1. Field of the Invention
The present invention relates to an engine starter, and more particularly to a manual engine starter for a radio control vehicle.
2. Description of Related Art
A conventional manual engine starter in accordance with the prior art shown in
Accordingly, the above manual engine starter is altered to separate the T-shaped shaft (5) from the crank (4) after the engine is started. With reference to
However, the distal end of the stub (4B) always abuts the distal face (5A) of the T-shaped shaft (5) when the engine has been started. Consequently, the stub (4B) continually abuts the distal face (5A) of the T-shaped shaft (5). As a result, the stub (4B) extends to strike the bottom of the tapered groove (5B) and a vibration is formed between the engine and the starter when the stub (4B) is rotated to a place in which the tapered groove (5B) defined. In addition, the friction between the stub (4B) and the distal face (5A) will offset some power from the engine, and the conventional engine starter may not be used when the stub (4B) is worn out.
The present invention has arisen to mitigate and/or obviate the disadvantages of the conventional manual engine starters.
The main objective of the present invention is to provide an improved manual engine starter that can effectively the engine and prevent the engine from wasting energy.
To achieve the objective, the manual engine starter in accordance with the present invention comprises a starting device having a driven shaft selectively connected to a crank of the engine and a drive shaft connected to the driven shaft for driving the driven shaft and starting the engine. The drive shaft has a tubular drive portion formed with a guide side and the driven shaft having a driven portion that is rotatably received in the tubular drive portion and engaged to the guide side and moved along the guide so as to make the driven shaft moved along an axis thereof when the drive shaft is rotated to drive the driven shaft. A puller laterally is mounted the starting device for driving the drive shaft to drive the driven shaft.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
Referring to the drawings and initially to
The manual engine starter in accordance with the present invention comprises a starting device (20) laterally mounted to the engine and selectively connected to the protrusion (131), and a puller (30) laterally mounted to the starting device (20) for driving the starting device (20).
The puller (3) includes a housing (31) secured on the starting device (20) and a polygonal seat (33) is reciprocally rotatably received in the housing (31) for coiling a rope (not shown) that has a first end secured on an outer periphery and a second end extending through the housing (31) after the rope being coiled on the polygonal seat (33). A handle (32) is securely connected to the second end of the rope for user to easily operate the puller (30). A spring (not shown) is mounted between the polygonal seat (33) and the housing (31) for providing a restitution force to the polygonal seat (33) after being rotated to drive the starting device (20). A one-way clutch (34) is received in and engaged to the polygonal seat (33) and has a hole (341) centrally defined in the one-way clutch (34).
The starting device (20) includes a seat (23) adapted to be laterally mounted to the engine (10) and the housing (30) of the puller (30) is laterally secured on the seat (23). The seat (23) includes a base member (232) secured on the engine (10), and a protrusion (231) extending from the base member (231) and received in the engine (10). A skirt (235) longitudinally extends from the protrusion (231) to define a cavity (234) in a free end of the seat (23) and a through hole (233) is defined in the starting device (20). The through hole (233) co-axially communicates with the cavity (234).
A drive shaft (22) has a first end secured in the hole (341) in the one-way clutch (34) and a second end formed with a tubular drive portion (22A), which is rotatably received in the through hole (233) in the seat (23). The tubular drive portion (22A) includes hole (221) longitudinally defined therein and two indentations (223) defined in an outer periphery (222) of the tubular drive portion (22A). The two indentations (223) diametrically correspond to each in the distal end of the tubular drive portion (22A) and laterally communicate with the hole (221) in the tubular drive portion (22A). Each indentation (223) has a guide side (224) formed on side thereof and corresponding to each other and a receiving space (223A) formed therein. Each guide side (224) has a flat (223B) formed near a distal end of the drive shaft (22) opposite to the one-way clutch (34).
A driven shaft (21) includes a drive dish (212) rotatably received in the cavity (234) and adapted to be selectively engaged to the protrusion (131) of the crank (13). Two tapered grooves (213) are defined in a periphery of the drive dish (212) and diametrically correspond to each other. The cavity (234) has a depth (h) greater than a total of the thickness (t) and the depth of the tapered groove (213). A driven portion (21A) centrally extends from the driven dish (212) and rotatably received in and selectively engaged to the tubular drive portion (22A). Two locking pins (211) laterally secured on an outer periphery of the driven portion (21A) and diametrically correspond to each other. The drive shaft (22) drives the driven shaft (21) when the two locking pins (211) respectively received in and engaged to a corresponding one of the two indentations (223).
With reference to
With reference to
With reference to
Furthermore, the starting device (20) in accordance with the present invention is designed and divided into two sections (driven shaft and drive shaft) longitudinally sleeved on each other. The guide side (224) of the tubular drive portion (22A) leads the driven shaft (21) reciprocally moved along an axis thereof. Consequently, the structures of the tubular drive portion (22A) and the driven portion (21A) can be exchanged relative to each other, and the driven portion (21A) is still moved along the axis thereof due to the guide side (224).
Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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093209021 | Jun 2004 | TW | national |