This application claims priority of Chinese Patent Application No. 201020114140.9 filed on Jan. 29, 2010.
1. Field of the Invention
The invention relates to a Venetian blind, more particularly to an apparatus for making a composite blind slat of a Venetian blind.
2. Description of the Related Art
Early blind slats are made from thin metal plates, such as by forming thin aluminum or ion plates into curved plates of arcuate cross-section, followed by coating the surfaces of the curved plates. Such metallic blind slats are expansive, heavy, and inconvenient and have poor thermal insulation properties. In order to address the drawbacks of the metallic blind slats, the metallic blind slats have been replaced by plastic slats, such as PVC slats which are lighter and easier to operate. However, because PVC can not be recycled and decomposed biologically, it is an increasing trend to prohibit PVC products in most countries in the world. Many attempts have been made to seek environment conserving substitutes for PVC blind slats. For example, the applicant of the present invention proposed a method of making blind slats using recycled fly ash as a major material. However, the fly ash blind slats are not widely accepted as they are heavy and inconvenient to handle. Therefore, there is a need of blind slats that are environmentally friendly and that can be handled conveniently.
Therefore, a main object of the present invention is to provide an apparatus for making a composite blind slat from an environmentally friendly pulp fiber web.
According to the present invention, an apparatus for making blind slats comprises: a feeding unit adapted to feed a pulp fiber web; an impregnation tank disposed downstream of the feeding unit and containing an impregnating liquid for impregnating the pulp fiber web; a conveying roller assembly disposed within the impregnation tank for immersing and conveying the pulp fiber web within the impregnation tank; and a thermal forming unit disposed downstream of the impregnation tank for thermal forming the pulp fiber web that has been impregnated. The thermal forming unit has at least one forming channel with an arcuate cross section adapted to shape the pulp fiber web.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments with reference to the accompanying drawings, of which:
Referring to
The composite blind slat 1 includes a pulp fiber web 10, and a polyacrylate resin 11 impregnating the pulp fiber web 10.
Referring to
The feeding unit 2 has a reel 21 mounted on a frame (not shown), and a continuous pulp fiber web 10 is wound around the reel 21. The pulp fiber web 10 may be made from any pulp commonly used in making paper, such as ground wood pulp, chemical pulp, semi-chemical pulp, or a waste paper pulp recycled from waste paper. Preferably, the pulp fiber web 10 is made from the waste paper pulp so that waste paper can be recycled. The thickness of the pulp fiber web 10 is preferably 0.5-5 mm.
The conveying roller assembly 5 is disposed in the impregnation tank 3 downstream of the feeding unit 2. The impregnation tank 3 contains an impregnating liquid 100 for impregnating the pulp fiber web 10. The impregnation tank 3 has a mount 51 that is disposed on top of the impregnation tank 3 and that has two downwardly extending hanging arms 511, 512, and a roller frame 52 having two ends hung on the hanging arms 511, 512 of the mount 51 and extending into the impregnating liquid 100.
The conveying roller assembly 5 has a draw roll 53 connected to the hanging arm 511 and the roller frame 52, a pair of squeeze rolls 54 connected to the hanging arm 512 and the roller frame 52, and three guide rolls 55 attached to the roller frame 52. The draw roll 53 is proximate to an upstream side of the impregnation tank 3, and the squeeze rolls 54 are proximate to a downstream side of the impregnation tank 3.
The pulp fiber web 10 from the feeding unit is passed through the heating unit 4, and the conveying roller assembly 5 directs the pulp fiber web 10 into the impregnation tank 3 where the pulp fiber web 10 is immersed in the impregnating liquid 100.
The impregnating liquid 100 includes an aqueous dispersion that includes styrene octylacrylate copolymer and water in a predetermined ratio. The aqueous dispersion of the impregnating liquid 100 has high permeating properties so that, when the pulp fiber web 10 is immersed in the impregnating liquid 100, the aqueous dispersion can readily penetrate the pores of the pulp fiber web 10. In an example, the impregnating liquid 100 is prepared by mixing water with styrene octylacrylate copolymer which is a commercial product, DM-346, manufactured by Nan Pao Resins Chemical Co., Ltd. The specification of DM-346 is shown in Table 1.
The styrene-octylacrylate copolymer has the following properties: (1) The copolymer has a low average molecular weight and strong penetrating ability, and can penetrate uniformly into the pulp fiber web 10 so that no shell-like surface resin phenomenon occurs; (2) The copolymer has excellent adhesion to the pulp fiber web 10 and thus can provide the impregnated pulp fiber web 10 with high stiffness sufficient to prevent the blind slats formed from the impregnated pulp fiber web from slacking; (3) The copolymer permits the impregnated pulp fiber web 10 to be dyed or colored readily and uniformly without incurring uneven dying problem; (4) The copolymer is cheap and the properties thereof is comparable with those of melamine resin; and (5) The copolymer does not contain formalin and thus is of low toxicity and safe.
The ratio of styrene-octylacrylate copolymer to water in the impregnation liquid 100 can be adjusted according to a desired level of impregnation, and may ranges from 0.5/1 to 5/1. If it is necessary to increase further the penetrating ability of the impregnation liquid 100, a predetermined amount of isopropanol may be added to the mixture of styrene octylacrylate copolymer and water.
After the pulp fiber web 10 is immersed until it is saturated with the impregnating liquid 100, the impregnated pulp fiber web 10 is passed between the squeeze rolls 54 where excessive liquid is removed from the impregnated pulp fiber web 10. While impregnation is carried out by immersion in this embodiment, it is possible to use other impregnation methods, such as by spraying or applying the impregnating liquid 100 to the pulp fiber web 10 repeatedly until the pulp fiber web 10 is saturated with the impregnating liquid 100.
The thermal forming unit 6 is disposed downstream of the impregnation tank 33 and is used to form the pulp fiber web 10 that has been impregnated in the impregnation tank 33. The thermal forming section 6 includes a pre-forming device 61, a main forming device 62, and a post-forming device 63. Referring to
Referring once again to
In the thermal forming unit 6, the impregnated pulp fiber web 10 exiting from the squeeze rolls 54 is heated and formed by the pre-forming device 61, the main forming device 62 and the post-forming device 63. Since the impregnated pulp fiber web 10 is passed through the arcuate forming channels 613, 623 and 635, it is formed into a continuous blank web 101 having an arcuated cross section. In an embodiment, the temperature used in the thermal forming unit 6 is in the range of 130-150° C., and the duration time is about 5-8 min. The continuous blank web 101 has a predetermined structural strength and stiffness and therefore is not easily deformed.
The cutting section 7 is disposed downstream of the thermal forming unit 6, and includes a set of advancing rollers 71, and a cutter 72. The continuous blank web 101 is fed to the cutter 72 by the advancing rollers 71 and is cut at predetermined intervals to form a plurality of the blind slats 1.
The composite blind slat 1 made according to the present invention is environmentally friendly, resistant to moisture and has a light weight property. In order to increase the function of the composite blind slat 1, one or more functional materials may be added to the impregnating liquid 100 in the impregnation tank, or added to the pulp fiber web 10 during the preparation of the pulp fiber web 10. The functional materials may include an ultraviolet radiation-resisting agent, a flame-retarding agent, etc. When the ultraviolet radiation-resisting agent is added, the durability of the composite blind slat 1 can be increased. The flame-retarding agent can reduce flammability of the composite blind slat 1.
While the present invention has been described in connection with what is considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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2010 2 0114140 U | Jan 2010 | CN | national |
Number | Name | Date | Kind |
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20060110490 | Nien | May 2006 | A1 |
20110186244 | Huang | Aug 2011 | A1 |
Number | Date | Country | |
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20110186255 A1 | Aug 2011 | US |