The present invention relates to a method for manufacturing an inflatable mattress and an inflatable mattress, and more particular to a method for manufacturing an inflatable mattress having a seamless strip and an inflatable mattress having a seamless strip.
Inflatable mattresses are so popular due to their comfortable, soft and warm characteristics. Conventional inflatable mattresses have air bags. Air is pumped into or discharged from the air bags through valves mounted on a lateral side of the inflatable mattresses. When the inflatable mattress is filled with air, the inflatable mattress is inflated and a user can sit on it or lie on it. When air is discharged from the inflatable mattress through the valve, the volume of the inflatable mattress is reduced, and the inflatable mattress is easily to be packed.
Referring to
However, the strips 14 are made by welding two polyvinyl chloride (PVC) films through high frequency. As shown in
Thus, it is urgently desired to make improvements for the inflatable mattresses.
To achieve the above purposes, the present invention provides a method for manufacturing an inflatable mattress, which comprises, at least, the following steps: Step 1, introducing a plastic material into an extruding machine; Step 2, operating the extruding machine to extrude the plastic material; Step 3, forming a tubular body in the form of a cylinder having a wall having a predetermined thickness; Step 4, cutting the cylindrical tubular body to form seamless tubular strips; and Step 5, connecting two opposite side portions of each of the seamless tubular strips to an upper layer and a lower layer respectively, with the seamless tubular strips being spaced from each other by a predetermined distance.
In the above embodiment, the method further comprises: Step 6A, connecting peripheral edges of the upper layer and the lower layer to form an inflatable mattress having an internal space.
In the above embodiment, the method further comprises: Step 6B, connecting a peripheral edge of the upper layer and a peripheral edge of the lower layer to edges of a lateral layer, respectively, so as to form an inflatable mattress having an internal space.
In the above embodiment, the two side portions of each of the seamless tubular strips are connected to the upper layer and the lower layer through radio frequency welding.
In the above embodiment, the predetermined thickness of the wall is 0.10 mm˜1.00 mm.
The present invention also provides an inflatable mattress, which comprises: an upper layer, which forms a surface of the inflatable mattress; a lower layer, which forms a bottom of the inflatable mattress and is connected to a peripheral edge of the upper layer such that the inflatable mattress is formed with an internal space; and at least one tubular strip, which is arranged in the internal space, the tubular strip having two opposite side portions that are connected to the upper layer and the lower layer, respectively, the at least one tubular strip comprising at least two strips that are spaced from each other by a predetermined distance; wherein the at least one tubular strip is integrally formed and has no jointing seam.
In the above embodiment, the tubular strip is made of thermoplastic polyurethane (TPU).
In the above embodiment, the tubular strip is made of polyvinyl chloride (PVC).
In the above embodiment, the tubular strip has a wall having a thickness of 0.10 mm˜1.00 mm.
The present invention further provides an inflatable mattress, which comprises: an upper layer, which forms a surface of the inflatable mattress; a lower layer, which forms a bottom of the inflatable mattress; a lateral layer, which is connected to peripheral edges of the upper layer and the lower layer to form a lateral side of the inflatable mattress, the upper layer, the lower layer, and the lateral layer collectively delimit and define an internal space of the inflatable mattress; and at least one tubular strip, which is arranged in the internal space, the tubular strip having two opposite side portions that are connected to the upper layer and the lower layer, respectively, the at least one tubular strip comprising at least two strips that are spaced from each other by a predetermined distance; wherein the at least one tubular strip is integrally formed and has no jointing seam.
In the above embodiment, the tubular strip is made of thermoplastic polyurethane (TPU).
In the above embodiment, the tubular strip is made of polyvinyl chloride (PVC).
In the above embodiment, the tubular strip has a wall having a thickness of 0.10 mm˜1.00 mm.
The present invention provides a method for manufacturing an inflatable mattress and an inflatable mattress. The inflatable mattress uses seamless tubular strips. The tubular strips are formed by extruding a plastic material through an extruding machine to provide a cylindrical tubular body having a relatively thin wall and subjecting the cylindrical tubular body to cutting and are thus each formed integrally as a unitary structure having no jointing seam to thereby greatly improve the strength of the strips and making the strip more resistant to breaking. Thus, the inflatable mattress that uses the tubular strips is also improved in respect of durability thereof.
Referring collectively to
In one embodiment, the method for manufacturing an inflatable mattress further comprises Step 6A (S6A), connecting peripheral edges of the upper layer 11 and the lower layer 12 to each other to form an inflatable mattress 100a having an internal space S.
Optionally, in another embodiment, the method for manufacturing an inflatable mattress further comprises Step 6B (S6B), connecting peripheral edges of the upper layer 11 and the lower layer 12 to edges of a lateral layer 13 so as to form an inflatable mattress 100b having an internal space S.
The plastic material introduced into the extruding machine in Step 1 (S1) is thermoplastic polyurethane (TPU) or polyvinyl chloride (PVC).
Preferably, the cylindrical tubular body 20 formed in Step 3 (S3) has a wall having a thickness of 0.10 mm˜1.00 mm.
In Step 5 (S5), the two opposite portions of each of the seamless tubular strips 21 are connected to the upper layer 11 and the lower layer 12 through radio frequency welding.
As shown in
After Step 5 (S5) and Step 6A (S6A) or Step 6B (S6B), an inflatable mattress 100a (as shown in
The present invention also provides an inflatable mattress 100a, as shown in
The upper layer 11 forms a surface of the inflatable mattress 100 and the lower layer 12 forms a bottom of the inflatable mattress 100. The lower layer 12 and the upper layer 11 are connected to each other along peripheral edges thereof so as to provide the inflatable mattress with an internal space S.
The tubular strips 21 are arranged in the internal space S, such that the tubular strips 21 are each connected, with two opposite side portions thereof, to the upper layer 11 and the lower layer 12, respectively, and strips are spaced from each other by a predetermined distance, wherein each of the tubular strips 21 is formed integrally as a unitary structure and has no jointing seam.
In the instant embodiment, the tubular strips 21 are each manufactured with Steps 1-4 (S1-S4) described above.
In some preferred embodiments, the tubular strips 21 each have a wall having a thickness of 0.10 mm˜1.00 mm.
In some preferred embodiments, the tubular strips 21 are made of a material that is polyvinyl chloride (PVC) or thermoplastic polyurethane (TPU).
Referring to
The lateral layer 13 is connected, with edges thereof, to peripheral edges of the upper layer 11 and the lower layer 12 to form a lateral side of the inflatable mattress 100b. The lateral layer 13, the upper layer 11, and the lower layer 12 collectively delimit and define an internal space S of the inflatable mattress.
The tubular strips 21 are arranged in the internal space S and the tubular strips 21 are each connected, with two opposite side portions thereof, to the upper layer 11 and the lower layer 12. The tubular strips 21 are spaced from each other by a predetermined distance.
In the instant embodiment, the tubular strips 21 are each manufactured with Steps 1-4 (S1-S4) described above.
In a preferred embodiment, the tubular strips 21 each have a wall having a thickness of 0.10 mm˜1.00 mm.
In some preferred embodiments, the tubular strips 21 are made of a material that is polyvinyl chloride (PVC) or thermoplastic polyurethane (TPU).
Next, referring to
At the beginning, before the inflatable mattress 100a or the inflatable mattress 100b is not yet inflated, as shown in
In the inflatable mattress 100a or the inflatable mattress 100b according to the present invention, the tubular strip 21 is integrally formed and has no jointing seam so that it is possible to overcome the drawbacks of the conventional strips 14 shown in
In summary, the present invention provides a method for manufacturing an inflatable mattress and an inflatable mattress so manufactured, in which a plastic material is extruded with an extruding machine to form a tubular body in the form of a cylinder having a relatively thin wall. Such a cylindrical tubular body is then cut into one or multiple seamless tubular strips, which can be used as pull strips inside an inflatable mattress. The seamless tubular strips have a strength that is much higher as compared to the conventional strips and is more resistant to breaking so that an inflatable mattress fabricated with such strips would be more durable and not easy to break.
This Application is being filed as a Continuation-in-Part of application Ser. No. 15/211,323, filed 15 Jul. 2016, currently pending.
Number | Date | Country | |
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Parent | 15211323 | Jul 2016 | US |
Child | 16037307 | US |