摘要:
A coated article such as a mirror or window is provided, the coated article including a coating supported by a glass substrate. The coating may include at least a reflective layer in certain example embodiments of this invention. In certain example embodiments, the reflective layer and/or a layer proximate thereto is selectively oxidized or oxidized in areas corresponding to draw lines or other non-uniformities in the glass substrate. This permits reflections from the coated article to be more uniform and/or less distorted.
摘要:
A coated article such as a mirror or window is provided, the coated article including a coating supported by a glass substrate. The coating may include at least a reflective layer in certain example embodiments of this invention. In certain example embodiments, the reflective layer and/or a layer proximate thereto is selectively oxidized or oxidized in areas corresponding to draw lines or other non-uniformities in the glass substrate. This permits reflections from the coated article to be more uniform and/or less distorted.
摘要:
Certain example embodiments of this invention relate to insulating glass (IG) units including three substantially parallel spaced apart glass substrates, wherein at least two of the surfaces include low-emissivity (low-E) coatings and at least some of the non-low E coated surfaces have antireflective (AR) coatings disposed thereon. In certain example embodiments, low-E coatings are provided on the second and fifth surfaces of the IG unit, and each internal surface of the IG unit that does not support a low-E coating does support an AR coating. Additional AR coatings may be provided on one or both of the outermost surfaces in certain example embodiments. In some cases, the center substrate need not be heat treated because of the reduced absorption enabled by providing the low-E coatings on the two outermost substrates, as well as the reduced heat accumulation in the center lite itself and in the two adjacent spacers.
摘要:
Example embodiments of this invention relate to a coated article including an infrared (IR) reflecting layer of a material such as silver or the like, for use in an insulating glass (IG) window unit for example. In certain example embodiments, the coating is a single-silver type coating, and includes an overcoat including an uppermost layer of or including silicon nitride and a layer of or including tin oxide immediately under and contacting the silicon nitride based overcoat. In certain example embodiments, the thicknesses of the silicon nitride based overcoat and the tin oxide based layer are balanced (e.g., substantially equal, or equal plus/minus about 10%). It has surprisingly been found that such balancing results in an improvement in thermal cycling performance and improved mechanical durability. In certain example embodiments, the coating may realize surprisingly good substantially neutral film side reflective coloration, and may achieve an improved visible transmission, SHGC ratio and low U-values. Moreover, in certain example embodiments, stress in the overcoat of the coating may be reduced by reducing nitrogen gas flow (N2 ml/kW) and cathode power during a sputter-deposition process, thereby further improving thermal cycling performance.
摘要:
A coated article is provided so as to include a low-E (low emissivity) coating having an infrared (IR) reflecting layer sandwiched between at least a pair of dielectric layers. The IR reflecting layer may be of or include a material such as silver (Ag), and is provided between a pair of contact layers. The low-E coating includes an overcoat having a substantially metallic layer (e.g., NbZr or Zr) which has been found to improve the durability of the coating without significantly sacrificing desired optical characteristics. Such coated articles may be used in the context of windows.
摘要:
This application relates to a coated article including at least one infrared (IR) reflecting layer of a material such as silver or the like in a low-E coating. In certain embodiments, at least one layer of the coating is of or includes zirconium oxide (e.g., ZrO2) or zirconium silicon oxynitride (e.g., ZrSiOxNy). When a layer comprising zirconium oxide or zirconium silicon oxynitride is provided as the uppermost or overcoat layer of the coated article (e.g., over a silicon nitride based layer), this results in improved chemical and heat stability in certain example embodiments. Coated articles herein may be used in the context of insulating glass (IG) window units, vehicle windows, or in other suitable applications such as monolithic window applications, laminated windows, and/or the like.
摘要:
In certain example embodiments, low-E coated articles may be designed so as to realize a combination of good visible transmission (Tvis) and an excellent solar heat gain coefficient (SHGC), thereby realizing an improved (i.e., higher) Tvis/SHGC ratio. In certain example embodiments of this invention, if heat treated (HT), the low-E coated articles may have approximately the same color characteristics as viewed by the naked eye both before and after heat treatment (i.e., a low ΔE* value) in certain example instances. Such coated articles may be used in insulating glass (IG) units, windows, and/or other suitable applications.
摘要翻译:在某些示例性实施例中,可以设计低E涂层制品以实现良好的可见透射(Tvis)和优异的太阳热增益系数(SHGC)的组合,从而实现改进的(即更高)Tvis / SHGC比 。 在本发明的某些示例性实施方案中,如果热处理(HT),低E涂层制品在热处理之前和之后可具有与肉眼观察到的大致相同的颜色特性(即,低&Dgr; E *值 )在某些示例中。 这种涂覆制品可用于中空玻璃(IG)单元,窗户和/或其它合适的应用中。
摘要:
A first surface mirror includes a reflective layer and one or more dielectric layers. In certain example embodiments, a silicon metal oxide (e.g., silicon aluminum oxide) inclusive nucleation layer(s) is provided above and/or below the reflective layer in order to improve durability of the first surface mirror.
摘要:
In certain example embodiments, low-E coated articles may be designed so as to realize a combination of good visible transmission (Tvis) and an excellent solar heat gain coefficient (SHGC), thereby realizing an improved (i.e., higher) Tvis/SHGC ratio. In certain example embodiments of this invention, if heat treated (HT), the low-E coated articles may have approximately the same color characteristics as viewed by the naked eye both before and after heat treatment (i.e., a low ΔE* value) in certain example instances. Such coated articles may be used in insulating glass (IG) units, windows, and/or other suitable applications.
摘要翻译:在某些示例性实施例中,低E涂层制品可以被设计成实现良好的可见透射率(Tθ)与优异的太阳热增益系数(SHGC)的组合,从而实现改进的 即更高)的T / S / SHGC比。 在本发明的某些示例性实施例中,如果热处理(HT),低E涂层制品在热处理之前和之后可能具有与肉眼观察到的大致相同的颜色特性(即,低ΔE*值) 某些示例实例。 这种涂覆制品可用于中空玻璃(IG)单元,窗户和/或其它合适的应用中。
摘要:
In certain example embodiments, low-E coated articles may be designed so as to realize a combination of good visible transmission (Tvis) and an excellent solar heat gain coefficient (SHGC), thereby realizing an improved (i.e., higher) Tvis/SHGC ratio. In certain example embodiments of this invention, if heat treated (HT), the low-E coated articles may have approximately the same color characteristics as viewed by the naked eye both before and after heat treatment (i.e., a low ΔE* value) in certain example instances. Such coated articles may be used in insulating glass (IG) units, windows, and/or other suitable applications.
摘要翻译:在某些示例性实施例中,可以设计低E涂层制品以实现良好的可见透射(Tvis)和优异的太阳热增益系数(SHGC)的组合,从而实现改进的(即更高)Tvis / SHGC比 。 在本发明的某些示例性实施方案中,如果热处理(HT),低E涂层制品在热处理之前和之后可具有与肉眼观察到的大致相同的颜色特性(即,低&Dgr; E *值 )在某些示例中。 这种涂覆制品可用于中空玻璃(IG)单元,窗户和/或其它合适的应用中。