1. Technical Field
The present invention relates to a braiding apparatus for forming a braiding layer around a mandrel using a braiding unit, and more particularly, to a braiding unit moving type braiding apparatus capable of obtaining extremely efficient braiding composition according to form (shape, size and the like) of the mandrel.
2. Related Background Art
As is well known, a conventional braiding apparatus is of a mandrel movable type as shown in Japanese Patent Application Laid-open No. H8-276502 (Abstract, FIGS. 1 and 4) in which a braiding unit is fixed, the mandrel is moved with respect to the fixed braiding unit, and a braiding layer is formed around the mandrel.
The mandrel movable type braiding apparatus is applied to a mandrel which is straight and has a certain length, and the physical characteristics such as shape and size of the mandrel to which the braiding apparatus can be applied are limited.
When a mandrel having a long length L (e.g., several meters) and a curved portion as shown in
The present invention specifically provides a braiding unit moving type braiding apparatus which can extremely efficiently be used when a long mandrel having a curved portion is to be braided.
To achieve the above object, the present invention provides a braiding unit moving type braiding apparatus in which a braiding layer is formed around a mandrel using the braiding unit, including braiding unit moving means which moves the braiding unit along an axis of the mandrel.
According the invention, in the braiding unit moving type braiding apparatus, the braiding unit moving means includes a drive source which is directly or indirectly provided in the braiding unit, first guide means and/or second guide means which is aligned with an axis of the mandrel as viewed from above and/or an axis of the mandrel as viewed from side.
According to the invention, in the braiding unit moving type braiding apparatus, a rotation center of the braiding unit when it is rotated and moved is located substantially on an extension of a composition point.
According the invention, in the braiding unit moving type braiding apparatus, the braiding apparatus further includes braiding unit moving means which moves the braiding unit in a vertical direction, wherein the braiding unit forms the braiding layer in a state where the braiding unit moves along an axis of the mandrel as viewed from above and the braiding unit moves vertically.
According to the invention, in the braiding unit moving type braiding apparatus, the braiding unit includes a plurality of braiding units.
According to the invention, in the braiding unit moving type braiding apparatus, the plurality of braiding units can move to an operating position and a standby position in accordance with necessity of production.
According to the invention, in the braiding unit moving type braiding apparatus, the plurality of braiding units have different total number of braiding yarn, and/or bobbin carriers of different fibers.
The braiding unit moving type braiding apparatus of the present invention includes the braiding unit moving means which moves the braiding unit along the mandrel. Conventionally, a long mandrel having a curved portion could not be braided, but according to the present invention, such a mandrel can extremely efficiently be braided. In this aspect, the present invention is extremely effective.
In the braiding unit moving type braiding apparatus of the present invention, the braiding unit moving means includes the drive source which is directly or indirectly provided in the braiding unit, first guide means and/or second guide means which align with an axis of the mandrel as viewed from above and/or an axis of the mandrel as viewed from side. Accordingly, the braiding unit moving type braiding apparatus can extremely effectively be applied to a mandrel which is deformed two-dimensionally or three-dimensionally.
An example of one basic structure of a conventional mandrel moving type braiding apparatus will be described based on
The braider body Bb in the braider BR includes a curved upper plate U having a radius of curvature R. The upper plate U is disposed in a substantially cylindrical machine base Fb. An axis of the machine base Fb extends horizontally, and the machine base Fb is provided at its one side with an opening e. The braider body Bb also includes a bobbin carrier C which runs along a track groove formed in the upper plate U in its circumferential direction. The braider body Bb also includes a drive apparatus D which makes the bobbin carrier C run along the track, and a braid guide apparatus G.
Braid yarn Y, which are pulled out from a bobbin disposed on the bobbin carrier C in an axial direction of the bobbin, are concentrated on the almost center of the upper plate U, and a position of a mandrel m mounted on the mandrel apparatus Bm is set such that a braiding up point P of weave formed on the mandrel m is located at the center of the upper plate U.
The bobbin carrier C is made to run along the track by the drive apparatus D, and the position of the mandrel m is controlled by the mandrel apparatus Bm. As a result, many braid yarns Y cross. If necessary, intermediate yarn y from a bobbin H fixedly disposed substantially horizontally on the frame Fb′ of the machine base Fb intersects with the braid yarn Y which is wound back from the bobbin carrier C which runs along the track, and braiding is carried out and a layer is braided on mandrels m of various shapes. According to the present invention, a plurality of braided layers are formed as a product.
Next, a braiding unit moving type braiding apparatus 1 of the present invention will be described in detail based on a specific embodiment shown in the drawings.
The braiding unit moving type braiding apparatus 1 of the present invention includes a braiding unit 2 which can move along an axis of a mandrel 3, mandrel support means 4 which supports the mandrel 3, and braiding unit moving means 5 which moves the movable braiding unit 2 along the axis of the mandrel 3.
The braiding unit moving means 5 moves the braiding unit 2 along the axis of the mandrel 3. The braiding unit moving means 5 includes a drive source 6 such as a motor, which is provided in the movable braiding unit 2 directly or indirectly. If the drive source 6 is directly disposed in the movable braiding unit 2, the movable braiding unit 2 can be a self-running apparatus. If the drive source 6 is indirectly provided in the movable braiding unit 2, the movable braiding unit 2 can be a drawn apparatus.
A specific embodiment of the braiding unit moving means 5 will be described based on
The braiding unit moving means 5 is provided along the guide rail 12. The braiding unit 2 is moved by a fixing chain 15 having both ends 15a and 15b fixed to fixing shaft members 16 and 17, and a drive sprocket 18 which is driven by the drive source 6 provided on the braiding unit 2. In the embodiment shown in the drawings, a pair of guide rollers 10 sandwich the guide rail 12, and the guide rollers 10 and 10 are disposed at front and rear two locations of a composition point position P of the braiding unit 2.
In another embodiment, the braiding unit moving means 5 includes two guide rollers 10 and 10 disposed at a predetermined distance from each other on one side of the guide rail 12 as shown in
As shown in
In the braiding unit moving type braiding apparatus 1 of the present invention, the braiding unit moving means 5 includes second guide means 8 (
The braiding unit moving means 5 of the braiding unit moving type braiding apparatus 1 of the invention includes the first guide means 7 including the guide rail 12 corresponding to the axis Ax1 of the mandrel as viewed from above, and the second guide means 8 corresponding to the axis Ax2 of the mandrel 3 as viewed from the side. The braiding unit 2 is moved in the X and Y axis directions along the axis Ax1 of the mandrel 3, the braiding unit 2 is moved in the Z axis direction along the axis Ax2 of the mandrel 3 as viewed from the side, and the braiding unit 2 can be moved three dimensionally.
Detailed structure of the movable braiding unit 2 is basically the same as that of the braider BR (see
In this invention, as schematically shown in
In the present invention, as shown in
In this invention, the mandrel 3 is fixed. Therefore, even if a number of the braiding units 2 are increased, if the braid converging ring 14 is used as shown in
When braiding units 2 are exchanged as shown in
In the braiding unit moving type braiding apparatus 1 of the invention, as compared with the conventional fixed multi-braiding units (see FIGS. 1 and 4 of Japanese Patent Application Laid-open No. H8-276502), the production efficiency can be enhanced. That is, in the conventional fixed multi-braiding units, a pulling out speed of the mandrel is constant, a braiding speed of each braiding unit varies, a braiding angle and the like are controlled, speeds of the respective braiding units are associated with each other and thus, the production speed is determined by the pulling out speed of the mandrel. In this regard, in the braiding unit moving type braiding apparatus of the present invention, since the braiding speed and the moving speeds of the respective braiding units independently vary, each braiding unit can be set independently and thus, the production speed can be enhanced as compared with the conventional apparatus.
In the above-described conventional fixed multi-braiding units, the mandrel moves by a distance corresponding to the machine base length. Therefore, when this mandrel is to be pulled out, a braid connected to the mandrel having the machine base length is generated, and this braid becomes waste. According to the braiding unit moving type braiding apparatus of the present invention, since a braid can be cut between each braiding unit and the mandrel, no waste is generated. In this case, the braid is cut using the braid converging ring as shown in
Number | Date | Country | Kind |
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2006-036934 | Feb 2006 | JP | national |
Number | Name | Date | Kind |
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2675733 | Hemm et al. | Apr 1954 | A |
4519290 | Inman et al. | May 1985 | A |
5203249 | Adams et al. | Apr 1993 | A |
5588290 | Cobb | Dec 1996 | A |
Number | Date | Country |
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722542 | Jan 1955 | GB |
08-276502 | Oct 1996 | JP |
Number | Date | Country | |
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20070186760 A1 | Aug 2007 | US |