Hair dryer package compact in structure and environmentally friendly
By designing a multi-layer folding inner card structure and buffer seat, the shock-resistant cushioning performance and space utilization problems of hair dryer packaging are solved, and a compact and efficient packaging solution is achieved.
Patent Information
- Application Number
- CN202422437648.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The existing hair dryer packaging has weak shock cushioning performance and low space utilization.
A hair dryer packaging including an outer box, a first inner card structure and a second inner card structure is designed, and a plurality of placement spaces and buffer seats are connected by a folding surface cut into a cardboard, and a clamping hole and an outer folding surface are used to provide shock-resistant cushioning performance, and the structure is ensured by inserting the tongue and the jack.
It achieves compact structure, high space utilization, and provides good anti-seismic buffering performance to ensure the stability and safety of the product during transportation.
Smart Images

Figure CN223132634U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of packaging, in particular to a hair dryer packaging with a compact structure and environmental protection. Background Art
[0002] Chinese authorized publication number CN 215555907 U, with the authorized publication date of January 18, 2022, discloses a packaging box applicable to a hair dryer, including a box body, the box body is folded from cardboard, the cardboard includes a cover board, a front board, a bottom board, a rear board, a left side board, and a right side board. One end of the rear board is connected with a first folding board, one end of the first folding board is connected with a second folding board, one end of the second folding board is connected with a first baffle, and a second baffle is also connected to the right side of the second folding board. After folding, a first storage cavity is formed between the front board, the left side board, the first baffle, and the second baffle. After folding, a second storage cavity is formed between the rear board and the first baffle. After folding, a third storage cavity is formed between the right side board and the second baffle. For the packaging box of the utility model, the box body is folded from cardboard, and the cardboard is an integrated structure. Without adding an inner card, a third storage cavity for accommodating the power connection wire can be formed, with a simple structure and low assembly difficulty. In the actual application process, the defect of this prior art is that the anti-seismic and buffering performance is weak, and the space utilization rate is low. In view of this situation, it is urgent to improve. Summary of the Utility Model
[0003] Based on this, the purpose of the present utility model is to provide a hair dryer packaging with a compact structure and environmental protection, which has good anti-seismic and buffering performance, a compact structure, and a high space utilization rate.
[0004] The utility model provides a hair dryer packaging with a compact and environmentally friendly structure, including an outer box and a first inner card structure and a second inner card structure arranged in the outer box. The first inner card structure includes a first folding surface, a second folding surface, a third folding surface, a fourth folding surface, a fifth folding surface, a sixth folding surface, a seventh folding surface, and an eighth folding surface that are cut and formed from a cardboard and connected in sequence. A ninth folding surface, a tenth folding surface, and an eleventh folding surface are formed on one side in the width direction of the second folding surface and connected in sequence. A twelfth folding surface, a thirteenth folding surface, and a fourteenth folding surface are formed on one side in the length direction of the eleventh folding surface and connected in sequence. A fifteenth folding surface and a sixteenth folding surface are formed on one side in the width direction of the fourteenth folding surface and connected in sequence. A seventeenth folding surface and an eighteenth folding surface are formed on the other side in the width direction of the fourteenth folding surface and connected in sequence. A nineteenth surface is formed on one side in the length direction of the twelfth folding surface. A twentieth surface is formed on the other side in the width direction of the second folding surface. A twenty-first surface is formed on one side in the width direction of the fifteenth folding surface. A twenty-second surface is formed on one side in the width direction of the seventeenth folding surface. A twenty-third surface is formed on one side in the width direction of the fourth folding surface. A twenty-fourth surface and a twenty-fifth surface are formed on opposite sides in the width direction of the fifth folding surface. A twenty-sixth surface is formed on one side in the length direction of the sixth folding surface. A first fitting hole and a second fitting hole are cut on the second folding surface; at the connection between the second folding surface and the ninth folding surface and at the position corresponding to the second fitting hole, a first outward folding surface is cut. At the connection between the fifth folding surface and the sixth folding surface, a second outward folding surface is cut. At the connection between the fifth folding surface and the fourth folding surface, a third outward folding surface is cut;
[0005] When in the formed state, the first folding surface, the twentieth surface, and the first outward folding surface are all folded downward by 90° to form a first buffer seat, and the third folding surface and the ninth folding surface are both folded upward by 90° to form a first placement space;
[0006] The fourth folding surface is folded downward by 180° and then abuts against the third folding surface. The fifth folding surface is folded horizontally by 90°. The sixth folding surface is folded upward by 90°. The twenty-fourth surface, the twenty-fifth surface, the second outward folding surface, and the third outward folding surface are all folded downward by 90° to form a second buffer seat. The twenty-third surface is folded by 90° toward the side of the sixth folding surface to form a second placement space;
[0007] The seventh folding surface is folded downward by 180° and then abuts against the sixth folding surface. The eighth folding surface is folded horizontally by 90°. The twenty-sixth surface is folded by 90° toward the side of the eighth folding surface to form a third placement space;
[0008] The tenth folding surface is folded downward by 180°, the eleventh folding surface is folded horizontally by 90°, the twelfth folding surface is folded upward by 90°, and the nineteenth surface is folded by 90° on the side close to the eleventh folding surface to form a fourth placement space;
[0009] The thirteenth folding surface is folded horizontally by 90°, the fourteenth folding surface is folded downward by 90°, the seventeenth folding surface and the fifteenth folding surface are both folded by 90° on the side close to the twelfth folding surface, the twenty-first surface and the twenty-second surface are both folded by 90° towards each other and then are in close contact with the inner side surface of the thirteenth folding surface, and the eighteenth folding surface and the sixteenth folding surface are folded by 90° towards each other and then are in close contact with the inner side surface of the twelfth folding surface to form a buffer fitting part;
[0010] The second inner clamping structure is correspondingly covered directly above the second placement space and the third placement space.
[0011] Preferably, first tongues and second tongues are respectively cut on the opposite sides in the length direction of the twelfth folding surface, a first insertion hole for inserting the second tongue is cut at the connection between the fifteenth folding surface and the sixteenth folding surface, and a second insertion hole for inserting the first tongue is cut at the connection between the seventeenth folding surface and the eighteenth folding surface.
[0012] Preferably, a plurality of abutting surfaces are circumferentially cut on the side walls of the first fitting hole and the second fitting hole.
[0013] Preferably, the second inner clamping structure includes a twenty-seventh folding surface, a twenty-eighth folding surface, a twenty-ninth folding surface, a thirtieth folding surface, a thirty-first folding surface, a thirty-second folding surface, a thirty-third folding surface, a thirty-fourth folding surface, and a thirty-fifth folding surface which are cut and formed from a cardboard and are sequentially connected;
[0014] When in the formed state, the thirtieth folding surface and the thirty-second folding surface are both folded upward by 90°, the twenty-ninth folding surface and the thirty-third folding surface are both folded horizontally by 90°, the twenty-eighth folding surface and the thirty-fourth folding surface are both folded downward by 90°, the twenty-seventh folding surface is folded by 90° on the side close to the thirtieth folding surface and then is in close contact with the thirty-first folding surface, and the thirty-fifth folding surface is folded by 90° on the side close to the thirty-second folding surface and then is in close contact with the thirty-first folding surface; the twenty-seventh folding surface, the twenty-eighth folding surface, the twenty-ninth folding surface, and the thirtieth folding surface form a first buffer part, the thirty-second folding surface, the thirty-third folding surface, the thirty-fourth folding surface, and the thirty-fifth folding surface form a second buffer part, and a fifth placement space is formed between the first buffer part and the second buffer part.
[0015] Preferably, fourth outwardly turned folding surfaces are cut and provided on both opposite sides of the thirty-first folding surface facing the first buffer portion and the second buffer portion, and buckling holes for cooperating with the fourth outwardly turned folding surfaces are cut and provided on both the twenty-eighth folding surface and the thirty-fourth folding surface.
[0016] Preferably, a third fitting hole is cut and provided across between the twelfth folding surface and the thirteenth folding surface.
[0017] Preferably, an accessory box is fitted and placed in the fifth placement space.
[0018] The beneficial effects of the present utility model are as follows: The first inner card structure is cut and formed from a cardboard. After being folded and formed, it forms a first placement space, a second placement space, a third placement space, and a fourth placement space, enabling the product to be disassembled and placed in the corresponding placement spaces. The structure is compact, and the space utilization rate is high. Moreover, a first buffer seat, a second buffer seat, and a buffer fitting portion are formed, providing good anti-seismic and buffering performance for each part of the product. Description of the Drawings
[0019] Figure 1 is an exploded view of the present utility model.
[0020] Figure 2 is a schematic diagram of the first inner card structure in a planar unfolded state.
[0021] Figure 3 is a schematic diagram of the second inner card structure in a planar unfolded state.
[0022] Figure 4 is an exploded view of the present utility model (with the product).
[0023] Figure 5 is a top view of the present utility model in an assembled state (with the product).
[0024] The reference numerals are: outer box 10, first inner card structure 11, second inner card structure 12, second fitting hole 13, first fitting hole 14, first buffer seat 15, second buffer seat 16, third placement space 17, second jack 19, fourth placement space 20, buffer fitting portion 21, first placement space 22, second buffer portion 23, fifth placement space 24, first buffer portion 25, first air outlet 28, second air outlet 26, accessory box 27, body 29, third air outlet 30, abutting surface 31, first folding surface 32, ninth folding surface 33, tenth folding surface 34, eleventh folding surface 35, twelfth folding surface 36, nineteenth surface 37, third fitting hole 38, twenty-first surface 39, fifteenth folding surface 41, sixteenth folding surface 40, fourteenth folding surface 42, twenty-second surface 43, seventeenth folding surface 44, eighteenth folding surface 45, twenty-sixth surface 46, twenty-third surface 48, twenty-fifth surface 49, second outward folding surface 50, second folding surface 59, third folding surface 57, fourth folding surface 56, fifth folding surface 54, sixth folding surface 53, seventh folding surface 52, eighth folding surface 51, twenty-fourth surface 55, twentieth surface 58, third outward folding surface 60, first tongue 62, second tongue 63, second placement space 64, first outward folding surface 65, first jack 66, twenty-seventh folding surface 67, twenty-eighth folding surface 68, twenty-ninth folding surface 69, thirtieth folding surface 70, thirty-first folding surface 71, thirty-second folding surface 72, thirty-third folding surface 73, thirty-fourth folding surface 74, thirty-fifth folding surface 75, fourth outward folding surface 77, buckle hole 76, thirteenth folding surface 78. Detailed implementation manners
[0025] To further understand the features, technical means, specific purposes and functions achieved by the present utility model, the present utility model will be further described in detail below in conjunction with the detailed implementation manners and the drawings.
[0026] In the present utility model, unless otherwise clearly defined and limited, the terms "installation", "connection", "connection", "fixation" and other terms should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0027] Please refer to Figures 1-5As shown in the figure, the present utility model provides a hair dryer packaging with a compact and environmentally friendly structure, including an outer box 10 and a first inner card structure 11 and a second inner card structure 12 arranged inside the outer box 10. The first inner card structure 11 includes a first folding surface 32, a second folding surface 59, a third folding surface 57, a fourth folding surface 56, a fifth folding surface 54, a sixth folding surface 53, a seventh folding surface 52, an eighth folding surface 51, which are cut and formed from a cardboard and connected in sequence. A ninth folding surface 33, a tenth folding surface 34, an eleventh folding surface 35 are formed on one side in the width direction of the second folding surface 59 and connected in sequence. A twelfth folding surface 36, a thirteenth folding surface 78, a fourteenth folding surface 42 are formed on one side in the length direction of the eleventh folding surface 35 and connected in sequence. A fifteenth folding surface 41 and a sixteenth folding surface 40 are formed on one side in the width direction of the fourteenth folding surface 42 and connected in sequence. A seventeenth folding surface 44 and an eighteenth folding surface 45 are formed on the other side in the width direction of the fourteenth folding surface 42 and connected in sequence. A nineteenth surface 37 is formed on one side in the length direction of the twelfth folding surface 36. A twentieth surface 58 is formed on the other side in the width direction of the second folding surface 59. A twenty-first surface 39 is formed on one side in the width direction of the fifteenth folding surface 41. A twenty-second surface 43 is formed on one side in the width direction of the seventeenth folding surface 44. A twenty-third surface 48 is formed on one side in the width direction of the fourth folding surface 56. A twenty-fourth surface 55 and a twenty-fifth surface 49 are formed on opposite sides in the width direction of the fifth folding surface 54. A twenty-sixth surface 46 is formed on one side in the length direction of the sixth folding surface 53. A first fitting hole 14 and a second fitting hole 13 are cut on the second folding surface 59; at the connection between the second folding surface 59 and the ninth folding surface 33 and at the position corresponding to the second fitting hole 13, a first outward folding surface 65 is cut. At the connection between the fifth folding surface 54 and the sixth folding surface 53, a second outward folding surface 50 is cut. At the connection between the fifth folding surface 54 and the fourth folding surface 56, a third outward folding surface 60 is cut;
[0028] When in the formed state, the first folding surface 32, the twentieth surface 58 and the first outward folding surface 65 are all folded downward by 90° to form a first buffer seat 15, and the third folding surface 57 and the ninth folding surface 33 are both folded upward by 90° to form a first placement space 22;
[0029] The fourth folding surface 56 is folded downward by 180° and then abuts against the third folding surface 57. The fifth folding surface 54 is folded horizontally by 90°. The sixth folding surface 53 is folded upward by 90°. The twenty-fourth surface 55, the twenty-fifth surface 49, the second outward folding surface 50, and the third outward folding surface 60 are all folded downward by 90° to form a second buffer seat 16. The twenty-third surface 48 is folded by 90° toward the side of the sixth folding surface 53 to form a second placement space 64;
[0030] The seventh folding surface 52 is folded downward by 180° and then abuts against the sixth folding surface 53. The eighth folding surface 51 is folded horizontally by 90°. The twenty-sixth surface 46 is folded by 90° toward the side of the eighth folding surface 51 to form a third placement space 17;
[0031] The tenth folding surface 34 is folded downward by 180°, the eleventh folding surface 35 is folded horizontally by 90°, the twelfth folding surface 36 is folded upward by 90°, and the nineteenth surface 37 is folded by 90° on the side close to the eleventh folding surface 35 to form the fourth placement space 20;
[0032] The thirteenth folding surface 78 is folded horizontally by 90°, the fourteenth folding surface 42 is folded downward by 90°, the seventeenth folding surface 44 and the fifteenth folding surface 41 are both folded by 90° on the side close to the twelfth folding surface 36, the twenty-first surface 39 and the twenty-second surface 43 are both folded toward each other by 90° and then are in close contact with the inner side surface of the thirteenth folding surface 78, and the eighteenth folding surface 45 and the sixteenth folding surface 40 are folded toward each other by 90° and then are in close contact with the inner side surface of the twelfth folding surface 36 to form the buffer fitting part 21;
[0033] The second inner clamping structure 12 is correspondingly covered directly above the second placement space 64 and the third placement space 17.
[0034] The second inner clamping structure 12 includes a twenty-seventh folding surface 67, a twenty-eighth folding surface 68, a twenty-ninth folding surface 69, a thirtieth folding surface 70, a thirty-first folding surface 71, a thirty-second folding surface 72, a thirty-third folding surface 73, a thirty-fourth folding surface 74, and a thirty-fifth folding surface 75 which are cut and formed from a cardboard and connected in sequence;
[0035] When in the formed state, the thirtieth folding surface 70 and the thirty-second folding surface 72 are both folded upward by 90°, the twenty-ninth folding surface 69 and the thirty-third folding surface 73 are both folded horizontally by 90°, the twenty-eighth folding surface 68 and the thirty-fourth folding surface 74 are both folded downward by 90°, the twenty-seventh folding surface 67 is folded by 90° on the side close to the thirtieth folding surface 70 and then is in close contact with the thirty-first folding surface 71, and the thirty-fifth folding surface 75 is folded by 90° on the side close to the thirty-second folding surface 72 and then is in close contact with the thirty-first folding surface 71; the twenty-seventh folding surface 67, the twenty-eighth folding surface 68, the twenty-ninth folding surface 69, and the thirtieth folding surface 70 form the first buffer part 25, the thirty-second folding surface 72, the thirty-third folding surface 73, the thirty-fourth folding surface 74, and the thirty-fifth folding surface 75 form the second buffer part 23, and a fifth placement space 24 is formed between the first buffer part 25 and the second buffer part 23. An accessory box 27 is fitted and placed in the fifth placement space 24.
[0036] The first and second inserting tongues 62 and 63 are cut on opposite sides of the twelfth folding surface 36 in the length direction, the first inserting hole 66 for inserting the second inserting tongue 63 is cut at the connection between the fifteenth folding surface 41 and the sixteenth folding surface 40, and the second inserting hole 19 for inserting the first inserting tongue 62 is cut at the connection between the seventeenth folding surface 44 and the eighteenth folding surface 45. When in the molding state, the cooperation between the second inserting tongue 63 and the first inserting hole 66 and the first inserting tongue 62 and the second inserting hole 19 ensures that the buffering engaging portion 21 will not be deformed.
[0037] The side walls of the first embedding hole 14 and the second embedding hole 13 are circumferentially cut with a plurality of abutment surfaces 31. When the product is placed in the first embedding hole 14 and the second embedding hole 13, the abutment surfaces 31 provide abutment force with the product to ensure that the product can be stably placed in the first embedding hole 14 and the second embedding hole 13.
[0038] The thirty-first folding surface 71 is provided with fourth outward-turned folding surfaces 77 on both sides opposite to the first buffer portion 25 and the second buffer portion 23, and the twenty-eighth folding surface 68 and the thirty-fourth folding surface 74 are provided with button holes 76 that cooperate with the fourth outward-turned folding surfaces 77. The cooperation between the fourth outward-turned folding surface 77 and the button holes 76 ensures that the first buffer portion 25 and the second buffer portion 23 will not be deformed.
[0039] A third interlocking hole 38 is cut across the twelfth folding surface 36 and the thirteenth folding surface 78 , and the protruding position of the product is given way through the third interlocking hole 38 , thereby ensuring that the product can be placed stably.
[0040] In the present embodiment, the first inner card structure is formed by cutting a cardboard, which is folded to form a first placement space, a second placement space, a third placement space, and a fourth placement space. The first placement space can accommodate the first air outlet 28 and the second air outlet 26 of the hair dryer, and the second air outlet 26 is correspondingly embedded and placed in the first embedding hole 14, and the first air outlet 28 is correspondingly embedded and placed in the second embedding hole 13. The second placement space can accommodate the body 29 of the hair dryer, and the fourth placement space 20 can accommodate the third air outlet 30. The third placement space can be used to store wires; the accessory box 27 can accommodate scattered parts of the hair dryer. Through such a structural setting, the structure of the utility model is compact and the space utilization rate is high, and the first buffer seat, the second buffer seat, the buffer embedding part, the first buffer part 25, and the second buffer part 23 are formed, thereby providing good anti-seismic buffering performance for each part of the product.
[0041] The above-described embodiments merely represent one implementation manner of the present utility model. The description thereof is relatively specific and detailed, but it should not be construed as a limitation to the scope of the patent of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several modifications and improvements can still be made, and these all fall within the protection scope of the present utility model. Therefore, the protection scope of the patent of the present utility model shall be subject to the appended claims.
Claims
1. A compact and environmentally friendly hair dryer package, comprising an outer box (10) and a first inner card structure (11) and a second inner card structure (12) arranged inside the outer box (10), characterized in that: The first inner card structure (11) includes a first folding surface (32), a second folding surface (59), a third folding surface (57), a fourth folding surface (56), a fifth folding surface (54), a sixth folding surface (53), a seventh folding surface (52), an eighth folding surface (51) which are cut and formed from a cardboard and connected in sequence, a ninth folding surface (33), a tenth folding surface (34), an eleventh folding surface (35) formed on one side in the width direction of the second folding surface (59) and connected in sequence, a twelfth folding surface (36), a thirteenth folding surface (78), a fourteenth folding surface (42) formed on one side in the length direction of the eleventh folding surface (35) and connected in sequence, a fifteenth folding surface (41) and a sixteenth folding surface (40) formed on one side in the width direction of the fourteenth folding surface (42) and connected in sequence, a seventeenth folding surface (44) and an eighteenth folding surface (45) formed on the other side in the width direction of the fourteenth folding surface (42) and connected in sequence, a nineteenth surface (37) formed on one side in the length direction of the twelfth folding surface (36), a twentieth surface (58) formed on the other side in the width direction of the second folding surface (59), a twenty - first surface (39) formed on one side in the width direction of the fifteenth folding surface (41), a twenty - second surface (43) formed on one side in the width direction of the seventeenth folding surface (44), a twenty - third surface (48) formed on one side in the width direction of the fourth folding surface (56), a twenty - fourth surface (55) and a twenty - fifth surface (49) formed on opposite sides in the width direction of the fifth folding surface (54), a twenty - sixth surface (46) formed on one side in the length direction of the sixth folding surface (53). A first fitting hole (14) and a second fitting hole (13) are cut on the second folding surface (59); at the connection between the second folding surface (59) and the ninth folding surface (33) and at the position corresponding to the second fitting hole (13), a first outward - folding surface (65) is cut, at the connection between the fifth folding surface (54) and the sixth folding surface (53), a second outward - folding surface (50) is cut, and at the connection between the fifth folding surface (54) and the fourth folding surface (56), a third outward - folding surface (60) is cut; When in the formed state, the first folding surface (32), the twentieth surface (58) and the first outward - folding surface (65) are all folded downward by 90° to form a first buffer seat (15), and the third folding surface (57) and the ninth folding surface (33) are both folded upward by 90° to form a first placement space (22); After the fourth folding surface (56) is folded downward by 180°, it is in close contact with the third folding surface (57). The fifth folding surface (54) is folded horizontally by 90°. The sixth folding surface (53) is folded upward by 90°. The twenty-fourth surface (55), the twenty-fifth surface (49), the second outward folding surface (50), and the third outward folding surface (60) are all folded downward by 90° to form the second buffer seat (16). The twenty-third surface (48) is folded by 90° toward the side of the sixth folding surface (53) to form the second placement space (64). After the seventh folding surface (52) is folded downward by 180°, it is in close contact with the sixth folding surface (53). The eighth folding surface (51) is folded horizontally by 90°. The twenty-sixth surface (46) is folded by 90° toward the side of the eighth folding surface (51) to form the third placement space (17). The tenth folding surface (34) is folded downward by 180°. The eleventh folding surface (35) is folded horizontally by 90°. The twelfth folding surface (36) is folded upward by 90°. The nineteenth surface (37) is folded by 90° toward the side of the eleventh folding surface (35) to form the fourth placement space (20). The thirteenth folding surface (78) is folded horizontally by 90°. The fourteenth folding surface (42) is folded downward by 90°. The seventeenth folding surface (44) and the fifteenth folding surface (41) are both folded by 90° toward the side of the twelfth folding surface (36). The twenty-first surface (39) and the twenty-second surface (43) are both folded toward each other by 90° and then are in close contact with the inner side surface of the thirteenth folding surface (78). The eighteenth folding surface (45) and the sixteenth folding surface (40) are folded toward each other by 90° and then are in close contact with the inner side surface of the twelfth folding surface (36) to form the buffer fitting part (21). The second inner clamping structure (12) is correspondingly covered directly above the second placement space (64) and the third placement space (17).
2. A compact and environmentally friendly hair dryer packaging according to claim 1, characterized in that: First tongues (62) and second tongues (63) are cut on both opposite sides in the length direction of the twelfth folding surface (36). A first jack (66) for inserting the second tongue (63) is cut at the connection between the fifteenth folding surface (41) and the sixteenth folding surface (40). A second jack (19) for inserting the first tongue (62) is cut at the connection between the seventeenth folding surface (44) and the eighteenth folding surface (45).
3. A compact and environmentally friendly hair dryer packaging according to claim 1, characterized in that: A plurality of abutting surfaces (31) are circumferentially cut on the side walls of the first fitting hole (14) and the second fitting hole (13).
4. A compact and environmentally friendly hair dryer packaging according to claim 1, characterized in that: The second inner clamping structure (12) includes a twenty-seventh folding surface (67), a twenty-eighth folding surface (68), a twenty-ninth folding surface (69), a thirtieth folding surface (70), a thirty-first folding surface (71), a thirty-second folding surface (72), a thirty-third folding surface (73), a thirty-fourth folding surface (74), and a thirty-fifth folding surface (75) which are cut and formed from a cardboard and are sequentially connected. When in the formed state, the 30th folding surface (70) and the 32nd folding surface (72) are both folded upward by 90°, the 29th folding surface (69) and the 33rd folding surface (73) are both folded horizontally by 90°, the 28th folding surface (68) and the 34th folding surface (74) are both folded downward by 90°, one side of the 27th folding surface (67) close to the 30th folding surface (70) is folded by 90° and then is in abutting contact with the 31st folding surface (71); one side of the 35th folding surface (75) close to the 32nd folding surface (72) is folded by 90° and then is in abutting contact with the 31st folding surface (71); the 27th folding surface (67), the 28th folding surface (68), the 29th folding surface (69), and the 30th folding surface (70) form a first buffer portion (25), the 32nd folding surface (72), the 33rd folding surface (73), the 34th folding surface (74), and the 35th folding surface (75) form a second buffer portion (23), and a fifth placement space (24) is formed between the first buffer portion (25) and the second buffer portion (23).
5. A hair dryer packaging that is structurally compact and environmentally friendly according to claim 4, characterized in that: Fourth outward folding surfaces (77) are cut and provided on both opposite sides of the 31st folding surface (71) close to the first buffer portion (25) and the second buffer portion (23), and buckle holes (76) matched with the fourth outward folding surfaces (77) are cut and provided on both the 28th folding surface (68) and the 34th folding surface (74).
6. A compact and environmentally friendly hair dryer packaging according to claim 1, characterized in that: A third fitting hole (38) is cut and provided across between the 12th folding surface (36) and the 13th folding surface (78).
7. A compact and environmentally friendly hair dryer packaging according to claim 4, characterized in that: An accessory box (27) is fitted and placed in the fifth placement space (24).