Abstract:
A high-pressure, large-bore bonded flexible rubber pipe resistant to aggressive chemicals and gases, particularly for conveying gas or oil, the flexible pipe having a liner made of poly(vinylidene-fluoride) homopolymer or copolymer wherein a hydrogenated nitrile rubber-based, peroxide-vulcanized rubber compound 2 is bonded to the poly(vinylidene-fluoride) liner, which has a Mooney 05, 150° C. scorch time of at least 10 minutes. Further, a method for manufacturing such hoses, the method including vulcanization performed at a temperature of at least 160° C.
Abstract:
A process for the production of a target recombinant polypeptide is provided. The process comprises expressing a vector comprising a promoter operatively linked to an expression cassette for the target recombinant polypeptide; and a perfect palindrome operator sequence in a culture medium, wherein the culture medium is substantially free from antibiotic.
Abstract:
The object of the invention is a method for building hoses reinforced with spirally laid fibers, where the hose under construction (3) undergoes both rotation and advancing motion relative to the laying head (12), and where the reinforcing fibers are unwound from drums (14). The drums (14) are rotated about two axes, the first axis being the principal axis of the drums (A) and the second axis (B) being nearly parallel with the direction in which the fibers are unwound, where the direction of rotation of the drums (14) about the second axis (B) is the same as the direction in which the hose under construction (3) is rotated. The apparatus for carrying out the method comprises a laying head (12) and a drum support platform (15), where the hose under construction (3) undergoes both rotation and advancing motion relative to the laying head (12), and where the reinforcing fibers (10) are unwound from drums (14) through a circular fiber guide (1) The further object of the invention is a method for building hoses reinforced with spirally laid fibers, wherein the reinforcing fibers (10) are laid on the hose surface through a rotating self-adjusting circular fiber guide (2) arranged substantially coaxially with the hose. The invention also relates to an apparatus for carrying out the above method.
Abstract:
The object of the invention is a method for building hoses reinforced with spirally laid fibres, where the hose under construction (3) undergoes both rotation and advancing motion relative to the laying head (12), and where the reinforcing fibres are unwound from drums (14). The drums (14) are rotated about two axes, the first axis being the principal axis of the drums (A) and the second axis (B) being nearly parallel with the direction in which the fibres are unwound, where the direction of rotation of the drums (14) about the second axis (B) is the same as the direction in which the hose under construction (3) is rotated. The apparatus for carrying out the method comprises a laying head (12) and a drum support platform (15), where the hose under construction (3) undergoes both rotation and advancing motion relative to the laying head (12), and where the reinforcing fibres (10) are unwound from drums (14) through a circular fibre guide (1) The further object of the invention is a method for building hoses reinforced with spirally laid fibres, wherein the reinforcing fibres (10) are laid on the hose surface through a rotating self-adjusting circular fibre guide (2) arranged substantially coaxially with the hose. The invention also relates to an apparatus for carrying out the above method.
Abstract:
The present invention relates to a high-pressure hose structure comprising several layers of reinforcing plies where the reinforcing fibers are spirally laid.The hose structure according to the invention is characterized by the odd number of its reinforcing plies.
Abstract:
The present invention relates to a high-pressure hose structure comprising several layers of reinforcing plies where the reinforcing fibres are spirally laid. The hose structure according to the invention is characterized by the odd number of its reinforcing plies.
Abstract:
The invention relates to a hose comprising a steel coupling (1), in which the structural elements of the hose, namely the reinforcing plies (4), liner (12), carcass (7), and cover (9) are bonded.The main feature of the invention is that the reinforcing plies (4) of the hose, which are partially or entirely bonded with rubber, are embedded in the adhesive resin layer in the coupling device (1) assembled to the vulcanized hose.
Abstract:
A rubber hose provided with an outer metal armouring and a vulcanised and/or adhesively bonded coupling, in particular a flexible rubber hose provided with reinforcing plies, wherein the armouring is constituted by a flexible metal stripwound metalpipe with an interlocked profile (7, 9, 10, 15, 16) which is spliced at least from tow sections and fits with a minimal gap on the hose below.
Abstract:
A process for the production of a target recombinant polypeptide is provided. The process comprises expressing a vector comprising a promoter operatively linked to an expression cassette for the target recombinant polypeptide; and a perfect palindrome operator sequence in a culture medium, wherein the culture medium is substantially free from antibiotic.
Abstract:
The invention relates to a hose that comprises at least one inner layer (1) produced from an elastomer material, an embedded reinforcement carcass produced from a textile and/or metal material, an outer layer produced from an elastomer material and a coupling having a flange section inside the hose end. The inventive hose is characterized in that the coupling comprises a fitting, a supporting flange and at least one annular lamina. A first reinforcement carcass, consisting of at least one reinforcement layer, extends along the entire inside of the fitting and changes in the flange area from the axial to the radial direction of extension. The radial area of the first reinforcement carcass is mounted between the supporting flange and the annular lamina(e). A second reinforcement carcass, likewise consisting of at least one reinforcement layer, partially or completely holds the outside of the fitting, especially by way of fastening means. A filler material produced from an elastomer material, in the area of the fitting, fills the space between the first and the second reinforcement carcass. The coupling is integrated into the hose in such a manner that all hose components associated with the coupling give a material-fit hose/coupling system. The invention also relates to a method for producing a hose of the above-described type.