EXPANSION CONNECTOR FOR CONNECTING SQUARE TUBES
20190249700 ยท 2019-08-15
Assignee
Inventors
Cpc classification
F16B7/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B7/185
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T403/7056
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16B7/0473
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Embodiments of the present disclosure disclose an expansion connector for connecting square tubes comprising a base and a square column movably connected to the base. The square column is movable relatively to an end of the base. A first expansion piece and a second expansion piece are sleeved on the square column. The first expansion piece has a first insertion groove on a side. The first expansion piece has a first insertion piece on one end. The first insertion piece has a first bending portion which is in contact with the square column. The second expansion piece has a second insertion groove on a side. The second expansion piece has a second insertion piece on one end. The second insertion piece has a second bending portion which is in contact with the square column.
Claims
1. An expansion connector for connecting square tubes, comprising: a base and a square column movably connected to the base, wherein the square column is movable relatively to an end of the base, a first expansion piece and a second expansion piece are sleeved on the square column, the first expansion piece has a first insertion groove on a side thereof, the first expansion piece has a first insertion piece on one end thereof, the first insertion piece has a first bending portion which is in contact with the square column, the second expansion piece has a second insertion groove on a side thereof, the second expansion piece has a second insertion piece on one end thereof, the second insertion piece has a second bending portion which is in contact with the square column, the first insertion piece is in detachable engagement with the second insertion groove, the second insertion piece is in detachable engagement with the first insertion groove, and when the first insertion piece and the second insertion piece respectively abut the second insertion groove and the first insertion groove, each side of the first expansion piece and each side of the second expansion piece are expanded to abut against the inner sides of the square tube.
2. The expansion connector of claim 1, wherein the first insertion groove is positioned on one edge of the square column and the second insertion groove is positioned on another edge of the square column.
3. The expansion connector of claim 2, wherein the first insertion piece has a first inclined surface and a first locking surface, the second insertion groove has a second inclined surface and a second locking surface, the first inclined surface is in sliding contact with the second inclined surface, the first locking surface is in detachable contact with the second locking surface, and when the first inclined surface and the second inclined surface slide relatively to each other, the first locking surface moves away from the second locking surface so that the second expansion piece expands to abut against the inner sides of the square tube.
4. The expansion connector of claim 2, wherein the second insertion piece has a third inclined surface and a third locking surface, the first insertion groove has a fourth inclined surface and a fourth locking surface, the third inclined surface is in sliding contact with the fourth inclined surface, the third locking surface is in detachable contact with the fourth locking surface, and when the third inclined surface and the fourth inclined surface slide relatively to each other, the third locking surface moves away from the fourth locking surface so that the second expansion piece expands to abut against the inner sides of the square tube.
5. The expansion connector of claim 1, wherein a first boss is disposed at a connecting end of the base and the square column, the first expansion piece abuts against one end of the first boss, a second boss is disposed at an end of the square column pointing away from the base, and the second expansion piece abuts against one end of the second boss.
6. The expansion connector of claim 5, wherein a threaded hole is arranged on the base, a through hole is arranged in the square column, a bolt is inserted into the through hole, and one end of the bolt is connected with the threaded hole.
7. The expansion connector of claim 1, wherein the first insertion piece is formed by extending an end of the first expansion piece, and the second insertion piece is formed by extending an end of the second expansion piece.
8. The expansion connector of claim 7, wherein the first expansion piece is identical to the second expansion piece, and the first insertion piece is identical to the second insertion piece.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014]
[0015]
[0016]
[0017]
REFERENCE NUMBERS
[0018] base 1, square column 2, first expansion piece 3, second expansion piece 4, first insertion groove 5, first insertion piece 6, first bending portion 7, second insertion groove 8, second insertion piece 9, second bending portion 10, first inclined surface 11, first locking surface 12, second inclined surface 13, second locking surface 14, third inclined surface 15, third locking surface 16, fourth inclined surface 17, fourth locking surface 18, first boss 19, second boss 20, threaded hole 21, through hole 22, bolt 23.
DETAILED DESCRIPTION
[0019] Embodiment of the present disclosure are described hereinafter in combination with the accompanying drawing to illustrate the technical solution of the present disclosure, which is not limited to the described embodiments.
[0020] As shown in
[0021] The first insertion groove 5 is positioned on one edge of the square column 2 and the second insertion groove 8 is positioned on another edge of the square column 2. In this embodiment, as the first insertion piece 6 is gradually moved backward, the size of the opening of the second insertion groove 8 would be gradually reduced. The second insertion groove 8 is also located at the edge of the square column 2. The first expansion piece 3 is slidably attached the square column 2 since it comprises three folding angles matched with the square column 2. The three folding angles can provide resilience for the rebounding of the first expansion piece 3, and a similar mechanism is applied to the second expansion piece 4. An improved rebounding force of the first expansion piece 3 would prolong the life span of the expansion connector.
[0022] As shown in
[0023] The second insertion piece 9 has a third inclined surface 15 and a third locking surface 16. The first insertion groove 5 has a fourth inclined surface 17 and a fourth locking surface 18. The third inclined surface 15 is in sliding contact with the fourth inclined surface 17. The third locking surface 16 is in detachable contact with the fourth locking surface 18. When the third inclined surface 15 and the fourth inclined surface 17 slide relatively to each other, the third locking surface 16 moves away from the fourth locking surface 18 so that the second expansion piece 4 expands to abut against the inner sides of the square tube.
[0024] Because the first inclined surface 11 and the second inclined surface 13 are in sliding contact, the first inclined surface 11 and the second inclined surface 13 can slide relatively to each other. The first locking surface 12 can move towards or away from the second locking surface 14. When the first locking surface 12 moves away from the second locking surface 14, the first inclined surface 11 would move forward and the second inclined surface 13 would move backward. The contact area of the first inclined surface 11 and the second inclined surface 13 decreases, so the first inclined surface 11 will push the second inclined surface 13 outward. Then the size of the opening of the second insertion groove 8 is enlarged, and the four faces of the second expansion piece 4 can be expanded outward to be in contact with the inner sides of the square tube. The connection of the square tubes is achieved by such an embodiment.
[0025] A first boss 19 is disposed at a connecting end of the base 1 and the square column 2. One end of the first expansion piece 3 abuts against one end of the first boss 19. A second boss 20 is disposed at an end of the square column 2 pointing away from the base 1, and the second expansion piece 4 abuts against one end of the second boss 20.
[0026] When the square column 2 gets close to the base 1, the first boss 19 can provide a pushing force to the first expansion piece 3, so that the first expansion piece 3 moves toward the second boss 20. The second boss 20 induces a pushing force to the second expansion piece 4 to move the second expansion piece 4 in the direction of the base 1. The first expansion piece 3 and the second expansion piece 4 can drive each of the first inserting piece 6 and the second inserting piece 9 to be inserted into a corresponding one of the first insertion groove 5 and the second insertion groove 8 are inserted. The four sides of each of the first expansion piece 3 and the second expansion piece 4 can be expanded to connect the expansion connector to the square tubes.
[0027] A threaded hole 21 is arranged on the base 1. A through hole 22 is arranged in the square column 2. A bolt 23 is inserted into the through hole 22. One end of the bolt 23 is connected with the threaded hole 22. The square column 2 can be moved towards or away from the base 1.
[0028] The first insertion piece 6 is formed by extending an end of the first expansion piece 3, and the second insertion piece 9 is formed by extending an end of the second expansion piece 4. The first expansion piece 3 is identical to the second expansion piece 4, and the first insertion piece 6 is identical to the second insertion piece 9.
[0029] Exemplary embodiments hereinabove are merely illustrative aspects of the principle of the present disclosure. The skilled in the art would practice various modifications or additions on the described embodiments without departing from the true scope of the present disclosure.