NO20171880A1 - Clamp connector - Google Patents

Clamp connector Download PDF

Info

Publication number
NO20171880A1
NO20171880A1 NO20171880A NO20171880A NO20171880A1 NO 20171880 A1 NO20171880 A1 NO 20171880A1 NO 20171880 A NO20171880 A NO 20171880A NO 20171880 A NO20171880 A NO 20171880A NO 20171880 A1 NO20171880 A1 NO 20171880A1
Authority
NO
Norway
Prior art keywords
clamp
axis
rotation
bolt
connector
Prior art date
Application number
NO20171880A
Other versions
NO344824B1 (en
Inventor
Arve Tvitekkja
Original Assignee
Aker Solutions As
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Aker Solutions As filed Critical Aker Solutions As
Priority to NO20171880A priority Critical patent/NO344824B1/en
Priority to GB1819082.7A priority patent/GB2570202B/en
Publication of NO20171880A1 publication Critical patent/NO20171880A1/en
Publication of NO344824B1 publication Critical patent/NO344824B1/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L21/00Joints with sleeve or socket
    • F16L21/06Joints with sleeve or socket with a divided sleeve or ring clamping around the pipe-ends
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L23/00Flanged joints
    • F16L23/04Flanged joints the flanges being connected by members tensioned in the radial plane
    • F16L23/08Flanged joints the flanges being connected by members tensioned in the radial plane connection by tangentially arranged pin and nut
    • F16L23/10Flanged joints the flanges being connected by members tensioned in the radial plane connection by tangentially arranged pin and nut with a pivoting or swinging pin
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L21/00Joints with sleeve or socket
    • F16L21/06Joints with sleeve or socket with a divided sleeve or ring clamping around the pipe-ends
    • F16L21/065Joints with sleeve or socket with a divided sleeve or ring clamping around the pipe-ends tightened by tangentially-arranged threaded pins
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L21/00Joints with sleeve or socket
    • F16L21/08Joints with sleeve or socket with additional locking means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L23/00Flanged joints
    • F16L23/04Flanged joints the flanges being connected by members tensioned in the radial plane

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Clamps And Clips (AREA)

Description

CLAMP CONNECTOR
The invention relates to a clamp connector, and more particularly, to a clamp connector with clamp segments hingedly connected to each other.
BACKGROUND
Clamp connectors are used in various industries and for various purposes, among others in process piping applications in the oil and gas industry and the petrochemical industry. Clamp connectors are used for e.g. connecting pipelines and flowlines to either structures or to other pipelines or flowlines. Due to high pressure and the risk of misalignment, clamp connectors, especially subsea connectors, are often designed to experience high stresses.
Clamp connectors come in various designs, with one or more bolts for tightening the clamp. Some large size clamp connectors have a bolt hingedly connected to the connector by means of bearings. Friction is associated with bearings, and as the clamp is subject to both internal and external forces, the friction will induce additional stress on the clamp and on the bolt in particular. When a clamp is tightened, it is commonly tightened as much as the design allows.
In order to save weight and materials, or in order to maximise the strength and operational reliability of a clamp connector, there is a need in the art for improved clamp connector designs. The present invention has the objective to provide such an improvement.
SUMMARY
In accordance with an embodiment, there is provided a clamp connector comprising first and second clamp segments. The first and second clamp segments are hingedly connected to each other. A tensioning bolt connects the first and second clamp segments via rotatable elements, the rotatable elements each having an axis of rotation which is substantially perpendicular to a longitudinal centre axis of the tensioning bolt. At least one axis of rotation has an offset from the longitudinal centre axis such as not to intersect the longitudinal centre axis.
According to another embodiment, there is provided a clamp connector where both axes of rotation have an offset from the longitudinal centre axis.
According to another embodiment, there is provided a clamp connector where the offset is the same for both axes of rotation.
According to another embodiment, there is provided a clamp connector where the offset is different between the axes of rotation.
According to another embodiment, there is provided a clamp connector where the at least one axis of rotation is offset from the longitudinal centre axis in a direction towards a clamp jaw defined by the first and second clamp segments.
According to another embodiment, there is provided a clamp connector where the at least one axis of rotation is offset from the longitudinal centre axis in a direction away from a clamp jaw defined by the first and second clamp segments.
According to another embodiment, there is provided a clamp connector where the first and second clamp segments are connected to each other via at least one clamp segment.
BRIEF DESCRIPTION OF THE DRAWINGS
These and other characteristics will become clear from the following description of embodiments, given as non-restrictive examples, with reference to the attached schematic drawings.
Figure 1 is a front view of a single bolt clamp connector.
Figure 2 is a detail view of section A from figure 1. The detailed view illustrates a rotatable element and the bolt.
DETAILED DESCRIPTION
The following description may use terms such as “horizontal”, “vertical”, “lateral”, ”upper”, “lower”, “inner”, “outer”, “forward”, “rear”, etc. These terms generally refer to the views and orientations as shown in the drawings and that are associated with a normal use of the invention. The terms are used for the reader’s convenience only and shall not be limiting.
The following description is related to figure 1, which shows a clamp connector 1 provided with a tensioning bolt 2. The tensioning bolt 2, also known as a jack screw, drive screw or stud bolt, connects a first clamp segment 3 and a second clamp segment 4. The tensioning bolt 2 could thus be any type of connection means, adapted for connecting and adjusting the length between two clamp segments. The connection clamp 1 could also comprise more than one tensioning bolt, as is known in the art. In this embodiment, a third clamp segment 5 connects the first and second clamp segments. The clamp connector 1 in the shown embodiment thus has three clamp segments which can rotate relative to each other, but it could comprise more or fewer clamp segments. The clamp connector could comprise only two clamp segments, the first and second segments 3,4 being connected directly to each other by means of a hinged connection, or comprise four or more such segments.
The clamp segments 3,4,5 define a clamp jaw 11 and are connected by hinge elements, such as hinge pins. A first hinge element 6 connects the first clamp segment 3 to the third clamp segment 5. A second hinge element 7 connects the second clamp segment 4 to the third clamp segment 5. The hinge elements 6,7 thus create hinged connections. Such connections are well known in the art and provide a clamp connection with several clamp segments which distribute a clamping force evenly around a circumference
The first clamp segment 3 is connected to the tensioning bolt 2 by a first rotatable element 8. Such a rotatable element 8 can be a trunnion nut or other means known in the art. The first rotatable element 8 can rotate relative to the first clamp segment 3 because of a rotational bearing, such as a ball bearing, traverse bearing, or by other means known in the art. Similarly, the second clamp segment 4 is connected to the tensioning bolt 2 by a second rotatable element 9. The rotatable element 9 can also rotate relative to the second clamp segment 4 by means of e.g. a rotational bearing.
As the tensioning bolt 2 is tightened, the first and second clamp segments 3,4 are forced closer to each other, in effect reducing the diameter of the clamp connector 1 and the clamp jaw 11. The clamp connector 1 will thus provide a secure connection of whatever device(s) it is clamping, e.g. a pipe connection. This method of operating a connection clamp is commonly known in the art.
Figure 2 illustrates in more detail a portion of the first clamp segment 3, the first rotatable element 8 and a portion of the tensioning bolt 2. The clamp connector 1 has an eccentric design which can be seen more clearly in this figure. The longitudinal centre axis 10 of the bolt 2 is not intersecting and is not coincident with a first axis of rotation 12 of the first rotatable element 8 and a second axis of rotation 13 (see figure 1) of the second rotatable element 9 (not shown in figure 2, see figure 1). The first axis of rotation 12 is offset a distance e away from the bolt centre axis 10, as can be seen indicated in figure 2.
The first and second axes of rotation 12,13 of the first and second rotatable elements 8,9, respectively, are in one embodiment equally spaced apart from the bolt centre axis 10, i.e. the minimum distance from the first axis of rotation 12 to the bolt centre axis 10 is equal to the minimum distance from the second axis of rotation 13 to the bolt centre axis 10.
However, the distance e from the axes of rotation 12,13 to the centre axis 10 of the tensioning bolt 2 need not be equal for the two rotatable elements 8,9. If there is a difference in friction between the first rotatable element 8 and the second rotatable element 9, this can be compensated by different distances e. Also, a different size of the first rotatable element 8 and the second rotatable element 9 (and hence a difference in size of the corresponding rotatable bearings) can be compensated by different distances between the first axis of rotation 12 and the bolt axis 10 and the second axis of rotation 13 and the bolt axis 10.
The two axes of rotation 12,13 are oriented substantially perpendicular to the longitudinal centre axis 10 of the tensioning bolt 2. In figure 3, the first axis of rotation 12 is positioned below the bolt axis 10. The axis of rotation 12 of the first rotatable element 8 are thus offset from the longitudinal centre axis 10 in a direction away from the clamp jaw 11 defined by the first and second clamp segments 3,4.
In clamp connectors where a tensioning bolt is connected to rotatable elements, the friction in the rotatable element is proportional to the friction coefficient between the rotatable element and the clamp segment and the tightening force in the tensioning bolt. This is shown in the following equation where the bending moment Mbin the tensioning bolt is calculated (the variables are also indicated in figure 2):
where
R is the frictional force in the rotatable element
r is the radius of the rotatable element
F is the tightening force in the bolt
e is the distance from the centre axis of the rotatable element to the centre axis of the bolt
µ is the friction coefficient between the rotatable element and the bearing
Thus, in order to eliminate the bending moment (∑ Mb= 0), the distance e is therefore calculated and taken into account when designing the connection clamp 1. The distance e could be in the order of about 3mm, but will vary between one connection clamp design to another, according to clamp size, force/pressure ratings, friction, and other variables.
In one embodiment, if a typical friction coefficient is 0.1, the distance e can be 10% of the radius of the rotatable element or bearing. If the friction coefficient is about 0.2, the distance e can be about 20% of the radius of the rotatable element or bearing.
Advantageously, the offset distance e will reduce the bending moment of the bolt, and this clamp design can be beneficial for all types of clamp connectors, and will provide a higher utilization of the clamp components, and the tensioning bolt in particular, during tensioning of the clamp. An effect of this is that the strain on the tensioning bolt is reduced compared to connection clamps of conventional design, such that either the bolt can be tensioned more, or alternatively the tensioning bolt can be designed with a smaller radius or cross section, and still sustain the same tension as the bolt in a clamp connection with a conventional design.
In a conventional clamp connector, the centre axis of the bolt is coincident with the centre axis of the rotatable elements. During make-up of such a conventional clamp connector for e.g. tie-in, the bolt is subject to a bending moment due to friction between the rotatable elements and the clamp segments. This bending moment causes high stress in the bolt and in worst case plastic deformation. This represents a limitation of the capacity of the entire clamp and could contribute to fracture in the worst case. According to embodiments of the present clamp connector 1, this bending moment is reduced or eliminated.
Also during tensioning of a conventional clamp connector, the bolt can somewhat bend because of the bending moment induced on it. Because the bolt in a conventional clamp connector is bent when it has been tensioned, it can over time (e.g. due to vibrations and relaxation) somewhat straighten out and cause the clamp connector to undesirably relax. Such unintentional relaxing is common but highly undesirable. In embodiments of the present clamp connector 1, such bending and subsequent relaxing is reduced or eliminated.
While the invention has been described with reference to the embodiment(s) mentioned above, it is to be understood that modifications and variations can be made without departing from the scope of the present invention, and such modifications and variations shall remain within the field and scope of the invention.

Claims (7)

1. A clamp connector (1) comprising:
first and second clamp segments (3,4), the first and second clamp segments (3,4) being hingedly connected to each other;
a tensioning bolt (2) connecting the first and second clamp segments (3,4) via rotatable elements (8,9), the rotatable elements (8,9) each having an axis of rotation (12,13) which is substantially perpendicular to a longitudinal centre axis (10) of the tensioning bolt (2);
where at least one axis of rotation (12,13) has an offset (e) from the longitudinal centre axis (10) such as not to intersect the longitudinal centre axis (10).
2. A clamp connector (1) according to the preceding claim, where both axes of rotation (12,13) have an offset (e) from the longitudinal centre axis (10).
3. A clamp connector (1) according to any preceding claim, where the offset (3) is the same for both axes of rotation (12,13).
4. A clamp connector (1) according to claim 2, where the offset (e) is different between the axes of rotation (12,13).
5. A clamp connector (1) according to any preceding claim, where the at least one axis of rotation (12,13) is offset from the longitudinal centre axis (10) in a direction towards a clamp jaw (11) defined by the first and second clamp segments (3,4).
6. A clamp connector (1) according to any of claims 1-4, where the at least one axis of rotation (12,13) is offset from the longitudinal centre axis (10) in a direction away from a clamp jaw (11) defined by the first and second clamp segments (3,4).
7. A clamp connector (1) according to any preceding claim, where the first and second clamp segments (3,4) are connected to each other via at least one clamp segment (5).
NO20171880A 2017-11-24 2017-11-24 Clamp connector NO344824B1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
NO20171880A NO344824B1 (en) 2017-11-24 2017-11-24 Clamp connector
GB1819082.7A GB2570202B (en) 2017-11-24 2018-11-23 Clamp connector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
NO20171880A NO344824B1 (en) 2017-11-24 2017-11-24 Clamp connector

Publications (2)

Publication Number Publication Date
NO20171880A1 true NO20171880A1 (en) 2019-05-27
NO344824B1 NO344824B1 (en) 2020-05-11

Family

ID=65024377

Family Applications (1)

Application Number Title Priority Date Filing Date
NO20171880A NO344824B1 (en) 2017-11-24 2017-11-24 Clamp connector

Country Status (2)

Country Link
GB (1) GB2570202B (en)
NO (1) NO344824B1 (en)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3797079A (en) * 1972-09-11 1974-03-19 Aeroquip Corp Latch and v band coupler
US4225160A (en) * 1978-02-27 1980-09-30 Exxon Production Research Company Low friction remotely operable clamp type pipe connector
US5645303A (en) * 1994-10-27 1997-07-08 Eg&G Pressure Science, Inc. Compact pipe coupling device
WO2000005527A1 (en) * 1998-07-13 2000-02-03 Abb Offshore Systems As Articulated clamp connector
GB2485626A (en) * 2010-11-19 2012-05-23 Hitco Inc A divided-ring pipe clamp with loosely-latching installation feature
GB2488372A (en) * 2010-11-19 2012-08-29 Hitco Inc Improved tri-clamp device for connecting tubing

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NO328283B1 (en) * 2004-05-26 2010-01-25 Fmc Kongsberg Subsea As Tube clip

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3797079A (en) * 1972-09-11 1974-03-19 Aeroquip Corp Latch and v band coupler
US4225160A (en) * 1978-02-27 1980-09-30 Exxon Production Research Company Low friction remotely operable clamp type pipe connector
US5645303A (en) * 1994-10-27 1997-07-08 Eg&G Pressure Science, Inc. Compact pipe coupling device
WO2000005527A1 (en) * 1998-07-13 2000-02-03 Abb Offshore Systems As Articulated clamp connector
GB2485626A (en) * 2010-11-19 2012-05-23 Hitco Inc A divided-ring pipe clamp with loosely-latching installation feature
GB2488372A (en) * 2010-11-19 2012-08-29 Hitco Inc Improved tri-clamp device for connecting tubing

Also Published As

Publication number Publication date
NO344824B1 (en) 2020-05-11
GB201819082D0 (en) 2019-01-09
GB2570202B (en) 2022-08-17
GB2570202A (en) 2019-07-17

Similar Documents

Publication Publication Date Title
CA2584746C (en) Pipe ring apparatus and method
US5242199A (en) Threaded tubing connection
JP5822464B2 (en) Ultra-high torque dope-free screw joint
US8517655B2 (en) Locking wedge system
JP2008519227A (en) Screws for screw fastening devices
JPH0235213A (en) Roll device with rolling installed onto shaft
US20100244443A1 (en) Hot bolting clamp
CN107923430A (en) Include the component of locked fixed bolt
BR102015005446A2 (en) profiled clamp
US11261900B2 (en) Bolt and method for manufacturing the same
NO20171880A1 (en) Clamp connector
US11624461B2 (en) Coupling having rotation limited segments
US20100102554A1 (en) Tube Fitting with either Single or Double Ferrule Swage Design Common to One System
US20110268531A1 (en) Segmented thread and connecting arrangement
NO175988B (en) Screw Socket Connector
CN203604850U (en) Metal pipe connecting device
US10041753B2 (en) Multiple flange crush washer
US20120275851A1 (en) Axle-bore connection
US9404607B2 (en) Aftercooler pipe support assembly
US20200141385A1 (en) Pitch adjustment cylinder for adjustment of a pitch angle of a blade of a wind turbine
JP5826871B2 (en) Elastic joint for slide block adapter
Fukuoka et al. Mechanical behaviors of bolted joint in various clamping configurations
KR20040007555A (en) Clamping gap nut
KR102006924B1 (en) Apparatus for connecting pipes
Hashimura et al. A study to predict fatigue limits of bolted joints under transverse vibration