The present application claims priority under 35 U.S.C.. 119 of Taiwanese Application No. 098222567 filed Dec. 2, 2009, the disclosure of which is expressly incorporated by reference herein in its entirety.
The present invention relates to a vibrating amplitude vibrator device. In particular, the present invention relates to an eccentric unit mounted on extended shafts at both ends of a motor which rotate at least one balance block and eccentric blocks in a positive or negative direction so as to generate various torque results due to interaction of the variable angles between them.
Conventional vibrators controlled by PCB of a DC motor come with a single amplitude which generates a single torque as a vibrator. It is impossible to provide different torques in various intensities to a customer's demand with a flexible selection of satisfactory functions. Besides, in order to provide a customer's requirement of different intensities of amplitude by replacing an eccentric board loaded on both ends of motor is extremely inconvenient to the customer.
The preferred embodiment the present invention pertains to a motor that can rotate in a positive or a negative direction to drive eccentric blocks and at least one balance block. This rotation interchangeably changes the angles and results in different torques. Thus the present invention provides a selectable, variable vibrating amplitude in the intensity of the vibrator.
As a result of research, the inventor developed a device for generating an eccentric vibrating amplitude for a vibrator that is primarily comprised of an eccentric unit on one or both ends of an extended motor shaft. The eccentric unit includes a balance block mounted at the most inner location on the shaft and an eccentric block mounted at the most outer location of the shaft. The eccentric block is mounted on the shaft by a washer and a screw; and the shaft penetrates through eccentrically located round holes on balance block and eccentric block.
A purpose of the invention is to generate various torques and produce the vibration effects therefrom. Another purpose is to provide a selection of vibrating amplitudes of the vibrator having different intensities from a switching motor by changing the angles between at least one balance block and a plurality of eccentric blocks, the motor being capable of being switched in a positive or a negative direction, that is, in a clockwise and counter clockwise direction.
The present invention provides a customer flexible choice in the vibrating amplitude when in use, for example in the application of fitness equipment or other machines, so as to satisfy a customer's demand.
In order to reveal the complete technological skill of the invention, reference is made to the attached drawings, depicting the preferred embodiments of the present invention as follows.
First, reference is made to the embodiment of the invention depicted in
A plurality of eccentric blocks 22 (two in the embodiment of
A positive single-direction bearing 26 is located on shaft 1 in between several eccentric blocks 22 and balance block 21. Behind bearing 26 and in front of balance block 21, mounted on shaft 1 is a washers 25.
Balance block 21 and several eccentric blocks 22 have a special fan-shape and each has a bearing hole 23 and 24, respectively. When motor shaft 1 rotates in clockwise, it drives eccentric block 22 with balance block 21 unmoved to generate larger torque. When motor shaft 1 rotates in counter clockwise, it drives balance block 21 with eccentric block 22 unmoved to generate smaller torque.
Please refer to
There are washers 25 and balance block 31 mounted on shaft 1 at the most inner location of the eccentric unit. Balance block 31 has a fan-shape with a round hole 33 that receives a socket 37, also mounted on shaft 1, in it at the center 1.
Several eccentric blocks 32 are placed and mounted at the outer external location of shaft 1 by washer 28 and bolt 27. Eccentric blocks are connected together, such as by being welded to one another.
There are washers 25 mounted on shaft 1 and located between balance block 31 and eccentric blocks 32. Eccentric blocks 32 have a fan-shape with one round hold 33 at the center which receives shaft 1. A screw 35 and a nut 38 are mounted in a side screw hole 34 of eccentric blocks 32. The head of screw 35 is coated with a rubbery compound, including rubber, and a rubber ring 36 is mounted on screw 35.
When the motor rotates in a clockwise or a counter clockwise rotation, motor shaft 1 drives balance block 31 and several eccentric block 32, which changes the angle between them so as to vary the loading weight and generate a different torque effect.
Please refer to
The eccentric unit also includes a balance 61 mounted on shaft 1 at the most inner location. Balance 61 has a fan-shape with a large round hole 63 at the center and also has an arc groove 64.
An eccentric block 62 is located at the outer most location on shaft 1 and is mounted thereon by washer 28 and screw bolt 27. Eccentric block 62 has an annular cylindrical-shape with a single round hole 33. A screw 35 extends radially outwardly from a screw hole in the side of eccentric block 62. The head of screw 35 is coated with a rubber-like material, which could include rubber, and has a rubber ring 36 mounted on screw 35. Eccentric block 62 is inserted into large round hold 63 in balance block 61. Screw 35 is fastened through arc groove 64 of balance block 61 into the screw hole of eccentric block 62.
When the motor rotates in a clockwise or a counter clockwise direction, motor shaft 1 drives balance block 61 and eccentric block 62 from the same side or a different side, respectively, to vary interchangeably both the weight and a different torque effect that is generated.
Please refer to
The eccentric unit includes a washer 25 and a balance block 41 mounted on shaft 1 at the inner most location on shaft 1. Balance block 41 has a fan-shape with a round hole 33 along the inner edge of balance block 41 through which shaft 1 extends. Round hole 33 receives a socket 37. Balance block 41 also has a screw hole 34 located on an upper arm thereof which receives a screw 35. A nut 38 secures screw 35 in screw hole 34 for mounting screw 35. The head of screw 35 has a rubber-like coating, which can include rubber, and screw 35 has an outer annular ring 36 mounted on the shaft thereof.
Several eccentric blocks 42 are located and mounted at the outer most location on shaft 1. Blocks 42 are connected together, such as by being welded to one another. Eccentric blocks 42 have a fan shape and a round hole 33 at a lower portion thereof for receiving shaft 1. Eccentric blocks 42 also have an arcuate slot or groove 43 therethrough at the edge portion thereof that is opposite hole 33. Also, a washer 25 is located between the outer most side of balance block 41 and the inner most side of eccentric block 42.
When the motor rotates in a clockwise or a counter clockwise direction, motor shaft 1 drives or rotates balance block 41 and the several eccentric blocks 42. The screw head of screw 35 in balance block 41 extends through the arcuate slot or groove 43 of eccentric block 42. Thus the rotational angle between balance block 41 and eccentric blocks 42 is changed, resulting in a variable change of both the weight and the torque effect, thereby generating different torques.
Please refer to
The eccentric unit includes a washer 25 and a balance block 51 mounted on shaft 1 at the inner most location on shaft 1. Balance block 51 has a fan-shape with a round hole 33 along the inner edge of balance block 41 through which shaft 1 extends. Round hole 33 receives a socket 37. The side of balance block 51 has an arcuate slot or groove 53 located along the lower edge portion of balance block 5 and generally aligned with the bottom arcuate edge of balance block 51.
Several eccentric blocks 52 are located and mounted at the outer most location on shaft 1 by washer 28 and screw bolt 27 that is received in a threaded bore (not shown) in the end of shaft 1. Blocks 52 are connected together, such as by being welded to one another. Eccentric blocks 42 have a fan shape or a circle segment shape and have a screw hole 34 at a lower portion thereof for receiving a bolt 35 and a mounting nut 38. The head of screw 35 has a rubber-like coating, which can be of rubber. Screw 35 also has an encircling rubber ring 36. Also, a washer 25 is located between the outer most side of balance block 51 and the inner most side of eccentric block 52.
When the motor rotates in a clockwise or a counter clockwise direction, motor shaft 1 drives or rotates balance block 51 and the several eccentric blocks 52. The screw head of screw 35 in balance block 41 then extends through the arcuate slot or groove 43 of eccentric block 42. Thus the rotational angle between balance block 41 and eccentric blocks 42 is changed, resulting in a variable change of both the weight and the torque effect, thereby generating different torques.
Therefore, the motor of the eccentric vibrating amplitude of vibrator is a positive/negative rotating motor which changes the angles between balance block 51 and eccentric blocks 52 by rotating in positive or negative direction and generating different torques, and hence provides the function of selecting the intensity the vibrating amplitude of the vibrator.
While this invention has been particularly shown and described with reference to preferred embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.
Number | Date | Country | Kind |
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098222567 | Feb 2009 | TW | national |