DIN SPEC 32534-4-2014 Numerical welding simulation - Execution and documentation - Part 4 Example of arc welding process simulation《焊接数值模拟 执行和文档 第4部分 弧焊工艺模拟实例》.pdf
《DIN SPEC 32534-4-2014 Numerical welding simulation - Execution and documentation - Part 4 Example of arc welding process simulation《焊接数值模拟 执行和文档 第4部分 弧焊工艺模拟实例》.pdf》由会员分享,可在线阅读,更多相关《DIN SPEC 32534-4-2014 Numerical welding simulation - Execution and documentation - Part 4 Example of arc welding process simulation《焊接数值模拟 执行和文档 第4部分 弧焊工艺模拟实例》.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、March 2014 Translation by DIN-Sprachendienst.English price group 11No part of this translation may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for DIN Specifications.ICS 25.160.01Th
2、ere are various procedures for developing a DIN SPEC: This document has been developed in accordance with the prestandard procedure.!%1AH“2143037www.din.deDDIN SPEC 32534-4Numerical welding simulation Execution and documentation Part 4: Example of arc welding process simulationEnglish translation of
3、 DIN SPEC 32534-4:2014-03Numerische Schweisimulation Durchfhrung und Dokumentation Teil 4: Beispiel Prozesssimulation LichtbogenschweienEnglische bersetzung von DIN SPEC 32534-4:2014-03Simulation numrique de soudage Excution et documentation Partie 4: Exemple de la simulation du procd de soudage lar
4、cTraduction anglaise de DIN SPEC 32534-4:2014-03SupersedesDIN SPEC 32534-4:2013-09www.beuth.deIn case of doubt, the German-language original shall be considered authoritative.Document comprises 16 pages04.14 DIN SPEC 32534-4:2014-03 2 A comma is used as the decimal marker. Contents Page Foreword . 3
5、 1 Scope . 4 2 Normative references . 4 3 Application notes 4 1. Simulation object 6 2. Simulation goals . 7 3. Physical model 7 4. Mathematical model as solution method . 8 5. Implementation . 10 7. Assuring the quality of the simulation results 14 Bibliography . 16 DIN SPEC 32534-4:2014-03 3 Forew
6、ord A DIN SPEC according to the prestandard procedure is a document which cannot yet be given full standard status, either because certain reservations exist as to its content, or because it has been developed according to a procedure deviating from that for a full standard. No draft of this DIN SPE
7、C has been published. This document has been prepared by Working Committee NA 092-00-29 AA Schweisimulation (DVS AG I 2.1) of the Normenausschuss Schweien und verwandte Verfahren (NAS) (Welding and Allied Processes Standards Committee). Further parts are listed in DIN SPEC 32534-1. Attention is draw
8、n to the possibility that some elements of this document may be the subject of patent rights DIN and/or DKE shall not be held responsible for identifying any or all such patent rights. Amendments The following amendments have been made to DIN SPEC 32534:2013-09: a) in Table 3, dimensions and boundar
9、y conditions have been updated; b) in Table 4, boundary conditions have been modified in accordance with Figure 3. Previous editions DIN SPEC 32534: 2013-09 DIN SPEC 32534-4:2014-03 4 1 Scope This DIN SPEC sets out guidelines to determine the effect the composition of the shielding gas mixture has o
10、n the characteristics of the TIG welding arc, and in particular on the arc pressure and the input of heat into the workpiece. Further examples of various documents drawn up on the basis of this template are provided in the respective parts of the DIN SPEC 32534 series. 2 Normative references The fol
11、lowing documents, in whole or in part, are normatively referenced in this document and are indispensable for its application. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. DIN SPEC 32534
12、-1:2011-03, Numerical welding simulation Execution and documentation Part 1: Overview; text in German and English DIN SPEC 32534-2:2011-09, Numerical welding simulation Execution and documentation Part 2: Documentation template; text in German and English 3 Application notes The example depicted ser
13、ves to document a possible procedure. Depending on the simulation object and goal of the simulation, alternative methods and nomenclature (file names, names of variables and so forth) are also possible and permitted. In particular, the software products used in the cited examples do not represent an
14、 exclusive recommendation in favour of the presented examples or other simulation objects. In view of the ongoing further development of simulation methods and tools it is often possible to use alternative products; it is the responsibility of the user to choose a specific software product. For exam
15、ple, depending on the objective it may be necessary to determine the heat input per unit length with greater precision. DIN SPEC 32534-4:2014-03 5 Company name: Example company Department: Computation Documentation of welding simulation to DIN SPEC 32534-1:2011-03 Processor: Joe Bloggs Version: 1.0:
16、 Date: 2014-02-01 Page 1 of 12 Cover sheet with brief descriptions Simulation object: TIG arc between a tungsten cathode and a cooled copper anode using different shielding gases and amperages. Objective of the simulation: Determine the effect the composition of the shielding gas mixture has on the
17、characteristics of the TIG welding arc, and in particular on the arc pressure and the input of heat into the workpiece. Physical and mathematical model: A magnetohydrodynamic (MHD) arc model is used in combination with a shear-stress-transport (SST) turbulence model, a net emission coefficient (NEC)
18、 model and an interface sheath region model to compute the arc. It is assumed that the plasma arc column is in local thermodynamic equilibrium (LTE). Solution method and software products used: Finite Volume Method (FVM) / ANSYS CFX 12 Summary of results Arc simulation is used to determine the depen
19、dence of arc characteristics on the composition of the shielding gas mixture (argon, helium, hydrogen) and draw conclusions regarding the effect on the arc at the workpiece surface (heat input and arc pressure). It was ascertained that helium has a significant influence on arc pressure and hydrogen
20、a significant influence on heat input. Summary of the measures taken to assure the quality of the simulation results Remarks / Explanatory statements Verified x Yes No Comparison of arc shape as well as the maximum values of plasma temperature and velocity Calibrated x Yes No Modification of interfa
21、ce constants for the sheath regions Validated x Yes No Comparison with space-resolved measurements of the arc pressure and with measurements of the total heat transfer Remarks (optional): Processor: Joe Bloggs, Berta Bloggs DIN SPEC 32534-4:2014-03 6 Company name: Example company Department: Computa
22、tion Documentation of welding simulation to DIN SPEC 32534-1:2011-03 Processor: Joe Bloggs Version: 1.0: Date: 2014-02-01 Page 2 of 12 Description of welding simulation 1. Simulation object see DIN SPEC 32534-1:2011-03, 4.1 A TIG arc is simulated based on the assumption of perfect shielding gas cove
23、rage. The model takes into account the fact that the shielding gas is fed through a nozzle. The workpiece is a non-consumable and water-cooled copper anode. Figure 1 depicts the simulation domain. Figure 1 Computational domain of the simulation (axisymmetric) Legend 1 Cathode 2 Shielding gas nozzle
24、3 Workpiece 4 Flow region As well as the flow region the model also takes account of the solid domains. The properties of the components are listed in Table 1. Table 1 Solid domains Component Material Geometrical data Cathode WLa20 Diameter: 3,2 mm; tip angle: 30; plateau diameter: 0,1 mm Anode Copp
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