A METHOD OF EMBOSSING GLOVE FILM AND A GLOVE FILM PRODUCED THEREFROM
20210197441 · 2021-07-01
Assignee
Inventors
- Kon Fah Hue (Klang, MY)
- Ah Chye Ong (Klang, MY)
- Tong Aun Ng (Klang, MY)
- Yoke Meng Tan (Klang, MY)
- Elaine Nyuk Tzi Chong (Klang, MY)
Cpc classification
B29C43/222
PERFORMING OPERATIONS; TRANSPORTING
B29C2043/463
PERFORMING OPERATIONS; TRANSPORTING
B29C59/04
PERFORMING OPERATIONS; TRANSPORTING
B29C59/022
PERFORMING OPERATIONS; TRANSPORTING
A41D19/0068
HUMAN NECESSITIES
International classification
Abstract
The present invention relates to a method of embossing a glove film comprising the step of passing the glove film between a pair of rollers which are a metal roller and a rubber roller, such that the film has an overlapping texture derived from the metal roller and the rubber roller, wherein the metal roller has a textured surface and the rubber roller has a rough surface.
Claims
1. A method of embossing a glove film, comprising the step of: passing the glove film between a pair of rollers, wherein the pair of rollers includes a metal roller and a rubber roller, such that the glove film has an overlapping texture derived from the metal roller and the rubber roller, wherein the metal roller has a textured surface and the rubber roller has a rough surface.
2. The method according to claim 1, wherein the textured surface of the metal roller has an embossment pattern comprising shapes of diamond, octagonal, wave, jewel and square.
3. The method according to claim 1, wherein the rough surface of the rubber roller is produced by grinding process.
4. The method according to claim 1, wherein the metal roller has an average surface roughness of more than 100 μm.
5. The method according to claim 1, wherein the rubber roller has an average surface roughness of more than 15 μm.
6. A glove film embossed using a method according to claim 1 and having an average surface roughness of 15-30 μm.
7. A glove film embossed using a method according to claim 1 and having an embossment depth of 80-120 μm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] For the purpose of facilitating an understanding of the invention, there is illustrated in the accompanying drawing the preferred embodiments from an inspection of which when considered in connection with the following description, the invention, its construction and operation and many of its advantages would be readily understood and appreciated.
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION OF THE INVENTION
[0023] Hereinafter, the invention shall be described according to the preferred embodiments of the present invention and by referring to the accompanying description and drawings. However, it is to be understood that limiting the description to the preferred embodiments of the invention and to the drawings is merely to facilitate discussion of the present invention and it is envisioned that those skilled in the art may devise various modifications without departing from the scope of the appended claim.
[0024] The present invention relates to a method of embossing a glove film comprising the step of passing the glove film between a pair of rollers which are a metal roller and a rubber roller, such that the film has an overlapping texture derived from the metal roller and the rubber roller, wherein the metal roller has a textured surface and the rubber roller has a rough surface.
[0025] The glove film used in the present invention is preferably made of elastomer based material such as thermoplastic elastomer (TPE), but other suitable types of thermoplastic material such as polyolefin, styrene-block copolymer and styrene-ethylene block copolymer may also be included.
[0026] Referring to
[0027]
[0028] As illustrated in
[0029] As shown in
[0030] To produce a glove using the embossed glove film of the present invention, the glove film is subjected to pulling station, edge trimming, edge winder crosscutter, winder and stamping. Preferably two layers of the embossed glove film are stamped and sealed under suitable temperature, pressure and heat to form a functional embossed glove. Pursuant to the preferred embodiment, the embossed glove is preferred to have an average surface roughness of about 15-30 μm in order to provide good gripping performance More preferably, the average surface roughness of the embossed glove is about 25 μm.
[0031] Further, the embossment is preferably applied on at least one surface of the glove. More preferably, the embossment is applied on both the outer surface and the inner surface of the glove. In the preferred embodiment, the embossed glove has a low value of coefficient of friction (COF) on the inner surface and a high value of COF on the outer surface. It will be well appreciated by those skilled in the art, that by providing such embossed gloves, the user could easily don the gloves with good tackiness property.
[0032] As embossment is known to affect the glove strength, therefore surface modification agent has been commonly used during the production of embossed gloves. However, in accordance with the present invention, no additive is required for producing the embossed gloves as described in the preceding description. This is achieved by providing the embossed gloves with a suitable embossment depth, which is preferably about 80-120 μm. By having such embossment depth, the thickness of the glove will not be adversely affected during the embossment process as illustrated in
[0033] Although the invention has been described and illustrated in detail, it is to be understood that the same is by the way of illustration and example, and is not to be taken by way of limitation. The spirit and scope of the present invention are to be limited only by the terms of the appended claims.
Examples
[0034] An example is provided below to illustrate different aspects and embodiments of the invention. The example is not intended in any way to limit the disclosed invention, which is limited only by the claims.
Gripping and Tackiness Analyses of Gloves
[0035] The gripping and tackiness performances of the embossed glove of the present invention are compared to glove without embossment. The comparison results are shown in TABLE 1.
TABLE-US-00001 TABLE 1 TPE glove Embossed glove with smooth of present Categories surface invention Static COF (Gripping) 0.10 to 0.20 0.35 to 0.65 Kinetic COF (Donning) 0.15 to 0.18 0.15 to 0.25 Tackiness test (°) 0 to 60 0 to 90
[0036] TABLE 1 showed the gripping and tackiness performance of TPE glove with smooth surface and embossed glove of present invention.
Physical Properties of Gloves
[0037] The physical properties of the embossed gloves of the present invention are compared to glove without embossment. The comparison results are shown in TABLE 2.
TABLE-US-00002 TABLE 2 Thickness (μm) Tensile Strength (MPa) Elongation (%) Before After Before After Before After Glove (weight) embossing embossing aging aging aging aging ASTM D882-12 Nil Min. 12 Min. 12 Min. 550 Min. 550 Standard TPE glove with 36 to 38 40 to 50 24.0 to 26.0 27.0 to 30.0 575 to 650 570 to 630 smooth surface Embossed glove of 36 to 38 45 to 60 23.0 to 24.5 26.0 to 29.5 575 to 630 570 to 620 present invention
[0038] TABLE 2 showed the physical properties comparison of TPE glove with smooth surface and embossed glove of present invention.
Coefficient of Friction Analysis of Gloves
[0039] The coefficient of friction is measured on the exterior and interior surface of gloves. The coefficient of friction of the embossed glove of the present invention (Sample No. 3) is compared and the comparison results are shown in TABLE 3.
TABLE-US-00003 TABLE 3 Glove Coefficient of Friction Sample Rubber Metal Glove Glove No. roller roller Exterior Interior 1 Smooth surface Smooth surface 0.10 to 0.20 0.15 to 0.18 2 Smooth surface Textured surface 0.25 to 0.40 0.30 to 0.45 3 Rough surface Textured surface 0.35 to 0.65 0.15 to 0.25
[0040] TABLE 3 showed the coefficient of friction of 3 different glove samples including the embossed glove of the present invention (Sample No. 3).