The present application generally relates to door and wall structures. In particular, but not exclusively, the present application relates to soundproof glass door and wall structures.
This section illustrates useful background information without admission of any technique described herein being representative of the state of the art.
Walls and doors made of glass are often esthetically pleasing to behold and practical in other ways as well. However, in spaces requiring sturdier structures and/or soundproofing or dampening of sound, glass walls and doors with the desired look have so far been difficult to build.
Soundproofing and structurally reinforcing arrangements, for example in phone booths, conference rooms, inner or outer walls of buildings and vehicle doors, require for example door frames and bodies as well as wall frames and bodies that have increased thickness and supporting structures. Such structures easily ruin the desired look of a glass wall and/or door as they often extend to both inside and outside of the glass wall and/or door or the method used to attach them is easily apparent above or beneath the glass surface.
The aspects of the embodiments disclosed aim to mitigate the disadvantages of the prior art by providing a soundproof glass door and/or wall structure that also ensures the esthetically pleasing qualities thereof.
Various aspects of examples of the aspects of the disclosed embodiments are set out in the claims.
According to a first example aspect of the aspects of the disclosed embodiments, there is provided a structure, comprising
The transparent material may comprise glass, acrylic glass or polycarbonate.
The colored surface layer may have a substantially dark color.
The colored surface layer may be a silk-screen printed or digitally printed layer.
The structure may further comprise an attachment layer through which the body element and the surface plate are attached and in contact.
The body element may be a body element configured to provide for soundproofing.
The body element may be a doorframe.
According to a second example of the aspects of the disclosed embodiments, there is provided a comprising the structure of the first example aspect.
According to a third example of the aspects of the disclosed embodiments, there is provided a door comprising the structure the first example aspect.
According to a fourth example of the aspects of the disclosed embodiments, there is provided a system, characterized by comprising the wall of the second example aspect and the door of the third example aspect.
The system may further comprise hinges supporting the door on a doorframe.
The system may further comprise a sealing element for sealing the gap between the door and the wall.
According to a fifth example of the aspects of the disclosed embodiments, there is provided a phone booth, comprising the wall of the second example aspect, the door of the third example aspect or the system of the fourth example aspect.
According to a sixth example of the aspects of the disclosed embodiments, there is provided a method of manufacturing the structure, the wall, the door, or the system of previous aspects by
Providing the colored surface layer may comprise silk-screen or digital printing.
Different non-binding example aspects and embodiments of the present disclosure have been illustrated in the foregoing. The embodiments in the foregoing are used merely to explain selected aspects or steps that may be utilized in implementations of the present disclosure. Some embodiments may be presented only with reference to certain example aspects of the present disclosure. It should be appreciated that corresponding embodiments may apply to other example aspects as well.
For a more complete understanding of example embodiments of the present disclosure, reference is now made to the following descriptions taken in connection with the accompanying drawings in which:
The aspects of the disclosed embodiments and its potential advantages are understood by referring to
In an embodiment, the glass of which the door surface plate 10a and/or the wall surface plate 20a are comprised of is transparent and colorless. In a further embodiment, the glass of which the door surface plate 10a and/or the wall surface plate 20a are comprised of is colored or tinted and transparent. In a further embodiment, the glass of which the door surface plate 10a and/or the wall surface plate 20a are comprised of has a reduced transparency or is opaque, for example the glass comprises frosted glass. In a further embodiment, the door surface plate 10a and/or the wall surface plate 20a comprise material having properties substantially similar to glass such as acrylic glass or polycarbonate.
The glass door surface plate 10a further comprises a surface layer 12a on the part of the back surface thereof facing the door body element 11 and the attachment layer 32a. The surface layer 12a comprises a colored layer configured to cover the portion of the back surface in contact with the attachment layer 32a and the door body element 11. In an embodiment, the surface layer 12a comprises a silk-screen, or serigraph, printed layer. In a further embodiment, the surface layer 12a comprises a digitally printed layer. In an embodiment, the surface layer 12a comprises a layer having a dark color, such as black. The surface layer 12a is configured to cover the portion of the glass door surface plate 10a facing the door body element 11 and configured to cause, when the door 10 is observed from the side opposite to the surface layer 12a, an appearance of a substantially continuous glass surface. In an embodiment, the appearance of a substantially continuous glass surface is further emphasized by reflections or reflective features of the glass door surface plate 10a.
The glass wall surface plate 20a further comprises a surface layer 12b on the part of the back surface thereof facing the doorframe 50 and the attachment layer 32b. The surface layer 12b comprises a colored layer configured to cover the portion of the back surface in contact with the attachment layer 32b and the doorframe 50. In an embodiment, the surface layer 12b comprises a silk-screen, or serigraph, printed layer. In a further embodiment, the surface layer 12b comprises a digitally printed layer. In an embodiment, the surface layer 12b comprises a layer having a dark color, such as black. The surface layer 12b is configured to cover the portion of the glass wall surface plate 20a facing the doorframe 50 and configured to cause, when the wall 20 is observed from the side opposite to the surface layer 12b, an appearance of a substantially continuous glass surface. In an embodiment, the appearance of a substantially continuous glass surface is further emphasized by reflections or reflective features of the glass wall surface plate 20a.
In a still further embodiment, the appearance of a substantially continuous glass surface is further aided by choosing the colors of the structures of the space behind the wall and the door in such a way as to strengthen the effect, for example by providing the space, i.e. room, behind the wall 20 and the door 10 with interior surfaces having a dark color.
In an embodiment with both the wall surface plate 20a and the door surface plate 10a comprising glass, the surface layers 12a,12b are configured to cover the underlying structures such as the door body element 11 and the doorframe 50 and are configured to cause an appearance of a substantially continuous glass surface across the door 10 and the wall 20. Furthermore, in an embodiment, similar surface layers are applied to cover further body elements, or structures, such as support beams or the like. In a further embodiment, instead of both the wall and the door having a substantially transparent, e.g. glass surface palate, only either one of them has a substantially transparent surface plate.
Without in any way limiting the scope, interpretation, or application of the claims appearing below, a technical effect of one or more of the example embodiments disclosed herein is providing a soundproofed glass wall and/or door with an appearance of continuous glass surface. Another technical effect of one or more of the example embodiments disclosed herein is providing an easy installment of a soundproof glass surface.
Although various aspects of the present disclosure are set out in the independent claims, other aspects of the invention comprise other combinations of features from the described embodiments and/or the dependent claims with the features of the independent claims, and not solely the combinations explicitly set out in the claims.
It is also noted herein that while the foregoing describes example embodiments of the present disclosure, these descriptions should not be viewed in a limiting sense. Rather, there are several variations and modifications which may be made without departing from the scope of the present disclosure as defined in the appended claims.
Number | Date | Country | Kind |
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20165082 | Feb 2016 | FI | national |
Filing Document | Filing Date | Country | Kind |
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PCT/FI2017/050052 | 1/30/2017 | WO | 00 |