Bend stiffener
10472900 ยท 2019-11-12
Assignee
Inventors
- Austin Harbison (Liverpool, GB)
- Mohammed Bilal Hussain (Bolton, GB)
- Stuart William Turton (Skelmersdale, GB)
- Jonathan Lloyd Fox (Wigan, GB)
- Lewis John Watts (Preston, GB)
Cpc classification
E21B19/004
FIXED CONSTRUCTIONS
E21B43/0107
FIXED CONSTRUCTIONS
International classification
E21B19/00
FIXED CONSTRUCTIONS
Abstract
A bend stiffener (50) includes an elongate stiffener body (52) having polymer material and two ends. A passage (58) extends through the stiffener body from end to end for receiving and embracing a flexible member (60). The stiffener body includes a coupling (66) for mounting the stiffener body in cantilever fashion. The stiffener body is sufficiently flexible to curve somewhat along with the flexible member under a bending load but is sufficiently stiff to resist excessive curvature which could damage the flexible member, and sufficiently resilient to recover its original shape afterwards. The stiffener body includes at least two stiffener body parts (64a, 64b) defining the passage. Each stiffener body part includes a respective interface member (68, 70) having material stiffer than the polymer material of the stiffener body. A securing arrangement (80, 83) secures the interface members of different stiffener body parts together around the elongate flexible member.
Claims
1. A bend stiffener for locally protecting an elongate flexible member from excessive curvature, the bend stiffener comprising: an elongate stiffener body which includes polymer material and which has a root end and a free end, a passage extending through the stiffener body from the root end to the free end for receiving and embracing the flexible member, a coupling at or toward the root end of the stiffener body for mounting the stiffener body in cantilever fashion, the stiffener body being capable of curving somewhat along with the flexible member when the flexible member suffers a bending load but resistant to excessive curvature which could otherwise damage the flexible member, and being resilient such that the stiffener body is able to recover its original shape upon relief of the bending load, the stiffener body having at least two stiffener body parts which together define the passage and which are able to be separated from one another to enable the flexible member to be introduced to the passage, and subsequently assembled to one another around the flexible member to ready the bend stiffener for use, each of the stiffener body parts being provided with a respective interface member which includes material which is stiffer than the polymer material of the stiffener body, each of the stiffener body parts having first and second contact faces, each contact face of one stiffener body part abutting a contact face of another stiffener body part in the assembled bend stiffener, each of the interface members extending from the first contact face of its stiffener body part to the second contact face of the same stiffener body part, and each of the interface members having first and second end faces, and securing arrangements being provided for securing and abutting one of the end faces of the interface member of one stiffener body part to one of the end faces of the interface member of another stiffener body part, the end faces being in abutment, to secure the stiffener body parts to one another, wherein the stiffener body parts are moulded polymer items and the interface members are incorporated into the moulded stiffener body parts.
2. The bend stiffener as claimed in claim 1, wherein the interface members are embedded in the stiffener body parts.
3. The bend stiffener as claimed in claim 1, wherein the stiffener body parts are secured to one another in the assembled bend stiffener only through the interface members and the securing arrangements.
4. The bend stiffener as claimed in claim 1, wherein the securing arrangements include any of a threaded fastener, a tension strap, adhesive, adhesive tape, a locking pin and a latch.
5. The bend stiffener as claimed in claim 1, wherein the securing arrangements having holes, bores, or slots in the interface members arranged to receive a threaded member to draw one of the end faces of one of the interface members into abutment with one of the end faces of another of the interface members from another of the bend stiffener body parts.
6. The bend stiffener as claimed in claim 1, wherein in use, neighbouring interface members together form a continuous loop around the flexible member.
7. The bend stiffener as claimed in claim 1, wherein the interface members include any one or more of metal, fibre reinforced plastics, carbon fibre reinforced plastics and glass fibre reinforced plastics.
8. The bend stiffener as claimed in claim 1, wherein the interface members are provided with shaped locating features to enable one of the interface members to positively locate with respect to another of the interface members.
9. The bend stiffener as claimed in claim 1, wherein the at least two stiffener body parts number two, the stiffener body is substantially circular in cross section and is split into two stiffener body parts in a plane that passes through an axis of the stiffener body.
10. The bend stiffener as claimed in claim 1, wherein the first and second contact faces of each bend stiffener body part, both being non-flat, the contact faces of one of the bend stiffener body parts being complementarily shaped to the contact faces of another of the bend stiffener body parts with which the contact faces of both bend stiffener body parts abut so that the contact faces of both bend stiffener body parts contact one another over substantially an entire area of the contact faces of both bend stiffener body parts.
11. The bend stiffener as claimed in claim 1, wherein each interface member having an abutment surface being set back from one of the contact faces of the respective bend stiffener body part so that bringing the abutment faces of neighbouring stiffener body parts into abutment involves deformation of the stiffener body parts, biasing the first and second contact faces toward one another.
12. The bend stiffener as claimed in claim 1, wherein at least one of the interface members has at least one through-going opening through which the material of the stiffener body part passes where the stiffener body part is the stiffener body part to which the interface member is attached.
13. The bend stiffener as claimed in claim 1, wherein at least one of the interface members has any one or more of the following features which is embedded in the material of its associated stiffener body part: a hole, a slot, a circumferentially extending slot, a mesh, an upstand, a rib, a circumferential rib, a projecting limb or bar, a U or C shaped bar, and a dovetail.
14. The bend stiffener as claimed in claim 1, wherein the stiffener body parts are secured to one another in the assembled bend stiffener only through the interface members and the securing arrangements.
15. The bend stiffener as claimed in claim 1, wherein the securing arrangements include at least one threaded fastener.
16. The bend stiffener as claimed in claim 1, wherein the securing arrangements include at least one locking pin.
17. The bend stiffener as claimed in claim 1, wherein the securing arrangements having holes, bores, or slots in the interface members arranged to receive a threaded member to draw the first end face of one of the interface members into abutment with the second end face of another of the interface members from another of the bend stiffener body parts.
18. The bend stiffener as claimed in claim 1, wherein the securing arrangements having holes, bores, or slots in the interface members arranged to receive a threaded member to draw the second end face of one of the interface members into abutment with the first end face of another of the interface members from another of the bend stiffener body parts.
Description
IV. BRIEF DESCRIPTION OF THE DRAWINGS
(1) Specific embodiments of the present invention will now be described, by way of example only, with reference to the accompanying drawings, in which:
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V. DETAILED DESCRIPTION OF THE DRAWINGS
(30) With reference to
(31) The first stiffener body part 64a is represented on its own in
(32) The stiffener body 52 comprises a material with sufficient flexibility and resilience that it can accommodate the flexure caused by loads applied to the flexible member 60 without structural failure, recovering its original shape when relieved of loading, and can survive repeated cycles of motion over a protracted design lifetime without suffering failure through fatigue. At the same time it must be sufficiently stiff to support the flexible member within, preventing it from adopting an excessively tight radius of curvature and distributing bending moments along its length. Elastomer materials may be used. Polyurethane is suitable, although other plastics materials, other polymer materials and other classes of materials could be substituted. Fibre reinforced plastics materials may be used.
(33) The root 54 of the bend stiffener 50 is provided with a coupling 66 by means of which the bend stiffener 50 is able to be mounted to a supporting structure in cantilever fashion. In the present example the coupling 66 comprises a metal structure embedded in the stiffener body parts 64a, 64b and forming in the assembled bend stiffener 50 a cylindrical socket for receipt upon a male member such as a fixed tube. The coupling 66 may be split in two halves along the same plane 62 that divides the first and second stiffener body parts 64a, 64b, so that half the coupling 66 lies in the first body part 64a and the other half lies in the second stiffener body part 64b.
(34) In accordance with the present invention, the stiffener body parts 64a, 64b incorporate respective interface members 68a, 68b, 70a, 70b through which the parts are to be secured to one another. The interface members comprise a material which is stiff in relation to the material of the remainder of the stiffener body 52. They may be formed of metal. Stainless steel is suitable.
(35) The interface members 68, 70 extend, in the illustrated embodiment, around the full circumference of the stiffener body 52. That is, interface members 68a and 68b together form a ring around the circumference and likewise interface members 70a and 70b together form a ring around the circumference.
(36) The external profile of the stiffener body 52 may be a plain frustum of a cone or it may include stress relief features such as the outwardly curved regions 61 seen adjacent the interface members 68a, 70a in
(37) Looking at
(38) Some means is provided for securing the interface members 68a, 70a of the first stiffener body part 64a to the interface members 68b, 70b of the second stiffener body part. This may take a variety of forms, including joints using threaded fasteners (which may take the form of bolts), tension straps (which may comprise metal, polymer material or fibre reinforced polymer material), adhesive, adhesive tape, locking pins, latches or other means of mechanical engagement.
(39) The interface members 68a, 68b, 70a, 70b may be provided with shaped locating features to assist in achieving and maintaining proper location. These may take the form of a spigot on one part for receipt in a socket of the other.
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(41) Typically the stiffener body parts 64a, 64b comprise moulded polymer material and the interface members are incorporated in them during the moulding process, so that the interface members are in intimate contact with the material of the stiffener body parts and are securely held by it. The interface members may be surrounded by the polymer material. Alternatively they may extend though its full depth.
(42) Additionally or alternatively the interface members may be adhered or bonded to the stiffener body parts.
(43) The interface members may take a variety of forms. They may in particular be part-circular plates.
(44) through-going openings 82, which may be round (
(45) through-going slots 84 (
(46) circumferentially extending slots 86 (
(47) wide slots 88 joined by narrower slots 90 (
(48) sectoral openings 92 (
(49) a wire mesh 93 (
(50) The cross section of the interface member may also be formed in such a manner as to improve engagement of the interface member with the material of the stiffener body part.
(51) circumferential channels 94 (
(52) a combination of such channels 94 with through-going openings 96 (
(53) circumferential upstands 97 (
(54) circumferential undercut upstands, more specifically dovetails 98 (
(55) The interface member may be provided with one or more projecting features such as shaped bars to improve engagement of the interface member with the material of the stiffener body part.
(56) elongate circumferentially extending bars 100 supported at intervals by legs 102 (
(57) U shaped bars 104 whose crosspiece extends circumferentially (
(58) U shaped bars 106 whose crosspiece is inclined to the circumferential direction (
(59) circumferential ribs 108 (
(60) Ends of the interface members 68, 70 form abutment surfaces 78, 79see
(61) In the embodiment of
(62) The abutment faces 78, 79 of the interface members could alternatively lie somewhat beneath the adjacent contact faces 72, 74 of the stiffener body parts which would thus be somewhat deformed in compression during assembly, to ensure that no gap exists.
(63) In the embodiment of
(64) Looking at
(65) straight, and coincident with the axis, as seen at 62 (
(66) straight but inclined to the axis as at 62a (
(67) gently curved as at 62b (
(68) stepped as at 62c (
(69) sawtooth or zig-zagged, as at 62d (
(70) curved back and forth in a sinusoid or some variant thereof as at 62e (
(71) formed with geometric shapes as at 62f (
(72) Looking at
(73) straight and coincident with the axis, as seen at 62 (
(74) straight but offset from the axis, as seen at 62h (
(75) formed by non-coincident straight lines on opposite sides of the passage 58, as at 62i, 62j and 62k (
(76) formed by shallow curves as at 62l, 62m and 62n (
(77) formed by convoluted lines as at 62p and 62q (
(78) formed by V shaped lines as at 62r (
(79) undercut as at 62s (
(80) In this case the split plane forms a pair of interlocking dovetails so that assembly involves sliding one of the stiffener body parts axially along the other. This formation resists separation of the two parts along the radial direction.
(81) Also while the above described embodiments comprise two bend stiffener bodies, other embodiments may have three, four or more of themsee items 62t and 62u in
(82) In embodiments where there are two stiffener body parts symmetrically split about a flat plane, as at 62 in
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(84) According to the present example, the ends of the upstands 208 are secured to the coupling body 200 by means of mechanical fasteners, and more specifically threaded fasteners, as illustrated in
(85) The coupling 266 can be manufactured and assembled rapidly, in comparison with the prior art coupling of
(86) The coupling body 200, comprising the flange 202 and the sleeve 204, can be fabricated by welding the flange to the sleeve, or the flange and sleeve may be integrally formed by forging or machining.
(87) The upstands 208 are formed in the present embodiment as solid shaped metal bars of circular cross section, but in other embodiments they may be hollow and they may have a different cross section, e.g. square or box section.
(88) The upstands 208 may, as in the
(89) In
(90) The upstands need not all be the same size and shape. The embodiment illustrated in
(91) The upstands need not be n shaped.
(92) In the embodiment illustrated in
(93) The types of coupling depicted in
(94) However these types of coupling are also well suited to use in bend stiffeners which are not split, in which case the coupling body 200 can be in the form of a continuous ring.
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(96) The interface members may be provided with alignment features to ensure that one properly aligns with the other.
(97) The interface members may be used for handling of the bend stiffener, and/or of its parts, and may be provided with engagement features for this purpose.
(98) The aforegoing embodiments are presented by way of example and not limitation and numerous variations are possible without departing from the scope of the invention according to the appended claims. For example while the embodiments described above use two pairs of interface members 68a/b and 70a/b forming two loop around the stiffener body 52, a different number of interface members could be used. For example three or more pairs could be provided. Also whereas the interface members of the illustrated embodiments extend, when coupled to one another, around the full circumference of the stiffener body 52, that need not be the case in other embodiments of the invention.
(99) The stiffener body parts may be coupled to one another by a hinge, in which case opening them out to receive the flexible member 60 involves turning one relative to the other about the hinge.