Electrophoretic device having a transparent light state
US-2024094572-A1 · Mar 21, 2024 · US
US9880425B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9880425-B2 |
| Application number | US-201514930544-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 2, 2015 |
| Priority date | Dec 3, 2014 |
| Publication date | Jan 30, 2018 |
| Grant date | Jan 30, 2018 |
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A smart window, and production method therefor, uses glass beads made from glass material instead of a polymer matrix of the conventional smart window. This makes the liquid crystal's size, shape and arrangement constant by placing the liquid crystal outside the glass beads, thereby securing high stability and chemical resistance, avoiding haze, having low operating voltage, and having improved optical, for example, broad variable range of light transmittance between OFF (light impermeable) and ON (light permeable) states.
Opening claim text (preview).
What is claimed is: 1. A method for manufacturing a smart window comprising: (i) coating an adhesive on one side of a lower layer of transparent electrodes; (ii) evenly dispersing glass beads on the adhesive-coated side of the lower layer of transparent electrodes; (iii) adhering the glass beads to the lower layer of the transparent electrodes by hardening the adhesive; (iv) shaking out the residual glass beads except the single-layered glass beads adhered to the surface of the lower layer of the transparent electrodes from the lower layer of the transparent electrodes; (v) bonding the upper layer of the transparent electrodes to cause the glass beads to be interposed between a pair of the transparent electrodes; and (vi) injecting liquid crystal between a pair of the transparent electrodes to the glass beads, so as to surround the outside of the glass beads. 2. The method for manufacturing a smart window of claim 1 , wherein the liquid crystal is injected between the transparent electrodes using capillary force. 3. A method for manufacturing a smart window comprising: (i) coating an adhesive on one side of each of a lower layer and an upper layer of transparent electrodes; (ii) evenly dispersing glass beads on the adhesive-coated sides of the lower layer and the upper layer of the transparent electrodes; (iii) adhering the glass beads to the lower layer and the upper layer of the transparent electrodes by hardening the adhesive; (iv) shaking out the residual glass beads except the single-layered glass beads adhered to the surface of the lower layer and the upper layer of the transparent electrodes from the lower layer and the upper layer of the transparent electrodes; (v) bonding the lower layer and the upper layer of the transparent electrodes to cause the glass beads to be interposed between a pair of the transparent electrodes; and (vi) injecting liquid crystal between a pair of the transparent electrodes to the outside of the glass beads, so as to surround the glass beads. 4. The method for manufacturing smart window of claim 3 , wherein the glass beads are a multiple layer manufactured to have a staggered structure where the glass beads adhered to the upper layer of the transparent electrodes are located at spaces between neighboring glass beads adhered to the lower layer of the transparent electrodes. 5. The method for manufacturing smart window of claim 3 , wherein the liquid crystal is injected between the transparent electrodes using capillary force.
Glass · CPC title
involving application of liquid to the layers prior to lamination, e.g. wet laminating (B32B37/12 takes precedence) · CPC title
Conductive · CPC title
Fillers, e.g. particles, powders, beads, flakes, spheres, chips · CPC title
Physics · mapped topic
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