MODULARIZED LARGE-SIZED CARRIER
20220089325 · 2022-03-24
Inventors
- MING-CHIEN CHIU (New Taipei City, TW)
- EN-NIEN SHEN (New Taipei City, TW)
- YUNG-CHIN PAN (New Taipei City, TW)
- CHENG-EN CHUNG (New Taipei City, TW)
- PO-TING LEE (New Taipei City, TW)
- WEI-CHIEN LIU (New Taipei City, TW)
- TZU-WEI HUANG (New Taipei City, TW)
Cpc classification
H01L21/67386
ELECTRICITY
H01L21/67393
ELECTRICITY
B65D21/0228
PERFORMING OPERATIONS; TRANSPORTING
B65D21/0213
PERFORMING OPERATIONS; TRANSPORTING
B65D21/0204
PERFORMING OPERATIONS; TRANSPORTING
H01L21/67346
ELECTRICITY
B65D21/083
PERFORMING OPERATIONS; TRANSPORTING
B65D25/107
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A modularized large-sized carrier includes at least two body modules, at least one hermetic seal component and a back board. The body modules are connected to each other peripherally and arranged in a depth direction. The hermetic seal component surrounds junctions of the body modules. The back board is disposed behind the last one of the body modules. The modularized large-sized carrier overcomes existing carrier size limitations otherwise caused by injection molding machines and continuously expands in the depth direction to thereby enlarge the airtight storage space of the carrier.
Claims
1. A modularized large-sized carrier, comprising: at least two body modules connected to each other peripherally and arranged in a depth direction; at least one hermetic seal component surrounding junctions of the body modules; and a back board disposed behind the last said body module.
2. The modularized large-sized carrier of claim 1, wherein the back board and each said body module are integrally connected.
3. The modularized large-sized carrier of claim 2, wherein the body modules are fastened with screws or snap-engaged with each other.
4. The modularized large-sized carrier of claim 1, wherein the back board is transparent, translucent or opaque.
5. The modularized large-sized carrier of claim 1, wherein the body modules are fastened with screws or snap-engaged with each other.
6. The modularized large-sized carrier of claim 1, wherein two outer sides of the body modules each have a delivery channel extending in the depth direction.
7. The modularized large-sized carrier of claim 6, wherein the delivery channel has a positioning notch portion.
8. The modularized large-sized carrier of claim 6, wherein two outer sides of the body modules each have a perpendicular slot, and the perpendicular slot extends in a height direction perpendicular to the depth direction.
9. The modularized large-sized carrier of claim 1, wherein two outer sides of the body modules each have a perpendicular slot, and the perpendicular slot extends in a height direction perpendicular to the depth direction.
10. The modularized large-sized carrier of claim 1, further comprising: an outer bottom board having an outer side and an inner side, the inner side facing bottom sides of the body modules; a plurality of reinforcement groove elements removably disposed on the outer side and each having a rail; and a plurality of reinforced elements being slender, spaced apart by a specific distance and arranged between the outer bottom board and bottom sides of the body modules, wherein bottoms and tops of the reinforced elements abut against the outer bottom board and bottom sides of the body modules, respectively.
11. The modularized large-sized carrier of claim 10, wherein the reinforced elements, the outer bottom board and bottom sides of the body modules form a H-shaped structure.
12. The modularized large-sized carrier of claim 10, wherein the reinforcement groove elements are made of metal.
13. The modularized large-sized carrier of claim 10, wherein the reinforced elements are made of a metal or carbon fiber composite.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF THE INVENTION
[0024] To facilitate understanding of the object, characteristics and effects of this present disclosure, embodiments together with the attached drawings for the detailed description of the present disclosure are provided.
[0025] Referring to
[0026] In this embodiment, at least two body modules 1 each comprise a first body module 11 and a second body module 12. The edges of first body module 11 and the edges of second body module 12 are fixedly connected to each other and arranged in a depth direction d. Their connection is achieved with screws or effectuated with their engaging portions through snap-engagement. In a variant embodiment, the modularized large-sized carrier 100 may have much more body modules 1, including a third body module and a fourth body module, fitted together in the depth direction d, so as to form an airtight storage space of a large-sized carrier.
[0027] The hermetic seal components 2 surround junctions of the body modules 1 (first body module 11 and second body module 12) to hermetically seal the junction of the first body module 11 and second body module 12. Given the third body module and fourth body module, the hermetic seal component 2 may also be disposed in the vicinity of the body modules 1. The hermetic seal component 2 is, for example, an airtight rubber strip, but the present disclosure is not limited thereto.
[0028] The back board 3 is disposed behind the last one of the body modules 1. In this embodiment, the last one of the body modules 1 is the second body module 12, and thus the back board 3 is disposed at the second body module 12. In this embodiment, the back board 3 and second body module 12 are separate, and thus the hermetic seal component 2 is disposed between the back board 3 and the second body module 12 to hermetically seal the junction of the second body module 12 and the back board 3. In a variant embodiment, the back board 3 is integrally formed behind the last one of the body modules 1. Thus, the back board 3 and the last one of the body modules 1 are integrally connected by injection molding. For instance, the second body module 12 and the back board 3 are the same injection element.
[0029] The modularized large-sized carrier 100 further has a front door (not shown) disposed in front of the first body module 11 (relative to the back board 3). The front door, body modules 1 and back board 3 are injection-style plastic elements, but the present disclosure is not limited thereto.
[0030] According to the present disclosure, since the body modules 1 and the hermetic seal component 2 are coupled together, the modularized large-sized carrier 100 overcomes existing carrier size limitations otherwise caused by injection molding machines and continuously expands in the depth direction to thereby enlarge the airtight storage space of the carrier.
[0031] In this embodiment, the back board 3 is transparent, translucent or opaque. Referring to
[0032] In this embodiment, two outer sides of the body modules 1 each have a delivery channel 7 extending in depth direction d.
[0033] In this embodiment, the two outer sides of the body modules 1 each have a perpendicular slot 8. The perpendicular slot 8 extends in a height direction h perpendicular to the depth direction d. The perpendicular slot 8 at least comprises two parallel ribs 81. When the modularized large-sized carrier of the present disclosure rotates by 90 degrees, the ribs 71 of the delivery channel 7 can no longer bear weight (its extension direction is parallel to weight direction). At this point in time, the robotic arm grips the perpendicular slot 8 and uses the ribs 81 of the perpendicular slot 8 as the bear weight surface after rotation.
[0034] Referring to
[0035] The outer bottom board 4 has an outer side 41 and an inner side 42. The outer side 41 is the outer surface of a machine to allow the modularized large-sized carrier 100 to come into contact with the outside. By contrast, the inner side 42 faces bottom sides of the body modules 1.
[0036] Referring to
[0037] Referring to
[0038] In this embodiment, the reinforcement groove elements 5 are made of metal. However, the present disclosure is not limited thererto, as the reinforcement groove elements 5 may also be made of any other material which is mechanically strong and resistant to wear and tear.
[0039] In this embodiment, the reinforced elements 6 are made of metal. However, the present disclosure is not limited thererto, as the reinforced elements 6 may also be made of any material which is mechanically strong and lightweight, such as a carbon fiber composite.
[0040] While the present disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the present disclosure set forth in the claims.