The present application claims priority from Indian Patent Application Number 201821036772 Filed on 28 Sep. 2018.
The present subject matter described here, in general relates to a cap with additional fitment, and more specifically related to a cap with dauber applicator and a method of manufacturing a plastic multilayer container for the cap with dauber applicator.
Plastic pipes such as acrylonitrile butadiene (ABS), Chlorinated polyvinyl chloride (CPVC) and polyvinyl chloride (PVC) pipes are primarily joined by solvent cementing (i.e. by adhesive solvent cement materials). A proper gluing of solvent cement to the surface requires a good quality dauber applicator. Such applicators and containers of solvent cement are manufactured with good quality raw materials as daubers and containers continuously come in contact with the solvent cement gluing liquids. Thus, there is requirement of durable and easy to handle applicator with a good quality container. The existing packaging (i.e. tin containers) used for packing solvent cement face problems of rusting, denting and also may cause injury to the finger while removing product from tin container due to inside sharp edges of tin container.
A long-lasting solvent cementing requires rapid application of correct amount of solvent cement with consistent quality of primers and cements. The length of metal dauber is designed as per container size. The Stock keeping unit SKU) wise metal dauber wire lengths and cotton blob diameter is designed in such a way that there will be no wastage of the product when removed the product from the container. Also, different application surfaces required applicator daubers with different lengths. Very small or very large length of applicator may not apply sufficient amount of solvent cement to the targeted surface. Existing dauber fitment systems with cap and container may have problems regarding the applicator and container durability in many aspects. Existing dauber cap applicators are mainly made up of complete plastic molding with fixed length, metal cap with welded/soldered daubers. It remains a tedious task to fix a metal dauber with a plastic cap by welding or soldering, as there is a possibility of deformation of cap or loose connection of dauber with the cap. Also, a fixed length soldered/welded metal shaft may not remain useful for all length requirements of applicator.
Further, the container material of solvent cement also affects the durability of solvent cement. The material used for plastic multilayer container of the solvent cement must comprise chemical resistant properties. Further, it is desired that the container is non-reactive, rust and dent proof, as well as the inner surface further improving the shelf life and property consistency of solvent to be stored in the container. Existing tin container face problems such as rusting, denting and shorter shelf life.
Therefore, it is necessary to construct a full featured plastic multilayer container for solvent cement with a plastic cap and metal dauber connected to the plastic cap, wherein the plastic cap is constructed in such way that metal dauber with multiple lengths can be fitted in the cap, depending on the size of the container.
This summary is provided to introduce concepts related to plastic cap metal dauber fitment system with plastic multilayer container. This summary is not intended to identify essential features of the claimed subject matter nor is it intended for use in determining or limiting the scope of the claimed subject matter.
In one embodiment, a metal dauber assembly enabled to fit over a plastic multilayer container is described. The assembly may comprise a cap, wherein the cap may be a plastic cap. The system may comprise a cavity inside the plastic cap. The metal dauber applicator wire comprises a first end and a second end, wherein the first end may be configured to hold a cotton blob. Further, the second end of the metal dauber applicator wire may be shaped into a pattern. The pattern may correspond to a zig-zag, a sinuous, a tilt, a wave, a S-shape, a crooked structure, an angular bend and the like. Further, a holding means may be molded over at second end of the metal dauber applicator wire, wherein the holding means is molded in such way that the holding means press fits in the cavity.
In one embodiment, a plastic multilayer container with a metal dauber applicator wire and cap is described. The plastic multilayer container may comprise a first layer inner layer of solvent resistant, chemical resistant thermoplastic polymeric layer. The plastic multilayer container may comprise a second tie layer of thermoplastic resin polymer. The plastic multilayer container may comprise a third central layer of mixture of a high-density polyethylene (HDPE), a thermoplastic polymer and a thermoplastic adhesive resin polymer. The plastic multilayer container may comprise a fourth layer of tie layer, wherein the tie layer may comprise of adhesive resin polymer. The plastic multilayer container may further comprise a fifth outer layer of thermoplastic high-density polyethylene (HDPE). In one embodiment, the third layer/central layer is produced by reusing scrap trimmed from the multi-layered container during a blow molding process.
In one embodiment, a method of manufacturing of complete bottle comprising cap with metal dauber and plastic multilayer container is described. The method may comprise a first step of Shaping the ends and the structure of metal dauber applicator wire. The method may comprise a second step of Molding of holding means over metal dauber applicator wire. The method may comprise a third step of fitting of a cotton blob to metal wire. The method may comprise a fourth step of assembling of holding means in a cavity of a cap. The method may comprise a fifth step of fitting of cap assembled with metal applicator dauber over the multi-layered container. The method thereby may comprise a sixth step of manufacturing of complete bottle with cap, metal dauber and plastic multilayer container.
The detailed description is described with reference to the accompanying figures. In the figures, the left-most digit(s) of a reference number identifies the figure in which the reference number first appears. The same numbers are used throughout the drawings to refer like features and components.
Reference throughout the specification to “various embodiments,” “some embodiments,” “one embodiment,” or “an embodiment” means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment. Thus, appearances of the phrases “in various embodiments,” “in some embodiments,” “in one embodiment,” or “in an embodiment” in places throughout the specification are not necessarily all referring to the same embodiment. Furthermore, the particular features, structures or characteristics may be combined in any suitable manner in one or more embodiments.
Referring now to
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In an embodiment, as illustrated in
In an embodiment, the second end 304 of the metal dauber applicator wire 104 may be molded to the holding means 103 by over-molding, or plastic-to-metal molding process.
In one embodiment, refer to
In one embodiment, the plastic material of the cap 101, cavity 102 and holding means 103 may be molded from a thermoplastic polymeric material, High density polyethylene (HDPE), low density polyethylene (LDPE), Polyethylene, polypropylene, polyvinyl chloride, polystyrene, polybenzimidazole, acrylic, nylon and Teflon, ethylene vinyl alcohol (EVOH). Further, the holding means 103 may be of a cylindrical shape, which may be fastened/press-fitted into the cavity 102 in the cap 101.
Referring to
In one embodiment, the plastic multilayer container 601 may by of solvent storage capacity and size of 1 ml to 1200 ml and more particularly, stock kipping units of 50 ml, 100 ml, 250 ml, 500 ml and 1 litre containers.
Referring now to
In one embodiment the thickness of the first inner layer 701 may range within 40-50 micron. In one embodiment the thickness of the second 702 and fourth 704 tie layer may range within 20-30 micron. The thickness of the third central layer 703 comprising mixture of thermoplastic high-density polyethylene (HDPE), chemical resistant thermoplastic polymeric material and thermoplastic adhesive resin tie layer may range within 350-500 micron. The thickness of fifth layer 705 (outer layer of the container) may range within 400-600 microns. The thickness of the layers of the container may further vary depending upon the size of the stock kipping units (size of bottles/closures/container) as per sizes of containers such as 50 ml, 100 ml, 250 ml, 500 ml and 1000 ml.
In one embodiment, the inner layer of solvent resistant, chemical resistant thermoplastic polymeric material may include but not limited to high density polyethylene (HDPE), low density polyethylene (LDPE), Polyethylene, polypropylene, polyvinyl chloride, polystyrene, polybenzimidazole, acrylic, nylon and Teflon, ethylene vinyl alcohol (EVOH), Cellulose, and Chlorinated polyvinyl chloride.
In one embodiment the second 702 and the fourth 704 tie layer may comprise an intermediate adhesive resin material. The tie layer polymeric material may include but not limited to Adhesive Resins, Ethylene-vinyl acetate (EVA), Ethylene-methyl acrylate (EMA), Ethylene-acrylic acid (EAA), and Ethylene-grafted-maleic anhydride (AMP), Modified Polyolefins and the like.
Referring to
In one embodiment, the five-layer container 601 and other plastic materials described in the present disclosure may be manufactured by molding, roll-to roll molding, injection molding, extrusion molding, roll and blow molding, stretch blow molding and coextrusion processes.
In one exemplary embodiment, the solvent cement inside the multilayer container 601 may comprise a wide range of gluing materials, adhesives materials, binders, cosmetics, primers, solvents, heavy body solvent cement, sealants, sealing agents, cement paste, grease, and liquids.
In one embodiment, shaping the second end 304 of the metal dauber applicator wire 104 into a pattern and molding the holding means 103 over the second end 304 may provide a strong fixation of the metal dauber applicator wire 104, and may permit the slipping out of the metal dauber applicator wire 104 from the holding means 103.
The foregoing description shall be interpreted as illustrative and not in any limiting sense. A person of ordinary skill in the art would understand that certain modifications could come within the scope of this disclosure. The embodiments, examples and alternatives of the preceding paragraphs or the description and drawings, including any of their various aspects or respective individual features, may be taken independently or in any combination. Features described in connection with one embodiment are applicable to all embodiments, unless such features are incompatible.
Number | Date | Country | Kind |
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201821036772 | Sep 2018 | IN | national |