Radially shrinkable textile hose
20200101691 · 2020-04-02
Inventors
Cpc classification
B32B7/09
PERFORMING OPERATIONS; TRANSPORTING
B32B2597/00
PERFORMING OPERATIONS; TRANSPORTING
B29C63/0017
PERFORMING OPERATIONS; TRANSPORTING
B32B5/245
PERFORMING OPERATIONS; TRANSPORTING
B29K2313/00
PERFORMING OPERATIONS; TRANSPORTING
B29C63/42
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
B32B5/24
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Radially shrinkable textile hose for encasing elongated objects, characterised by having an outer layer made from radially shrinkable, wear-resistant material and at least one inner layer made from thermally insulating material.
Claims
1. Radially shrinkable textile hose for encasing elongated objects, comprising: a) an outer layer (2) made from shrinkable wear-resistant material; and b) at least one inner layer (4) made from thermally insulating material.
2. Hose according to claim 1, wherein the material of the at least one inner layer (4) is swellable with heat input.
3. Hose according to claim 1, wherein the outer layer (2) and the at least one inner layer (4) are joined together in places by a textile binding (26) or by sewing or by bonding.
4. Hose according to claim 3, wherein the outer layer (2) and the at least one inner layer (4) are joined together along zones (12) extending axially and spaced apart from one another.
5. Hose according to claim 4 wherein filling material (23), in the form of threads or ribbons, made from foam material, is arranged between the outer layer (2) and the at least one inner layer (4) in the region of chambers (21) situated between the zones (12).
6. Hose according to claim 1, wherein the outer layer (2) and the at least one inner layer (4) are constructed as woven fabric, weft-knitted fabric, warp-knitted fabric or braided fabric.
7. Hose according to claim 1, further comprising multifilament threads running axially and monofilament threads and multifilament threads running circumferentially.
8. Hose according to claim 1, wherein the outer layer (2) is coated or impregnated with an agent which increases the wear resistance.
9. Hose according to claim 8, wherein the at least one inner layer (4) is coated or impregnated with an agent which increases the thermal conductivity.
10. Hose according to claim 1, composed at least partially of finished threads.
11. Hose according to claim 1, wherein the at least one inner layer (4) is wetted internally with an adhesive or a glue.
12. Hose according to claim 1, wherein the at least one inner layer (4) is formed in the form of ribbons, in particular made from foam material.
13. Hose according to claim 1, wherein the hose has a thermal conductivity 0.3 W/mK.
14. Hose according to claim 1, wherein the hose has a wall thickness ranging from 1 to 8 mm.
Description
[0019] To facilitate understanding of the invention and to show how it can be embodied, it will now be briefly explained by way of an example embodiment with the aid of a drawing, in which:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026] In regions I and II, the hose 10 still has an inner diameter which is greater than the outer diameter of the pipe 1. At the beginning of assembly, the unshrunk hose 10 according to the invention is pushed onto the pipe 1 with the diameter according to region I. Then heat is applied to it from the outside, e.g. by means of a continuous hot-air oven, shrinking it onto the pipe, with the result that it shrinks, as the transition in region II is intended to show, and attaches itself to the pipe 1. In region III, the hose 10 is fully shrunk and sits tightly on the pipe 1. It is easy to see that the insulating inner layer 4 is thicker than the abrasion-resistant outer layer 2.
[0027] In region III, the hose 10 is already fully shrunk and sits tightly on the pipe 1, the insulating inner layer 4 fitting closely. An adhesive can also be applied between insulating layer 4 and pipe 1 to fix the hose even more securely to the pipe 1.
[0028] The shrinking process is to be typified in region II. By heating the hose 10 pushed onto the pipe 1, the hose shrinks. The diameter of the textile hose 10 reduces, while at the same time the wall thickness of the insulating inner layer 4 and the wear-resistant outer layer 2 increases.
[0029] Advantageously, the thermally insulating inner layer 4 has a wall thickness of between 0.5 and 6 mm. The function of the wear-resistant outer layer 2 of the textile hose 10 is to protect the insulating inner layer 4 against mechanical effects from the outside.
[0030]
[0031]
[0032] It would also be conceivable to wet only the surface of the textile hose superficially and thus to dispense with completely impregnating the entire textile hose. Due to superficial wetting, the finishing (finishing liquor) does not stiffen the inner layers which preserves the bulkiness of the threads of the inner layer and allows better insulation values to be achieved. In addition, there is the advantage that finishing material can be saved.
[0033]
[0034]
[0035] The outer layer 22 and the inner layer 24 of the hose 20 according to the invention are woven, for example, as shown in
[0036] Filler threads 23, which are arranged in the chambers 21, are used in addition for thermal insulation of the inner layer 24.