IP Library Granted Patent US 8,397,479
Granted Patent B2
US 8,397,479 · App. 13/121,112 · Granted Mar 19, 2013

Cable carrier device and method for producing an element of a cable carrier device

Inventors: Thomas Wendig (Katzwinkel/Elkhausen, DE); Dirk Schöler (Wilnsdorf, DE); Andreas Böhm (Siegen, DE)
Assignee: Tsubaki Kabelschlepp GmbH
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,397,479
App. No.
13/121,112
Granted
Mar 19, 2013
Kind
B2
Abstract

An element is provided for a cable carrier device which is constructed and arranged to carry cabling components such as cables, lines, hoses and the like between a first connection point and a second connection point. The element is formed from a material including at least one plastic and a filler. The filler includes three-dimensional geometrical carbon-based structures having nanometer-scale dimensions. In some arrangements, the carbon-based structures are carbon nanotubes formed of carbon atoms. Accordingly, the element is capable of dissipating electrostatic charges of the cable carrier device. Thus, the corresponding cable carrier device is suitable for working environments that are to be protected from electrostatic effects.

Claims (17)

1. An element of a cable carrier device for carrying cabling components between a first and a second connection point, the element being formed from a material comprising at least one plastic and a filler, wherein the filler comprises three-dimensional geometrical carbon-based structures with dimensions on a nanometer scale.

2. The element as claimed in claim 1 wherein the three-dimensional geometrical carbon-based structures with dimensions on the nanometer scale include carbon nanotubes, each carbon nanotube being a three-dimensional tube-shaped formation of carbon atoms.

3. The element as claimed in claim 2 , in which the filler further comprises carbon fibers.

4. The element as claimed in claim 2 , in which the proportion of filler is at least 10% by weight.

5. The element as claimed in claim 2 , in which the material meets at least one of the following conditions:

a) a tensile strength of more than 150 MPa (megapascals)

b) a tensile modulus of more than 9000 MPa;

c) a flexural strength of more than 175 MPa; and

d) a modulus of elasticity of more than 9000 MPa.

6. The element as claimed in claim 2 , in which the filler is of a homogeneously distributed form.

7. The element as claimed in claim 2 , in which the filler content is spatially inhomogeneous.

8. A cable carrier device for carrying cabling components between a first and a second connection point, comprising at least one element, each element being formed from a material comprising at least one plastic and a filler,

wherein the filler comprises three-dimensional nanometer-sized carbon-based structures.

9. The element as claimed in claim 8 wherein the three-dimensional nanometer-sized carbon-based structures include carbon nanotubes, each carbon nanotube being a three-dimensional tube-shaped formation of carbon atoms.

10. The cable carrier device as claimed in claim 9 , in which the cable carrier device establishes an electrically conducting connection between the connection points.

11. The cable carrier device as claimed in claim 9 , in which at least one connection point is grounded.

12. The cable carrier device as claimed in claim 9 , in which an electrical resistance of the cable carrier device is less than 1·10 8 ohms.

Assignments (2)
CHANGE OF NAME Recorded Apr 26, 2012
From: KABELSCHLEPP GMBH
To: TSUBAKI KABELSCHLEPP GMBH
Reel/Frame 028115/0574 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2011
From: WENDIG, THOMAS; SCHOLER, DIRK; BOHM, ANDREAS
To: KABELSCHLEPP GMBH
Reel/Frame 026867/0041 →
Priority Claims (1)
DE 10 2008 049 246 · Sep 26, 2008 · national
Continuity (1)
Related Publication 20110302900A1 · Dec 15, 2011