GYRATION DEVICE FOR SPRAY GUN
20210154690 · 2021-05-27
Inventors
Cpc classification
B05B3/008
PERFORMING OPERATIONS; TRANSPORTING
B05B7/12
PERFORMING OPERATIONS; TRANSPORTING
B05B3/0463
PERFORMING OPERATIONS; TRANSPORTING
B05B7/2424
PERFORMING OPERATIONS; TRANSPORTING
B05B14/30
PERFORMING OPERATIONS; TRANSPORTING
B05B7/0075
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B3/00
PERFORMING OPERATIONS; TRANSPORTING
B05B7/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A spray gun includes a barrel having a path between an entrance and an outlet. A guide member is connected to the outlet. A rotary member has a tapered way defined therein, and a Venturi tube is partially located in the tapered way. A spray head is connected to the front end of the barrel and has an orifice defined in the spray head. A room is formed by the guide member and the spray head. The rotary member is located in the room. Pressurized liquid passes through the path and enters into the room to rotate the rotary member, and the detergent is sucked by the Venturi tube and spread out from the orifice in a rotational pattern.
Claims
1. A spray gun, comprising: a barrel having a grip formed to a rear end thereof, an entrance formed in the grip, an outlet formed in a front end of the barrel, a path defined through the barrel and communicating with the entrance and the outlet; a guide member connected to the outlet of the barrel and having a tubular portion protruding from a front end thereof, a lateral hole defined through a wall of the guide member and communicating with the path; a rotary member having a tapered way defined therein, a Venturi tube partially located in the tapered way, a first end of the Venturi tube located close to the outlet, a ball head formed to a front end of the rotary member, and a spray head connected to the front end of the barrel and having an orifice, a ball socket defined in an inner wall of the orifice, a room formed by the guide member and the spray head, the rotary member located in the room, the ball head of the rotary member rotatably accommodated in the ball socket of the spray head, the tubular portion of the guide member movably located within the tapered way of the rotary member, wherein pressurized liquid passes through the path and enters into the room via the lateral hole to form a first force that is applied to an outer surface of the rotary member to rotate the rotary member about the ball head of the rotary member rotatably accommodated in the ball socket of the spray head, wherein the pressurized liquid enters into the tapered way from a gap between a rear end of the rotary member and the tubular portion of the guide member to form a second force, the second force swings the rotary member within the room, the first force is larger than the second force to keep rotating the rotary member.
2. The spray gun as claimed in claim 1, wherein the rotary member includes multiple flanges extending from the outer surface of the rotary member.
3. The spray gun as claimed in claim 1, wherein the barrel 10 includes a connection tube which communicates with a middle portion of the path, a control valve is connected between the connection tube and a container, a second end of the Venturi tube is inserted into the container, a trigger is connected to the spray gun and located between the entrance and the connection tube.
4. The spray gun as claimed in claim 2, wherein the barrel rotatably extends through a pivotal seat, the pivotal seat includes a three-way member and two seals, the three-way member includes a first way and a second way which is perpendicular to the first way, the two seals are mounted to the barrel and located on two ends of first way, the second way is defined through an insertion portion of the three-way member, and the insertion portion is connected to the connection tube so that the container is pivotable about an axis of the path, a control valve is connected to the connection tube.
5. The spray gun as claimed in claim 3, wherein a throttle valve is connected to the grip.
6. The spray gun as claimed in claim 1, wherein the spray head has an expanded nozzle head.
7. The spray gun as claimed in claim 1, wherein the spray head is integral with a blowing tube which has an expanded head, a stand is pivotably connected to a connection bar formed on the barrel, the blowing tube is connected to the stand.
8. The spray gun as claimed in claim 1, wherein the stand is made by bending a wire and includes two distal ends which are inserted into two end holes formed to two ends of the connection bar, the blowing tube includes a grooved surface, the stand is wrapped to the grooved surface.
9. The spray gun as claimed in claim 1, wherein the tapered way of the rotary member has an interior space, the room has an interior space which is larger than.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0030] Referring to
[0031] The gyration device “A” comprises a guide member 2 that is connected to the outlet 12 of the barrel 10 and has a tubular portion 21 protruding from the front end thereof. A lateral hole 22 is defined through the wall of the guide member 2 and communicates with the path 13. A rotary member 3 has a tapered way 31 defined therein. A Venturi tube 16 is partially located in the tapered way 31, and the first end of the Venturi tube 16 located close to the outlet 12, and the second end of the Venturi tube 16 is inserted into the container 15. A ball head 32 is formed to the front end of the rotary member 3.
[0032] A spray head 4 is connected to the front end of the barrel 10 and has an expanded nozzle head 44. An orifice 41 defined through the inner end of the expanded nozzle head 44 of the spray head 4. A ball socket 42 is defined in the inner wall of the orifice 41. A room 43 is formed by the guide member 2 and the spray head 4. The rotary member 3 is located in the room 43. The ball head 32 of the rotary member 3 is rotatably accommodated in the ball socket 42 of the spray head 4. The tapered way 31 of the rotary member 3 has an interior space V1, and the room 43 has an interior space V2 which is larger than V1. The Venturi tube 16 extends through the outlet 12 and the guide member 2, and is located in the tapered way 31. The rotary member 3 includes multiple flanges 33 extending from the outer surface of the rotary member 3.
[0033] As shown in
[0034] As shown in
[0035] As shown in
[0036] In another embodiment, as shown in
[0037] While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.