The present invention relates to a water storage unit for outdoor use and includes an inner bag with coolant received therein and an outer bag in which the inner bag is received.
A conventional water storage unit includes a plate attached to a side of the water bag and the plate includes multiple chambers along a periphery thereof, the chambers are filled with coolants which are gel-type material with high heat transferring factor. The water bag and the plate are frozen before use and the gel-type coolants are solidified with low temperature. Water is then filled into the water bag and heat is absorbed by the coolants such that the user sucks the water of lower temperature. The water bag is received in a backpack and is connected with a hose so that the user can suck the cool water without dismounting the backpack. However, the water bag and the plate occupy a certain space in the freezer and the solidified coolants take the space that water can be filled in the water bag. The coolants are located on one side of the water bag so that the water close to the other side of the water bag cannot be cooled as the water adjacent the coolants. Furthermore, the chambers are located from the top edge to the lower edge of the water bag so that when part of the water is used, the coolants on the higher position of the water bag do not have any function.
The present invention intends to provide a water storage unit which includes an outer bag and an inner bag in which a coolant bag is received. The coolant bag is located at the bottom of the water storage unit and the outlet part for the water storage unit is located at the bottom thereof so that the water can be cooled by the coolant in the coolant bag efficiently.
The present invention relates to a water storage unit which comprises an outer bag and an inlet defined in a top end of the outer bag. An inner bag is received in the outer bag and has an opening defined in a top end thereof. Two communication holes are defined in two sides of the inner bag and independent from an interior of the inner bag. A coolant bag is received in the inner bag and coolant is received in the coolant bag. A handle is connected to the inlet of the outer bag and a sealing rod is engaged with a clamp slot defined in an underside of the handle to seal the inlet of the outer bag. The clamp slot includes a guide opening in one end and a closed end on the other end. A through hole is defined through the closed end. An elongate slit is defined between two parts of the clamp slot. The sealing rod is clamped in the clamp slot and has two connection parts on a first end thereof. The connection parts are engaged with the through hole. The sealing rod has multiple axial ridges extending radially therefrom so as to be engaged with insides of the clamp slot. The top end of the outer bag is inserted into the elongate slit of the handle and goes around the sealing rod so that inlet can be sealed.
The primary object of the present invention is to provide a water storage unit wherein the inlet of the outer bag can be well sealed by the cooperation of the handle and the sealing rod.
Another object of the present invention is to provide a water storage unit which includes a coolant bag received in the inner bag and the coolant bag can be individually frozen so as to save the space required in the freezer.
Yet another object of the present invention is to provide a water storage unit wherein the coolant bag is located at the lower end of the outer bag so that the water that the user sucks is ensured to be cooled by the coolant.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
A coolant bag 7 is received in the inner bag 6 via the opening of the inner bag 6 and coolant 71 is received in the coolant bag 7. The coolant bag 7 has a circular seam 70 on a center thereof so that the coolant 71 is filled around the circular seam 70. The coolant bag 7 can be taken out from the inner bag 6 and put into a freezer to solidify the coolant 71.
Further referring to
Referring to
The handle 21 includes a carry hole 212 at a center thereof and the two engaging holes 213 are located on two sides of the handle 21. A plurality of hanging holes 214 are defined through the handle 21 and allow the user to hang the handle 21 with the outer bag 1 on a wall or the like.
The top end of the outer bag 1 is inserted into the elongate slit 2113 of the handle 21 and goes around the sealing rod 22 and then extends out from the elongate slit 2113. The first axial ridge 223 is located between the second, third and fourth ridges 224, 225, 226, and the first axial ridge 223 is always located corresponding to the elongate slit 2113. When the axial ridges 223 to 226 on the sealing rod 22 is securely engaged with the inside of the clamp slot 211, the inlet 2 of the outer bag 1 is well sealed.
When the outer bag 1 has a thin wall, the second axial ridges 224 contact two respective lower insides of the two parts of the clamp slot 211 so as to seal the inlet 2. If the outer bag 1 has a wall of mediate thickness, the two third axial ridges 225 contact two respective mediate insides of the two parts of the clamp slot 211 to seal the inlet 2. If the outer bag 1 has a wall of thick thickness, the two fourth axial ridges 226 contact two respective upper insides of the two parts of the clamp slot 211 to seal the inlet 2. In other words, the sealing rod 22 can seal the inlet 2 regardless the thickness of the outer bag 1. The functions of the first to fourth axial ridges 223, 224, 225, 226 also perform an important to seal the inlet 2 when the outer bag 1 is pulled or squeezed and ensure that one of the first, second, third and fourth axial flanges 223 to 226 works to seal the inlet 2.
When adding water into the outer bag 1 which is defined into two sub-spaces by the inner bag 6, the air in the two sub-spaces communicate to each other via the communication holes 62 so as to escape from the inlet 2 of the outer bag 1, such that the water can be filled in the outer bag 1 easily. The inlet 2 is sealed after the water is filled and the water is cooled by the coolant 71 of the coolant bag 7 in the inner bag 6. It is noted that the coolant 71 is always located at the lower end of the outer bag 1 and close to the outlet part 3 so that the water that the user sucks is always cooled.
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.
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Number | Date | Country | |
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20100084411 A1 | Apr 2010 | US |