The invention relates to a spinner bike with adjustable magnetic resistance, particularly to one that controls coverage of magnetic flux on a disc plate to smoothly adjust the loading resistance of the spinner bike.
With reference to
A primary objective of the present invention is to provide a spinner bike that is able to adjust a loading resistance for operation.
Another objective of the present invention is to provide a spinner bike that is able to smoothly adjust a loading resistance from a minimum to a maximum.
Yet another objective of the present invention is to provide a spinner bike that has a generator to produce electricity power for an interface on the spinner bike to display numbers of loading resistance.
To achieve the objectives above, the present invention comprises a frame body including a pedaling mechanism and a handler bar; an electricity generator disposed at a rear side of said frame body, including a fixing element, a circular armature core surrounding said fixing element, a rotating element having an axis engaging a fourth pulley wheel and an axial seat engaging in a sleeve bush of a flywheel and a plurality of magnets disposed in an inner depression of said flywheel and surrounding said armature core, a gap arranged between said plurality of magnets and said armature core, so that when the flywheel is driven to rotate by the rotating element, the magnets and the armature core would produce electricity due to operation of cutting-of-flux; a disc plate made of magnetically conductive metal and disposed around an outer periphery of said flywheel to be rotated together with said flywheel; a magnetic resistance adjusting apparatus disposed on said frame body at a front side of said disc plate, including a positioning element with a space arranged therein, a magnetically reluctant element fixed at a bottom of said positioning element by a positioning shaft and having a pair of symmetrical fixing plates, said pair of fixing plates arranged in a gap with a distance slightly greater than a thickness of said disc plate, each fixing plate having a magnet engaged at an inner side thereof, and a pulling cable having an inner cable arranged inside a cable sheath thereof, said cable sheath having a front end thereof connected to said positioning element and said inner cable having a front end thereof stretching out from said cable sheath and connected to a lateral side of said magnetically reluctant element by a fixing block; thereby the magnetic flux of said magnets inside the pair of fixing plates would cover both side of the disc plate laterally when the pulling cable is not operated and a loading resistance at a maximum value is produced, and the magnetic flux of said magnets of the fixing plates would depart from the disc plate gradually and the loading resistance decreases gradually until returning to zero when the pulling cable is operated; and a resistance adjusting apparatus including a case body disposed at a front end of said frame body, a rotatable button, an operating rod connected to said button and an operating piece having a center thereof pivotally engaged to said case body by a pivot shaft and an end thereof pivotally engaged to the operating rod, a rear end of said inner cable of the pulling cable further fixedly tied up to a connecting rod, thereby the button is rotated to control the operating piece operated based on the pivot shaft and further have the connected rod operating the pulling cable for operation.
Whereby the pedaling mechanism is operated to rotate the rotating element for the flywheel and the disc plate to be driven for rotation and for the electricity generator to produce electricity, and the button is rotated for the connecting rod of the resistance adjusting apparatus to operate the pulling cable for the purpose of altering coverage area of magnetic flux produced by the operation and therefore adjusting a loading resistance of the spinner bike.
In addition, an interface is further installed on the handler bar and has electricity supply from the electricity generator, and a magnetic encoder with a magnet is further disposed at a bottom of the operating rod and a printed circuit board with encoding circuit is disposed below the magnet of the magnetic encoder, so that the printed circuit board is able to detect a rotation angle of the magnet and convert the rotation angle into a value of loading resistance displayed on the interface. A spring element is engaged outside the positioning shaft of the magnetic resistance adjusting apparatus so that when the connecting rod is operated and the pulling cable is driven thereby, the magnetically reluctant element rotates in a clockwise direction around the positioning shaft, an when the connecting rod release the operational force on the pulling cable, the magnetically reluctant element therefore returns in a counter clockwise direction due to a torque force of the spring element.
In short, the present invention has following advantages:
1. The pedaling mechanism is operated to drive the rotating element of the electricity generator by the second belt and rotate the disc plate connected to the flywheel simultaneously. The magnetic resistance adjusting apparatus has magnetic flux covering the disc plate to produce the loading resistance for the pedaling mechanism. Therefore, controlling the coverage area of the magnetic flux on the disc plate enables adjustment of the loading resistance for the spinner bike.
2. The magnetically reluctant element is pivotally fixed on the positioning element by the positioning shaft. When the magnetically reluctant element is rotated to the lowest position, the pair of fixing plates would be positioned at lateral sides of the disc plate; when the magnetically reluctant element is rotated to the highest position, the pair of fixing plates would be positioned in the space of the positioning element. Furthermore, the resistance adjusting apparatus is activated to operate the pulling cable, causing the magnetic flux produced in a maximum value as the magnetic flux is fully covering the disc plate. Then the loading resistance would be gradually reduced as the magnetic flux is departing from the area of the disc plate until there is no overlapping area. In other words, the present invention is able to achieve a smooth adjustment of the loading resistance for the spinner bike.
3. The magnetic encoder disposed at the bottom of the operating rod in the resistance adjusting apparatus has the magnet and the PCB with encoding circuit. The PCB detects the rotation angle of the magnet to convert to a number of the loading resistance displayed on the interface, thereby allowing the users to obtain the information of the loading resistance instantly and to make further adjustments when needed.
Referring to
The frame body 70 includes a pedaling mechanism 71, a handler bar 72 and a seat 73. The pedaling mechanism 71 has a pair of pedals 711, each of which connected to a connecting piece 712 and driven by a pedal shaft 713.
The pedal shafts 713 are further engaged to a first pulley wheel 714 that connects to a second pulley wheel 716 by a first belt 715 and drives the second pulley wheel 716 thereby. The second pulley wheel 716 is further connected to a third pulley wheel 717 which shares the same axis therewith. The diameter of the first pulley wheel 714 is greater than the one of the second pulley wheel 716, and the diameter of the second pulley wheel 716 is shorter than the one of the third pulley wheel 717. Therefore, the pedaling mechanism 71 is able to increase the rotation speed and reduce the torque force of the spinner bike by operation of the pedals 711 and the pedal shaft 713 transmitted to the third pulley wheel 717.
The electricity generator 10 is disposed at a rear side of the frame body 70 and includes a fixing element 11, a circular armature core 12 surrounding the fixing element 11, a rotating element 13 having an axis 131 engaging a fourth pulley wheel 14 and an axial seat 132 engaging in a sleeve bush 151 of a flywheel 15 and a plurality of magnets 16 disposed in an inner depression 152 of the flywheel 15 and surrounding the armature core 12; a gap G1 is arranged between the plurality of magnets 16 and the armature core 12, so that when the flywheel 15 is driven to rotate by the rotating element 13, the magnets 16 and the armature core 12 would produce electricity due to operation of cutting-of-flux. In the embodiment, the present invention further includes an interface 50 installed on the handler bar 72 and obtaining electricity supply from a circuit (not shown) of the electricity generator 10. An outer cap 18 is disposed at an outer side of the fixing element 11 to prevent the users from electricity shock and engaged with the flywheel 15 to be rotated therewith. The electricity generator 10 also includes a bearing cap 17 fixed on the frame body 70 and three bearings 19, one of which is disposed between the bearing cap 17 and the rotating element 13, another one of which is disposed between the fixing element 11 and the rotating element 13, and the other one of which is disposed between the fixing element 11 and the outer cap 18 as shown in
The disc plate 20 is made of magnetically conductive metals such as aluminum and cooper and it is disposed around an outer periphery of the flywheel 15 to be rotated therewith. With diameter D of the disc plate 20 is longer than a diameter d of the flywheel 15, an area A full of magnetic resistance can be increased and the resistance is adjustable. In this embodiment, the disc plate 20 is fixedly screwed by a plurality of screws 21 to the flywheel 15 through a plurality of screw holes 22 thereon. Also, the fourth driving pulley wheel 14 is connected to the third pulley wheel 717 by a second belt 141 as shown in
The magnetic resistance adjusting apparatus 30 is disposed on the frame body 70 at a front side of the disc plate 20. Referring to
Furthermore, the magnetic resistance adjusting apparatus 30 further includes a pulling cable 34 which has an inner cable 342 arranged inside a cable sheath 341. The cable sheath 341 has a front end thereof connected to the positioning element 31 and the inner cable 342 has a front end thereof stretching out from the cable sheath 341 and connected to a lateral side of the magnetically reluctant element 32 by a fixing block 343. The operation of the present invention is activated by the pulling cable 34. Referring to
With reference to
Whereby the pedaling mechanism 71 is operated to rotate the rotating element 13 for the flywheel 15 and the disc plate 20 to be driven for rotation and for the electricity generator 10 to produce electricity, and the button 42 is rotated for the connecting rod 46 of the resistance adjusting apparatus 40 to operate the pulling cable 34 for the purpose of altering coverage area of magnetic flux produced by the operation and therefore adjusting a loading resistance of the spinner bike.
With the structures disclosed above, the magnetic resistance adjusting apparatus 30 has magnetic flux produced to cover the disc plate 20 and to form resistance for the pedaling mechanism 71 of the spinner bike. By altering the coverage area of the magnetic flux on the disc plate 20, the magnetic resistance can be adjusted as needed. Furthermore, as the magnetically reluctant element 32 is pivotally rotated between the position around the disc plate 20 and the space 311 of the positioning element 31 by operation of the pulling cable 34, the magnetic resistance is thereby increased to the maximum value and reduced to the minimum value, i.e., zero resistance. The present invention therefore is able to perform a smooth adjusting process of the magnetic resistance produced by the operation between the maximum and the minimum. Moreover, the magnetic encoder 47 is able to further display the number of the resistance as a loading force on the interface 50 by converting the data of the rotation angle of the magnet 48 thereof, so that users of the spinner bike can obtain the information during exercising instantly and achieve better efficiency of the workout.
Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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107215394 | Nov 2018 | TW | national |