The present invention relates to a seat adjustment structure for an exercise machine, and more particularly to a transverse rod of a T-shaped pipe being provided with an elongated groove which is axially disposed along the transverse rod and extends to one of two ends of the transverse rod to form a notch for a sliding pipe connected with a seat to slide into an axial hole from the notch so that the seat can be adjusted forward or rearward along the transverse rod.
Taiwanese Utility Model Patent No. M466684 discloses a fixing structure for an exercise bicycle seat, which comprises a T-shaped pipe, a sliding pipe, an axial quick-release member, a pivot member, and a connecting rod. The T-shaped pipe includes a transverse rod and an upright rod which are connected with each other. The transverse rod has an axial hole in the axial direction, and an elongated groove and a locking hole corresponding to the quick-release member in the radial direction. For the sliding pipe to be movably accommodated in the transverse rod, the sliding pipe is formed with a receiving hole. The axial quick-release member is disposed in the locking hole to selectively limit the movement of the sliding pipe. The pivot member is fixed to the sliding pipe, and has an accommodation hole corresponding in position to the receiving hole. One end of the connecting rod is inserted in the accommodation hole, and the other end of the connecting rod is inserted in the receiving hole and the elongated groove. By means of the assembly of the above-mentioned structure, the upright rod is connected with the frame of the exercise bicycle and can be adjusted for a desired height. The connecting rod is connected with the seat, such that the seat can be adjusted forward or rearward through the sliding pipe. In this way, the seat will not be accidentally separated, and the operation space of the exercise bicycle won't be interfered, and the appearance of the exercise bicycle is pleasing to the eye.
The exercise bicycle seat of the aforesaid structure can be adjusted by the user, but the connecting rod of the sliding pipe must be first dismounted for the sliding pipe to be inserted into the transverse rod when assembled. After that, the receiving hole of the sliding pipe must be aligned with the elongated groove for the connecting rod to be installed in the receiving hole of the sliding pipe through the elongated groove. The procedure is complicated and the assembly operation is troublesome, so the assembly time is increased and the manufacturing cost is high, not meeting the requirements of economic benefits.
Accordingly, the inventor of the present invention has devoted himself based on his many years of practical experiences to solve these problems.
The primary object of the present invention is to provide a seat adjustment structure for an exercise machine. The adjustment structure includes a T-shaped pipe, a sliding pipe, a locking member, and a connecting rod. The T-shaped pipe includes a transverse rod and an upright rod which are connected with each other. The transverse rod has two ends and an axial hole extending axially through the two ends. The transverse rod is provided with an elongated groove. The elongated groove communicates with the axial hole and is axially disposed along the transverse rod and extends to at least one of the two ends to form a notch at the end. The sliding pipe is configured to be slid from the notch into the axial hole and is accommodated in the transverse rod. The sliding pipe is provided with a plurality of fixing holes. The locking member is disposed on the transverse rod and is inserted in the axial hole. The locking member is configured to be engaged in any one of the fixing holes of the sliding pipe. An end of the connecting rod is connected to the sliding pipe, and another end of the connecting rod extends out of the elongated groove.
Preferably, the axial hole is plugged with a guide member. The guide member has a guide perforation defined axially in the guide member for insertion of the sliding pipe, such that the sliding pipe can slide along the guide perforation.
Preferably, the transverse rod is provided with a locking pipe extending from one side of the transverse rod. The locking pipe has an annular retaining wall therein. The locking member includes a retaining lever and a stopper. The retaining lever is inserted through the locking pipe into the axial hole to be engaged in one of the fixing holes of the sliding pipe. The retaining lever is connected with a knob. The knob extends out of the locking pipe. The stopper is located in the locking pipe and stopped by the retaining wall. The retaining lever is screwed to the stopper. By pressing the knob, an end of the stopper is pressed against the sliding pipe and then the knob is rotated relative to the stopper. The retaining lever is partially disengaged from the stopper, such that the retaining lever is moved out of the fixing holes, enabling the sliding pipe to be displaced.
Preferably, the sliding pipe is a polygonal pipe. The end of the stopper is formed with a recess corresponding to the polygonal pipe. When the end of the stopper is pressed against the sliding pipe, the recess of the stopper is engaged with the sliding pipe, such that the knob can be rotated relative to the stopper and the retaining lever is partially unscrewed from the stopper to be displaced.
Preferably, the stopper is annularly provided with a first stop wall. The guide member has a second stop wall. The stopper is fitted with an elastic member. When the knob is pressed, the elastic member is held between the first stop wall and the second stop wall to store an elastic force. When the knob is released, the elastic member releases the elastic force to bring the stopper back.
According to the foregoing technical features, the present invention can achieve the following effects:
Through the notch, the sliding pipe connected with the connecting rod and the seat can be transversely inserted into the axial hole and accommodated in the transverse rod. The assembly operation is easy and simple so as to reduce the assembly time and to lower the manufacturing cost.
Through the guide perforation of the guide member, the sliding pipe can be moved stably and precisely, and the seat won't be shaken easily to cause a skew when it is fixed.
Furthermore, the seat can be adjusted forward or rearward as desired according to the needs of the user. It is necessary to simultaneously press and rotate the knob for the adjustment of the seat, so it is more reliable and safer for use. This structure can prevent any accidental movement disengagement of the seat.
Embodiments of the present invention will now be described, by way of example only, with reference to the accompanying drawings.
As shown in
The T-shaped pipe 1 includes a transverse rod 11 and an upright rod 12 which are connected with each other. The upright rod 12 is further connected with a frame of an exercise bicycle. The transverse rod 11 has two ends 111. The transverse rod 11 has an axial hole 112 extending axially through the two ends 111. The transverse rod 11 is provided with an elongated groove 113 communicating with the axial hole 112. The elongated groove 113 is axially disposed along the transverse rod 11 and extends to one of the two ends 111 to form a notch 114 on the transverse rod 11. The two ends 111 of the transverse rod 11 are each plugged with a guide member 115. At least one of the guide members 115 has a guide perforation 116 defined axially in the guide member 115. In this embodiment, the guide perforation 116 has a right-angled edge. The transverse rod 11 is provided with a locking pipe 13 extending from one of the transverse rod 11. The locking pipe 13 has an annular retaining wall 131 therein. The guide member 115 which is closer to the locking pipe 13 is provided with a locking hole 117. The locking hole 117 corresponds to the locking pipe 13.
The sliding pipe 2 is configured to be slid from the notch 114 into the axial hole 112 and thus be accommodated in the transverse rod 11. Furthermore, the sliding pipe 2 is inserted into the guide perforation 116 and is provided with a plurality of fixing holes 21. The sliding pipe 2 is a polygonal pipe. In this embodiment, the polygonal pipe is a quadrangular pipe. The quadrangular pipe is inserted into the guide perforation 116 having the right-angled edge to limit the degree of freedom of the sliding pipe 2, so that the sliding pipe 2 can only slide axially.
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An end of the connecting rod 4 is connected to the sliding pipe 2. Another end of the connecting rod 4 extends out of the elongated groove 113 and is connected with a seat 5.
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Although particular embodiments of the present invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the present invention. Accordingly, the present invention is not to be limited except as by the appended claims.