Cardable fiber blend and a moldable fiber batt and the...

Acoustics – Diaphragm – Critically defined material or coating

Reexamination Certificate

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Reexamination Certificate

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06585076

ABSTRACT:

BACKGROUND OF INVENTION
Methods for forming fiber batts require the use crimped fibers because uncrimped fibers are very difficult if not impossible to process through textile equipment. In some applications such as speaker cones, high modulus fibers are used in making the cone because these fibers stiffen and improve sound reproduction. Before the present invention, it was necessary to crimp these high modulus fibers before they could be processed to form batts or felts. In the crimping process these stiff fibers are broken and damaged. Fiber is also lost or wasted contributing to an increased in cost for such crimped fibers. Even if no fiber were lost or damaged in crimping, the need for this step, alone, adds both processing time and costs in the production of batts and the products made from these batts.
Speaker cones are generally made from a paper or from a felt. Papers are non-woven webs produced by a wet lay process on paper machines, while non-woven felts are produced from fiber batts that are needled together.
U.S. Pat. No. 4,112,168 teaches a speaker cone produced by impregnating a fiber web with a resin solution, evaporating the solvent to produce a non-woven fabric and then simultaneously laminating to this fabric a gas tight film while molding the fabric into the speaker cone.
In another patent, U.S. Pat. No. 4,359,132, a speaker cone is produced by forming a needled felt from ptextile fibers and polypropylene textile fibers. Textile fibers are crimped fibers that allow easy processing through textile equipment.
British Patent 2 037 122 B teaches a speaker cone made of a paper formed on a paper machine from stiff fibers such as p-aramid or carbon fibers.
SUMMARY OF INVENTION
An object of the present invention is to provide a easily moldable batt using uncrimped high modulus polymer fibers. Such a bat may be molded into high quality speaker cones.
Another object in the present invention is to provide a cardable fiber blend from which the moldable batt may be formed.
Another object of the present invention is to provide a process for producing a fiber batt that does not require crimped high modulus fiber.
Another object of the present invention is to provide a high quality speaker cone and a process for making this speaker cone.
DETAILED DESCRIPTION
The present invention provides an intimate, cardable fiber blend that may be formed into a batt. This fiber batt is particularly useful in making speaker cones.
As used herein, the term high modulus polymer fiber means a fiber that has a modulus of 550 g/denier or more. High modulus polymer fibers that are particular useful in the present invention include p-aramid and aromatic polyester fibers. Such fibers having a modulus of 750 g/denier or more are particularly preferred. In processing the uncrimped high modulus fibers, the rate of carding may be increased by mixing into the uncrimped high modulus fiber an amount of crimped high modulus fiber.
When speaker cones are the desired product, it is recommended that the amount of crimped high modulus fiber present in a mixture with uncrimped high modulus fiber be less than 50% of the total weight of the mixture of crimped and uncrimped high modulus fiber.
It is believed that the use of uncrimped high modulus fiber is of particular advantage for speaker cones. The presence of uncrimped high modulus fiber produces a cone that, at least when rated subjectively, produces an improved sound reproduction, particularly of the human voice. Thus it is most desirable to use all uncrimped high modulus fiber. The mixing of crimped and uncrimped high modulus fiber as described above allows one to balance sound reproduction quality and rate of carding while realizing benefits from the use of uncrimped high modulus fiber in the cone.
The cardable fiber blend and the fiber batt of the present invention may be used for other purposes than making a speaker cone or other molded product. The batt itself may be used in insulation or for padding.
Since the batt of the present invention contains thermoplastic polymer fiber, the batt may be designed through polymer fiber selection to be easily moldable over a range of temperatures, or to be stable over a range of temperatures. For a moldable fiber batt, polyolefin, polyester and polyphenylene sulfide fibers are useful. Polypropylene fibers are most desirable for use in making speaker cones.
The present invention provides a process for making a fiber batt using a blend of crimped and uncrimped fibers. Synthetic polymer fibers are crimped so that they process as natural fibers and can be processed to form batts, webs and fabrics using textile equipment. There is the advantage of eliminating a process step, if uncrimped synthetic polymer fibers could be directly formed into a web or batt.
The inventor in the present invention has found that by combining thermoplastic crimped polymer fibers and uncrimped high modulus polymer fibers, a combination of fibers is formed that can be processed by textile equipment to form a batt or web. Even when a high concentration of the uncrimped fiber is present, the fiber blend of the present invention can be processed using, for example, a Rando Webber or other equipment for forming a web or batt.
In the present process the thermoplastic polymer fibers and the high modulus fibers are opened. Each fiber type may be opened separately and then combined to feed the webber or card, or the two types of fibers can be first blended together, then opened and the opened blend is then fed to the webber or card.
Card rates can be increased by using a mixture of uncrimped and crimped high modulus fibers along with the thermoplastic polymer fibers. Generally for blends of the present invention, it is recommended that the amount of crimped high modulus fiber be present in an amount of not more than 50% of the total weight of the mixture of crimped and uncrimped high modulus fiber.
The weight range preferred for batts for the present invention is from 0.5 to about 7 oz./yd
2
. Batts may be made at a desired weight by forming that weight directly at the card or webber, or they may be made by laminating lighter weight batts together to give the desired weight. This latter method is useful in molding speaker cones since single thickness batts tend to wrinkle in the molding process. Also in producing batts for molding, it is preferred that the batt be of low density. To achieve a low density batt, it is preferred to produce the batt using blower air-ducted or vacuum air duct process equipment, for example, a Rando Webber.
In selecting fibers for the present process, it is preferred that that the high modulus fibers are selected from the group consisting of p-aramid, aromatic polyester, poly phenylene sulfide and aromatic polyimide fibers and that the crimped thermoplastic fibers are polyolefin or polyester fibers or a mixture of these fibers. It is particularly desirable that the high modulus polymer fibers are all uncrimped p-aramid fibers and the thermoplastic polymer fibers are polypropylene.
The batt of the present invention may be molded into desired shapes if after step (c), the batt is molded in a high temperature, high pressure mold.
If one desires to mold speaker cones from the batts of the present invention, high quality speaker cones may be made using the following improved process: (a) blending together high modulus polymer fibers having a modulus of 550 g/denier or more with fibers of a thermoplastic polymer wherein the high modulus polymer fibers are all uncrimped fibers,(b) passing the blend through a device to open the fibers, (c) forming the fibers into a batt,(d) heating a mold to about 200° F. and placing the batt in the mold to form a speaker cone,(e) applying a pressure of from 5 to 20 tons to the mold and heating the mold to about 380° F., (f) allowing the mold to cool to about 200 ° F. before opening the mold to remove the speaker cone.
In this improved process it is desirable that the high modulus polymer fibers are selected from the group consisting of p-aramid, aromatic polyester, poly phenylene sulfide and aro

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