1. Field of the Invention
The present invention relates to a connector and, more particularly, to a universal snapping connector for connecting two poles so as to construct a scaffold for a building.
2. Description of the Related Art
A conventional universal snapping connector in accordance with the prior art shown in
In operation, after each of the locking nuts 81 is unscrewed from the threaded second end of the respective locking bolt 80, the respective locking bolt 80 is pivoted outwardly to detach from the slit 72 of the protrusion 71 of the respective movable member 70 to unlock the respective movable member 70 from the respective fixed member 60 so that the respective movable member 70 is pivoted outwardly to detach from the respective fixed member 60 for mounting a pole. After each of the movable members 70 is movable to cover the respective fixed member 60, the respective locking bolt 80 is movable and inserted into the slit 72 of the protrusion 71 of the respective movable member 70. Then, each of the locking nuts 81 is screwed onto the threaded second end of the respective locking bolt 80 and rested on the protrusion 71 of the respective movable member 70 to lock the respective movable member 70 onto the respective fixed member 60. Thus, the pole is clamped between each of the fixed members 60 and the respective movable member 70.
However, a user has to screw each of the locking nuts 81 to lock each of the movable members 70 onto the respective fixed member 60 and to unscrew each of the locking nuts 81 to unlock each of the movable members 70 from the respective fixed member 60 so that the universal snapping connector cannot be locked easily and quickly, thereby causing inconvenience to the user when operating the universal snapping connector to fasten the poles. In addition, the locking bolts 80 and the locking nuts 81 are made of metal so that the universal snapping connector has a higher price, thereby increasing the costs of fabrication. Further, the universal snapping connector cannot be locked easily and quickly, thereby wasting the working time. Further, when the locking bolts 80 and the locking nuts 81 are rusted due to the wet air, each of the movable members 70 cannot be detached from the respective fixed member 60 easily and conveniently.
In accordance with the present invention, there is provided a universal snapping connector, comprising two fixed members each having a first end pivotally connected with each other and a second end provided with a hollow extension having a side formed with a guide slot, two movable members each having a first end pivotally connected with the first end of a respective fixed member and a second end provided with a protrusion detachably inserted into the extension of the respective fixed member and having a side formed with a locking hole that is movable to align with the guide slot of the extension of the respective fixed member, and two hollow elastic plates each movably mounted in the guide slot of the extension of a respective fixed member and each inserted into and locked in the locking hole of the protrusion of a respective movable member to lock the protrusion of the respective movable member onto the extension of the respective fixed member and to lock the respective movable member onto the respective fixed member.
The primary objective of the present invention is to provide a universal snapping connector that is locked and unlocked easily and quickly.
Another objective of the present invention is to provide a universal snapping connector, wherein a user only needs to push each of the elastic plates to lock each of the movable members onto each of the fixed members to fasten each of the poles of the scaffold so that the universal snapping connector is locked easily and quickly to facilitate the user operating the universal snapping connector to fasten the poles.
A further objective of the present invention is to provide a universal snapping connector, wherein only the elastic plates are made of metal so that the universal snapping connector has a lower price, thereby decreasing the costs of fabrication.
A further objective of the present invention is to provide a universal snapping connector, wherein each of the elastic plates is pressed to lock the universal snapping connector easily and quickly, thereby saving the working time.
A further objective of the present invention is to provide a universal snapping connector, wherein when the elastic plates are rusted due to the wet air, the elastic plates can be detached from the movable members easily and conveniently by aid of a tool, thereby facilitating the user detaching the scaffold.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
Referring to the drawings and initially to
Each of the fixed members 10 has a substantially C-shaped profile. The first end 11 of each of the fixed members 10 is formed with a pivot hole 16 to allow passage of a rivet 17 which pivotally connects the first ends 11 of the fixed members 10. The extension 12 of each of the fixed members 10 is provided with a limit post 14 located in the guide slot 13. The guide slot 13 of the extension 12 of each of the fixed members 10 has a periphery provided with a recessed portion 15.
Each of the movable members 20 has a substantially U-shaped profile. The protrusion 21 of each of the movable members 20 has a substantially bird-bill-shaped profile and has thickness reduced gradually toward the extension 12 of the respective fixed member 10 to provide a positioning effect between the protrusion 21 of each of the movable members 20 and the extension 12 of the respective fixed member 10 when the protrusion 21 of each of the movable members 20 is inserted into the extension 12 of the respective fixed member 10. The protrusion 21 of each of the movable members 20 has a hollow inside formed with a receiving chamber 24 connected to locking hole 22.
Each of the elastic plates 30 has an inside formed with a mounting chamber 31 movably mounted on the limit post 14 of the extension 12 of the respective fixed member 10. Each of the elastic plates 30 is integrally bendable to have a loop shape and has a distal end formed with an opening 35 connected to the mounting chamber 31, and the opening 35 of each of the elastic plates 30 is provided with an enlarged operation portion 34 to seal each of the elastic plates 30 and to prevent the limit post 14 of the extension 12 of the respective fixed member 10 from being detached from the mounting chamber 31 of each of the elastic plates 30. The operation portion 34 of each of the elastic plates 30 has a hollow inside 340 and is movable to rest on the recessed portion 15 of the extension 12 of the respective fixed member 10 to prevent each of the elastic plates 30 from being fully inserted into the guide slot 13 of the extension 12 of the respective fixed member 10.
Each of the elastic plates 30 is provided with two opposite tapered guide faces 32 to guide movement of the elastic plates 30 and an outwardly extending stop flange 33 located between the guide faces 32. The stop flange 33 of each of the elastic plates 30 is located between two opposite sides of each of the elastic plates 30, and each of the guide faces 32 has a thickness gradually reduced from the stop flange 33 toward a respective side of each of the elastic plates 30. The stop flange 33 of each of the elastic plates 30 is substantially wedge-shaped and has a size greater than that of the guide slot 13 of the extension 12 of the respective fixed member 10 and that of the locking hole 22 of the protrusion 21 of the respective movable member 20.
Thus, the stop flange 33 of each of the elastic plates 30 is compressed and inserted through the guide slot 13 of the extension 12 of the respective fixed member 10 and the locking hole 22 of the protrusion 21 of the respective movable member 20 into the receiving chamber 24 of the protrusion 21 of the respective movable member 20 as shown in
In operation, referring to
As shown in
As shown in
Accordingly, a user only needs to push each of the elastic plates 30 to lock each of the movable members 20 onto each of the fixed members 10 to fasten each of the poles 50 of the scaffold so that the universal snapping connector is locked easily and quickly to facilitate the user operating the universal snapping connector to fasten the poles 50. In addition, only the elastic plates 30 are made of metal so that the universal snapping connector has a lower price, thereby decreasing the costs of fabrication. Further, each of the elastic plates 30 is pressed to lock the universal snapping connector easily and quickly, thereby saving the working time. Further, when the elastic plates 30 are rusted due to the wet air, the elastic plates 30 can be detached from the movable members 20 easily and conveniently by aid of a tool 40, thereby facilitating the user detaching the scaffold.
Although the invention has been explained in relation to its preferred embodiment(s) as mentioned above, it is to be understood that many other possible modifications and variations can be made without departing from the scope of the present invention. It is, therefore, contemplated that the appended claim or claims will cover such modifications and variations that fall within the true scope of the invention.
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