The present invention relates to a mat and a method of manufacturing a mat, and more particularly relates to a fragrance mat and a method of manufacturing the same.
Most of the conventional fragrance mats are made by injecting fragrance substances into a mat or prepared by attaching additional objects with diffuser function to the mat. However, the conventional fragrance mats manufactured in the above manner is usually hard to keep its fragrance being spreaded for a long time.
Therefore, there is still a need to improve the conventional fragrance mats and the method of manufacturing the conventional fragrance mats.
Accordingly, one objective of the present invention is to provide a fragrance mat and a method of manufacturing the same, which enables the fragrance mat of the present invention to have a fragrance before the mat has been formed, and to have a specific fragrance diffusion coefficient and a specific fragrance diffusion flux, so that the fragrance of the fragrance mat of the present invention can be lasting for a long time.
In order to overcome the technical problems in prior art, the present invention provides a method of manufacturing a fragrance mat, comprising a material preparation step, which, by stirring at a predetermined stirring temperature, evenly mixes fragrance mat raw material and foaming related additives material to obtain an unformed fragrance mat foam material, the fragrance mat raw material containing polyvinyl chloride and essential oil; a mesh providing step, which provides a central mesh and outputs the central mesh in a continuous manner; a material release step, which applies a discharging control device to release the unformed fragrance mat foam material in a dropping-by-gravity manner such that the unformed fragrance mat foam material flows down on an upper surface of the central mesh and penetrates the central mesh to a lower surface of the central mesh to form an unfoamed fragrance mat in such a manner that the upper and lower surfaces of the central mesh are covered with the unformed fragrance mat foam material; a foaming step, which open-foams the unfoamed fragrance mat at a predetermined foaming temperature to form an original fragrance mat body; and a cooling step, which cools down the original fragrance mat body to obtain the fragrance mat having a specific diffusion coefficient and a specific diffusion flux.
According to one embodiment of method of the present invention, in the material preparation step, the predetermined stirring temperature is in a range from 25° C. to 30° C.
According to one embodiment of method of the present invention, in the material release step, the discharging control device is provided to enable, during the central mesh moves relative to the discharging control device and is continuously output, the unformed fragrance mat foam material to flow down in the dropping-by-gravity manner on the upper surface of the central mesh and penetrates the central mesh to the lower surface of the central mesh to cover the unformed fragrance mat foam material on the upper and lower surfaces of the central mesh.
According to one embodiment of method of the present invention, in the foaming step, the predetermined foaming temperature is in a range from 190° C. to 210° C.
According to one embodiment of method of the present invention, the cooling step is a roll cooling step, which performs a rolling process on the original fragrance mat body at a predetermined cooling temperature.
According to one embodiment of method of the present invention, in the cooling step, the predetermined cooling temperature is in a range from 0° C. to 6° C.
According to one embodiment of the present invention, the method is further comprises a rolling step, which rolls the fragrance mat into a fragrance mat roll.
According to one embodiment of method of the present invention, the diffusion coefficient is in range from 0.72×10−5 to 4.76×10−5 (m2/s) at 25° C. and 101.325 kPa, according to the density of polyvinyl chloride.
According to one embodiment of method of the present invention, the diffusion flux is in a range from 0.04 to 97.45 μmol/(m2∜h) at 25° C.±5° C. and 101.325 kPa±50 kPa.
With the technical means adopted by the present invention, the fragrance mat of the present invention can have the fragrance before the mat has been formed. Furthermore, since the mat body of the present invention is a product made of the essential oil and the fragrance mat raw material without adding any addition fragrance substance (for example, injecting the fragrance liquid into the mat body), the fragrance mat of the present invention can have the specific fragrance diffusion coefficient and the specific fragrance diffusion flux, so that the fragrance of the fragrance mat of the present invention can be lasting for a long time.
The preferred embodiments of the present invention are described in detail below with reference to
As shown in
In detail, the essential oil contained in the fragrance mat raw material is an important raw material that gives the fragrance mat 100 of the present invention the characteristic of fragrance, in other words, the fragrance mat 100 of the present invention has a fragrance before it is formed.
As shown in
In detail, the fragrance mat raw material and the foaming related additives material used in the present invention can be uniformly stirred at any temperature, preferred stirring temperature is a nearroom temperature. In other words, in the material preparation step S1, the method of manufacturing the fragrance mat 100 of the present invention can make the fragrance mat raw material and the foaming related additives material stir uniformly without using high temperature, thereby achieving secondary effect of energy saving and production cost saving.
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In detail, since the original fragrance mat body 3 is the product obtained by the foaming step S4, the temperature of the formed original fragrance mat body 3 will also fall within the range of the predetermined foaming temperature e.g., 190 to 210° C. Therefore, the cooling step S5 is required to immediately reduce the high temperature of the original fragrance mat body 3 formed, so that the original fragrance mat body 3 becomes the fragrance mat 100 at room temperature.
Furthermore, in the cooling step S5, the original fragrance mat body 3 will be moved to the cooling device 5, the cooling device 5 is set with the predetermined cooling temperature, the original fragrance mat body 3 is cooled by the cooling air blown from the cooling device 5 and a slow rolling process of the cooling roller 51 (the temperature of the cooling roller 51 is also the predetermined cooling temperature). The speed of the slow rolling process is about 9 to 14 meters of the original fragrance mat 3 per minute.
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In detail, the fragrance mat 100 is rolled up into the fragrance mat roll to facilitate cutting and packaging.
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In the method of manufacturing the fragrance mat 100 according to an embodiment of the present invention, the diffusion coefficient is in range from 0.72×10−5 to 4.76×10−5 (m2/s) at 25° C. and 101.325 kPa, according to the density of polyvinyl chloride.
In the method of manufacturing the fragrance mat 100 according to an embodiment of the present invention, the diffusion flux is in a range from 0.04 to 97.45 μmol/(m2·h) at 25° C.±5° C. and 101.325 kPa±50 kPa.
As shown in
The fragrance mat 100 obtained by the method mentioned above is a product made of the fragrance mat raw material and the foaming related additives material, the fragrance mat raw material include polyvinyl chloride and essential oil. The fragrance mat 100 is provided with the fragrance before the mat has been formed. The fragrance mat 100 is manufactured without adding any addition fragrance substance and without attaching additional objects with diffuser function to the mat. Therefore, the fragrance mat 100 of the present invention can have the specific fragrance diffusion coefficient and the specific fragrance diffusion flux, so that the fragrance of the fragrance mat 100 can last for a long time.
The above description should be considered as only the discussion of the preferred embodiments of the present invention. However, a person skilled in the art may make various modifications without deviating from the present invention. Those modifications still fall within the spirit and scope defined by the appended claims.
Number | Date | Country | Kind |
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110149488 | Dec 2021 | TW | national |
Number | Name | Date | Kind |
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2981629 | Ginnette | Apr 1961 | A |
3007205 | House | Nov 1961 | A |
20020086804 | Shefer | Jul 2002 | A1 |
20100225017 | Nakagawa | Sep 2010 | A1 |
Number | Date | Country |
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202271252 | Jun 2012 | CN |
103114459 | May 2013 | CN |
103352375 | Feb 2016 | CN |
107518748 | Dec 2017 | CN |
102009011059 | Sep 2010 | DE |
200361925 | Sep 2004 | KR |
10-1497426 | Feb 2015 | KR |
I281526 | May 2007 | TW |
Entry |
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Machine translation KR200361925Y1 (Year: 2004). |
Machine translation TWI281526B (Year: 2007). |
Machine translation DE102009011059A1 (Year: 2010). |
Machine translation KR101497426 (Year: 2015). |
Number | Date | Country | |
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20230202081 A1 | Jun 2023 | US |