Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in greater detail, it should be noted that like elements are denoted by the same reference numerals throughout the disclosure.
Referring to
The housing 10 includes a discharge spout 11, and a longitudinal slide channel 12 fluidly communicating with the discharge spout 11.
The lubricant reservoir 20 is connected to the housing 10 and provides a supply of lubricant into the longitudinal slide channel 12.
The power supply unit 30 includes a battery 31 and a power supplier 32 connected electrically to the battery 31.
The motor 40 is mounted within the housing 10, and is connected electrically to the battery 31.
The plunger 50 is disposed in the longitudinal slide channel 12 to perform reciprocating movements, and has a pushing end 51 extendable to the discharge spout 11, and a connecting end 52 opposite to the pushing end 51.
The power transmission unit 60 is mounted between the motor 40 and the connecting end 52 of the plunger 50, and is driven by the motor 40 to actuate the plunger 50 to perform the reciprocating movements. The power transmission unit 60 includes a planet gear set 61 connected to the motor 40, and a final driver 62 mounted between the planet gear set 61 and the connecting end 52 of the plunger 50.
The planet gear set 61 includes a first sun gear 611 mounted on an output shaft of the motor 40, an annular gear 612 mounted within the housing 10, a first planet gear carrier 613, a plurality of first planet gears 614 mounted on the first planet gear carrier 613 and meshing with the first sun gear 611 and the annular gear 612 simultaneously, a second sun gear 615 mounted under the first planet gear carrier 613, a second planet gear carrier 616 pivotally mounted within the housing 10, a plurality of second planet gears 617 mounted on the second planet gear carrier 616 and meshing with the second sun gear 615 and the annular gear 612, and a driving gear 618 mounted under the second planet gear carrier 616.
The final driver 62 includes a positioning shaft 621 mounted within the housing 10, a gear member 622 surrounding the positioning shaft 612 and meshing with the driving gear 618, a needle bearing 623 mounted between the positioning shaft 621 and the gear member 622, and a crank 624 interconnecting the connecting end 52 of the plunger 50 and the gear member 622. The crank 624 has a first portion 625 connected pivotally to the connecting end 52 of the plunger 50, and a second portion 626 opposite to the first portion 625 and connected eccentrically and pivotally to the gear member 622. The rotation of the motor 40 is transmitted through the planet gear set 61 to rotate the gear member 622 relative to the positioning shaft 621 at a reduced speed so that the crank 624 can be activated eccentrically to drive the reciprocating movements of the plunger 50.
Referring to
The sensor 80 is mounted inside the housing 10 proximate to a moving path of the moving element 70 to detect the moving element 70 whenever the moving element 70 moves past the sensor 80 during the reciprocating movement between a first position in which the moving element 70 is close to the sensor 80 (best shown in
The processing unit 90 is mounted within the housing 10, and is connected electrically to the sensor 80 to produce information according to the signal generated by the sensor 80. The processing unit 90 is also connected electrically to the power supplier 32 and the display unit 100.
The display unit 100 is mounted on the housing 10 to display the information produced by the processing unit 90. The display unit 100 includes a liquid crystal display panel 110 for displaying a counting number (N) thereon, a backlight module 120, a switch 140 for controlling the backlight module 120, and a reset button 130 for resetting the information, i.e., the counting number (N), produced by the processing unit 90.
Referring to
In this preferred embodiment, the counting number (N) displayed on the liquid crystal display panel 110 is representative of a product of the number of the cycle motions of the crank 624 per minute and a reference factor. For example, it is assumed that the rotating speed of the crank 624 is 150 rpm. Therefore, the sensor 80 generates 150 counting signals per minute. If the reference factor is 1/10, the counting number (N) displayed on the liquid crystal display panel 110 is 15. Furthermore, according to the counting number (N), the amount of the lubricant discharged per minute can be measured.
Moreover, referring once again to
In view of the aforesaid, since the moving element 70 is sensed by the sensor 80 in a non-contact manner (i.e., via a magnetic force), and since the moving element 70, the sensor 80, the processing unit 90, and the display unit 100 are not mounted in the discharge spout 11, the abrasion problem encountered in the prior art can be avoided.
Referring to
Referring to
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
| Number | Date | Country | Kind |
|---|---|---|---|
| 095124468 | Jul 2006 | TW | national |