The present invention relates to a transmission structure which is configured to drive a woodworking lathe by gears.
A conventional woodworking lathe contains a spindle actuated workpieces to rotate and to cut by a tool, wherein the workpieces are cut in different shapes and at different cutting forces, thus having different torques and rotating speeds provided by a transmission mechanism. The woodworking lathe further contains at least one cone pulley and a motor configured to send a torque to the at least one cone pulley via at least one belt so as to change a transmission ratio of a motor gear and to adjust a position of the at least one belt corresponding to the at least one cone pulley, thus obtaining different torques and rotating speed. However, when the position of the at least one belt is adjusted manually, for example, opening a cover of the transmission mechanism, removing a fixing device of the motor gear, adjusting the motor gear, adjustably moving the at least one belt to behind the at least one cone pulley so as to adjust a tension of the at least one belt and a position of the motor, thus mating at least one receiving slot with the at least one cone pulley and obtaining suitable tension of the at least one belt.
However, the conventional transmission structure has defeats as follows:
(1). When drilling workpieces of different materials by ways of a drilling machines, a rotating speed of the drilling machine is changed by opening the cover of the transmission mechanism, expanding the at least one belt, and fitting the belt to the at least one cone pulley of different sizes, thus having troublesome operation.
(2). A length of the at least one belt is fixed to limit a transmission ratio. In addition, the motor is started in a low rotating speed when adjusting the at least one cone pulley and the at least one belt, thus injuring a user's finger easily.
(3). A transmission efficiency of the at least one belt, the motor gear, and the at least one cone pulley is low, and a sliding occurs when the at least one belt, the motor gear, and the at least one cone pulley rotate. Furthermore, the at least one belt has to be replaced to cause high replacement and maintenance cost.
Accordingly, it is complicated, danger, and time-consuming to adjust the torque and the rotating speed of the woodworking lathe.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages.
The primary objective of the present invention is to provide a transmission structure of a woodworking lathe which contains multiple gear sets, a transmission shaft, a variable speed shaft, and a driven shaft, wherein the multiple gear sets are defined between the variable speed shaft and the driven shaft so that the adjustment lever controls one of the multiple gears to move in different positions, such that different gears mesh or do not mesh, thus adjusting different speeds and obtaining idle rotation.
With reference to
a case 10 including a transmission shaft 11, a variable speed shaft 12, and a driven shaft 13, wherein the transmission shaft 11 is actuated by a motor, the driven shaft 13 is configured to drive a chuck of the woodworking lathe; a transmission gear 110 is mounted on the transmission shaft 11;
a driven gear 120 fixed on an end of the variable speed shaft 12 and meshing with the transmission gear 110; a first gear set 21 connected on the driven shaft 13 and comprised of a first gear 211, a third gear 213, and a fifth dear 215, wherein the first gear is coaxial with the third gear, diameters of the first gear 211, the third gear 213, and the fifth gear 215 are different; a second gear set 22 disposed on the variable speed shaft 12 and comprised of a second gear 222, a fourth gear 224, and a sixth gear 226, wherein a diameter of the second gear 222 corresponds to a diameter of the first gear 211, the fourth gear 224 is coaxial with the sixth gear 226, a diameter of the fourth gear 224 corresponds to a diameter of the third gear 213, and a diameter of the sixth gear 226 corresponds to a diameter of the fifth gear 215, wherein the second gear 222, the fourth gear 224, and the sixth gear 226 are connected on an end of the variable speed shaft 12 adjacent to the first gear set 21;
an adjustment lever 31 defined between the fourth gear 224 and the sixth gear 226 or between the second gear 222 and the fourth gear 224 so that the second gear set 22 moves leftward or rightward in fifth speed varying sections to control the second gear 222 to or not to mesh with the first gear 211 or to control the fourth gear 222 to or not to mesh with the third gear 213 or to control the sixth gear 226 to or not to mesh with the fifth gear 215.
Referring to
When changing meshing of different gears, the handle 36 is pulled outward so that the first spring 38 pushes the locating column 37 to remove from one of the five recesses 321, thus rotating the rotatable disc 34 leftward or rightward. When rotating the handle 36 to a next recess 321, the handle 36 is removed so that the second spring 39 urges the locating column 37 to move back to engage with the next recess 321.
For a ratio of diameters of the third, the first, the fifth, the sixth, the second, and the fourth gears, the diameter of the third gear 213 is less than the diameters of the first gear 211 and the fifth gear 215, and the diameter of the first gear 211 is less than the diameter of the fifth gear 215. The diameter of the sixth gear 226 is less than the diameters of the second gear 222 and the fourth gear 224, and the diameter of the second gear 222 is less than the diameter of the fourth gear 224.
Thereby, the transmission structure of the present invention has advantages as follows:
1) When the rotatable disc revolves, the second gear set 22 is actuated to rotate, thus changing the meshing of the different gears and a rotating speed and torque of the chuck to obtain using safety and convenience.
2) The adjustment lever 31 of the speed change device 30 is rotated in the fifth speed varying sections by using the five recesses 321 to control the second gear set 22 to move, thus adjusting different speeds and obtaining idle rotation and easy maintenance.
3) The gears are connected with the driven gear to enhance transmission efficiency and using life and to reduce abrasion and maintenance cost.
With reference to
Referring to
As shown in
While the preferred embodiments of the invention have been set forth for the purpose of disclosure, modifications of the disclosed embodiments of the invention as well as other embodiments thereof may occur to those skilled in the art. Accordingly, the appended claims are intended to cover all embodiments which do not depart from the spirit and scope of the invention.
Number | Date | Country | Kind |
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M597694 | Dec 2019 | TW | national |