FLEXIBLE MOLD WITH VARIABLE THICKNESS
20180056577 ยท 2018-03-01
Inventors
- Yung-Chun LEE (Tainan City, TW)
- YI-CHUN TSAI (Tainan City, TW)
- Chun-Ying WU (Tainan City, TW)
- Wei-Hsiang SU (Tainan City, TW)
- Shao-Hsuan HUANG (Tainan City, TW)
- Ke-Chang LU (Tainan City, TW)
Cpc classification
B29C33/424
PERFORMING OPERATIONS; TRANSPORTING
B29C35/0805
PERFORMING OPERATIONS; TRANSPORTING
B29C33/06
PERFORMING OPERATIONS; TRANSPORTING
B82Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B81C1/0046
PERFORMING OPERATIONS; TRANSPORTING
B82Y40/00
PERFORMING OPERATIONS; TRANSPORTING
B29C59/022
PERFORMING OPERATIONS; TRANSPORTING
B29L2007/001
PERFORMING OPERATIONS; TRANSPORTING
G03F7/0002
PHYSICS
International classification
Abstract
The present invention is a flexible mold with variable thickness which is a mold body with nano-imprinting micro-structure, and the mold body is gradually thickened from its periphery to the middle. When the flexible mold with variable thickness of the present invention is subjected to a force or displaced, a larger amount of compression may be produced to cause a larger contact pressure between the micro-structure at the bottom of the mold body and the imprinted object, and to control the amount of deformation of the mold body upon stripping by the thickness difference of the mold body for overcoming the previous defect caused by the excessive draft angle or sharp pressure release.
Claims
1. A flexible mold with variable thickness comprises: a kernel body gradually thickened from its periphery to the middle, and the bottom of the kernel body has a nano-imprinting micro-structure.
2. The flexible mold with variable thickness according to claim 1, wherein the kernel body is molded from thermalsetting silicone material, a photocurable silicone material, a rubber material, a plastic material.
3. The flexible mold with variable thickness according to claim 1, wherein the mold body is gradually thickened from its periphery to above the middle.
4. A flexible mold with variable thickness comprises: a kernel body comprising: an imprinting mold having a nano-impriting micro-structure at the lower surface thereof; a soft mold is a elastomer varied gradually from the periphery to middle, the soft mold pressing against the imprinting mold from the lower surface of the imprinting mold.
5. The flexible mold with variable thickness according to claim 4, wherein the soft mold and the imprinting mold are molded from a thermalsetting silicone material, a photocurable silicone material, a rubber material, a plastic material.
6. The flexible mold with variable thickness according to claim 4, wherein the soft mold body is gradually thickened from its periphery to below the middle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] With reference to the detailed descriptions and accompanying figures related with the present invention, the technical content and purpose effects of the present invention will be further understood; the related figures are:
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
SYMBOL DESCRIPTION OF MAIN ELEMENT
[0018] 1 mold body [0019] 11 imprinting face [0020] 12 imprinting mold [0021] 13 soft mold [0022] 2 metal ring [0023] 3 hard backplate [0024] 4 substrate [0025] 5 resist glue
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0026] The following will describe specific embodiments to illustrate the implementation of the present creation, which are not used to limit the scope of the present invention.
[0027] With reference to
[0028] The periphery of the mold body 1 of the flexible mold with variable thickness of the present invention is mainly secured by a metal ring 2, and then applying a force or displacement to the upper surface of the mold body 1 with a hard backplate 3 to cause the imprinting face 11 of the mold body 1 to deform and protrude, the central area of the imprinting face 11 being in contact with a resist glue 5 on a substrate 4. Subsequently, the relative distance between the hard backplate and the substrate is further shortened, and since the mold body 1 has a large thickness at the center, it may produce a large amount of compression when being pressed by the hard backplate 3 and the substrate 4 to cause a larger contact pressure between the imprinting face 11 of the mold body 1 and the substrate 4, thus forcing the resist glue 5 to fill into the recess of the micro-structure and to extrude the redundant resist glue 5 to flow outward to the edge of the substrate 4.
[0029] During the imprinting process, the distribution of contact pressure can be controlled by the approaching rate and displacement from the hard backplate 3 to the substrate 4. Then the resist glue 5 is cured by UV radiation and heating to complete the nano-imprinting formation flow for the micro-structure. Finally, the draft angle and separation rate can be controlled by the rate and displacement of the hard backplate 3 away from the substrate 4, so that defect of the fracture of micro-structure caused by the sharp release in force can be avoided during stripping in traditional techniques.
[0030] With reference to
[0031] The present embodiment mainly uses the metal ring 2 to hold and fix the periphery of the imprinting mold 12, and then combing the soft mold 13 with the hard backplate 3 and applying a displacement or force onto the imprinting mold 12 to cause the imprinting face 11 of the imprinting mold 12 to deform and protrude, thus the central area of the imprinting face 11 contacting with the resist glue 5 on the substrate 4. Subsequently, the relative distance between the hard backplate 3 and the substrate 4 is further shortened, and since the soft mold 13 has a large thickness at the center, it may produce a large amount of compression when the imprinting mold 12 is pressed to cause a larger contact pressure between the imprinting face 11 of the imprinting mold 13 and the substrate 4, thus forcing the resist glue 5 to fill into the recess of the micro-structure and to extrude the redundant resist glue 5 to flow outward to the edge of the substrate 4.
[0032] As described above, compared with traditional technique, the flexible mold with variable thickness of the present invention has following characteristics and effects:
[0033] 1. The present invention forms a contact pressure distribution featured as strong in the center but weak around between the mold body and the substrate by the different stresses and strain produced upon deformation in the imprinting process through the thickness difference, forcing the resist glue to flow outward from the center of the substrate and thus achieving the purpose of uniform distribution while solving the drawback of wasting glue materials in tradition spin-coating process.
[0034] 2. The present invention can control the deformation amount of the mold body by applying displacement or force onto the mold body during imprinting process through the thickness difference of the mold body, and further achieve the control on the contact pressure during the imprinting process, thus achieving the purposes of high uniformity of micro-structure resulted from imprinting and minimal thickness of the bottom residual layer.
[0035] 3. The present invention controls the deformation amount of the mold body upon stripping by the thickness difference of the mold body to improve the fracture defect of micro-structure caused by excessive draft angle and sharp release of pressure.
[0036] The above-mentioned detailed description aims to specifically illustrate one practicable embodiment of the present invention, but the embodiment is not for limiting the patent scope of the present invention and all equivalent embodiments or modifications made without departing from the spirit of the present invention shall be contained within the patent scope of the present invention. Many changes and modifications in the above described embodiment of the invention can, of course, be carried out without departing from the scope thereof. Accordingly, to promote the progress in science and the useful arts, the invention is disclosed and is intended to be limited only by the scope of the appended claims.