The present invention relates to a fluid dispensing system, and especially to a fluid dispensing system which provides a sprayer. The system provides a sprayer wherein a pump driven by a windable band spring engine pumps liquid to be sprayed out of a tank through a spray head. The pump and spring drive may be contained in a handle having the spray head integrated therein.
Sprayers are usually designed to pressurize liquid in a tank. The pressurized liquid is released via a spray head connected to the tank by a hose. The present invention utilizes a spring engine which drives a pump which is in continuous communication with a supply of fluid to be dispensed and can supply a substantially continuous fluid stream with the pump. The engine may be a coil, flat spring engine which may be wound manually. Then, the wound spring may be released to drive the pump to dispense the liquid via a spray head.
Further advantages and features of the invention will be more apparent from the following drawings in which:
Referring to
The container has a band spring engine 20 (see
The handle 15 has two clamshell sections which can snap together to form the handle 15 and capture internal components therein (i.e., the pump 23, spring engine 20, and cam mechanism 22).
In operation, the crank handle 38 is released by extracting a locking pin 64 from the recess 40 in handle 15. The locking pin 64 extends from the crank handle 38 into a hole or notch in recess 40, and can be released from its hole or notch by a user by slightly pulling the crank away from its recess 40, such that crank handle 38 is released for rotation. As shown in
A pawl 70 is held by a lever 72 and a spring 74 to prevent rotation of the coil 42 in an unwinding direction. After the crank handle 38 is stowed is recess 40, pawl 70 is released. The coil 42 unwinds, while coil 44 on shaft 48 winds. The shaft 48 rotates, thereby rotating the cam 56.
During part of the cycle of rotation of cam 56, the spring 62 drives the piston to the left, as shown in
Another embodiment of the invention is illustrated in
The spring engine 112 is mounted on a base 116. Rotatably mounted on shafts 118 are three spools, namely a winding spool 120, and output spool 122, and a storage spool 124. A mechanism for winding a flat or band spring 126 on the storage spool 124 includes a manually rotatable crank 130. The output spool 122 is connected to the pump 114 by a transmission which is illustrated as an eccentric, arm 132 pivotally mounted to the output spool 122 and to a piston 134 of the pump 114. The eccentric 132 translates rotary motion of the output spool 122 under power of the band spring 126 as it is unwound from a coil on the output spool 122 to a coil on the storage spool 124. The coil 140 of the band spring 126 when wound up on the output spool 122 is shown in
The winding mechanism is provided by the crank 130 and a cylindrical pawl 150 axially moveable in an opening 152 of the crank 130. The pawl 150 is connected by a screw thread on a shaft 154, which is also connected by the screw thread thereon to the winding spool 120. The pawl 150 is rotatably connected to the crank 130 by ratchet teeth 156 at the end of the pawl 150 which engages corresponding teeth at the inner end of the hole 152 in the crank 130.
A filament in the form of a wire 160 extends between the output spool 122 and the winding spool 120. The output spool has side-by-side receptacles 174 and 176. The wire 160 winds and unwinds between the output spool receptacle 174 and the winding spool 120. The band spring 126 winds and unwinds from the receptacle 176 in the output spool. In
To wind the spring 126, the crank 130 turns the winding spool 120 via the ratchet teeth 156 and the cylindrical pawl 150 which are connected by the threaded shaft 154.
In order to enable the wound spring band 126 to unwind from the output spool 122 and wind on the storage spool 124, the cylindrical pawl 150 is released by a pin 180 having a head 182. The pin 180 is attached by a screw thread thereon to the pawl 150. A coil spring 184 between the crank 130 and the head 182 of the pin biases the pawl 150 to the left as shown in
When the spring 126 wound on the output spool 122 is released, the piston 134 is driven by the power of the released spring 126 downwardly and creates a negative pressure which draws fluid from the container 100 via the hose 104 through a one-way or check valve 190 into the piston chamber 192 (see
The wind up wire 160 winds and unwinds between the winding spool 120 and the output spool 122, but may instead wind and unwind between the winding spool 120 and the storage spool 124. The construction illustrated in the drawings where the winding wire extends between the storage and winding spools 122 and 120 is presently preferred.
Referring to
From the foregoing description, it will be apparent that an improved pump driven sprayer has been provided. Variations and modifications in the herein described apparatus within the scope of the invention will undoubtedly become apparent to those skilled in the art. According the foregoing description should be taken as illustrative and not in a limiting sense.
Priority is claimed to U.S. Provisional Application No. 60/836,082, filed Aug. 7, 2006, which is herein incorporated by reference.
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| Number | Date | Country | |
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| 20080029620 A1 | Feb 2008 | US |
| Number | Date | Country | |
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| 60836082 | Aug 2006 | US |