The present invention is related to an air bag module of inflatable mattress, particularly to a uniformly inflatable air bag module.
Nowadays, as technology develops highly, quality requirements for food, clothing, housing, transportation, education, and entertainment are increased day after day. It may be found that, in terms of “housing”, a mattress placed therein with air bags for adjusting the hardness provided by companies is nowadays presented on the market in addition to a general mattress constituted by a sponge.
An air bed is disclosed in Taiwan patent no. M287094. The air bed includes an air mat body, two air transmission tubes and an inflating/deflating device. The air mat body is provided with several tubes. The inflating/deflating device may be allowed for inflating/deflating the tubes via the two air transmission tubes alternately.
Additionally, an air mattress is also disclosed in Taiwan patent no. I414285. The air mattress includes a base mattress layer, a first air mattress layer, a second air mattress layer and an air pump. The base mattress layer is provided with a plurality of first air cells communicated with one another. The first air mattress layer is provided with a plurality of second air cells communicated with one another. The second air mattress layer is provided with a plurality of third air cells communicated with one another. In this case, the first air cell, the second air cell and the third air cell are of different widths. The air pump is allowed for inflating the first air cells, the second air cells and the third air cells, respectively.
In addition, a multilayered inflatable bed is further disclosed in China patent publication no. CN201253034. The multilayered inflatable bed includes a bed body. The bed body is provided with a top wall, a bottom wall, a surrounding wall, an intermediate layer and a plurality of cavities. In this case, the cavities are divided into a plurality of upper cavities and a plurality of lower cavities. The connection between the upper cavity and the lower cavity is formed by an air hole.
However, in respect of the technical contents of above three patents, it is found that, in patent no. M287094, the tubes are incapable of being inflated equally because they are inflated/deflated by the inflating/deflating device alternately. Moreover, in no. I414285, the first air cell, the second air cell and the third air cell are incapable of being inflated equally because they are not communicated with one another. Further, in patent no. CN201253034, inflation volume in sections of the upper cavity and the lower cavity are inconsistent because the upper cavity and the lower cavity are merely communicated via the air hole only. It is apparent that all of the mattresses of patents no. M287094, I414285 and CN201253034 are incapable of keeping surfaces of beds even, and further, users lying on these mattresses are uncomfortable, as a result of non-uniform inflation.
It is the main object of the present invention to solve the problem of uneven surface of bed due to non-uniform inflation in the conventional structure.
For achieving the above object, the present invention provides an air bag module of inflatable mattress, the inflatable mattress being provided with a lining provided for the air bag module to be placed therein, and a resilience supplying module being placed in the lining and resting on the air bag module, the air bag module including at least one air bag unit. The air bag unit is provided with an air distribution layer and a hardness adjustment layer connected with the air distribution layer while located between the air distribution layer and the resilience supplying module. The air distribution layer is provided with at least two distributing air bags side-by-side disposed while communicated with one another so as to be connected to an inflating device for receiving air together, and a plurality of first air-guiding portions disposed along the connection between the two distributing air bags. The hardness adjustment layer is provided with a plurality of supporting air bags not communicated with one another while disposed on the surfaces of the two distributing air bags, and a plurality of second air-guiding portions, respectively provided on the surface of one of the supporting air bags so as to be communicated with one of the first air-guiding portions.
In one embodiment, the air distribution layer is provided with a plurality of first connection lines provided, at an interval between each other, on the connection between the two distributing air bags, each of the first air-guiding portions being provided between any two adjacent first connection lines so as to be communicated with the two distributing air bags, respectively.
In one embodiment, the air distribution layer is provided with an air delivery tube provided at one end of each of the distributing air bags and communicated with the distributing air bags, as well as allowed to connect to said inflating device.
In one embodiment, the hardness adjustment layer is provided with a plurality of second connection lines, respectively provided on the connection between any two adjacent supporting air bags, so as to isolate the any two adjacent supporting air bags.
In one embodiment, each of the second air-guiding portions is located at the center of the surface of one of the supporting air bags, respectively.
In one embodiment, each of the first air-guiding portions is a first air-guiding hole, while each of the second air-guiding portions is a second air-guiding hole communicated with one of the first air-guiding holes, respectively.
In one embodiment, each of the distributing air bags is presented in the form of a long strip and arranged to form a rectangular pattern. Each of the supporting air bags is presented in the shape of a rectangle, while these supporting air bags are connected together to form a rectangular pattern of the shape the same as that formed by the distributing air bags after being arranged.
In one embodiment, the resilience supplying module is provided with a plurality of elastic bodies, as well as the lining is provided with a plurality of lattice-like units arranged in parallel with one another, each lattice-like unit defining a mounting space provided for at least one of the air bag units and at least one of the elastic bodies to be placed therein in turn.
In light of above embodiments, the present invention is provided with features, in comparison with the convention art, as follows.
In the present invention, in the air distribution layer, air is inputted into each of the distributing air bags equally via intercommunication with one another of the distributing air bags, in such a way that air coming from the distributing air bags is consistently received by each of the supporting air bags of hardness adjustment layer independent of one another. Thereby, in the process of adjustment of hardness, the inflatable mattress may be inflated consistently and evenly. Further, the problem of uneven surface of bed due to non-uniform inflation in the conventional structure is solved.
The detailed description and technical content of the present invention will now be described in combination with drawings as follows.
Referring to
In the above paragraph, the fundamental embodied structure of the air bag module has been expounded clearly. Subsequently, the operation process and the embodied pattern created in the course of operation of the air bag module will be described for the present invention. In this connection, referring to
Here, for facilitating the explanation of detailed variation of the air bag module in the practical use, the relationship among only one single air bag unit 1 and other components will be described in the following paragraphs. In detail, primary hardness is provided by the resilience supplying module 3 for the hardness of the inflatable mattress when the air bag unit 1 is uninflated. At this time, the lowest hardness of the inflatable mattress is perceived by a user lying on the mattress body 5. If increasing the hardness of the mattress is desired, an inflating device (not shown in the figures) may be connected to the air delivery tube 113 by the user, so as to inject air into the supporting air bag 121 through the inflating device. In one embodiment, the inflatable mattress is further provided with a filler strip 6 (such as, a sponge strip, for example) located above the air delivery tube 113. When the air bag unit 1 is being inflated, air is injected into each supporting air bag 121 from the two distributing air bags 111 through the first air-guiding portions 112 and the second air-guiding portions 122 (as illustrated in
Then, for the purpose of inflating the air bag unit 1 more evenly, the air distribution layer 11 is further provided with a plurality of first connection lines 114 (for example, welding lines, i.e., fusion regions formed due to welding) in one embodiment as illustrated in