a first swing wing 11 and a second swing wing 12 which are movably connected. The upper and lower sides of the second panel 20 are respectively provided with a first folding assembly 50 and a second folding assembly 60 which are movably connected. The upper and lower sides of the third panel 30 are respectively provided with a third swing wing 31 and a fourth swing wing 32 which are movably connected.

[0045] In the embodiment, the first folding assembly 50 comprises a first folding plate 51, a second folding plate 52, a third folding plate 53, and a fourth folding plate 54 which are sequentially and movably connected from bottom to top, and the fourth folding plate 54 is fixedly connected with the second panel 20, so that the first folding plate 51, the second folding plate 52, the third folding plate 53, the fourth folding plate 54, and the second panel 20 form a first shock-absorbing cavity. The second folding assembly 60 comprises a fifth folding plate 61, a sixth folding plate 62, a seventh folding plate 63, and an eighth folding plate 64 which are sequentially and movably connected from top to bottom, and the eighth folding plate 64 is fixedly connected with the second panel 20, so that the fifth folding plate 61, the sixth folding plate 62, the seventh folding plate 63, the eighth folding plate 64, and the second panel 20 form a second shock-absorbing cavity.

[0046] The anti-impact packaging box described above, after being formed, the first folding assembly 50 and the second panel 20 form a first shock-absorbing cavity, the second folding assembly 60 and the second panel 20 form a second shock-absorbing cavity, the first shock-absorbing cavity, the first panel 10, the second shock-absorbing cavity, and the third panel 30 are sequentially arranged on the four edges of the second panel 20, and form a box body structure with an open top, and the fourth panel 40 serves as a cover. Due to the shock-absorbing effect of the first shock-absorbing cavity and the second shock-absorbing cavity, the ability of the anti-impact packaging box to resist impact on the side edges is greatly improved, thereby preventing the inner package made of fragile material from being damaged in a rear-end event.

[0047] Embodiment 2

[0048] Please refer to Figures 4 to 6 The anti-impact packaging box provided by the embodiment is similar to the anti-impact packaging box provided by the embodiment 1, and the difference is that (1) the third folding assembly 70 is movably connected to the side of the first panel 10 away from the second panel 20; and (2) the fourth folding assembly 80 is movably connected to the side of the fourth panel 40 away from the third panel 30.

[0049] In the embodiment, the third folding assembly 70 includes the ninth folding plate 71, the tenth folding plate 72 and the eleventh folding plate 73 which are movably connected in sequence in the transverse direction, and the eleventh folding plate 73 is fixedly connected to the second panel 20, so that the ninth folding plate 71, the tenth folding plate 72, the eleventh folding plate 73 and the second panel 20 form a third shock absorption cavity. The fourth folding assembly 80 includes the twelfth folding plate 81, the thirteenth folding plate 82, the fourteenth folding plate 83 and the fifteenth folding plate 84 which are movably connected in sequence in the transverse direction, the twelfth folding plate 81 is equal in size to the fourth panel 40, and the fifteenth folding plate 84 is fixedly connected to the second panel 20, so that the third panel 30, the thirteenth folding plate 82, the fourteenth folding plate 83 and the second panel 20 form a fourth shock absorption cavity.

[0050] The anti-impact packaging box described above, by setting the third folding assembly 70 and the fourth folding assembly 80, the first shock absorption cavity, the third shock absorption cavity, the second shock absorption cavity and the fourth shock absorption cavity are sequentially arranged around the box body of the anti-impact packaging box, and the four shock absorption cavities can greatly enhance the ability of the anti-impact packaging box to resist impact in different directions in the rear-end collision event.

[0051] The above-described embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are within the scope of protection of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.

Claims

1. A shock-resistant packaging box, characterized by, The first panel, the second panel, the third panel and the fourth panel are connected in sequence, the first panel is provided with a first swing wing and a second swing wing on the upper and lower sides, the second panel is provided with a first folding assembly and a second folding assembly on the upper and lower sides, the third panel is provided with a third swing wing and a fourth swing wing on the upper and lower sides, the first folding assembly and the second panel form a first shockproof cavity, the second folding assembly and the second panel form a second shockproof cavity, the first shockproof cavity, the first panel, the second shockproof cavity and the third panel are sequentially arranged on the four sides of the second panel to form a box body structure with an open top, and the fourth panel forms a box cover.

2. The impact-resistant packaging box of claim 1, wherein, The first folding assembly comprises a first folding plate, a second folding plate, a third folding plate and a fourth folding plate connected in sequence from bottom to top, and the fourth folding plate is fixedly connected with the second panel.

3. The impact-resistant packaging box of claim 2, wherein, The second folding assembly comprises a fifth folding plate, a sixth folding plate, a seventh folding plate and an eighth folding plate connected in sequence from top to bottom, and the eighth folding plate is fixedly connected with the second panel.

4. The impact-resistant packaging box of claim 3, wherein, The first panel is provided with a third folding assembly on the side away from the second panel.

5. The impact-resistant packaging box of claim 4, wherein, The third folding assembly comprises a ninth folding plate, a tenth folding plate and an eleventh folding plate connected in sequence, and the eleventh folding plate is fixedly connected with the second panel.

6. The impact-resistant packaging box of claim 5, wherein, The fourth panel is provided with a fourth folding assembly on the side away from the third panel.

7. The impact-resistant packaging box of claim 6, wherein, The fourth folding assembly comprises a twelfth folding plate, a thirteenth folding plate, a fourteenth folding plate and a fifteenth folding plate connected in sequence, and the fifteenth folding plate is fixedly connected with the second panel.

8. The impact-resistant packaging box of claim 7, wherein, The twelfth folding plate is equal in size to the fourth panel.

9. The impact-resistant packaging box of claim 8, wherein, A fastener is arranged at the connection between the first panel and the ninth folding plate, and a lock piece is arranged on the twelfth folding plate.

10. The impact-resistant packaging box of claim 9, wherein, The lock piece and the fastener can form a lock structure.