Packaging Material Structure and Packaging Structure

The packaging structure addresses the challenge of protecting and easily loading/unloading objects by folding support and base plates to form a roll-shaped enclosure, ensuring stability and ease of use.

JP7796802B2Active Publication Date: 2026-01-09WISTRON NEWEB CORP
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Patent Information

Application Number
JP2024079303
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2023-12-11
Filing Date
2024-05-15
Publication Date
2026-01-09
Estimated Expiration
2044-05-15

AI Technical Summary

Technical Problem

Existing plastic-free packaging structures face challenges in providing both effective protection against damage during transportation and ease of loading/unloading due to gaps that can lead to product susceptibility and inconvenience.

Method used

A packaging structure with a support plate and base plate that are folded oppositely along a first foldable area, forming a roll-shaped enclosure, allowing the base plate to be folded toward the support plate surface to create a gap for easy insertion and removal, while filling the gap between the object and the box body, using fold lines and insertion members for stability.

Benefits of technology

The packaging structure provides excellent assembly convenience, effective protection against damage during transportation, and easy loading/unloading, enhancing usability and fixing effects.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a packaging material structure.SOLUTION: A packaging material structure includes a support plate with a support side edge and a support plate surface, a substrate that is connected to the support side edge, has a substrate side edge, and includes two substrate fold lines, a first foldable area provided on the support plate, an insert member that is integrally connected to the substrate side edge, and an insertion groove provided on the support plate. The support plate and the substrate are folded opposite to each other along the first foldable area, and the substrate is folded along the two substrate fold lines to the support plate surface so as to insert the insert member correspondingly into the insertion groove. Thus, the packaging material structure can insert an object to be positioned into a gap with the box body so as to fix the object to be positioned inside the box body, and can improve convenience of inserting and removing the object to be positioned.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present invention provides a packaging structure and a packaging structure, and in particular a packaging structure and a packaging structure that can firmly position an object to be positioned and can easily be put in and taken out. [Background technology]

[0002] Packaging is a structure that helps secure products and protect the integrity of the products during transportation and handling. Most of the known packaging materials are made of plastic materials, and due to the characteristic that plastic is difficult to decompose, plastic packaging places a serious burden on the global environment. Therefore, plastic-free packaging or plastic-free packaging made from non-plastic materials is becoming a trend in the packaging industry.

[0003] Most of the known packaging structures are outwardly folded or inwardly folded packaging boxes or packaging boxes with only peripheral walls, and due to production tolerances or special shapes of products, the packaging structure must leave a certain margin. Thus, if the product does not have plastic packaging (e.g., plastic bags or bubble wrap), the gap between the product and the packaging structure makes the product more susceptible to damage due to shaking during transportation and handling. Conversely, if there is no gap between the product and the packaging structure, the convenience of putting the product in and taking it out is not ideal.

[0004] In view of this, developing a packaging structure that allows easy loading and unloading of products and that effectively secures the products to the packaging structure is currently an economically valuable appeal in the market. Summary of the Invention [Means for solving the problem]

[0005] The present invention provides a packaging structure and a packaging structure, in which a support plate and a base plate are folded oppositely along a first foldable area, and the base plate is folded toward the support plate surface along two base plate fold lines, thereby forming a roll-shaped enclosure in appearance. This packaging structure not only has excellent assembly convenience, but also allows the packaging structure to effectively fill the gap between the object to be positioned and the box body, preventing damage to the object to be positioned due to shaking during transportation. When removing the object to be positioned from the box body, a user can pull the base plate to displace it relative to the support plate, creating a gap between the object to be positioned and the packaging structure, which is convenient for the user to remove the object to be positioned and also makes it easier to insert and remove the object to be positioned. Therefore, the packaging structure and the packaging structure of the present invention have excellent usability and fixing effect, and have potential applications in related markets.

[0006] One embodiment of the present invention provides a packaging structure comprising: a support plate having a support side edge and a support plate surface; a substrate connected to the support side edge and having a substrate side edge; a first foldable area provided on the support plate; an insertion member integrally connected to the substrate side edge; and an insertion groove provided on the support plate, wherein the substrate includes two substrate fold lines spaced apart from each other and provided on the substrate; and the support plate and the substrate are folded oppositely along the first foldable area, and the substrate is folded along the two substrate fold lines toward the support plate surface so as to insert the insertion member correspondingly into the insertion groove.

[0007] Another embodiment of the present invention includes a support plate having a support side edge and a support plate surface, a substrate connected to the support side edge and having a substrate side edge, a first foldable area provided on the support plate, a first plate member connected to the substrate, a second plate member connected to the first plate member, and a side plate fold line provided between the first plate member and the second plate member, and includes a side plate connected to the substrate side edge, a second foldable area provided on the side plate, a positioning member integrally connected to the second plate member, and a positioning member recessed in the support side edge. and a positioning groove, and the substrate includes two substrate fold lines spaced apart from each other and provided thereon, wherein the support plate and the substrate are folded oppositely along the first foldable area, the first plate member and the second plate member are folded oppositely along the side plate fold lines, the side plate is folded toward the support plate surface along the second foldable area, and when the substrate is folded toward the support plate surface along the two substrate fold lines and the side plate is folded toward the support plate surface along the second foldable area, the substrate and the side plate form a housing. When the substrate and the side plate form the housing, the first plate member and the second plate member are folded along the side plate fold lines, and at this time, the second plate member is positioned within the housing and overlaid on the substrate so that the positioning member is engaged in the corresponding positioning groove, providing a packaging structure.

[0008] Another embodiment of the present invention comprises a box body having a storage space, and a packaging structure separably provided in the storage space so as to abut against the inner surface of the box body, the packaging structure including a support plate having a support side edge and a support plate surface, a substrate connected to the support side edge and having a substrate side edge, a first foldable area provided on the support plate, a first plate member connected to the substrate, a second plate member connected to the first plate member, and a side plate fold line provided between the first plate member and the second plate member, a side plate connected to the substrate side edge, a second foldable area provided on the side plate, a positioning member integrally connected to the second plate member, and a positioning groove recessed in the support side edge, and the substrate is spaced apart from each other and attached to the and two substrate fold lines formed on the substrate, wherein the support plate and the substrate are folded oppositely along the first foldable area, the first plate member and the second plate member are folded oppositely along the side plate fold lines, and the side plate is folded along the second foldable area toward the support plate surface, and when the substrate is folded along the two substrate fold lines toward the support plate surface and the side plate is folded along the second foldable area toward the support plate surface, the substrate and the side plate form a housing, and when the substrate and the side plate form the housing, the first plate member and the second plate member are folded along the side plate fold lines, and at this time, the second plate member is located in the housing and is arranged to overlap the substrate so that the positioning member is correspondingly engaged in the positioning groove.

[0009] To make the above and other objects, features, advantages and embodiments of the present invention more clearly and comprehensibly, reference is made to the accompanying drawings as follows: [Brief explanation of the drawings]

[0010] [Figure 1] 1 is a schematic diagram showing a packaging structure according to an embodiment of the present invention; [Figure 2] FIG. 2 is a schematic diagram of the packaging structure of FIG. 1 folded. [Figure 3] FIG. 10 is a schematic diagram showing a packaging structure according to an example of another embodiment of the present invention. [Figure 4] FIG. 4 is a schematic diagram of the packaging structure of FIG. 3 folded. [Figure 5] 5 is a schematic view of the packaging structure of FIG. 4 in another direction. [Figure 6] FIG. 5 is a side view showing the packaging structure of FIG. [Figure 7] FIG. 5 is a schematic view showing the packaging structure of FIG. 4. [Figure 8] FIG. 10 is a cross-sectional view showing a packaging structure according to an example of a further embodiment of the present invention. [Figure 9] FIG. 10 is a cross-sectional view showing a packaging structure of another example in a further embodiment of the present invention. [Figure 10] FIG. 10 is a cross-sectional view showing a packaging structure of a further example in a further embodiment of the present invention. [Figure 11] 11 is a schematic diagram showing the packaging structure of FIG. 10 partially folded. DETAILED DESCRIPTION OF THE INVENTION

[0011] Each embodiment of the present invention will be discussed in more detail below. However, this embodiment may be an application of various inventive concepts and may be specifically implemented within a variety of different specific scopes. The specific embodiments are for illustrative purposes only and are not intended to be limiting to the scope disclosed. In addition, to simplify the drawings, some well-known and commonly used structures and elements are simply and schematically shown in the drawings, and repeated elements may be represented by the same numerals.

[0012] Please refer to Figure 1. It is a schematic diagram showing an example of a packaging structure 100 in one embodiment of the present invention. The packaging structure 100 includes a support plate 110, a substrate 120, a first foldable area 101, an insert member 131, and an insert groove 132.

[0013] The support plate 110 has a support side 111 and a support plate surface 112 (shown in FIG. 2).

[0014] The substrate 120 is connected to the support side edge 111 and has a substrate side edge 121. The substrate 120 includes two substrate fold lines 122, which are spaced apart from each other on the substrate 120. Specifically, in the packaging structure 100 of FIG. 1 , the substrate side edge 121 is located on the side of the substrate 120 that is away from the support plate 110. The two substrate fold lines 122 can divide the substrate 120 into a first portion 123, a second portion 124, and a third portion 125, with the first portion 123 connected to the support plate 110 and the second portion 124 located between the first portion 123 and the third portion 125.

[0015] Furthermore, each substrate fold line 122 is any line that defines a hinge connection line in substrate 120, and is used to facilitate folding of first portion 123, second portion 124, and third portion 125 relative to one another, or to otherwise indicate an optimal folding position in substrate 120. Note that each substrate fold line 122 may be formed by a single impression, a single half-cut line, a punch line, a cut line, a dart cut line, a half-cut line, an impression line, etc., and any combination thereof, and the present invention is not limited thereto.

[0016] 1, in the packaging structure 100 of the present invention, if the maximum width of the first portion 123 is W1 and the maximum width of the third portion 125 is W3, the condition W1≧W3 can be satisfied. As a result, the packaging structure 100 can effectively fill the gap between the object to be positioned (not shown) and the box body (not shown) according to the shape of the object to be positioned, and further, it prevents damage to the object to be positioned due to shaking during transportation and is advantageous for putting in and taking out the object to be positioned. Furthermore, operational variations of the packaging structure 100 of the present invention will be described with reference to the packaging structure 200 in FIG. 7 and will not be described here.

[0017] The first foldable area 101 is provided on the support plate 110, and the support plate 110 and the substrate 120 are folded in opposite directions along the first foldable area 101. Specifically, in the packaging structure 100, the support plate 110 may be integrally connected to the substrate 120, and the first foldable area 101 may be arranged on the support side 111 of the support plate 110 in the form of a crimp line. In this way, the first foldable area 101 can provide opposite folding between the support plate 110 and the substrate 120 and provide appropriate support and connection ability so that the support plate 110 and the substrate 120 are less likely to break or separate when folded. It should be noted that the first foldable area 101 may be arranged on the support side 111 of the support plate 110 in the form of a tooth edge line, a blade line, or a combination thereof, and the present invention is not limited to the above form.

[0018] The insert member 131 is integrally connected to the substrate side edge 121, and the insert groove 132 is provided in the support plate 110. Specifically, the insert member 131 may be integrally connected to the third portion 125 of the substrate 120. In this manner, when the substrate 120 is folded along the two substrate fold lines 122 toward the support plate surface 112, the insert member 131 can be inserted into the corresponding insert groove 132, improving the ease of assembly of the packaging structure 100 of the present invention. Note that the insert member 131 and the insert groove 132 may be arranged in different shapes as needed, but the shapes of the insert member 131 and the insert groove 132 must match each other to engage and fix the folded substrate 120 and provide excellent structural stability to the packaging structure 100 of the present invention. The insert member 131 and the insert groove 132 of the present invention are not limited to the shapes shown in the drawings.

[0019] The packaging structure 100 may further include a slot 141. The slot 141 is provided in the first portion 123. Specifically, in the packaging structure 100, the slot 141 may be provided in the first portion 123, extending from the support side edge 111 toward the substrate side edge 121. In this way, when the substrate 120 is folded along the two substrate fold lines 122 toward the support plate surface 112 and the insert 131 is inserted into the corresponding insertion groove 132, the slot 141 can provide a space for the user's fingers to operate, which is convenient for the user to pull the first portion 123 to displace it relative to the support side edge 111, and further facilitates the insertion and removal of the object to be positioned. It should be noted that the slot 141 may be provided in the first portion 123 parallel to the extension direction of the support side edge 111, and the present invention is not limited thereto.

[0020] In addition, the packaging structure 100 may be made of a paper material, which may be a thick card or corrugated paper, and the corrugated paper may be G flute corrugated paper, F flute corrugated paper, E flute corrugated paper, B flute corrugated paper, C flute corrugated paper, A flute corrugated paper, BC flute corrugated paper, BE flute corrugated paper, AB flute corrugated paper, etc., and the packaging structure 100 may be formed by integrally bending other plate materials, but the present invention is not limited thereto.

[0021] Please refer to Figures 1 and 2 together. Figure 2 shows a schematic diagram of folding the packaging structure 100 of Figure 1. Hereinafter, the assembled form and details of the packaging structure 100 of the present invention will be described in combination with Figure 1 using Figure 2.

[0022] As shown in Figures 1 and 2, when assembling the packaging structure 100, the support plate 110 and the substrate 120 are bent oppositely along the first foldable area 101, and then the first portion 123, the second portion 124 and the third portion 125 are bent toward the support plate surface 112 along the two substrate fold lines 122. At this time, the third portion 125 and the support plate 110 are brought close to each other, so that the insertion member 131 is inserted into the insertion groove 132, and the bent support plate 110 and the first portion 123, the second portion 124 and the third portion 125 of the substrate 120 are further fixed.

[0023] As a result, the support plate 110 and the substrate 120 are folded oppositely along the first foldable area 101, and the substrate 120 is folded toward the support plate surface 112 along the two substrate fold lines 122, so that the packaging structure 100 of the present invention can form a roll-shaped housing in appearance.In this way, the packaging structure 100 not only has excellent assembly convenience, but can also be effectively inserted and filled in the gap between the object to be positioned and the box body, preventing damage to the object to be positioned due to shaking during transportation.Furthermore, the configuration of the packaging structure 100 including the slot 141 makes it easier to insert and remove the object to be positioned.

[0024] Please refer to Figure 3. It is a schematic diagram showing an example of a packaging structure 200 in another embodiment of the present invention. The packaging structure 200 includes a support plate 210, a base plate 220, a first foldable area 201, an insert member 231, an insert groove 232, a side plate 250, a second foldable area 202, a slot 241, an opening 242, a positioning member 261, a positioning groove 262, an end plate 270, and a third foldable area 203.

[0025] The support plate 210 has a support side 211 and a support plate surface 212 (shown in FIGS. 4 and 7).

[0026] The substrate 220 is connected to the support side edge 211 and has a substrate side edge 221. The substrate 220 includes two substrate fold lines 222, which are spaced apart from each other on the substrate 220. Specifically, in the packaging structure 200 of FIG. 3 , the substrate side edge 221 is located on the side of the substrate 220 that is away from the support plate 210. The two substrate fold lines 222 can divide the substrate 220 into a first portion 223, a second portion 224, and a third portion 225, with the first portion 223 connected to the support plate 210 and the second portion 224 located between the first portion 223 and the third portion 225.

[0027] Furthermore, each substrate fold line 222 is any line that defines a hinge connection line in substrate 220, and is used to facilitate folding of first portion 223, second portion 224, and third portion 225 relative to one another, or to otherwise indicate an optimal folding position in substrate 220. Note that each substrate fold line 222 may be formed by a single impression, a single half-cut line, a punch line, a cut line, a dart cut line, a half-cut line, an impression line, etc., and any combination thereof, and the present invention is not limited thereto.

[0028] The first foldable area 201 is provided on the support plate 210, and the support plate 210 and the substrate 220 are folded in opposite directions along the first foldable area 201. Specifically, in the packaging structure 200, the support plate 210 may be integrally connected to the substrate 220, and the first foldable area 201 may be arranged on the support side 211 of the support plate 210 in the form of a crimp line. In this way, the first foldable area 201 can provide opposite folding between the support plate 210 and the substrate 220 and provide appropriate support and connection ability so that the support plate 210 and the substrate 220 are less likely to break or separate when folded. It should be noted that the first foldable area 201 may be arranged on the support side 211 of the support plate 210 in the form of a tooth edge line, a blade line, or a combination thereof, and the present invention is not limited to the above form.

[0029] The insert member 231 is integrally connected to the substrate side edge 221, and the insert groove 232 is provided in the support plate 210. Specifically, the insert member 231 may be integrally connected to the third portion 225 of the substrate 220. In this way, when the substrate 220 is folded along the two substrate fold lines 222 toward the support plate surface 212, the insert member 231 can be inserted into the corresponding insert groove 232, improving the ease of assembly of the packaging structure 200 of the present invention. Furthermore, the insert member 231 and the insert groove 232 may be arranged in different shapes as needed. However, the shapes of the insert member 231 and the insert groove 232 must match each other to engage and fix the folded substrate 220 and provide excellent structural stability to the packaging structure 200 of the present invention. The insert member 231 and the insert groove 232 of the present invention are not limited to the shapes shown in the drawings. It should be noted that in some embodiments, the insert member 231 and the insert groove 232 may be omitted, and the structure of the packaging structure 200 may be strengthened only by the positioning member 261 and the positioning groove 262, without departing from the scope of protection of the present invention.

[0030] The side plate 250 is integrally connected to the substrate side edge 221, and has a side plate side edge 254. Specifically, in the embodiment of FIG. 3, the side plate side edge 254 is parallel to the substrate side edge 221, and the side plate 250 includes a first plate member 251, a second plate member 252, and a side plate fold line 253. The first plate member 251 is connected to the substrate 220, and the second plate member 252 is connected to the first plate member 251. The side plate fold line 253 is disposed between the first plate member 251 and the second plate member 252, and the first plate member 251 and the second plate member 252 can be folded oppositely along the side plate fold line 253.

[0031] The second foldable area 202 is provided on the side plate 250, and the side plate 250 can be folded along the second foldable area 202 to the support plate surface 212. In particular, in the packaging structure 200, the second foldable area 202 may be disposed on a side edge (not shown) connected to the base plate 220 of the side plate 250 in the form of a crimped line so that the user can fold it, but the present invention is not limited to this form.

[0032] The slot 241 is provided in the first portion 223. Specifically, in the packaging structure 200, the slot 241 may be provided in the first portion 223, extending from the support side edge 211 toward the substrate side edge 221. In this way, when the substrate 220 is folded along the two substrate fold lines 222 toward the support plate surface 212 and the insert 231 is inserted corresponding to the insert groove 232, the slot 241 can provide a space for the user's fingers to operate, which is convenient for the user to pull the first portion 223 to displace it relative to the support side edge 211, and further makes it easier to insert and remove the object to be positioned. It should be noted that the slot 241 may be provided in the first portion 223 parallel to the extension direction of the support side edge 211, and the present invention is not limited thereto.

[0033] 3, the aperture 242 is provided in the second plate member 252. Specifically, in the packaging structure 200, the aperture 242 may be provided adjacent to the side edge 254 of the side plate, which is advantageous for allowing the aperture 242 to correspond to and communicate with the slot 241 when the support plate 210, the base plate 220, the side plate 250, and the end plate 270 are later folded toward each other.

[0034] The positioning member 261 is integrally connected to the second plate member 252, and the positioning groove 262 is provided in the support plate 210 and recessed in the support side edge 211. In detail, the positioning member 261 may have a substantially arc-shaped protrusion structure, and is located between the first plate member 251 and the second plate member 252. In this way, when the support plate 210, the base plate 220, and the side plate 250 are folded toward each other later, it is advantageous for the positioning member 261 to be locked in the positioning groove 262.

[0035] The end plate 270 is connected to the side edge 254 of the side plate, and in this way, when the packaging structure 200 is later assembled, the end plate 270 is advantageously abutted against the base plate 220. This not only improves the structural stability of the packaging structure 200, but also improves the strength with which the packaging structure 200 abuts against an object to be positioned (not shown), and further improves the effect of the packaging structure 200 in fixing the object to be positioned.

[0036] The third foldable area 203 is provided on the end plate 270, and the end plate 270 and the side plate 250 can be folded oppositely along the third foldable area 203. Specifically, in the packaging structure 200, the end plate 270 may be integrally connected to the side plate 250, and the third foldable area 203 may be disposed on a side edge (not shown) of the end plate 270 connected to the side plate 250 in the form of a crimped line so that the user can fold it, but the present invention is not limited to this form.

[0037] In addition, the packaging structure 200 may be made of a paper material, which may be a thick card or corrugated paper, and the corrugated paper may be a G flute corrugated paper, an F flute corrugated paper, an E flute corrugated paper, a B flute corrugated paper, a C flute corrugated paper, an A flute corrugated paper, a BC flute corrugated paper, a BE flute corrugated paper, an AB flute corrugated paper, etc., and the packaging structure 200 may be formed by integrally bending other plate materials, but the present invention is not limited thereto.

[0038] Please also refer to Figures 3 to 5. Figure 4 is a schematic diagram of the folding of the packaging structure 200 of Figure 3, and Figure 5 is a schematic diagram showing another direction of the packaging structure 200 of Figure 4. As shown in Figures 3 to 5, when assembling the packaging structure 200, the support plate 210 and the base plate 220 are folded oppositely along the first foldable area 201, so that the base plate 220, the side plate 250, and the end plate 270 are positioned on the same side of the support plate surface 212 of the support plate 210. Then, the end plate 270 and the side plate 250 are folded oppositely along the third foldable area 203. Then, the second plate member 252 and the first plate member 251 are folded oppositely along the side plate fold line 253. Then, the side plate 250 is folded toward the support plate surface 212 along the second foldable area 202. Finally, the third portion 225, the second portion 224, and the first portion 223 of the substrate 220 are bent along the two substrate fold lines 222 toward the support plate surface 212. The substrate 220 and the side plate 250 are both bent toward the support plate surface 212, so that the substrate 220 and the side plate 250 form the housing 204, with the side plate 250 abutting against the support plate surface 212 and the end plate 270 abutting against the substrate 220. Furthermore, the first plate member 251 can abut against the support plate surface 212 so that the insertion member 231 is inserted corresponding to the insertion groove 232, and the second plate member 252 can be located within the housing 204 and overlap the first part 223 of the substrate 220, not only engaging the positioning member 261 corresponding to the positioning groove 262, but also connecting the opening 242 to the groove hole 241, and the end plate 270 can be located within the housing 204 and abut against the second part 224, which is advantageous in improving the structural stability of the packaging structure 200 and the effect of fixing the object to be positioned.

[0039] As a result, in the packaging structure 200 of the present invention, the support plate 210 and the substrate 220 are bent oppositely along the first foldable area 201, the substrate 220 is bent toward the support plate surface 212 along the two substrate fold lines 222, and the side plates 250 are bent toward the support plate surface 212 along the second foldable area 202. In this form, the substrate 220 and the side plates 250 can form the housing 204. At this time, the insertion member 231 can be inserted corresponding to the insertion groove 232, and the positioning member 261 can be inserted corresponding to the positioning groove 262. Thus, the packaging structure 200 of the present invention not only has the feature of being easy to assemble, but also can be effectively inserted and filled into the gap between the positioning object and the box body (not shown). Furthermore, it can avoid damage caused by the shaking of the positioning object during transportation. Additionally, when the packaging structure 200 includes the end plate 270, and the end plate 270 and the side plates 250 are bent oppositely along the third foldable area 203, the structural stability of the packaging structure 200 of the present invention and the effect of fixing the positioning object can be further improved. As described above, in some embodiments, the insertion member 231 and the insertion groove 232 can be omitted, and only the positioning member 261 and the positioning groove 262 can be used to strengthen the structure of the packaging structure 200, which does not deviate from the protection scope of the present invention.

[0040] Please refer to FIGS. 3 and 6 together. FIG. 6 shows a side view of the packaging structure 200 of FIG. 4. As shown in FIGS. 3 and 6, in the packaging structure 200, let the maximum width of the first portion 223 be W1, the maximum width of the second portion 224 be W2, the maximum width of the third portion 225 be W3, the maximum width of the first plate member 251 be W4, the maximum width of the support plate 210 be W5, and the thickness of the first portion 223 be T. The conditions W1≧W3, W2≧W4, and T + W4 < W5 - T - W4 can be satisfied.

[0041] Furthermore, when W1≥W3 is satisfied, the packaging structure 200 can effectively fill the gap between the object to be positioned and the box body according to the shape of the object to be positioned, and further avoid damage caused by shaking during transportation of the object to be positioned. When W2≥W4 is satisfied, the deformation margin of the substrate 220 can be improved, which is advantageous for improving the convenience of taking in and out the object to be positioned. When T + W4 < W5 - T - W4 is satisfied, the positioning member 261 can be firmly locked in the positioning groove 262, and further improve the deformation margin of the substrate 220, and further improve the usability of the packaging structure 200 of the present invention.

[0042] Please refer to FIGS. 4 and 7 together. FIG. 7 shows a schematic adjustment diagram of the packaging structure 200 in FIG. 4. As shown in FIGS. 4 and 7, the user sequentially penetrates the finger (not shown) through the groove hole 241 and the opening 242, and abuts the finger against the second plate member 252, and then pulls up the first portion 223 so as to be displaced with respect to the support side 211. At the same time, the second portion 224 and the third portion 225 approach the first plate member 251 due to the displacement of the first portion 223. In this way, a gap is formed between the object to be positioned and the packaging structure 200, which is advantageous for taking out the object to be positioned from the box body. Furthermore, by deforming the packaging structure 200 according to the above embodiment, the convenience of placing the object to be positioned can be improved, and further the packaging structure 200 of the present invention can be provided with the application potential of the related market.

[0043] Please refer to FIG. 8. It is a cross-sectional view showing an example of a packaging structure 300 in a further embodiment of the present invention. The packaging structure 300 includes a box body 310 and a packaging structure 200. Since the packaging structure 200 is the folded packaging structure 200 in FIG. 4, for the detailed structure thereof, reference may be made to the description of the packaging structure 200. Here, it will not be described further.

[0044] The box body 310 has a storage space 311 and an inner surface 312.

[0045] The packaging structure 200 is spaced apart within the receiving space 311, and the packaging structure 200 abuts against the inner surface 312 of the box body 310. Specifically, the packaging structure 200 is inserted between the object to be positioned 301 and the inner surface 312 of the box body 310 using a support plate 210. Furthermore, the support plate 210 abuts against the inner surface 312 of the box body 310, and the substrate 220 abuts against the object to be positioned 301. In this way, the packaging structure 200 fills the gap between the object to be positioned 301 and the box body 310, thereby firmly positioning the object to be positioned 301 within the box body 310 and preventing damage to the object to be positioned 301 due to shaking during transportation. Further operational variations of the packaging structure 200 can be seen in FIG. 7 , which will not be further described here.

[0046] As a result, the packaging structure 300 of the present invention includes the packaging structure 200 that can fill the gap between the object to be positioned 301 and the box body 310, thereby further improving the positioning effect of the packaging structure 300. Furthermore, the packaging structure 200 of the present invention can easily insert and remove the object to be positioned 301 with a simple operation, so the packaging structure 300 of the present invention has excellent usability and positioning effect, and has potential for application in related markets.

[0047] Please refer to Fig. 9. It is a cross-sectional view showing another example of a packaging structure 400 in a further embodiment of the present invention. The packaging structure 400 includes a box body 410, a liner structure 420, and a packaging material structure 200a.

[0048] The box body 410 has a receiving space 411 and an inner surface 412 .

[0049] The liner structure 420 is spaced apart within the storage space 411 so as to abut against the inner surface 412 of the box body 410, and the liner structure 420 can be formed by folding a plate material to form a buffer structure having a storage space (not shown separately). When used in combination with the packaging structure 200a later, this is advantageous in improving the vibration-damping and positioning effects of the box body 410.

[0050] The packaging structure 200a is spaced apart within the storage space 411, and the packaging structure 200a abuts against the inner surface 412 of the box body 410. Specifically, the difference between the packaging structure 200a and the packaging structure 200 of Fig. 4 is the size of the base plate 220a and the side plate 250a. As shown in Figs. 6 and 9, the cross section of the packaging structure 200 is approximately trapezoidal, while the cross section of the packaging structure 200a is approximately rectangular.

[0051] 9, in the packaging structure 400, the packaging structure 200a is integrally connected to the liner structure 420. Specifically, the liner structure 420 is integrally connected to the side of the support plate 210a away from the support side edge (not shown), and the substrate 220a abuts against the object to be positioned 401. In this way, the packaging structure 200a fills the gap between the object to be positioned 401 and the box body 410, thereby firmly positioning the object to be positioned 401 within the box body 410 and preventing damage to the object to be positioned 401 due to shaking during transportation. Furthermore, the packaging structure 200a allows the object to be positioned 401 to be easily put in and taken out with a simple operation, and the packaging structure 400 of the present invention has excellent usability.

[0052] Please refer to Figures 10 and 11 together. Figure 10 is a cross-sectional view of another example packaging structure 500 in a further embodiment of the present invention, and Figure 11 is a schematic view of a packaging structure 600 of the packaging structure 500 in Figure 10 being partially folded. The packaging structure 500 includes a box body 510 and the packaging structure 600.

[0053] The box body 510 has a receiving space 511 and an inner surface 512 .

[0054] The packaging structure 600 is spaced apart within the storage space 511 and abuts against the inner surface 512 of the box body 510. The packaging structure 600 includes a support plate 610, a base plate 620, a side plate 640, a slot 631, an opening 632, a positioning member 651, an end plate 660, and an extension plate 670. The support plate 610, the base plate 620, the side plate 640, the slot 631, the opening 632, the positioning member 651, and the end plate 660 are structurally similar to the support plate 210, the base plate 220, the side plate 250, the slot 241, the opening 242, the positioning member 261, and the end plate 270 in FIG. 3 . The folding form of the packaging structure 600 is similar to that of the packaging structure 200. For details of the same elements, please refer to the description of FIG. 3 . No further description will be given here.

[0055] The extension plate 670 is connected to the side of the support plate 610 away from the support side edge 611, and the extension plate 670 includes a plurality of extension plate fold lines 671. The plurality of extension plate fold lines 671 are spaced apart from each other on the extension plate 670, and the extension plate 670 can be bent toward the support plate surface 612 along the plurality of extension plate fold lines 671 so that the extension plate 670 and the support plate 610 form an extension housing 672. In detail, in the packaging structure 600, the extension plate 670 may be integrally connected to the side away from the support side edge 611 of the support plate 610. When the extension plate 670 is folded along the multiple extension plate fold lines 671 toward the support plate surface 612, the extension plate 670 partially abuts against the support plate surface 612. At this time, the user can fix the folded extension plate 670 to the support plate 610 by engagement or adhesion, etc., thereby making the weight distribution of the support plate 610 relative to the support plate surface 612 more uniform and further improving the structural strength of the packaging structure 600.

[0056] 10 , the packaging structure 600 is inserted between the object to be positioned 501 and the inner surface 512 of the box body 510, with the support plate 610 abutting the inner surface 512 of the box body 510 and the base plate 620 and the extension plate 670 abutting the object to be positioned 501. By filling the gap between the object to be positioned 501 and the box body 510 in this manner, the object to be positioned 501 is firmly positioned within the box body 510 and damage to the object to be positioned 501 due to shaking during transportation can be prevented. Furthermore, the packaging structure 600 allows the object to be positioned 501 to be easily inserted and removed with a simple operation, making the packaging structure 500 of the present invention highly convenient to use. Furthermore, the inclusion of the extension plate 670 in the packaging structure 600 effectively improves the structural strength of the packaging structure 600 and effectively improves the positioning effect of the packaging structure 500 of the present invention.

[0057] As described above, in the packaging structure of the present invention, the support plate and the base plate are folded oppositely along the first foldable area, and the base plate is folded toward the support plate surface along the two base plate fold lines, thereby forming a roll-shaped enclosure in appearance. This packaging structure not only provides excellent assembly convenience, but also allows the packaging structure to effectively insert and fill the gap between the object to be positioned and the box body, preventing damage to the object due to shaking during transportation. When removing the object to be positioned from the box body, a user can pull the base plate to displace it relative to the support plate, creating a gap between the object to be positioned and the packaging structure, thereby facilitating the user's removal and easier insertion and removal of the object to be positioned. Furthermore, the support plate, base plate, and side plates are sized proportionally, allowing the packaging structure to effectively fill the gap between the object to be positioned and the box body, preventing damage to the object to be positioned due to shaking during transportation and improving the ease of insertion and removal of the object to be positioned. Furthermore, the inclusion of end plates in the packaging structure improves the stability and fixing effect of the packaging structure. Furthermore, since the packaging structure includes an extension plate, it is advantageous to improve the strength of the packaging structure and further improve the positioning effect of the packaging structure, so the packaging structure and packaging structure of the present invention have excellent convenience of use and fixing effect, and have potential for application in related markets.

[0058] Although the present invention has been disclosed in the above embodiments, the above embodiments are not used to limit the present invention, and any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention is based on the scope of the patent application to be attached later. [Explanation of symbols]

[0059] 100, 200, 200a, 600: Packaging structure 101, 201: First bendable area 110, 210, 210a, 610: Support plate 111, 211, 611: Support side 112, 212, 612: Support plate surface 120, 220, 220a, 620: Substrate 121, 221: PCB side 122, 222: PCB bent line 123, 223: First part 124, 224: Second part 125, 225: Third part 131, 231: Insertion member 132, 232: Insertion groove 141, 241, 631: Groove 202: Second bendable area 203: Third bendable area 204: Cabinet 242, 632: Open hole 250, 250a, 640: Side plate 251: First plate member 252: Second plate member 253: Side panel fold line 254: Side plate side 261, 651: Positioning member 262: Positioning groove 270, 660: End plate 300, 400, 500: Packaging structure 301, 401, 501: Positioning object 310, 410, 510: Box body 311, 411, 511: Containment space 312, 412, 512: Inner surface 420: Liner structure 670: Extension plate 671: Extended plate polyline 672: Extended housing T: Thickness W1, W2, W3, W4, W5: Maximum width

Claims

1. a support plate having a support side and a support plate surface; a substrate connected to the support side and having a substrate side; a first bendable area provided on the support plate; an insert member integrally connected to the side edge of the substrate; an insertion groove provided in the support plate; Equipped with the substrate includes two substrate fold lines spaced apart from each other; the support plate and the substrate are bent in opposite directions along the first bendable area; The substrate is bent toward the support plate surface along the two substrate folding lines so that the insertion members are inserted into the insertion grooves, the substrate is divided into a first portion, a second portion, and a third portion by the two substrate folding lines, the first portion is connected to the support plate, the second portion is located between the first portion and the third portion, and the insertion member is connected to the third portion; the first portion is provided with a slot; Packaging material structure.

2. If the maximum width of the first portion is W1 and the maximum width of the third portion is W3, The packaging structure according to claim 1, wherein the condition W1≧W3 is satisfied.

3. a side plate integrally connected to the side edge of the substrate; a second bendable area provided on the side panel; Further provided with the side panel is bent along the second bendable area toward the support panel surface; 2. The packaging structure of claim 1, wherein when the substrate is folded along the two substrate fold lines onto the support plate surface and the side plates are folded along the second foldable area onto the support plate surface, the substrate and the side plates form a housing, and the side plates abut against the support plate surface.

4. The side plate is a first plate member connected to the substrate; a second plate member connected to the first plate member; a side plate folding line provided between the first plate member and the second plate member; Including, The packaging structure according to claim 3 , wherein the first plate member and the second plate member are folded oppositely along the side panel folding line.

5. an opening provided in the second plate member; 5. The packaging structure of claim 4, wherein when the substrate and the side plate form the housing, the first plate member and the second plate member are folded along the side plate fold line, and at this time, the second plate member is positioned within the housing and overlaps the first portion so that the opening communicates with the groove hole.

6. If the thickness of the first portion is T, the maximum width of the second portion is W2, the maximum width of the first plate member is W4, and the maximum width of the support plate is W5, then: W2≧W4, and The packaging structure according to claim 4, wherein the condition T+W4<W5-T-W4 is satisfied.

7. An end plate; a third bendable area provided on the end plate; Further provided with The side plate has a side edge parallel to the side edge of the base plate, and the end plate is connected to the side edge of the side plate; The packaging structure of claim 3 , wherein the end panel and the side panel are folded in opposite directions along the third foldable area.

8. a support plate having a support side and a support plate surface; a substrate connected to the support side and having a substrate side; a first bendable area provided on the support plate; a side plate including a first plate member connected to the substrate, a second plate member connected to the first plate member, and a side plate folding line provided between the first plate member and the second plate member, the side plate being connected to a side edge of the substrate; a second bendable area provided on the side panel; a positioning member integrally connected to the second plate member; a positioning groove recessed in the support side edge; Equipped with the substrate includes two substrate fold lines spaced apart from each other; the support plate and the substrate are bent in opposite directions along the first bendable area; the first plate member and the second plate member are bent oppositely along the side plate folding line, the side panel is bent along the second bendable area toward the support panel surface; when the substrate is bent along the two substrate fold lines onto the support plate surface and the side panels are bent along the second foldable areas onto the support plate surface, the substrate and the side panels form a housing; When the substrate and the side plate form the housing, the first plate member and the second plate member are bent along the side plate folding line, and at this time, the second plate member is positioned in the housing and overlaps the substrate so as to engage the positioning member in the positioning groove, the substrate is divided into a first portion, a second portion, and a third portion by the two substrate folding lines, the first portion is connected to the support plate, and the second portion is located between the first portion and the third portion; the first portion is provided with a slot; Packaging material structure.

9. If the maximum width of the first portion is W1, the maximum width of the second portion is W2, the maximum width of the third portion is W3, and the maximum width of the first plate member is W4, then: W1≧W3, and The packaging structure according to claim 8, wherein the condition W2≧W4 is satisfied.

10. an opening provided in the second plate member; 9. The packaging structure of claim 8, wherein when the substrate and the side plate form the housing, the first plate member and the second plate member are folded along the side plate fold line, and at this time, the second plate member is positioned within the housing and overlaps the first portion so that the opening communicates with the groove hole.

11. If the thickness of the first portion is T, the maximum width of the first plate member is W4, and the maximum width of the support plate is W5, then: The packaging structure according to claim 8, wherein the condition T+W4<W5-T-W4 is satisfied.

12. an insert member integrally connected to the side edge of the substrate; an insertion groove provided in the support plate; Further provided with The packaging structure of claim 8, wherein when the substrate and the side plate form the housing, the first plate member abuts against the support plate surface so as to insert the insertion member into the insertion groove.

13. An end plate; a third bendable area provided on the end plate; Further provided with The side plate has a side edge parallel to the side edge of the base plate, and the end plate is connected to the side edge of the side plate; The packaging structure of claim 8 , wherein the end panel and the side panel are folded in opposite directions along the third foldable area.

14. a box body having a storage space; a packaging structure provided separably in the storage space so as to abut against the inner surface of the box body; Equipped with The packaging material structure is a support plate having a support side and a support plate surface; a substrate connected to the support side and having a substrate side; a first bendable area provided on the support plate; a side plate including a first plate member connected to the substrate, a second plate member connected to the first plate member, and a side plate folding line provided between the first plate member and the second plate member, the side plate being connected to a side edge of the substrate; a second bendable area provided on the side panel; a positioning member integrally connected to the second plate member; a positioning groove recessed in the support side edge; Equipped with the substrate includes two substrate fold lines spaced apart from each other; the support plate and the substrate are bent in opposite directions along the first bendable area; the first plate member and the second plate member are bent oppositely along the side plate folding line, the side panel is bent along the second bendable area toward the support panel surface; when the substrate is bent along the two substrate fold lines onto the support plate surface and the side panels are bent along the second foldable areas onto the support plate surface, the substrate and the side panels form a housing; When the substrate and the side plate form the housing, the first plate member and the second plate member are bent along the side plate folding line, and at this time, the second plate member is positioned in the housing and overlaps the substrate so as to engage the positioning member in the positioning groove, the substrate is divided into a first portion, a second portion, and a third portion by the two substrate folding lines, the first portion is connected to the support plate, and the second portion is located between the first portion and the third portion; the first portion is provided with a slot; packaging structure.

15. The packaging structure according to claim 14, further comprising a liner structure separably provided in the storage space so as to abut against the inner surface of the box body.

16. If the maximum width of the first portion is W1, the maximum width of the second portion is W2, the maximum width of the third portion is W3, and the maximum width of the first plate member is W4, then: W1≧W3, and The packaging structure according to claim 14, wherein the condition W2≧W4 is satisfied.

17. The packaging material structure is an opening provided in the second plate member; 15. The packaging structure of claim 14, wherein when the base plate and the side plate form the housing, the first plate member and the second plate member are folded along the side plate fold line, and at this time, the second plate member is positioned within the housing and overlaps the first portion so that the opening communicates with the groove hole.

18. If the thickness of the first portion is T, the maximum width of the first plate member is W4, and the maximum width of the support plate is W5, then: The packaging structure according to claim 14, which satisfies the condition T+W4<W5-T-W4.

19. The packaging material structure is an insert member integrally connected to the side edge of the substrate; an insertion groove provided in the support plate; Further provided with The packaging structure of claim 14, wherein when the base plate and the side plate form the housing, the first plate member abuts against the support plate surface so as to insert the insertion member into the insertion groove.

20. The packaging material structure is An end plate; a third bendable area provided on the end plate; Further provided with The side plate has a side edge parallel to the side edge of the base plate, and the end plate is connected to the side edge of the side plate; 15. The packaging structure of claim 14, wherein the end panel and the side panel are folded in opposite directions along the third foldable area.

21. The packaging material structure is Further provided is an extension plate connected to a side of the support plate away from the support side edge, the extension plate includes a plurality of extension plate folding lines spaced apart from one another; The packaging structure according to claim 14 , wherein the extension plate is folded along the extension plate fold line onto the surface of the support plate so that the extension plate and the support plate form an extension housing.

Citation Information

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