<dfn id="dfhfh"><b id="dfhfh"><video id="dfhfh"></video></b></dfn>
<p id="dfhfh"><mark id="dfhfh"><progress id="dfhfh"></progress></mark></p>

    <pre id="dfhfh"><mark id="dfhfh"><thead id="dfhfh"></thead></mark></pre>

            <del id="dfhfh"></del>

            <noframes id="dfhfh"><ruby id="dfhfh"><mark id="dfhfh"></mark></ruby>

                  <pre id="dfhfh"></pre>
                  技術文章 / article 您的位置:網站首頁 > 技術文章 > 小而輕的便攜式X射線殘余應力分析儀各域重點文章匯總

                  小而輕的便攜式X射線殘余應力分析儀各域重點文章匯總

                  發布時間: 2021-12-09  點擊次數: 730次

                  X射線衍射法是表面/次表面殘余應力測定技術中為數不多的無損檢測法之,是根據材料或制品晶面間距的變化測定應力的,至今仍然是研究較為廣泛、深入、成熟的殘余應力分析和檢測方法之,被廣泛的應用于科學研究和工業生產的各域。2012年日本Pulstec公司開發出基于全二維探測器技術的新代X射線殘余應力分析儀——μ-X360n,將用X射線研究殘余應力的測量速度和精度推到了個全新的高度,設備推出不久便得到業界的廣泛好評。由于其技術進、測試數據可重復性高、使用便攜等勢,經推出便備受業界青睞!

                   

                  圓形全二維面探測器個突出的勢就是X射線單角度次入射到樣品即可得到個完整的德拜環,次性獲得500個數據點進行高精度數據計算,因而不再需要測角儀,從而擺脫了測角儀對不規則形狀樣品測試局限,使斜面、弧面、球面等不規則形狀樣品的殘余應力測量成為了可能。除常規樣品外,基于全二維面探技術的便攜式X射線殘余應力分析儀可以測試圓棒、軸承、底盤、螺絲、滾珠絲杠/桿、消聲器、連桿、排氣管、吊掛構件、角焊區、齒輪齒牙、車輪、管道、油罐、各種壓力容器、橋梁等各種工件和構件的殘余應力,其中以焊接殘余應力檢測/焊縫殘余應力檢測、管道殘余應力(尤其鋼管殘余應力)檢測、切削殘余應力檢測、油罐殘余應力檢測和齒輪殘余應力檢測在工業和科研中應用為廣泛。

                   

                  2018年,日本Pulstec公司成功克服技術難點,發布了新的產品型號:μ-X360s,將全二維面探測器技術的產品設計和功能完善再次升!目前,PULSTEC已經在全球17個國家安裝了超過450臺便攜式X射線殘余應力分析儀,被用于諸多大學和研究實驗室中,包括日本、美國、英國、德國、中國和新加坡,以及許多工程制造企業,別是諸如汽車、機械、航空航天域等等各個行業,眾多客戶也進行了很多有意義的研究工作并發表了大量文章,近期我們對這些文章進行收集并按照應用及不同材料歸類整理,希望可以幫助廣大科研工作者更好了解PULSTEC μ-X360系列殘余應力分析儀的強大能力及廣泛應用。

                   

                  、焊接

                  ●Increase of bending fatigue resistance for tungsten inert gas welded SS400 steel plates using friction stir processing, Materials and Design 61 (2014) 275-280

                  ●Practical examination of the welding residual stress in view of low-carbon steel welds, J MATER RES TECHNOL. 2020; 9(3): 2717–2726

                  ●Investigation of the Residual Stress in a Multi-Pass T-Welded Joint Using Low Transformation Temperature Welding Wire, Materials 2021, 14, 325.

                  ●Measurement of Residual Stress in Arc Welded Lap Joints by cosα X-ray Diffraction Method, Journal of Materials Processing Technology, Volume 243, 2017, Pages 387-394

                  ●Prediction of residual stresses induced by low transformation temperature weld wires and its validation using the contour method, Marine Structures 44 (2015) 232-253

                  ●焊接工藝對SUS301L不銹鋼殘余應力的影響,Electric Welding Machine Vol. 48 No. 3

                  ●不銹鋼冷金屬過渡焊角接接頭應力及變形規律研究,Electric Welding Machine Vol. 47 No. 12

                   

                  二、鋁及鋁合金

                  ●Influences of residual stresses and initial distortion on spring back prediction of 7B04-T651 aluminium plates in creep-age forming, International Journal of Mechanical Sciences 103(2015) 115–126

                  ●The influence of alloy composition on residual stresses in heat treated aluminium alloys, Materials Characterization 105 (2015) 47–55

                  ●A parametric study of laser spot size and coverage on the laser shock peening induced residual stress in thin aluminium samples, The Journal of Engineering Volume 2015 Issue13

                  ●Effect of cutting parameters on the residual stress distribution generated by pocket milling of 2219 aluminum alloy, Advances in Mechanical Engineering 2018 Vol. 10(12) 1–15

                  ●Intermethod comparison and evaluation of near surface residual stress in aluminum parts subject to various milling parameters, 2019 Annual Conference on Experimental and Applied Mechanics Vol. 6

                  ●Depth Profile of Residual Stresses to Analyze Textures in Extruded A6XXX, 2021 IOP Conf. Ser.: Mater. Sci. Eng. 1121 012042

                  ●Research on Corrosion Fatigue Crack Propagation Behavior of Welded Joints of A7N01P-T4 Aluminum Alloys, Journal of Corrosion Science and Engineering. JCSE Volume 19, Paper 40

                   

                  三、鈦及鈦合金

                  ●Effect of coolant supplied through grinding wheel on residual stress of grinding surface, Advanced Materials Research Vol. 1017 (2014) pp 33-37

                  ●Impacts of Machining and Heat Treating Practices on Residual Stresses in Alpha-Beta Titanium Alloys, Journal of Materials Engineering and Performance volume 29, pages3626–3637 (2020)

                  ●Distributional analysis of residual stresses with the Ti-6Al-4V internal trapezoidal thread torsional vibration extrusion, The International Journal of Advanced Manufacturing Technology (2019) 105:4289–4307

                   

                  四、鎳基合金

                  ●X-ray Residual Stress Analysis of Nickel Base Alloys, Advanced Materials Research Vol. 922 (2014) pp 274-279

                  ●Experimental Investigation of Principal Residual Stress and Fatigue Performance for Turned Nickel-Based Superalloy Inconel 718, Materials 2018, 11, 879

                  ●Effects of Cutting Edge Microgeometry on Residual Stress in Orthogonal Cutting of Inconel 718 by FEM, Materials 2018, 11, 1015

                  ●基于二維面探的高溫合金GH4169殘余應力研究,表面技術. 2016,45(04)

                   

                  五、鎢合金

                  ●Nanostructured laminar tungsten alloy with improved ductility by surface mechanical attrition treatment, Scientific Reports | 7: 1351 |

                   

                  六、鎂合金

                  ●The relationships between residual stress relaxation and texture development in AZ31 Mg alloys via the vibratory stress relief technique, Materials Characterization 99 (2015) 248–253

                   

                  七、鋼鐵材料

                  ●Residual Stresses and Dimensional Changes Related to the Lattice Parameter Changes of Heat-Treated JIS SKD 11 Tool Steels, Materials Transactions, Vol. 55, No. 5 (2014) pp. 831 to 837

                  ●Effects of Pulsed Magnetic Fields of Different Intensities on Dislocation Density, Residual Stress, and Hardness of Cr4Mo4V Steel, Crystals 2020, 10, 115

                  ●Effect of Lubrication and Forging Load on Surface Roughness, Residual Stress, and Deformation of Cold Forging Tools, Metals 2019, 9, 783

                  ●Effects of fine particle peening on fatigue strength of a TRIP-aided martensitic steel, International Journal of Fatigue, Volume 100, Part 1, 2017, Pages 206-214

                  ●Very High-Cycle Fatigue Properties and Residual Stress Relaxation of Micro-shot-Peened EA4T Axle Steel, J. of Materi Eng and Perform 28, 6407–6417 (2019)

                  ●X-ray Residual Stress Analysis of Stainless Steel Using cosα Method, Advanced Materials Research Vol. 922 (2014) pp 167-172

                  ●X-ray Stress Measurement of Ferritic Steel Using Fourier Analysis of Debye-Scherrer Ring, Journal of the Society of Materials Science, Japan, Vol. 64, No. 7, pp. 567-572

                   

                  八、陶瓷材料

                  ●基于快速面探測方法的碳化硅表面殘余應力測量, Diamond & Abrasives Engineering No. 6, Vol. 38, Serial 228

                   

                  九、高熵合金

                  ●Modeling and optimization for laser cladding via multi-objective quantum-behaved particle swarm optimization algorithm, Surface and Coatings Technology, Volume 381, 2020, 125-129 

                   

                  十、實際工程應用

                  ●Micro-Magnetic and Microstructural Characterization of Wear Progress on Case-Hardened 16MnCr5 Gear Wheels, Materials 2018, 11, 2290

                  ●Integrated Forming and Surface Engineering of Disc Springs by Inducing Residual Stresses by Incremental Sheet Forming, Materials 2019, 12, 1646

                  ●Determination of residual stresses for helical compression spring through Debye-Scherrer ring method, Materials Today: Proceedings, Volume 25, Part 4, 2020, Pages 654-658

                  ●Study on the Influence of Metallic Powder in Near-Dry Electric Discharge Machining, Journal of Mechanical Engineering 66(2020)4, 243-253

                  ●Shear cutting induced residual stresses in involute gears and resulting tooth root bending strength of a fineblanked gear, Archive of Applied Mechanics volume 91, pages 3679–3692 (2021)

                  ●Damage Evaluation of Carburizing Gear for Remanufacturing, J. Japan Inst. Met. Mater. Vol. 85, No. 5 (2021), pp. 198–206

                  ●在役球形儲罐殘余應力檢測技術的應用及展望,種設備安全技術 2019, (03)

                   

                   

                  編者:QUANTUM DESIGN中國公司于2015年將PULSTEC公司小而輕的便攜式X射線殘余應力分析儀引進中國,目前已在國內銷售安裝多臺,客戶遍布高校、科研院所及各工業域。

                   

                  關注Quantum Design China微信公眾號,在對話框中輸入“殘余應力"了解更多信息。


                  • 聯系電話電話010-85120887
                  • 傳真傳真010-85120276
                  • 郵箱郵箱info@qd-china.com
                  • 地址公司地址北京市朝陽區酒仙橋路10號 恒通商務園B22座 501 室
                  © 2024 版權所有:QUANTUM量子科學儀器貿易(北京)有限公司   備案號:京ICP備05075508號-3   sitemap.xml   管理登陸   技術支持:化工儀器網       
                  • 公眾號二維碼




                  日产无码久久久久久精品_艳妇乳肉豪妇荡乳av无码福利_亚洲国产精品无码久久九九大片_国产精品尹人在线观看
                  <dfn id="dfhfh"><b id="dfhfh"><video id="dfhfh"></video></b></dfn>
                  <p id="dfhfh"><mark id="dfhfh"><progress id="dfhfh"></progress></mark></p>

                    <pre id="dfhfh"><mark id="dfhfh"><thead id="dfhfh"></thead></mark></pre>

                            <del id="dfhfh"></del>

                            <noframes id="dfhfh"><ruby id="dfhfh"><mark id="dfhfh"></mark></ruby>

                                  <pre id="dfhfh"></pre>