Transport box with compactly spliced core seats

By designing a transportation box with compact splicing of core seats, using acute angle splicing and accessories carrier tables, the problem of waste of transportation box space is solved and efficient lamp storage in small transportation boxes is achieved.

CN223303156UActive Publication Date: 2025-09-05GUANGZHOU HAOYANG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202421842555.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-09-05
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

When transporting stage lamps, the improper design of existing transport boxes leads to wasting space, and the small transport boxes cannot fully utilize the capacity to accommodate multiple lamps.

Method used

The transport box with compact splicing of core seats is designed. The length direction of the first core seat and the second core seat is at an acute angle to the splicing direction. The accessories carrier table is used to support and disperse the working force, and the space in the transport box is reasonably utilized.

Benefits of technology

It realizes efficient utilization of space in small transportation boxes, can accommodate more lamps, and reduces transportation costs and resource waste.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223303156U_ABST
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Abstract

The utility model discloses a transport case with compactly spliced core seats, which comprises a case body, a first core seat and a second core seat, the first core seat and the second core seat are mutually spliced in the case body, an acute angle is formed between the length direction of the first core seat and the second core seat and the splicing direction of the first core seat and the second core seat, and the top of each of the first core seat and the second core seat is provided with at least one lamp cavity for accommodating a lamp. A first splicing side wall, extending in the length direction, of the first core seat is spliced with a second splicing side wall, extending in the length direction, of the second core seat, and a first section located in the middle of the first splicing side wall directly abuts against a fourth section located in the middle of the second splicing side wall. The acute angle is formed between the length direction of the first core seat and the length direction of the second core seat and the splicing direction of the first core seat and the second core seat, so that a plurality of lamps which are wider than the inner width of the transport case or need a space wider than the inner width of the transport case after being arranged can be placed in the first core seat and the second core seat, and reasonable utilization of the space in the transport case is facilitated; and more lamps can be accommodated in the small transportation box.
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Description

Technical Field

[0001] The utility model relates to the technical field of transport boxes, and more particularly to a transport box with compactly spliced ​​core seats. Background Art

[0002] When transporting stage lights, they are typically shipped in shipping boxes (air crates). Different countries may have different box size requirements, and stage lights vary greatly in size. When a shipping box accommodates more than two lamps, if the holders used to secure the lights are improperly designed—for example, if the holders are arranged along the length of the box, with their length perpendicular to the length of the box (i.e., the width of the box), the space inside the box may not be fully utilized. This can result in a small shipping box, which apparently has ample space, being unable to accommodate the lights, necessitating a larger box, wasting both money and resources. Utility Model Content

[0003] In order to overcome at least one of the defects of the prior art, the present invention provides a transport box with compactly spliced ​​core holders, which can make full use of the inner space and use a smaller transport box as much as possible to complete the transportation of the same number of lamps.

[0004] In order to solve the above technical problems, the technical solution adopted by the utility model is: a transport box with compactly spliced ​​core seats, comprising a box body and a first core seat and a second core seat spliced ​​together in the box body, and the length direction of the first core seat and the second core seat is at an acute angle to the splicing direction of the two, and the top of the first core seat and the second core seat are each provided with at least one lamp cavity for accommodating a lamp, the first splicing side wall of the first core seat extending along its length direction is spliced ​​with the second splicing side wall of the second core seat extending along its length direction, and the first section located in the middle of the first splicing side wall directly abuts the fourth section located in the middle of the second splicing side wall.

[0005] The transport box with compactly spliced ​​core bases is configured so that the length direction of the first core base and the second core base is at an acute angle to the splicing direction of the two (i.e., at an acute angle to the length direction of the transport box). Thus, lamps that are wider than the internal width of the transport box or that require a space wider than the internal width of the transport box after multiple arrangements can be placed in the first core base and the second core base, which is beneficial to the rational use of the space in the transport box and enables a small transport box to accommodate more lamps.

[0006] Furthermore, the angle between the length direction of the first and second core holders and their joining direction is greater than 30° and less than 70°. This angle range controls the size of the corner space between the ends of the first and second core holders due to the tilted position of the first and second core holders within a reasonable range. This allows the length of the first and second core holders to be appropriately extended to accommodate wider lamps or lamps that are wider when arranged, while also preventing the overall length of the first and second core holders (i.e., the space occupied in the longitudinal direction of the transport box) from being excessively large, which would require replacing the transport box with a larger one. This maximizes space utilization.

[0007] Furthermore, an accessory support platform protrudes from the second section at the end of the first spliced ​​side wall, and the accessory support platform abuts the fifth section at the end of the second spliced ​​side wall. The angle between the fifth section and the fourth section is greater than 120° and less than 160°. The angle between the fifth section and the fourth section makes room for the accessory support platform and ensures the wall thickness of the lamp cavity. The accessory support platform can be used to place accessories, making rational use of the corner space between the ends of the first and second core holders due to the oblique placement of the first and second core holders, without the need for an additional accessory slot. In addition, the accessory support platform abuts the fifth section at the end of the second spliced ​​side wall, which can effectively disperse the mutual force between the first and second core holders.

[0008] Furthermore, an accessory support platform is protruded from the sixth section located at the other end of the second spliced ​​side wall, and the accessory support platform abuts the third section located at the other end of the first spliced ​​side wall. The angle between the third section and the first section is greater than 120° and less than 160°. The angle between the third section and the first section makes room for the accessory support platform and ensures the wall thickness of the lamp cavity. The accessory support platform can also be used to place more accessories, making rational use of the corner space between the other ends of the first and second core holders due to the oblique placement of the first and second core holders, without the need for additional accessory slots. In addition, the accessory support platform abuts the third section located at the end of the first spliced ​​side wall, which can further disperse the mutual force between the first and second core holders.

[0009] Furthermore, the accessory support platform simultaneously abuts against the inner wall of the box body, supports the first core base or the second core base in the width direction of the box body, and disperses the force exerted by the box body on the first core base or the second core base.

[0010] Furthermore, the two side surfaces of the accessory support platform are perpendicular to each other, and are subjected to forces in the length direction and width direction of the box body, thereby supporting the first core seat or the second core seat and further preventing it from shaking in these two directions.

[0011] Furthermore, the side wall of the accessory carrier has recessed grooves above and / or below the accessory carrier. The recessed groove above the accessory carrier increases the space for accommodating accessories and facilitates the removal of the first core holder or the second core holder. The recessed groove below the accessory carrier saves material.

[0012] Furthermore, the first core base also has the second splicing side wall on the side opposite to the first splicing side wall, so that the first core base can be spliced ​​to another first core base on the side away from the second core base to adapt to a longer box.

[0013] Furthermore, the first core base and the second core base have the same structure. That is, they are produced by the same mold, which is convenient for production and also convenient for the second core base to be further spliced ​​with another second core base away from the first core base to adapt to a longer box.

[0014] Furthermore, both end surfaces of the first core seat and the second core seat abut against the inner wall of the box body, thereby preventing the first core seat and the second core seat from shaking in the width direction of the box body.

[0015] Furthermore, each of the first core holder and the second core holder is provided with at least two lamp cavities, and the center line of the lamp cavities in the first core holder or the second core holder is along its length. Generally, when the length direction of the first core holder or the second core holder is perpendicular to the splicing direction of the first core holder or the second core holder, at least one more lamp cavity can be provided on the first core holder or the second core holder. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the structure in which the first core seat and the second core seat of the present invention are located in a transport box.

[0017] Figure 2 This is a structural schematic diagram of the first core base and the second core base of the present invention located in a transport box from another perspective.

[0018] Figure 3 It is a schematic diagram of the overall structure of the first core seat of the utility model.

[0019] Figure 4 It is a schematic diagram of the overall structure of the first core seat of the utility model from another perspective.

[0020] Figure 5 It is a schematic diagram of the splicing structure of the first core seat and the second core seat of the utility model.

[0021] In the picture:

[0022] 100. Box body; 200. First core base; 210. First spliced ​​side wall; 211. First section; 212. Second section; 213. Third section; 300. Second core base; 310. Second spliced ​​side wall; 311. Fourth section; 312. Fifth section; 313. Sixth section; 400. Lamp cavity; 410. Opening; 500. Accessory carrier; 510. Groove; 600. End face; 610. Material saving trough. DETAILED DESCRIPTION

[0023] The drawings are for illustrative purposes only and should not be construed as limiting this patent. To better illustrate the embodiments, some components in the drawings may be omitted, enlarged, or reduced in size, and do not represent actual product dimensions. Those skilled in the art will understand that some well-known structures and their descriptions may be omitted from the drawings. The positional relationships depicted in the drawings are for illustrative purposes only and should not be construed as limiting this patent.

[0024] like Figure 1 、 Figure 2 The present invention provides a transport box with compactly spliced ​​core holders, comprising a box body 100 and a first core holder 200 and a second core holder 300 spliced ​​together inside the box body 100, wherein the length direction of the first core holder 200 and the second core holder 300 forms an acute angle with the splicing direction of the two (i.e., the length direction of the box body 100), and the top of each of the first core holder 200 and the second core holder 300 is provided with at least one lamp cavity 400 for accommodating a lamp, and a first splicing side wall 210 of the first core holder 200 extending along its length direction is spliced ​​with a second splicing side wall 310 of the second core holder 300 extending along its length direction, and a first section 211 located in the middle of the first splicing side wall 210 directly abuts against a fourth section 311 located in the middle of the second splicing side wall 310.

[0025] The transport box with compactly spliced ​​core holders is designed so that the length direction of the first core holder 200 and the second core holder 300 is arranged at an acute angle to the splicing direction of the two (i.e., an acute angle to the length direction of the transport box). This allows lamps that are wider than the internal width of the transport box or that require a space wider than the internal width of the transport box after multiple arrangements to be placed in the first core holder 200 and the second core holder 300, which is beneficial to the rational use of the space in the transport box and enables a small transport box to accommodate more lamps.

[0026] It should be noted that the first core base 200 and the second core base 300 can be connected together as a whole, or can be independent of each other (ie, each is produced separately and then assembled). In the present application, it is preferred that they are independent of each other.

[0027] In addition, the length direction of the first core holder 200 and the second core holder 300 does not refer to the depth direction of the lamp cavity 400 (ie, the depth direction of the box body 100 ), but refers to a direction between the width direction and the length direction of the box body 100 .

[0028] Preferably, the first section 211 and the fourth section 311 are in surface-to-surface contact, and the interaction force is dispersed by utilizing the integral connection between the middle portion of the first splicing side wall 210 and the middle portion of the second splicing side wall 310 .

[0029] In a preferred embodiment of the present invention, the angle between the length direction of the first and second core holders 200 and 300 and their joining direction is greater than 30° and less than 70°. This angle range controls the size of the corner space between the ends of the first and second core holders 200 and 300 due to the tilted position of the first and second core holders 200 and 300 within a reasonable range. This allows the length of the first and second core holders 200 and 300 to be appropriately extended to accommodate wider lamps or lamps that are wider when arranged. It also prevents the overall length of the first and second core holders 200 and 300 (i.e., the space occupied in the longitudinal direction of the transport box) from being excessively large, which would require replacing the transport box with a larger one. This maximizes space utilization.

[0030] Preferably, the angle between the length direction of the first core seat 200 and the second core seat 300 and the splicing direction thereof is greater than 40° and less than 60°, more preferably, about 50°.

[0031] like Figure 3 、 Figure 4 In a preferred embodiment of the present invention, an accessory support platform 500 protrudes from the second section 212 at the end of the first spliced ​​side wall 210. The accessory support platform 500 abuts the fifth section 312 at the end of the second spliced ​​side wall 310. The angle between the fifth section 312 and the fourth section 311 is greater than 120° and less than 160°. The angle between the fifth section 312 and the fourth section 311 provides space for the accessory support platform 500 and ensures the wall thickness of the lamp cavity 400. The accessory support platform 500 can be used to place accessories, making rational use of the corner space between the ends of the first and second core holders 200 and 300 due to the inclined positioning of the two, eliminating the need for additional accessory slots. In addition, the accessory support platform 500 abuts the fifth section 312 at the end of the second spliced ​​side wall 310, effectively dispersing the mutual forces between the first and second core holders 200 and 300.

[0032] Preferably, the angle between the fifth section 312 and the fourth section 311 is greater than 130° and less than 150°, more preferably, approximately 140°. The fifth section 312 is flat, meaning that the accessory support 500 abuts against the entire end of the second splicing sidewall 310, rather than a protruding portion thereof.

[0033] like Figure 5 In a preferred embodiment of the present invention, an accessory support platform 500 protrudes from the sixth section 313 at the other end of the second spliced ​​sidewall 310. The accessory support platform 500 abuts the third section 213 at the other end of the first spliced ​​sidewall 210. The angle between the third section 213 and the first section 211 is greater than 120° and less than 160°. The angle between the third section 213 and the first section 211 provides space for the accessory support platform 500 and ensures the wall thickness of the lamp cavity 400. The accessory support platform 500 can also be used to accommodate more accessories, making rational use of the corner space between the other ends of the first and second core holders 200 and 300 due to the inclined positioning of the two, eliminating the need for additional accessory slots. In addition, the accessory support platform 500 abuts the third section 213 at the end of the first spliced ​​sidewall 210, further dispersing the mutual forces between the first and second core holders 200 and 300.

[0034] The angle between the third section 213 and the first section 211 is greater than 130° and less than 150°, more preferably about 140°. The third section 213 is a flat surface, meaning that the accessory support 500 abuts against the entire end of the first splicing side wall 210, rather than a protruding portion thereof.

[0035] like Figure 1 、 Figure 2 In a preferred embodiment of the present invention, the accessory support 500 simultaneously abuts against the inner wall of the box 100. This supports the first core holder 200 or the second core holder 300 in the width direction of the box 100, dispersing the force exerted by the box 100 on the first core holder 200 or the second core holder 300. That is, the accessory support 500 on the first core holder 200 simultaneously abuts against the second core holder 300 and the inner wall of the box 100, or the accessory support 500 on the second core holder 300 simultaneously abuts against the first core holder 200 and the inner wall of the box 100.

[0036] like Figure 3 、 Figure 4In a preferred embodiment of the present invention, the two sides of the accessory support platform 500 are perpendicular to each other. They are subjected to forces in the length and width directions of the box body 100, supporting the first core base 200 or the second core base 300 and further preventing them from shaking in these two directions.

[0037] In a preferred embodiment of the present invention, the sidewall of the accessory carrier 500 is recessed with grooves 510 above and / or below the accessory carrier 500. The recessed groove 510 above the accessory carrier 500 increases the space for accommodating accessories and facilitates the removal of the first core holder 200 or the second core holder 300. The recessed groove 510 below the accessory carrier 500 saves material.

[0038] like Figures 3 to 5 In a preferred embodiment of the present invention, the first core base 200 also has a second splicing side wall 310 on the side opposite to the first splicing side wall 210. In this way, another first core base 200 can be spliced ​​on the side of the first core base 200 away from the second core base 300 to adapt to a longer box body 100.

[0039] In the preferred embodiment of the present invention, the first core base 200 and the second core base 300 have the same structure. That is, the two are produced by the same mold, which is convenient for production and also convenient for the second core base 300 to be further spliced ​​with another second core base 300 away from the side of the first core base 200 to adapt to a longer box 100.

[0040] The first core holder 200 or the second core holder 300 at the two ends abuts against the inner wall of the box 100 . When the first core holder 200 and the second core holder 300 have the same structure, the third section 213 and the fifth section 312 respectively abut against the inner wall of the box 100 .

[0041] like Figure 1 、 Figure 2 In a preferred embodiment of the present invention, both end surfaces 600 of the first core seat 200 and the second core seat 300 abut against the inner wall of the box body 100 to prevent the first core seat 200 and the second core seat 300 from shaking in the width direction of the box body 100.

[0042] Preferably, a material-saving groove 610 is provided on the end surface 600 of the first core base 200 and the second core base 300 . More preferably, the material-saving groove 610 is located on the side of the end surface 600 away from the first splicing side wall 210 .

[0043] In this embodiment, the distance between the end faces 600 of the first core seat 200 and the second core seat 300 is 560 mm.

[0044] like Figures 1 to 5 In a preferred embodiment of the present invention, each of the first core holder 200 and the second core holder 300 is provided with at least two lamp cavities 400, and the center line of the lamp cavities 400 in the first core holder 200 or the second core holder 300 is oriented along its length. Generally, when the length direction of the first core holder 200 or the second core holder 300 is perpendicular to the splicing direction of the two, at least one more lamp cavity 400 can be provided on each of the first core holder 200 and the second core holder 300.

[0045] Preferably, the opening 410 of the lamp cavity 400 is substantially circular, with an aperture of about 300 mm and a wall thickness of about 30 mm.

[0046] It should be noted that the lamp cavities 400 in the first core holder 200 or the second core holder 300 will not completely overlap in the width direction of the box body 100 , but will be offset from each other.

[0047] Obviously, the above embodiments of the present invention are merely examples for the purpose of clearly illustrating the present invention, and are not intended to limit the implementation methods of the present invention. A person skilled in the art will be able to make other variations or modifications based on the above description. It is not necessary and impossible to enumerate all implementation methods here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the claims of the present invention.

Claims

1. A transport box with compact core bases, characterized in that: The invention comprises a box body (100) and a first core seat (200) and a second core seat (300) which are spliced ​​together in the box body (100), and the length direction of the first core seat (200) and the second core seat (300) form an acute angle with the splicing direction of the two. The top of each of the first core seat (200) and the second core seat (300) is provided with at least one lamp cavity (400) for accommodating a lamp. The first splicing side wall (210) of the first core seat (200) extending along the length direction thereof is spliced ​​with the second splicing side wall (310) of the second core seat (300) extending along the length direction thereof. The first section (211) located in the middle of the first splicing side wall (210) directly abuts against the fourth section (311) located in the middle of the second splicing side wall (310).

2. The transport box with compact core base splicing according to claim 1, characterized in that: The included angle between the length direction of the first core seat (200) and the second core seat (300) and the splicing direction of the two is greater than 30° and less than 70°.

3. The transport box with compact core base splicing according to claim 1, characterized in that: An accessory carrying platform (500) protrudes from the second section (212) located at the end of the first splicing side wall (210), and the accessory carrying platform (500) abuts against the fifth section (312) located at the end of the second splicing side wall (310), and the angle between the fifth section (312) and the fourth section (311) is greater than 120° and less than 160°.

4. The transport box with compact core base splicing according to claim 3, characterized in that: An accessory support platform (500) is protruded from the sixth section (313) located at the other end of the second splicing side wall (310), and the accessory support platform (500) abuts against the third section (213) located at the other end of the first splicing side wall (210). The fourth section (311) and the sixth section (313) are coplanar, and an angle between the third section (213) and the first section (211) is greater than 120° and less than 160°.

5. The transport box with compact core base splicing according to claim 3 or 4, characterized in that: The accessory carrying platform (500) simultaneously abuts against the inner wall of the box (100).

6. The transport box with compact core base splicing according to claim 5, characterized in that: The two side surfaces of the accessory supporting platform (500) are perpendicular to each other.

7. The transport box with compact core base splicing according to claim 3 or 4, characterized in that: The side wall where the accessory carrying platform (500) is located is recessed with a groove (510) above and / or below the accessory carrying platform (500).

8. The transport box with compact core base splicing according to claim 1, 3 or 4, characterized in that: The first core seat (200) also has the second splicing side wall (310) on the side opposite to the first splicing side wall (210).

9. The transport box with compact core blocks according to claim 8, characterized in that: The first core seat (200) and the second core seat (300) have the same structure.

10. The transport box with compact core base splicing according to claim 1, characterized in that: Both end surfaces (600) of the first core seat (200) and the second core seat (300) abut against the inner wall of the box body (100).

11. The transport box with compact core blocks according to claim 1, characterized in that: The first core base (200) and the second core base (300) are both provided with at least two lamp cavities (400), and the center connection direction of the lamp cavities (400) in the first core base (200) or the second core base (300) is the length direction thereof.