1. Field of the Invention
The present invention relates generally to a joint for use in an object and more particularly, to a joint positioning structure, which is durable in use.
2. Description of the Related Art
An electric wrench, vehicle battery charger, and any of a variety of objects may have a joint for allowing the user to change the angle between two parts for convenient operation or to fit a particular operation environment.
A joint of a vehicle battery charger is known comprising two coupling members pivotally coupled together and a positioning mechanism mounted in the pivot center between the two coupling members for allowing relative biasing between the two coupling members and locking the two coupling members to the desired angle. The positioning mechanism uses two engagement blocks to engage two locating holes in the two coupling members and to further lock the two coupling members. When the two engagement blocks are moved away from the locating holes, the two coupling members are unlocked and can be biased relative to each other.
According to the aforesaid design, the locating holes are directly formed on the coupling members for receiving the engagement blocks. Frequently engaging the engagement blocks into the locating holes and moving the engagement blocks away from the locating holes may cause the surrounding area of the coupling members to wear or to break. When the surrounding area of the coupling members starts to wear or is broken, the positioning between the coupling members may become in accurate or unable to achieve. In this case, the coupling members must be replaced. However, replacing the coupling members costs a lot.
The present invention has been accomplished under the circumstances in view. It is one objective of the present invention to provide a joint positioning structure, which is durable in use.
It is another objective of the present invention to provide a joint positioning structure, which allows quick replacement of damaged parts.
To achieve these objectives of the present invention, the joint positioning structure comprises a first coupling member, a second coupling member pivoted to the first coupling member, and a locking mechanism adapted to lock the first coupling member and the second coupling member. The locking mechanism comprises a push rod, a spring member, a positioning member, a stop block and two engagement members. The push rod is inserted through the first coupling member and the second coupling member and movable relative to the first and second coupling members between a first position and a second position. The spring member is mounted on the push rod to support the push rod in the first position and to be compressed when the push rod is moved by an external force from the first position to the second position. The positioning member is affixed to the first coupling member and has a plurality of radial locating slots. The stop block is fixedly fastened to one end of the push rod and provided with at least one guide rail coupled to the second coupling member to guide reciprocating movement of the stop block with the push rod relative to the first and second coupling members. The stop block further has two locating grooves on one end edge thereof. The two engagement members are affixed to the locating grooves of the stop block. The two engagement members are engaged into the locating slots of the positioning member to lock the first and second coupling members when the stop member is moved with the push rod to the first position and disengaged from the locating slots of the positioning member to unlock the first and second coupling members when the stop member is moved with the push rod to the second position.
The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
As shown in
The first coupling member 10 is comprised of two symmetrical half shells 11 and 12. The two symmetrical half shells 11 and 12 are abutted against each other, each having a circular coupling portion 111 or 121 at one end and a through hole 112 or 122 through the two opposite lateral sides of the circular coupling portion 111 or 121. The axis of the through hole 112 or 122 is the axis of the circular coupling portion 111 or 121.
The second coupling member 20 is comprised of two symmetrical half shells 21 and 22. The two symmetrical half shells 21 and 22 are abutted against each other, each having a circular coupling portion 211 or 221 at one end and a through hole 212 or 222 through the two opposite lateral sides of the circular coupling portion 211 or 221. Further, one half shell 21 of the second coupling member 20 has two grooves 23 formed on the peripheral wall of the through hole 212 at two opposite sides and extending in the extending direction of the through hole 212. The circular coupling portions 211 and 221 of the second coupling member 20 are pivotally coupled to the circular coupling portions 111 and 121 of the first coupling member 10 so that the second coupling member 20 can be biased relative to the first coupling member 10 within a predetermined angle.
Referring to
After understanding of the parts of the joint positioning structure 100 and their relationship, the operation and main features of the joint positioning structure 100 are outlined hereinafter.
Referring to
Referring to
As stated above, the invention controls locking/unlocking of the two coupling members by means of engagement/disengagement between the positioning member and the engagement members. Therefore, the positioning member and the engagement members must be made of a rigid material so that the positioning member and the engagement members do not wear easily after a long use. Further, because the positioning member and the engagement members are small and simple members, they are inexpensive. In case the positioning member or the engagement member is damaged, the replacement cost is low and not a burden to the user.