CONNECTING STRUCTURE FOR ASSEMBLY AND ASSEMBLED APPARATUS USING THE SAME
20200291975 ยท 2020-09-17
Inventors
- Ju-Chiung TSENG (New Taipei City, TW)
- Yi-Sheng TSENG (New Taipei City, TW)
- Yi-Hung TSENG (New Taipei City, TW)
Cpc classification
A47B2230/07
HUMAN NECESSITIES
F16B12/2036
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B12/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16B12/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A connecting structure for assembly includes a body, an inserting part, a latching part, and a control part. The body has a plug hole and a guide slot disposed toward the plug hole. The inserting part is detachably plugged into the plug hole correspondingly and has a latching portion. The latching part is slidely connected to and guided by the guide slot; the latching part has a latching body latched to the latching portion correspondingly. The control part is disposed movably in the body and selectively drives the latching part to reciprocate along the guide slot. Therefore, the esthetic effects of covering and hiding each other for assembled plates and the effect of a smooth, labor-saving, and even rotation for the control part are obtained.
Claims
1. A connecting structure for assembly, comprising: a body having a plug hole and a guide slot disposed toward and leading to the plug hole; an inserting part detachably plugged into the plug hole correspondingly and having a latching portion; a latching part slidely connected to and guided by the guide slot, wherein the latching part has a latching body latched to the latching portion correspondingly; and a control part disposed movably in the body and selectively driving the latching part to reciprocate along the guide slot, wherein when the control part drives the latching part to slide toward the plug hole, the latching body is latched to the latching portion correspondingly, wherein when the control part drives the latching part to slide far away from the plug hole, the latching body is separated from the latching portion to release the latching state.
2. The connecting structure for assembly according to claim 1, wherein the guide slot intersects with the plug hole.
3. The connecting structure for assembly according to claim 1, wherein the body defines an axial direction along which the plug hole is formed in the body, wherein the guide slot is formed radially in the body, communicating with and intersecting with the plug hole.
4. The connecting structure for assembly according to claim 1, wherein the inserting part is a rod body and the latching portion is a neck portion formed at an end of the rod body, wherein the latching part is a tongue sheet and the latching body is at least one projecting ear which is formed at an end of the tongue sheet and extends into the neck portion correspondingly.
5. The connecting structure for assembly according to claim 1, wherein the control part is a shaft and rotationally and axially connected to the body, wherein an end of the shaft eccentrically drives the latching part to reciprocate along the guide slot and the other end of the shaft is exposed out of the body to be controlled.
6. The connecting structure for assembly according to claim 1, wherein the body has a first end surface and defines an axial direction perpendicular to the first end surface, wherein the plug hole is formed along the axial direction in the body and forms a plug opening exposed on the first end surface, wherein the control part is axially connected to the body along the axial direction and has a control end exposed out of the first end surface, wherein the guide slot is radially formed in the body and connects between the plug hole and the control part.
7. The connecting structure for assembly according to claim 6, wherein the body further has a supporting flange protruding from the first end surface, wherein the control end is exposed out of the supporting flange.
8. An assembled apparatus using a connecting structure for assembly, comprising: a first plate having a joining plane; a second plate having a joining side disposed adjacent to the joining plane; and a connecting structure comprising: a body embedded in the joining plane and having a plug hole and a guide slot disposed toward and leading to the plug hole; an inserting part fixed on the joining side, detachably plugged into the plug hole correspondingly, and having a latching portion; a latching part slidely connected to and guided by the guide slot, wherein the latching part has a latching body latched to the latching portion correspondingly; and a control part disposed movably in the body and selectively driving the latching part to reciprocate along the guide slot, wherein when the control part drives the latching part to slide toward the plug hole, the latching body is latched to the latching portion correspondingly to join the second plate to the first plate, wherein when the control part drives the latching part to slide far away from the plug hole, the latching body is separated from the latching portion to release the latching state.
9. The assembled apparatus using a connecting structure for assembly according to claim 8, wherein the body has a first end surface and defines an axial direction perpendicular to the first end surface, wherein the plug hole is formed along the axial direction in the body and forms a plug opening exposed on the first end surface, wherein the control part is axially connected to the body along the axial direction and has a control end exposed out of the first end surface, wherein the guide slot is radially formed in the body and connects between the plug hole and the control part.
10. The assembled apparatus using a connecting structure for assembly according to claim 9, wherein the body further has a supporting flange protruding from the first end surface and protruding out of the joining plane, wherein the supporting flange supports the second plate in the gravity direction or presses against the second plate in the anti-gravity direction, wherein the control end is exposed out of the supporting flange.
11. The assembled apparatus using a connecting structure for assembly according to claim 8, wherein the guide slot intersects with the plug hole.
12. The assembled apparatus using a connecting structure for assembly according to claim 8, wherein the body defines an axial direction along which the plug hole is formed in the body, wherein the guide slot is formed radially in the body, communicating with and intersecting with the plug hole.
13. The assembled apparatus using a connecting structure for assembly according to claim 8, wherein the inserting part is a rod body and the latching portion is a neck portion formed at an end of the rod body, wherein the latching part is a tongue sheet and the latching body is at least one projecting ear which is formed at an end of the tongue sheet and extends into and latches the neck portion correspondingly.
14. The assembled apparatus using a connecting structure for assembly according to claim 8, wherein the control part is a shaft and rotationally and axially connected to the body, wherein an end of the shaft eccentrically drives the latching part to reciprocate along the guide slot and the other end of the shaft is exposed out of the body to be controlled.
Description
BRIEF DESCRIPTION OF DRAWING
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION OF THE INVENTION
[0022] As shown in
[0023] The body 1 may have any shape and a cylinder is used as an example as shown in
[0024] The inserting part 4 may be any component having a function of insertion and connection; a rod body is used as an example as shown in
[0025] The latching part 2 may be any component having a latching function; a tongue sheet is used as an example as shown in
[0026] The control part 3 may be any component which has a control function and moves with respect to the body 1; as shown in
[0027] The driving end 32 of the control part 3 can drive the latching part 2 to slide using any kind of structure; for example, as shown in
[0028] One of the first plate 800 and the second plate 900 may be a vertical plate (e.g., the left plate or the right plate); the other may be a transversely placed plate (e.g., the top plate or the bottom plate). The joining side 9 of the second plate 900 is joined to the joining plane 8 of the first plate 800.
[0029] A buried hole 81 is formed on the joining plane 8; the body 1 is embedded and fixed in the buried hole 81 such that the first end surface 1a is exposed out of the buried hole 81, at most flush with the joining plane 8. Thus, the plug hole 11 and the control end 31 are both exposed out of the buried hole 81. The other end of the inserting part 4 is inserted in and fixed in the joining side 9 such that one end of the latching portion 41 protrudes from the joining side 9.
[0030] Please refer to
[0031] Conversely, during the disassembly process, only the control part 3 is reversed to eccentrically drive the latching part 2 to slide out reversely such that the latching body 21 is separated from the latching portion 41 to release the latching state. Then, the inserting part 4 can be removed reversely to detach the second plate 900 from the first plate 800.
[0032] As shown in
[0033] As shown in
[0034] In summary, compared with the prior art, the present invention has the following effects. Only two holes are required for the first plate 800 and the second plate 900 to be assembled. That is, the buried hole 81 and the hole (not labeled) for the fixing of the inserting part 4. Also, the two holes are covered and hidden each other after the first plate 800 and the second plate 900 are closed joined together, which provides an esthetic appearance. The control part 3 in the shaft hole 13 rotates with respect to the body 1 instead of the rotation of the body 1 with respect to the buried hole 81; thus, the control part 3 used to control and release the latching state has the effect of a smooth and labor-saving rotation totally without being stuck in the inner wall of the shaft hole 13.
[0035] Moreover, the present invention has other effects. By means of the control part 3 eccentrically driving the latching part 2 to reciprocate along the guide slot 12, a high driving speed is achieved and the user rotates the hand tool for only a half turn to latch or unlatch, which is very fast and convenient for the assembly process. Also, only a small portion of the latching body 21 is required to achieve the latching and the unlatching and thus only a short course of reciprocation of the latching part 2 is needed to relatively decrease the inner diameter of the shaft hole 13 to the minimum size. In this way, the control end 31 exposed out of the first end surface la and the inner diameter of the shaft hole 13 can be decreased to the minimum sizes, which hardly affects the esthetic appearance. Through the supporting flange 14, the second plate 900 as the top plate or the bottom plate can be supported or be pressed against, which greatly enhances the structural strength of the assembled cabinet or case.