UV CURING APPARATUS FOR CONTACT-LENS POLYMERIZATION PROCESS
20220212427 ยท 2022-07-07
Inventors
- SHIH HONG CHU (TAICHUNG CITY, TW)
- Zheng Jun Su (Hsinchu County, TW)
- CHENG TAI JAO (TOUFEN CITY, TW)
- Hsin Pei Yu (Miaoli County, TW)
- HUAN CHIU TSEN (HSINCHU CITY, TW)
Cpc classification
B29C35/0805
PERFORMING OPERATIONS; TRANSPORTING
B29D11/00153
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A UV (ultraviolet) curing apparatus for a contact-lens polymerization process is provided. A UV curing module is equipped for the mold cavities of contact-lens curing molds, including a plurality of first UV light sources arranged above the mold cavities and a plurality of second UV light sources arranged below the mold cavities. A plurality of first light output areas of a first light guide device guides the light beams emitted by the first UV light sources to illuminate upper light receiving surfaces of the molds. A plurality of second light output areas of a second light guide device guides the light beams emitted by the second UV light sources to illuminate lower light receiving surfaces of the molds. Thereby, the contact-lens polymer inside the molds is uniformly cured, and the yield is raised.
Claims
1. A UV curing apparatus for a contact-lens polymerization process, comprising a carrying device, including a plurality of mold cavities, wherein the plurality of mold cavities respectively carries molds; the mold receives a contact-lens polymer; the mold has an upper light receiving surface and a lower light receiving surface; the upper light receiving surface is a planar surface, and the lower light receiving surface is a curved surface; a UV (ultraviolet) curing module, including a plurality of first UV light sources and a plurality of second light UV light sources, wherein the first UV light sources are arranged above the mold cavities; the second UV light sources are arranged below the mold cavities; a first light guide device, including a plurality of first light output areas, wherein each of the first light output areas is corresponding to one of the first UV light sources and disposed between the first UV light sources and the mold cavities, and wherein the first light guide device guides the light beams emitted by the first UV light sources to pass through the first light output areas, which are respectively corresponding to the first UV light sources, and illuminate the upper light receiving surfaces of the molds; and a second light guide device, including a plurality of second light output areas, wherein each of the second light output areas is corresponding to one of the second UV light sources and disposed between the second UV light sources and the mold cavities, and wherein the second light guide device guides the light beams emitted by the second UV light sources to pass through the second light output areas, which are respectively corresponding to the second UV light sources, and illuminate the lower light receiving surfaces of the molds.
2. The UV curing apparatus for a contact-lens polymerization process according to claim 1, wherein the first light guide device includes a first substrate; a plurality of first light guide holes is formed on the substrate to function as the first light output areas; the first light guide device constrains the light beams emitted by the first UV light sources to transmit inside the first light guide holes.
3. The UV curing apparatus for a contact-lens polymerization process according to claim 2, wherein a diameter of each of the first light guide holes is gradually decreased from a position near the first UV light sources to a position far away from the first UV light sources.
4. The UV curing apparatus for a contact-lens polymerization process according to claim 2, wherein the first substrate includes a delustering material.
5. The UV curing apparatus for a contact-lens polymerization process according to claim 4, wherein the first substrate is made of a plastic material.
6. The UV curing apparatus for a contact-lens polymerization process according to claim 4, wherein the first substrate is made of a glass or metallic material coated with a delustering film.
7. The UV curing apparatus for a contact-lens polymerization process according to claim 1, wherein the second light guide device includes a second substrate; a plurality of second light guide holes is formed on the second substrate to function as the second light output areas; the second light guide device constrains the light beams emitted by the second UV light sources to transmit inside the second light guide holes.
8. The UV curing apparatus for a contact-lens polymerization process according to claim 7, wherein a diameter of each of the second light guide holes is gradually decreased from a position near the second UV light sources to a position far away from the second UV light sources.
9. The UV curing apparatus for a contact-lens polymerization process according to claim 7, wherein the second substrate includes a delustering material.
10. The UV curing apparatus for a contact-lens polymerization process according to claim 9, wherein the second substrate is made of a plastic material.
11. The UV curing apparatus for a contact-lens polymerization process according to claim 9, wherein the second substrate is made of a glass or metallic material coated with a delustering film.
12. The UV curing apparatus for a contact-lens polymerization process according to claim 1, wherein the first light guide device includes a plurality of light-focusing lenses, which form the plurality of first light output areas; the first light guide device passes the light beams emitted by the first UV light sources through the light-focusing lenses and then vertically projects onto the upper light receiving surface of the mold.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
[0016]
[0017]
[0018]
[0019]
DETAILED DESCRIPTION OF THE INVENTION
[0020] Refer to
[0021] The UV curing module 20 includes a plurality of first UV light sources 21 and a plurality of second UV light sources 22. The first UV light sources 21 are arranged above the mold cavities 11 and the second UV light sources 22 are arranged below the mold cavities 11 such that the upper region and the lower region of each mold cavity 11 are substantially corresponding to one first UV light source 21 and one second UV light source 22 respectively. In this embodiment, the first UV light sources 21 and the second UV light sources 22 are light-emitting diodes. Each light-emitting diode is a point light source where brightness is concentrated.
[0022] The first light guide device 30 includes a plurality of first light output areas 31. Each first light output area 31 is corresponding to one first UV light source 21 and disposed between the first UV light source 21 and the mold cavity 11, whereby to guide the light beam emitted by the first UV light source 21 to pass through the corresponding first light output area 31 and illuminate the upper half of the mold cavity 11, i.e. illuminate the upper light receiving surface 121 of the mold 12. In this embodiment, the first light guide device 30 includes an opaque first substrate 32 and a plurality of first light guide holes 33. The first light guide holes 33 form the plurality of first light output areas 31. The first light guide hole 33 constrains the light beam emitted by the corresponding first UV light source 21 to transmit inside the first light guide hole 33, whereby the light is concentrated to illuminate the upper light receiving surface 121, and whereby the upper light receiving surface 121 is exempted from being interfered with by neighboring light sources.
[0023] The second light guide device 40 includes a plurality of second light output areas 41. Each second light output area 41 is corresponding to one second UV light source 22 and disposed between the second UV light source 22 and the mold cavity 11, whereby to guide the light beam emitted by the second UV light source 22 to pass through the corresponding second light output area 41 and illuminate the lower half of the mold cavity 11, i.e. illuminate the lower light receiving surface 122 of the mold 12. In this embodiment, the second light guide device 40 includes an opaque second substrate 42 and a plurality of second light guide holes 43. The second light guide holes 43 form the plurality of second light output areas 41. The second light guide hole 43 constrains the light beam emitted by the corresponding second UV light source 22 to transmit inside the second light guide hole 43, whereby the light is concentrated to illuminate the lower light receiving surface 122, and whereby the lower light receiving surface 121 is exempted from being interfered with by neighboring light sources.
[0024] In one embodiment, the first substrate 32 and the second substrate 42 may include a delustering material, which can decrease the refraction while the light passes through the light guide hole 33 or the second light guide hole 43. In one embodiment, the substrate 32 is made of a plastic material. In another embodiment, the substrate 32 or the second substrate 42 is made of a glass or metallic material coated with a delustering film. In one embodiment, the carrying device 10 is a transport mechanism (such as the conveyor 50 in
[0025] In the abovementioned embodiments, the diameters of the first light guide hole 33 and the second light guide hole 43 are slightly greater than the light source and designed to be a cylindrical-shaped hole. However, the present invention does not limit the shape and size of the first light guide hole 33 and the second light guide hole 43 but allows the shape and size to be modified according to practical requirement. Refer to
[0026] Refer to
[0027] Refer to
[0028] The embodiments described above are only to exemplify the present invention but not to limit the scope of the present invention. Any equivalent modification or variation according to the spirit or characteristics of the present invention is to be also included by the scope of the present invention.