API SPEC 7-2 ADD 1-2010 Specification for Threading and Gauging of Rotary Shouldered Thread Connections (First Edition ISO 10424-2 2007 Adoption Effective Date June 2011)《旋转肩头连接件的螺.pdf
《API SPEC 7-2 ADD 1-2010 Specification for Threading and Gauging of Rotary Shouldered Thread Connections (First Edition ISO 10424-2 2007 Adoption Effective Date June 2011)《旋转肩头连接件的螺.pdf》由会员分享,可在线阅读,更多相关《API SPEC 7-2 ADD 1-2010 Specification for Threading and Gauging of Rotary Shouldered Thread Connections (First Edition ISO 10424-2 2007 Adoption Effective Date June 2011)《旋转肩头连接件的螺.pdf(46页珍藏版)》请在麦多课文档分享上搜索。
1、Specification for Threading and Gauging of Rotary ShoulderedThread ConnectionsANSI/API SPECIFICATION 7-2 (FORMERLY IN SPEC 7)FIRST EDITION, JUNE 2008EFFECTIVE DATE: DECEMBER 1, 2008CONTAINS API MONOGRAM ANNEX AS PART OFUS NATIONAL ADOPTIONISO 10424-2:2007 (Identical), Petroleum and natural gas indus
2、triesRotary drilling equipmentPart 2: Threading and gauging of rotary shouldered thread connectionADDENDUM 1DECEMBER 2010EFFECTIVE DATE: JUNE 2011Addendum 1 to Specification for Threading and Gauging of Rotary Shouldered Thread Connections Summary of changes Clause 3: Delete reference to API Spec 7,
3、 include reference to API Spec 5DP. Table 1, Column 9, Change tolerance on LPCfrom 0/3 to 0/3,18 Table 1, footnote (c), Replace 5 mm with 0/ 5 mm Figure 7 (b), Replace as shown decrease groove depth from 6,4 (0.25) to 1,6 (0.062) Table 5, Column 2, Change tolerance on DCBfrom +0,38/0 to +0,40/0 Tabl
4、e 5, Column 6, Change tolerance on LBGfrom 0/3,1 to 0/3,18 Table 9, footnote (a), Replace A.5 with A.9 Figure 14, Key add Note: For drill bit pins only, tolerance is +0,25/0,79 mm (+0.010/0.031 in) Figure 20, Replace dimension 177,8 3,2 (7 0.12) with 171,4 3,20 (6.75 0.13) Clause 6.2, Replace clause
5、, including Table 3 (see below) Table A.1, Column 9, Change tolerance on LPCfrom 0/0.12 to 0/0.125 Table A.1, Column 12, Change tolerance on QCfrom +0.030/0.015 to +0.031/0.016 Table A.1, footnote (b), Replace 0.19 in with 0/0.2 in 2 SPECIFICATION FOR THREADING AND GAUGING OF ROTARY SHOULDERED THREA
6、D CONNECTIONS Table A.3, Replace the table (see below) Table A.5, Column 2, Change tolerance on DCBfrom +0.015/0 to +0.016/0 Table A.5, Column 6, Change tolerance on LBGfrom 0/0.13 to 0/0.125 Annex F, Replace completely (see below) Annex I, Replace clause I.4.4 through I.4.6 (see below) 6.2 Bevels f
7、or drill collars and tools that mate directly with drill collars 6.2.1 Purpose of bevel diameters Bevels on connections serve two purposes. The first is to protect the outer edge of the sealing face from deformation in the form of mashes and fins. The second is to increase the contact pressure on th
8、e sealing face so as to minimize leaking and separation due to downhole bending. Bevel diameters on the same ODs should be of equal size, within manufacturing tolerances, on mating pins and boxes to minimize the formation of grooves on the sealing faces. When mismatches of ODs greater than 6,35 mm (
9、0.250 in), mismatches of bevel diameters will also occur. Historically bevel diameters have been calculated every 6,35 mm (0.250 in) based on 75 percent of the shoulder width. This basic calculation is simple and depends only on the outside diameter and counter bore of the connection. Effort has bee
10、n made to preserve these historical bevel diameters because they are easy to calculate and have worked very well in most cases. 6.2.2 Methods to calculate bevel diameters However it has been found that use of this process alone will result in some OD-ID combination having a compressive stress on the
11、 sealing face above the SMYS of the material. FEA analysis has shown yield of the seal face will not occur at 100 percent of SMYS. Because the seal face has to handle the misapplication of make-up torque, unexpected downhole torque and bending of the drill string, the calculation of bevel diameters
12、for drill collars and tools that mate with them is based on a two-step computation described in detail in Annex I. The combination of the two methods ensures the stress levels on the sealing faces does not exceed 100 percent of the SMYS for connections with OD and ID combinations commonly used. The
13、two steps are identified as: 1. The 75 percent shoulder width method; 2. The mismatched outside diameter method. The two methods are fully described in Annex I. 6.2.3 Other considerations Table 3 (Table A.3) have bevel diameters that cover a range from a suggested minimum OD to a maximum OD. The tab
14、les also contain a Reference ID. The purpose of the Reference ID is to be able to calculate shoulder loads that will cause the seal face stress on mismatched ODs to exceed the SMYS of the product material. API SPECIFICATION 7-2, ADDENDUM 1 3 When the ID of the drill collar or tools that mate directl
15、y with them is equal to or greater than the reference ID, the minimum OD listed for each connection in Table 3 (Table A.3) can be mated with the largest OD listed (or any OD in between) for that same connection in the table and the stress on the seal face will not exceed 100 percent of SMYS. The sma
16、llest bevel diameter shown in Table 3 (Table A.3) is the smallest bevel diameter recommended for each connection if the seal face stress generated by mismatches of ODs is not to exceed the SMYS. Bevel diameters for low-torque features have been arbitrarily set and shall not increase or decrease with
17、 diameter changes. Bevel diameters in Table 3 (Table A.3) shall not apply to products that have specific requirements in API Spec 7-1, API Spec 5DP, ISO 10424-1 and ISO 11961, such as tool joints for drill pipe and HWDP, bits, or boxes that mate with bits. Unless otherwise specified, bevel diameter
18、tolerances shall be 0,4 mm ( 0.016 in). Caution: The bevel diameters set forth in this standard do not account for all potential mismatches that can occur when components with significantly different box OD, pin ID or bevel diameters are made up. Connections with such mismatched dimensions can resul
19、t in seal stresses in excess of the specified minimum yield strength of the material which increases the risk of galling, finning and mechanical damage to the seal face. 4 SPECIFICATION FOR THREADING AND GAUGING OF ROTARY SHOULDERED THREAD CONNECTIONS Table 3 Reference bevel diameters for Preferred
20、connections when used on drill collars, in SI units Dimensions in millimetres Connection style and size Ref ID d Bevel diameters afor various ODs b, cNC 23 28,58 OD 79,38 BD 76,20NC 26 38,10 OD 85,72 88,90 92,08 95,25 98,42 BD 84,53 e84,53 e87,71 87,71 92,47NC 31 38,10 OD 104,78 107,95 111,12 BD 101
21、,60 e101,60 e105,17NC 35 50,80 OD 114,30 117,48 120,65 BD 110,33 110,33 114,70NC 38 57,15 OD 120,65 123,82 127,00 130,18 133,35 BD 117,87 e117,87 e121,05 121,05 125,81NC 40 50,80 OD 133,35 136,52 139,70 142,88 146,05 BD 128,19 e128,19 e132,16 132,16 136,92 NC 44 57,15 OD 139,70 142,88 146,05 149,22
22、152,40 155,58 158,75 BD 138,11 e 138,11 e 139,70 139,70 144,46 144,46 149,22 NC 46 57,15 OD 152,40 155,58 158,75 161,92 165,10 168,28 171,45 174,62 BD 145,25 e145,25 e150,02 150,02 154,78 154,78 159,54 159,54 NC 50 57,15 OD 161,92 165,10 168,28 171,45 174,62 177,80 180,98 184,15 BD 161,14 e161,14 e1
23、61,14 e161,14 e164,70 164,70 169,46 169,46 NC 56 63,50 OD 184,15 187,32 190,50 193,68 196,85 200,02 203,20 BD 179,78 e179,78 e180,58 180,58 185,34 185,34 190,10 NC 61 71,44 OD 203,20 209,55 212,72 215,90 219,08 222,25 225,42 228,60 BD 197,25 e198,44 198,44 203,20 203,20 207,96 207,96 212,72 NC 70 71
24、,44 OD 234,95 238,12 241,30 244,48 247,65 250,82 254,00 BD 226,61 e226,61 e227,80 227,80 232,57 232,57 237,33 1 REG 12,70 OD 39,69 42,86 BD 38,50 38,501 1/2 REG 12,70 OD 52,39 55,56 BD 50,80 50,80API SPECIFICATION 7-2, ADDENDUM 1 5 Table 3 Reference bevel diameters for Preferred connections when use
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