The present invention relates to a flow guide device of spray container and, more particularly, to a flow guide device utilizing a check valve to control the liquid to flow unidirectionally, so as to be capable of guiding and spraying out the liquid even if the spray container is in an inverted state.
Spray containers are common items in daily life, such as the sprayers for toning lotion or anti-mosquito liquid. Besides, in order to enable the liquid to be sprayed at different angles, especially when the spray container is inverted, the flow guide path of the spray container needs to have a different design. For example, inventions, Taiwan Application No. 102217887 “Flow Guide Device for Spray Container”, Patent No. M459031 “Improved Two-way Check Valve”, and PCT Publication No. WO 99/29586 “Injector Usable in Both Erected and Inverted State”, all have backflow design for inverted spraying. However, the technical disclosures in the aforementioned cases have relatively complicated designs in their component structures, rendering not only cumbersome and inconvenient in assembling, but also increase of manufacturing costs. Therefore, there are drawbacks of relatively high construction complexity and relatively high manufacturing cost in conventional technologies.
Hence, an object of the present invention is to provide a flow guide device of spray container having a relatively simple structure.
Accordingly, the present invention provides a flow guide device of spray container. The spray container comprises a bottle adapted for containing liquid, a nozzle assembled on the bottle, and a straw, wherein the nozzle has a press portion and a flow guide pipe extended downwards from the press portion into the bottle. The flow guide device is assembled and connected between the flow guide pipe and the straw, so as for guiding the liquid in the bottle to be sprayed out from the nozzle. The flow guide device comprises a connecting pipe, a check valve and a check ball. The connecting pipe is adapted for connecting the flow guide pipe with the straw and has an upper pipe section, a middle pipe section and a lower pipe section. The upper pipe section is connected with the upper part of the flow guide pipe and has a plurality of back flow passages formed on the inner edge thereof for the liquid in said bottle to flow into the middle pipe section. The lower pipe section is connected with the straw and has a plurality of forward flow passages formed on the inner edge thereof. The check valve is assembled and arranged in the middle pipe section, so as to allow the liquid entering the middle pipe section from the back flow passages to unidirectionally pass therethrough to enter the flow guide pipe. The check ball is assembled and arranged in the lower pipe section and at the port of the straw, so as for timely preventing the liquid from back flowing into the straw or flowing from the middle pipe section into the lower pipe section. When the spray container is in an upright state and the press portion is pressed, the liquid in the bottle through the straw pushes the check ball away to enter the middle pipe section through the forward flow passages and be guided out from the bottle through the flow guide pipe. When the spray container is in an inverted state, the liquid in the bottle enters the middle pipe section through the back flow passages and passes through the check valve to flow through the flow guide pipe to be sprayed out from the nozzle, wherein in this state, the check ball is blocked at the end of the lower pipe section away from the straw, so as to prevent liquid from entering the lower pipe section. Because the flow guiding device is mainly formed through combining the connecting pipe, the check valve and the check ball, the device is simple in structure, convenient to assemble, and capable of further reducing the overall manufacturing costs.
Referring to
The flow guiding device 1 is arranged between the flow guiding pipe 222 and the straw 23 and utilized for guiding the liquid in the bottle 21 to be sprayed out from the nozzle 22. The flow guiding device 1 comprises a connecting pipe 3, a check valve 4 and a check ball 5. The connecting pipe 3 has an upper pipe section 31, a middle pipe section 32 and a lower pipe section 33, wherein the upper pipe section 31 is connected and assembled with the upper assembling section 223 of the flow guide pipe 222 and is close to the press portion 221 and the inner edge thereof forms a plurality of back flow passages 311 so as for the liquid in the bottle 21 to flow into the middle pipe section. The middle pipe section 32 is adapted for the engaging section 224 and the lower assembling section 225 to pass through and arranged therein, wherein the lower pipe section 33 is connected with the straw 23 and the inner edge thereof forms a plurality of forward flow passages 331.
The check valve 4 is arranged in the middle pipe section 32 and has a collar 41 sleeved on the lower assembling section 225 and a ring wing 42 expandingly formed from the surround of the collar 41, wherein the ring wing 42 is in contact with the middle pipe section 32 and the collar 41 and the ring wing 42 are adapted to stop the liquid flowing through the forward flow passages 331, but allowing the liquid flowing through the back flow passages 311 into the middle pipe section 32 to unidirectionally pass through. More specifically, the liquid passing through the back flow passages 311 can move the ring wing 42 away from the middle pipe section 32, so as to allow the liquid to pass through and enter the lower assembling section 225 of the flow guide pipe 222.
The check ball 5 is assembled and arranged in the lower pipe section 33 and at the port of the straw 23, so as for timely preventing the liquid from back flowing into the straw 23 or flowing from the middle pipe section 32 into the lower pipe section 33.
Under a normal usage condition, in other words, having the spray container 2 in an upright state, when the press portion 221 is pressed, the liquid in the bottle 21 pushes the check ball 5 away via the straw 23 and enters the middle pipe section 32 through the forward flow passages 331. Since this is a general flow path of the liquid in the spray container 2, the state of the liquid removing the check ball 5 is not illustrated in the figures. Here, the liquid in the middle pipe section 32 is blocked by the check valve 4 and is limited only in the lower portion of the middle pipe section 32, as illustrated in
The flow guiding device 1 of a spray container 2 according to the present invention is mainly composed of the connecting pipe 3, the check valve 4 and the check ball 5, which provides a really simple structure that it is easy to be assembled and its overall manufacturing costs can further be reduced. It is worth mentioning that, based on the design that the upper pipe section 31 of the connecting pipe 3 is close to the press portion 221, when the spray container 2 is set in an inverted state, as illustrated in
It should be noted that, the type of the check valve 4 shall not be limited to a single design. For example, the check valve 4 may also be implemented as the mode of a second embodiment as illustrated in
Referring to