This application claims priority under 35 U.S.C. § 119 to Malaysia Patent Application No. PI2020003651, filed Jul. 15, 2020, the disclosure of which is incorporated by reference herein in its entirety.
The present invention relates to a detachable bi-layered glove and method of manufacturing thereof, which provide users the convenience of using the same piece of the glove twice without the risk of contamination and the hassle of doffing and donning twice.
In numerous industries such as healthcare, pharmaceutical and food, double gloving has been a common practice. Simply, double layered protection has become a preferable option when users deal with high risk chemicals. Double gloving instead of single gloving is advisable since it provides extra protection and it reduces the risk of contamination. Further, single gloving has a major drawback, whereby the users tend to doff the used single-layered glove and don a fresh piece of the glove over sweaty hands, which is actually taxing as well as causes discomfort.
Meanwhile, implementation of double gloving in the healthcare field was influenced by various factors such as but not limited to surgical procedure, risk status of patient, abrasion on the hands of the surgical team and personal preference. Similarly, cross-contamination between human hands and food products was the main reason for the implementation of double gloving in the food industry.
However, one major setback faced by users in double gloving is that the users require additional time for donning the second glove over the first glove which will directly affect the efficiency of the users. Thus, from the above, it is obvious that the glove manufacturing industries are facing some challenges to overcome, for which an approach is developed to identify a detachable bi-layered glove and an appropriate method for users to conveniently use the same piece of glove for twice without the risk of contamination and the hassle of doffing and donning for twice.
The present invention relates to a detachable glove comprising at least two layers that are separated by an adhesive layer, wherein the adhesive layer includes a wetting agent, a latex coagulating agent, a synthetic organic polymer and water. The present invention also relates to a chlorinated detachable bi-layered glove and method of manufacturing thereof. The present invention further relates to a polymer coated detachable bi-layered glove and method of manufacturing thereof. Still further, the present invention relates to a method of peeling a detachable bi-layered glove wherein the method includes (i) pulling a cuff area of an outer glove layer until its circumference is detached from an inner glove layer and (ii) peeling off the outer glove layer once the full circumference of the outer glove layer is detached from the inner glove layer to yield the inner glove layer for further usage.
Additional aspects, features and advantages of the invention will become apparent to those skilled in the art upon consideration of the following detailed description of preferred embodiments of the invention.
The present invention will be fully understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, wherein:
In the appended drawings:
A detailed description of preferred embodiments of the present invention is disclosed herein. It should be understood, however, that the embodiments are merely exemplary of the present invention, which may be embodied in various forms. Therefore, the details disclosed herein are not to be interpreted as limiting, but merely as the basis for the claims and for teaching one skilled in the art of the invention. The numerical data or ranges used in the specification are not to be construed as limiting.
The present invention relates to a detachable bi-layered glove and method of manufacturing thereof, in particular the present invention relates to a detachable bi-layered glove, including, but not limited to, any glove selected from the group consisting of acrylonitrile butadiene rubber (NBR) glove, natural rubber (NR) glove, polychloroprene (CR) rubber glove, polyisoprene (PI) rubber glove, styrene butadiene rubber (SBR) glove, butadiene copolymers rubber glove, polyurethane (PU) glove, polyvinyl chloride (PVC) glove, thermoplastic elastomer (TPE) glove, vinyl acetate ethylene (VAE) glove and mixtures thereof and method of manufacturing thereof which provide users the convenience of using a same piece of the glove twice without the risk of contamination and the hassle of doffing and donning twice.
For the purpose of this invention, the term “bi-layered” can also be construed as two-layered or double-layered which is made of an outer glove layer and an inner glove layer. Simply, the bi-layered glove comprises an outer glove layer and an inner glove layer. For the purpose of this invention, the term “detachable” can also be construed as removable and/or peel off. Further, the term “detachable” is associated to the action of peeling off the outer glove layer from the inner glove layer.
A first embodiment of the present invention relates to a detachable bi-layered glove. The detachable bi-layered glove comprises an outer glove layer and an inner glove layer that is separated by an adhesive layer. The glove may be any glove selected from the group consisting of acrylonitrile butadiene rubber (NBR) glove, natural rubber (NR) glove and polychloroprene (CR) rubber glove, polyisoprene (PI) rubber glove, styrene butadiene rubber (SBR) glove, butadiene copolymers rubber glove, polyurethane (PU) glove, polyvinyl chloride (PVC) glove, thermoplastic elastomer (TPE) glove, vinyl acetate ethylene (VAE) glove and mixtures thereof.
Alternatively, the present invention may also be applied on a detachable multi-layered glove. In an embodiment of the present invention, the multi-layered glove includes at least 3 layers. In an embodiment, each of the layers is separated by an adhesive layer.
The latex to manufacture the glove may be obtained from any commercially available latex suppliers. The latexes are used as 100 phr (also referred to as parts per hundred rubber), wherein the parts per hundred rubber is used as a basis for amounting other components.
The adhesive layer includes at least:
Table 1 shows chemical components and compositions thereof (as mentioned above) used in preparing the adhesive layer.
The outer glove layer and the inner glove layer are in different lengths for easy removal. Simply, if the outer glove layer is longer, then the inner glove layer would be shorter and vice versa. The longer glove layer has a standard length ranging between 270 mm to 290 mm, whereas the shorter glove layer has a standard length ranging between 230 mm to 250 mm.
A second embodiment of the present invention relates to a method to prepare the detachable bi-layered glove (as stated above). The detachable bi-layered glove may be a chlorinated and/or polymer coated detachable bi-layered glove.
Referring to the accompanying drawing,
Referring to the accompanying drawing,
The coagulant layer includes:
Tables 3, 5 and 7 show chemical components (as listed above) and compositions thereof used in preparing the coagulant layer that is in accordance to the latex formulations to be prepared.
The first and the second latex formulations include:
Tables 2, 4 to 6 show chemical components (as listed above) and compositions thereof used in preparing the first and the second latex formulations.
A third embodiment of the present invention relates to a method of peeling an outer glove layer of a detachable bi-layered glove from an inner glove layer of the detachable bi-layered glove. Referring to the accompanying drawings,
The following example is constructed to illustrate an embodiment of the present invention in a non-limiting sense.
A detachable bi-layered glove of the present invention comprises an outer glove layer and an inner glove layer that is separated by an adhesive layer, wherein the gloves are prepared using latex formulations as described in Tables 2, 4 and 6 adopting a method commonly known in the glove manufacturing industry, wherein the adhesive layer is as described in Table 1 and wherein the outer and the inner gloves are in different lengths, wherein the longer glove has a standard length ranging between 270 mm to 290 mm and wherein the shorter glove has a standard length ranging between 230 mm to 250 mm.
Table 8 shows the survey results from 20 respondents on the peeling efficiency of the detachable bi-layered glove of the present invention.
Based on user's experience, it is evident that the users are finding the peeling efficiencies are very good for both the NBR and the CR as compared to NR detachable bi-layered gloves.
Tables 9 and 10 shows the survey results obtained from 20 respondents on peeling efficiencies of detachable bi-layered glove of the present invention when the inner layer and outer layer are in different lengths with different adhesive layers are applied between the detachable bi-layered glove of the present invention. The peeling efficiencies are rated from 1 to 3, wherein 1 signifies easy peeling, 2 signifies normal peeling and 3 signifies hard peeling.
Based on users' experience, it is evident that the users are finding the peeling efficiencies are good for all the detachable bi-layered gloves with an adhesive layer of the present invention applied between the detachable bi-layered gloves.
As a whole, the detachable bi-layered glove of the present invention is able to overcome the conventional shortcomings since the glove of the present invention is able to cater users to conveniently use the same piece of glove twice without the risk of contamination and without the hassle of doffing and donning twice.
The terminology used herein is for the purpose of describing particular example embodiments only and is not intended to be limiting. As used herein, the singular forms “a”, “an” and “the” may be intended to include the plural forms as well, unless the context clearly indicates otherwise. The terms “comprises”, “comprising”, “including”, and “having” are inclusive and therefore specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof.
The method steps, processes, and operations described herein are not to be construed as necessarily requiring their performance in the particular order discussed or illustrated, unless specifically identified as an order of performance. It is also to be understood that additional or alternative steps may be employed. The use of the expression “at least” or “at least one” suggests the use of one or more elements, as the use may be in one of the embodiments to achieve one or more of the desired objects or results.
Number | Date | Country | Kind |
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PI2020003651 | Jul 2020 | MY | national |