This application claims priority for Taiwan patent application no. 104116443 filed on May 22, 2015, the content of which is incorporated by reference in its entirely.
1. Field of the Invention
The present invention relates to a technology for controlling the excess material of a contact lens, particularly to a method and mold for fabricating a contact lens and controlling excess material and a method for fabricating the same mold.
2. Description of the Related Art
Many people suffer from vision damage or vision degeneration, such as myopia. People who suffer myopia usually wear glasses or contact lenses to resume normal vision. Contact lenses are more convenient and comfortable than glasses and a better choice for some people.
Contact lenses are normally fabricated with casting methods. In casting methods, a liquid contact lens material is injected into the mold cavity of a plastic lower mold; the protrusion portion of a plastic upper mold is placed in the mold cavity; the upper mold and the lower mold are pressed with pressure to form the liquid contact lens material between the upper mold and the lower mold to have the shape required by a contact lens; the liquid contact lens material together with the upper and lower molds are treated with high temperature or ultraviolet light to polymerize the liquid contact lens material to a solid state; then the upper and lower molds are separated to obtain a solid-state contact lens. However, the normal mold lacks a structure to grasp the excess material existing in the excess material area outside the mold cavity. The excess material and the debris thereof are likely to remain on and contaminate the contact lens. Thus, the contaminated contact lenses need cleaning manually in the succeeding process. Further, the excess material and the debris thereof are likely to interfere with automatic vision inspection equipment and cause it to misjudge a lot of qualified products as unqualified products. Consequently, the contact lenses cannot be screened automatically but can only be inspected manually. Thus, much time and manpower is consumed. Accordingly, the present invention proposes a method and mold for fabricating a contact lens and controlling excess material and a method for fabricating the same mold to overcome the abovementioned problems.
The primary objective of the present invention is to provide a method and mold for fabricating a contact lens and controlling excess material and a method for fabricating the same mold, wherein the cured excess material of a contact lens is attached to groove and between two protuberances of a first mold, whereby the excess material is stripped off and abandoned together with the first mold in demolding, and whereby a clean and pollution-free contact lens is obtained, wherefore the cost and time the conventional technology spends in cleaning excess material and contact lenses is saved, and wherefore the efficiency and yield is greatly increased.
Another objective of the present invention is to provide a method and mold for fabricating a contact lens and controlling excess material and a method for fabricating the same mold, which can exempt the automatic contact lens inspection equipment from being interfered with by excess material, whereby the accuracy of automatic contact lens inspection is promoted.
To achieve the abovementioned objectives, the present invention proposes a method for fabricating a contact lens and controlling excess material, which comprises steps: providing a first mold and a second mold, wherein the first mold has a mold cavity, and wherein a side wall with a plurality of protuberances is disposed around the rim of the mold cavity, and wherein a groove is annularly formed on the side wall and transversely passes the protuberances, and wherein the second mold has a round protrusion; placing a liquid contact lens material in the mold cavity; matching the second mold with the first mold and pressing the round protrusion into the mold cavity with pressure to make the liquid contact lens material have a spherical shell shape with the curvature of the round protrusion and make the residual liquid contact lens material overflow to the groove and between two protuberances.
The present invention also proposes a contact lens mold, which comprises a first mold having a mold cavity and a side wall formed around the rim of the mold cavity, wherein the side wall has a plurality of protuberances, and wherein a groove is annularly formed on the side wall and transversely passes the protuberances; and a second mold having a round protrusion matching the mold cavity.
The present invention further proposes a method for fabricating a contact lens mold, which comprises steps: fabricating a first mold and a second mold, wherein the first mold has a mold cavity and a side wall formed around the rim of the mold cavity, and wherein the side wall has a plurality of protuberances, and wherein the second mold has a round protrusion; using a disc-shape cutter to cut the side wall and protuberances of the first mold and using a support seat to drive the first mold to rotate in a direction identical to the rotation direction of the disc-shape cutter to annularly form a groove on the side wall and the protuberances.
Below, embodiments are described in detail to make easily understood the objectives, technical contents, characteristics and accomplishments of the present invention.
Refer to
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In the Step S26, cure the liquid contact lens material with a curing process to make the liquid contact lens material in the contact lens forming space 26 become a contact lens 30 and make the excess liquid contact lens material in the groove 16 and between two protuberances 142 become excess material 32. The curing process is a light curing process or a thermal curing process. The light curing process uses an ultraviolet lamp to illuminate the liquid contact lens material to form the contact lens 30 and the excess material 32. The thermal curing process uses hot air from a hot air chamber to heat the liquid contact lens material to form the contact lens 30 and the excess material 32. After the contact lens 30 and the excess material 32 have been formed, the process proceeds to Step S28. In Step S28, separate the first mold 10 from the second mold 20. Refer to
Thereby, the groove 16 and the protuberances 142 can fully hold the liquid contact lens material and enable the excess material 32 together with the first mold 10 to be separated from the second mold 20 and the contact lens 30. Therefore, the method and mold of the present invention effectively prevents the debris of the excess material 30 from falling on the contact lens 30, increasing the efficiency of fabrication and package and favoring fabrication automation.
In conclusion, the present invention attaches all the cured excess material to the groove and the protuberances of the first mold and enables all the excess material together with the first mold to be separated from the contact lens and the second mold without any excess material adhering to the contact lens. Therefore, the present invention can acquire clean and contamination-free contact lenses, saves the time and cost the conventional technology spends in cleaning excess material in the rear stage, greatly promotes the efficiency and yield, and facilitates automatic fabrication of contact lenses. As the present invention prevents excess material from adhering to contact lenses, the automatic contact lens inspection equipment would not detect any excess material adhering to the contact lenses. Therefore, the manufacturer is free from cleaning contact lenses manually in the succeeding process and exempt from the interference on fabrication automation and fabrication efficiency.
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 characteristic or spirit of the present invention is to be also included within the scope of the present invention.
Number | Date | Country | Kind |
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104116443 | May 2015 | TW | national |