Stampable sheet

US10066084B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10066084-B2
Application numberUS-201414763188-A
CountryUS
Kind codeB2
Filing dateFeb 19, 2014
Priority dateFeb 21, 2013
Publication dateSep 4, 2018
Grant dateSep 4, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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Abstract

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A stampable sheet includes a resin and carbon fiber sheet including fiber bundles of discontinuous carbon fibers, wherein the carbon fiber sheet includes fiber bundles having a bundle width of 50 μm or greater and opened fibers ranging from fiber bundles having a bundle width less than 50 μm to fibers obtained by opening to the single-fiber level. When the direction along which the opened fibers have been oriented most is a 0° direction and the range of from the 0° to 90° direction is divided into angular zones, the distribution curve showing the proportion of the number of fiber bundles in each angular zone to that in all angular zones and the distribution curve showing the proportion of the number of opened fibers in each angular zone to that in all angular zones are reverse to each other in terms of gradient of the 0° to 90° direction.

First claim

Opening claim text (preview).

The invention claimed is: 1. A stampable sheet comprising a resin and a carbon fiber sheet constituted of fiber bundles of discontinuous carbon fibers, wherein said carbon fiber sheet comprises fiber bundles (A) having a bundle width of 50 μm or greater and opened fibers (B) ranging from fiber bundles having a bundle width less than 50 μm to fibers obtained by opening to a single-fiber level, and is a carbon fiber sheet in which, when a direction along which said opened fibers (B) have been oriented most is taken as a 0° direction and a range of from said 0° direction to a 90° direction is divided into a predetermined plurality of angular zones (a total number N of said angular zones: N≥3), a distribution curve showing a proportion of a number of said fiber bundles (A) in each angular zone to a number of all fiber bundles (A) in all angular zones and a distribution curve showing a proportion of a number of said opened fibers (B) in each angular zone to a number of all opened fibers (B) in all angular zones are reverse to each other in terms of gradient viewed as a whole in a range of from said 0° direction to said 90° direction, wherein a principal orientation angle of said fiber bundles (A) at which a distribution showing said proportion of the number of said fiber bundles (A) in each angular zone to the number of all fiber bundles (A) in all angular zones exhibits a highest value is in a range of a 60° direction to said 90° direction relative to said 0° direction along which said opened fibers (B) have been oriented most. 2. The stampable sheet according to claim 1 , wherein said total number N of said angular zones is 6 to 12. 3. The stampable sheet according to claim 2 , wherein said total number N of said angular zones is 9. 4. The stampable sheet according to claim 1 , wherein said carbon fiber sheet is prepared by a carding method. 5. The stampable sheet according to claim 1 , wherein said discontinuous carbon fibers comprise carbon fibers having a fiber length of 2 mm or more and less than 20 mm. 6. A stampable sheet comprising a resin and a carbon fiber sheet constituted of fiber bundles of discontinuous carbon fibers, wherein said carbon fiber sheet comprises fiber bundles (A) having a bundle width of 50 μm or greater and opened fibers (B) ranging from fiber bundles having a bundle width less than 50 μm to fibers obtained by opening to a single-fiber level, and is a carbon fiber sheet in which, when a direction along which said opened fibers (B) have been oriented most is taken as a 0° direction and a range of from said 0° direction to a 90° direction is divided into a predetermined plurality of angular zones (a total number N of said angular zones: N≥3), a distribution curve showing a proportion of a number of said fiber bundles (A) in each angular zone to a number of all fiber bundles (A) in all angular zones and a distribution curve showing a proportion of a number of said opened fibers (B) in each angular zone to a number of all opened fibers (B) in all angular zones are reverse to each other in terms of gradient viewed as a whole in a range of from said 0° direction to said 90° direction, wherein a proportion of the number of said fiber bundles (A) in an angular zone including said 0° direction to the number of all fiber bundles (A) in all angular zones is 0 to 1.0×90/N %, and a proportion of the number of said opened fibers (B) in the angular zone including said 0° direction to the number of all opened fibers (B) in all angular zones is 1.0×90/N to 3.0×90/N %. 7. A stampable sheet comprising a resin and a carbon fiber sheet constituted of fiber bundles of discontinuous carbon fibers, wherein said carbon fiber sheet comprises fiber bundles (A) having a bundle width of 50 μm or greater and opened fibers (B) ranging from fiber bundles having a bundle width less than 50 μm to fibers obtained by opening to a single-fiber level, and is a carbon fiber sheet in which, when a direction along which said opened fibers (B) have been oriented most is taken as a 0° direction and a range of from said 0° direction to a 90° direction is divided into a predetermined plurality of angular zones (a total number N of said angular zones: N≥3), a distribution curve showing a proportion of a number of said fiber bundles (A) in each angular zone to a number of all fiber bundles (A) in all angular zones and a distribution curve showing a proportion of a number of said opened fibers (B) in each angular zone to a number of all opened fibers (B) in all angular zones are reverse to each other in terms of gradient viewed as a whole in a range of from said 0° direction to said 90° direction, wherein a proportion of the number of said fiber bundles (A) in an angular zone including said 90° direction to the number of all fiber bundles (A) in all angular zones is 1.0×90/N to 3.0×90/N %, and a proportion of the number of said opened fibers (B) in the angular zone including said 90° direction to the number of all opened fibers (B) in all angular zones is 0 to 1.0×90/N %. 8. A stampable sheet comprising a resin and a carbon fiber sheet constituted of fiber bundles of discontinuous carbon fibers, wherein said carbon fiber sheet comprises fiber bundles (A) having a bundle width of 50 μm or greater and opened fibers (B) ranging from fiber bundles having a bundle width less than 50 μm to fibers obtained by opening to a single-fiber level, and is a carbon fiber sheet in which, when a direction along which said opened fibers (B) have been oriented most is taken as a 0° direction and a range of from said 0° direction to a 90° direction is divided into a predetermined plurality of angular zones (a total number N of said angular zones: N≥3), a distribution curve showing a proportion of a number of said fiber bundles (A) in each angular zone to a number of all fiber bundles (A) in all angular zones and a distribution curve showing a proportion of a number of said opened fibers (B) in each angular zone to a number of all opened fibers (B) in all angular zones are reverse to each other in terms of gradient viewed as a whole in a range of from said 0° direction to said 90° direction, wherein, when tensile elastic moduli are measured in respective angular directions, with regard to average value of tensile elastic moduli, ‘an average value of tensile elastic moduli in an angular direction in which the average value exhibits a maximum value/an average value of tensile elastic moduli in an angular direction in which the average value exhibits a minimum value’ is 1.2 to 1.0. 9. A stampable sheet comprising a resin and a carbon fiber sheet constituted of fiber bundles of discontinuous carbon fibers, wherein said carbon fiber sheet comprises fiber bundles (A) having a bundle width of 50 μm or greater and opened fibers (B) ranging from fiber bundles having a bundle width less than 50 μm to fibers obtained by opening to a single-fiber level, and is a carbon fiber sheet in which, when a direction along which said opened fibers (B) have been oriented most is taken as a 0° direction and a range of from said 0° direction to a 90° direction is divided into a predetermined plurality of angular zones (a total number N of said angular zones: N≥3), a distribution curve showing a proportion of a number of said fiber bundles (A) in each angular zone to a number of all fiber bundles (A) in all angular zones and a distribution curve showing a proportion of a number of said opened fibers (B) in each angular zone to a number of all opened fibers (B) in all angular zones are reverse to each other in terms of gradient viewed as a whole in a range of from said 0° direction to said 90° direction, wherein, when tensile strengths are measured in respective angular directions, with regard to average value of tensile strengths, ‘an average

Assignees

Inventors

Classifications

  • Characterised by the use of polyamides obtained by reactions forming a carboxylic amide link in the main chain; Derivatives of such polymers · CPC title

  • C08K7/06Primary

    Elements · CPC title

  • the fibres being orientated, e.g. in parallel {(anisotropic fleeces)} · CPC title

  • the bonding agent being applied in dry state, e.g. thermo-activatable agents in solid or molten state, and heat being applied subsequently · CPC title

  • Carbon fibres · CPC title

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What does patent US10066084B2 cover?
A stampable sheet includes a resin and carbon fiber sheet including fiber bundles of discontinuous carbon fibers, wherein the carbon fiber sheet includes fiber bundles having a bundle width of 50 μm or greater and opened fibers ranging from fiber bundles having a bundle width less than 50 μm to fibers obtained by opening to the single-fiber level. When the direction along which the opened fiber…
Who is the assignee on this patent?
Toray Industries
What technology area does this patent fall under?
Primary CPC classification C08K7/06. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Sep 04 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).