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Research Progress of Bobbin Tool Friction Stir Welding of Aluminum Alloys:A Review 被引量:8
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作者 Guo-Qing Wang Yan-Hua Zhao Ying-Ying Tang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2020年第1期13-29,共17页
Bobbin tool friction stir welding(BT-FSW)is a variant of conventional friction stir welding(FSW).It can be used to weld complex curvature structures and closed sections by adding an extra shoulder instead of a rigid b... Bobbin tool friction stir welding(BT-FSW)is a variant of conventional friction stir welding(FSW).It can be used to weld complex curvature structures and closed sections by adding an extra shoulder instead of a rigid backing anvil,which expands the potential application of FSW in aerospace,railway,automotive and marine industries.BT-FSW has some signifi cant advantages over conventional FSW such as no root fl aws,full weld penetration,low stiff ness requirements for machines and fi xtures,balanced heat input,lower distortion and thus has broad prospects for development.At present,there have been numerous research reports on BT-FSW,but its widespread use is still restricted due to various factors such as tool life,process stability,control complexity and implementation cost.In this paper,the domestic and foreign research progress of BT-FSW is reviewed from four aspects of bobbin tool design and classifi cation,temperature fi eld and fl ow fi eld during welding,microstructure and mechanical properties of welded joints as well as industrial application,and then the possible research hotspots of BT-FSW in the future are pointed out.This paper mainly aims to help researchers have a comprehensive and in-depth understanding of BT-FSW. 展开更多
关键词 bobbin TOOL Temperature FIELD Flow FIELD Microstructure Mechanical properties Application
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Effects of postweld aging on the microstructure and properties of bobbin tool friction stir-welded 6082-T6 aluminum alloy 被引量:3
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作者 Yu-peng Li Da-qian Sun +1 位作者 Wen-biao Gong Liang Liu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2019年第7期849-857,共9页
Samples of 6082-T6 aluminum alloy were subjected to bobbin tool friction stir welding (BT-FSW), and the joints were treated by postweld natural aging (PWNA) and postweld artificial aging (PWAA). The microstructure, mi... Samples of 6082-T6 aluminum alloy were subjected to bobbin tool friction stir welding (BT-FSW), and the joints were treated by postweld natural aging (PWNA) and postweld artificial aging (PWAA). The microstructure, microhardness, and tensile properties of the aged and as-welded specimens were investigated. Transmission electron microscopy (TEM) observations revealed that a large number of Guinier–Preston (GP) zones precipitated in the form of a network on the stir zone (SZ) after PWNA for 60 d, and a large number of β'' phases precipitated in the matrix for after PWAA for 6 h. As the aging time increased, the microhardness of the SZ and the thermomechanically affected zone (TMAZ) increased significantly, and the hardness of the SZ after PWAA for 6 h was close to that of the base metal (BM). With increasing PWNA time, the strength and strain increased slightly. When the PWAA time increased, the strength clearly increased, with a maximum value of 279.9 MPa after 6 h, while the strain decreased. 展开更多
关键词 postweld AGING aluminum alloys bobbin TOOL FRICTION STIR welding microstructure properties
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Effects of traverse speed on weld formation,microstructure and mechanical properties of ZK60 Mg alloy joint by bobbin tool friction stir welding 被引量:5
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作者 Gaohui LI Li ZHOU +2 位作者 Haifeng ZHANG Sanfeng LUO Ning GUO 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2021年第12期238-250,共13页
ZK60B(Mg-6%Zn-0.6%Zr)alloy joints fabricated by bobbin tool friction stir welding(BTFSW)with various traverse speeds were investigated.The sound joint fabricated by the BTFSW was possible under the appropriate welding... ZK60B(Mg-6%Zn-0.6%Zr)alloy joints fabricated by bobbin tool friction stir welding(BTFSW)with various traverse speeds were investigated.The sound joint fabricated by the BTFSW was possible under the appropriate welding parameters.The severe plastic deformation during BTFSW resulted in dispersion and segregation of the Zr-rich particles within the stirred zone(SZ)followed by evolution of a bimodal grain structure with distributed bands of 0.8-1.7μm ultrafine grains and 4.1-7.1μm equiaxed grains.Micro-hardness of SZ is substantially reduced in contrast to that of parent metal(PM)in spite of the finer grain size owing to dissolution of Mg-Zn based precipitates having hardening effects on alpha-Mg matrix.With the decrease in traverse speed,randomization degree of the plasticized metal flow increases,which is evidenced by the randomized arc line pattern at the low traverse speed.Among all defect-free joints,the 200 mm/min joint exhibits the weakest isotropy of texture within SZ and the best tensile properties,which has reduced ultimate tensile strength and yield strength by 5.4% and by 22.2%,respectively,as compared to the PM.The randomized texture hinders the joint fracturing within SZ at low elongation.Therefore,a relatively high elongation of 10.8% was achieved,which corresponded to 72% of the PM value. 展开更多
关键词 bobbin tool Friction stir welding(FSW) Magnesium alloys Mechanical properties Microstructure evolution Traverse speed
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Comparative study on local and global mechanical properties of bobbin tool and conventional friction stir welded 7085-T7452 aluminum thick plate 被引量:13
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作者 Weifeng Xu Yuxuan Luo +1 位作者 Wei Zhang Mingwang Fu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第1期173-184,共12页
7085-T7452 plates with a thickness of 12 mm were welded by conventional single side and bobbin tool friction stir welding (SS-FSW and BB-FSW, respectively) at different welding parameters. The temperature distributi... 7085-T7452 plates with a thickness of 12 mm were welded by conventional single side and bobbin tool friction stir welding (SS-FSW and BB-FSW, respectively) at different welding parameters. The temperature distribution, microstructure evolution and mechanical properties of joints along the thickness direction were investigated, and digital image correlation (DIC) was utilized to evaluate quantitatively the deformation of different zones during tensile tests. The results indicated that heat-affected zone (HAZ), the local softening region, was responsible for the early plastic deformation and also the fracture location for SS-FSW samples, while a rapid fracture was observed in weld nugget zone (WNZ) before yield behavior for all BB-FSW specimens. The ultimate tensile strength (UTS) of SS-FSW joints presented the highest value of 410 MPa, 82% of the base material, at a rotational speed of 300 rpm and welding speed of 60 mm/min, much higher than that of BB-FSW joints, with a joint efficiency of only 47%. This should be attributed to the Lazy S defect produced by a larger extent of heat input during the BB-FSW process, The whole joint exhibited a much higher elongation than the slices. Scanning electron microscopic (SEM) analysis of the fracture morphologies showed that joints failed through ductile fracture for SS-FSW and brittle fracture for BB-FSW. 展开更多
关键词 Aluminum alloy Friction stir welding bobbin tool Temperature distribution Microstructure Mechanical properties
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Improving weld formability by a novel dual-rotation bobbin tool friction stir welding 被引量:12
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作者 F.F.Wang W.Y.Li +2 位作者 J.Shen Q.Wen J.F.dos Santos 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第1期135-139,共5页
A novel dual-rotation bobbin tool friction stir welding (DBT-FSW) was developed, in which the upper shoulder (US) and lower shoulder (LS) have different rotational speeds. This process was tried to weld 3.2 mm t... A novel dual-rotation bobbin tool friction stir welding (DBT-FSW) was developed, in which the upper shoulder (US) and lower shoulder (LS) have different rotational speeds. This process was tried to weld 3.2 mm thick alunlinum-lithium alloy sheets. The metallographic analysis and torque measurement were carried out to characterize the weld formabiliW. Experimental results show that compared to conven- tional bobbin tool friction stir welding, the DBT-FSW has an excellent process stability, and can produce the defect-free joints in a wider range of welding parameters. These can be attributed to the significant improvement of material flow caused by the formation of a staggered layer structure and the unbalanced force between the US and LS during the DBT-FSW process. 展开更多
关键词 bobbin tool friction stir welding Dual rotation Material flow Microstructure Microhardness
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Assessing the Bonding Interface Characteristics and Mechanical Properties of Bobbin Tool Friction Stir Welded Dissimilar Aluminum Alloy Joints 被引量:2
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作者 Quan Wen Wenya Li +3 位作者 Vivek Patel Luciano Bergmann Benjamin Klusemann Jorge F.dos Santos 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2021年第1期125-134,共10页
This study focuses on the bonding interface characteristics and mechanical properties of the bobbin tool friction stir welded dissimilar AA6056 and AA2219 aluminum alloy joints using diff erent welding speeds.Voids ar... This study focuses on the bonding interface characteristics and mechanical properties of the bobbin tool friction stir welded dissimilar AA6056 and AA2219 aluminum alloy joints using diff erent welding speeds.Voids arise solely in the stir zone at the AA2219 side.A distinct boundary with limited material mixing develops at the middle section of the bonding interface,while excellent material mixing with an irregularly jagged pattern forms at the top and bottom sections of the bonding interface.Increasing the welding speed,the material mixing is rarely changed at the middle section in comparison with the bottom section.Furthermore,a small diff erence between Guinier–Preston dissolution and Q phase precipitation leads to rare change of hardness in the heat aff ected zone(HAZ)at the AA6056 side.The increased hardness of the HAZ at the AA2219 side is attributed to avoidance of the dissolution ofθ’’phase precipitates.A maximum tensile strength of 181 MPa is obtained at 300 mm min-1.Fractures occur at the AA6056 side near the top and bottom surfaces and at the bonding interface in the middle section of the joints.The regions close to the top and bottom surfaces of the joints show a better ductility. 展开更多
关键词 bobbin tool friction stir welding Dissimilar aluminum alloy Bonding interface Precipitation MECHANICAL property
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涡流Bobbin探头性能评价参数试验 被引量:5
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作者 曹刚 郭韵 杨劲松 《无损检测》 2011年第12期69-72,共4页
为了评价和比较传热管涡流检查使用的Bobbin探头,通过对于影响检测结果的基本要素的分析,提出涡流Bobbin探头的性能评价参数。采用自制探头和进口探头进行了比较试验。通过对试验结果的分析,总结出涡流Bobbin探头的性能评价方法,并最终... 为了评价和比较传热管涡流检查使用的Bobbin探头,通过对于影响检测结果的基本要素的分析,提出涡流Bobbin探头的性能评价参数。采用自制探头和进口探头进行了比较试验。通过对试验结果的分析,总结出涡流Bobbin探头的性能评价方法,并最终给出了对材料为08X18H10T不锈钢、尺寸为φ16 mm×1.5 mm的蒸汽发生器传热管涡流检查的Bobbin探头(φ11.0 mm)的验收指标,为此类探头的性能测试和比较提供了参考。 展开更多
关键词 涡流检查 bobbin探头 性能评价
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Enhanced Fatigue Properties of 2219 Al Alloy Joints via Bobbin Tool Friction Stir Welding 被引量:1
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作者 Zhenlin Wang Beibei Wang +6 位作者 Zhen Zhang Peng Xue Yunfei Hao Yanhua Zhao Dingrui Ni Guoqing Wang Zongyi Ma 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2023年第4期586-596,共11页
In the present study,2219-T87 Al alloy plates,4 mm in thickness,were subjected to bobbin tool friction stir welding(BTFSW)under relatively high welding speeds of 200 and 400 mm/min,with the aim to analyze the effect o... In the present study,2219-T87 Al alloy plates,4 mm in thickness,were subjected to bobbin tool friction stir welding(BTFSW)under relatively high welding speeds of 200 and 400 mm/min,with the aim to analyze the effect of welding speeds on fatigue properties of the joints.The results showed that the tension–tension high-cycle fatigue performance of the BT-FSW joints at room temperature was significantly enhanced compared to that of other joints of 2xxx series Al alloys counterparts.Particularly at a high welding speed of 400 mm/min,the fatigue strength of the joint reached 78%of the base material together with a high tensile strength of 311 MPa.It was found that the joint line remnants had no effects on the fatigue properties of the BT-FSW joints due to the elimination of root flaws under the action of the lower shoulder.Most of the samples with the welding speed of 200 mm/min failed at the thermo-mechanical zone(TMAZ)during fatigue tests,attributable to the coarsened grains and precipitates,but all of the samples with high welding speed of 400 mm/min randomly failed at the nugget zone due to the improved hardness value in the TMAZ. 展开更多
关键词 2219 Al alloys bobbin tool friction stir welding Microstructure Fatigue properties
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Assessment of self-reacting bobbin tool friction stir welding for joining AZ31 magnesium alloy at inert gas environment 被引量:1
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作者 Prakash Kumar Sahu Nikhil P Vasudevan +1 位作者 Bipul Das Sukhomay Pal 《Journal of Magnesium and Alloys》 SCIE 2019年第4期661-671,共11页
Research work presented in this study has the primary target of exploring joint attributes of AZ31 magnesium alloys using friction stir welding process with a modified tool referred as bobbin tool.Effects of inert and... Research work presented in this study has the primary target of exploring joint attributes of AZ31 magnesium alloys using friction stir welding process with a modified tool referred as bobbin tool.Effects of inert and open atmosphere on mechanical properties are evaluated over a wide range of welding speed and tool rotation speed.Comparison of the research findings from the inert atmosphere bobbin tool were made with the traditional process of friction stir welding.The results depicted improved joint properties for inert atmosphere welding.Low and intermediate range of tool rotational speed is found to be favorable for bobbin tool friction stir welding without and with an inert medium,respectively.Controlled atmosphere due to inert medium leads to less oxidation of the AZ31 Mg alloy leading to superior joint properties.Microstructural investigations are also made with the aim of evaluating the impact of bobbin tool and inert medium on joint properties.In each aspect for joining of AZ31 Mg alloy,bobbin tool with inert medium is found to be an effective solution for joining with improved mechanical properties compared to without inert bobbin tool as well as conventional tool friction stir welding. 展开更多
关键词 Mg FSW bobbin tool Process parameters Mechanical properties FRACTOGRAPHY Microstructural characterization
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涡流Bobbin探头的性能对比试验
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作者 杨扬 李祥龙 王冬冬 《无损检测》 CAS 2022年第7期23-28,共6页
为了评价自制Bobbin探头的性能,通过与进口探头进行对比试验的方式,设计加工了系列样管,检测了探头阻抗、中心频率、有效扫查区域宽度、填充系数、深度系数、轴向长度系数、周向宽度系数、相位-伤深曲线、永磁饱和强度、信号对称性等性... 为了评价自制Bobbin探头的性能,通过与进口探头进行对比试验的方式,设计加工了系列样管,检测了探头阻抗、中心频率、有效扫查区域宽度、填充系数、深度系数、轴向长度系数、周向宽度系数、相位-伤深曲线、永磁饱和强度、信号对称性等性能指标。对比结果表明,自制探头与进口探头的性能相当。 展开更多
关键词 bobbin探头 对比试验 性能评价
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蒸汽发生器传热管-抗振条间隙的涡流测量方法
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作者 潘建浩 黄宗微 +1 位作者 徐玉颖 杨扬 《无损检测》 2025年第1期9-13,共5页
为测量蒸汽发生器中传热管与抗振条的间隙距离,采用涡流检测技术对其进行测量,以得到传热管与抗振条之间的距离和信号幅值的关系,并得到使用Bobbin探头测量传热管上抗振条间隙(传热管上单侧有抗振条)时的推荐排数范围。将得到的关系曲... 为测量蒸汽发生器中传热管与抗振条的间隙距离,采用涡流检测技术对其进行测量,以得到传热管与抗振条之间的距离和信号幅值的关系,并得到使用Bobbin探头测量传热管上抗振条间隙(传热管上单侧有抗振条)时的推荐排数范围。将得到的关系曲线与推荐排数范围进行实际数据对比,证明了该方法在现场工作的实用性。 展开更多
关键词 间隙测量 涡流检测 bobbin探头 对比试验
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基于深度学习的纱管位姿估计方法及抓取实验
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作者 王青 姜越夫 +2 位作者 赵恬恬 赵世航 刘甲怡 《纺织学报》 北大核心 2025年第7期217-226,共10页
为实现纺织行业中络筒和针织工艺中的智能化换管操作与多模态特征的高效融合,通过异构网络设计,使用Swin Transformer网络提取纱管颜色特征信息,利用KPConv网络提取纱管点云的几何特征信息;为减少离群点特征造成的干扰,设计了一种局部... 为实现纺织行业中络筒和针织工艺中的智能化换管操作与多模态特征的高效融合,通过异构网络设计,使用Swin Transformer网络提取纱管颜色特征信息,利用KPConv网络提取纱管点云的几何特征信息;为减少离群点特征造成的干扰,设计了一种局部逐像素特征对齐与融合策略;考虑到网络训练需要大量数据,且复杂应用环境中可能存在光照变化和纱管颜色多样等挑战,在数据集制作阶段生成真实与合成2类数据集,并在网络训练过程中引入在线数据增强技术,以提升数据集的复杂性和多样性;最后,以制作的数据集为对象,进行网络训练和测试,并在抓取系统中进行了纱管的抓取实验,验证了本文改进算法的有效性。结果表明:所提出的网络模型对纱管的识别准确率达98.7%,每帧图片的位姿估计平均响应时间范围为0.11~0.14 s。同时,基于该模型构建的抓取系统实现了96.8%的纱管抓取成功率,抓取任务的平均响应时间集中在2.07~2.21 s之间。研究证明,该方法在纱管位姿估计和抓取任务中具有较高的精度和稳定性,可为纺织行业智能化设计与应用提供借鉴。 展开更多
关键词 深度学习 位姿估计 纱管抓取 颜色特征提取 几何特征提取 智能换管
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蒸汽发生器传热管抗振条下插情况检测方法研究
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作者 余俊 《电力设备管理》 2025年第20期190-192,共3页
本文实验通过对各种不同形态抗振条涡流信号进行分析研究,对国核示范机组蒸汽发生器抗振条下插情况进行判定,通过对Bobbin探头信号的分析来判断抗振条下插深度是否到位。当Bobbin探头信号无法准确判断抗振条是否下插到位时,使用MRPC探... 本文实验通过对各种不同形态抗振条涡流信号进行分析研究,对国核示范机组蒸汽发生器抗振条下插情况进行判定,通过对Bobbin探头信号的分析来判断抗振条下插深度是否到位。当Bobbin探头信号无法准确判断抗振条是否下插到位时,使用MRPC探头测量抗振条与传热管之间的弧长,并与理论允许范围进行比对,最终实现对抗振条下插位置是否到位的判定。 展开更多
关键词 抗振条 涡流 bobbin探头 MRPC探头
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基于数字孪生技术的机械臂纱筒更换仿真系统 被引量:1
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作者 张金旭 张周强 +2 位作者 陈芙蓉 王康旭 王林 《轻工机械》 2025年第4期10-18,26,共10页
为实现纱筒更换过程的信息化、数字化,课题组提出了一种基于数字孪生技术的机械臂纱筒更换仿真系统。通过集成正逆运动学建模、Petri网络逻辑建模、通信服务器软件平台和虚拟仿真平台,实现了机械臂在物理空间与虚拟空间的同步真实映射;... 为实现纱筒更换过程的信息化、数字化,课题组提出了一种基于数字孪生技术的机械臂纱筒更换仿真系统。通过集成正逆运动学建模、Petri网络逻辑建模、通信服务器软件平台和虚拟仿真平台,实现了机械臂在物理空间与虚拟空间的同步真实映射;进行了纱筒更换机械臂的虚拟仿真作业规划实验、数字孪生通信延迟的测量实验及“以虚控实”的实时同步数据监测实验。结果表明:虚拟仿真作业与实际坐标在X,Y和Z方向上的绝对值误差均不超过1 mm,在720个数据样本中测得的通信延迟平均值为57.50±13.45 ms;在虚实同步实验中,虚拟机械臂与真实机械臂之间的关节角度最大绝对误差为0.30°,最小绝对误差为0.04°,角度误差为-0.29°~0.30°。这表明该系统在虚拟仿真作业中具有高精确性、低通信延迟以及同步监测实验的高精度,从而满足了纱筒更换的精确需求。 展开更多
关键词 纱筒 机械臂 数字孪生 虚拟仿真 通信延迟 实时同步
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基于机器视觉的纱筒智能更换方法
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作者 陈芙蓉 张周强 +1 位作者 李成 崔芳斌 《现代纺织技术》 北大核心 2025年第3期33-41,共9页
为实现纤维纱筒的智能更换,以碳纤维纱筒为例提出了一种基于机器视觉检测和机械臂协同操作的自动换筒方法。首先,利用工业相机采集纱筒图像,经过预处理后,结合优化的霍夫圆检测算法,精确定位纱筒的位置。其次,通过多层感知器改进手眼标... 为实现纤维纱筒的智能更换,以碳纤维纱筒为例提出了一种基于机器视觉检测和机械臂协同操作的自动换筒方法。首先,利用工业相机采集纱筒图像,经过预处理后,结合优化的霍夫圆检测算法,精确定位纱筒的位置。其次,通过多层感知器改进手眼标定算法,准确获取相机与机械臂之间的转换关系。最后,借助机械臂完成纤维纱筒的更换操作。结果显示:改进的霍夫圆检测算法能够更准确地定位纱筒位置;与随机森林和K近邻算法相比,多层感知器在X/Y/Z三轴上表现出最佳的精确度,均方差误差控制在1.77 mm^(2)以内。该方法在机器视觉与机械臂协同作业中所展示的精确性和有效性,可为智能更换系统的实际应用提供重要的技术支持。 展开更多
关键词 机器视觉 多层感知器 霍夫圆检测 自动换筒 手眼标定
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细络联管纱在线无损毛羽检测系统开发
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作者 杨允杰 徐绍杰 +2 位作者 刘德祥 叶崇 王静安 《棉纺织技术》 2025年第3期15-18,共4页
针对细络联上管纱毛羽检测仍采取人工抽检的形式,存在检测效率低、检测成本高、抽检误差难以避免的问题,设计了一种基于图像处理技术的细络联管纱在线无损毛羽检测系统。该系统由基于机器视觉的在线管纱毛羽图像采集模块和采用Hessian... 针对细络联上管纱毛羽检测仍采取人工抽检的形式,存在检测效率低、检测成本高、抽检误差难以避免的问题,设计了一种基于图像处理技术的细络联管纱在线无损毛羽检测系统。该系统由基于机器视觉的在线管纱毛羽图像采集模块和采用Hessian矩阵滤波处理算法与多尺度管纱表面毛羽评价指标Hc的图像处理模块组成,可嵌入细络联运输轨道进行在线检测,实现了管纱毛羽的普检,提高了检测效率,避免了人力消耗与产品浪费;同时能够筛选异常毛羽管纱,通过异常管纱信息追溯细纱机异常锭位。经试验验证,系统检测结果与USTER毛羽仪检测结果具有一定相关性。认为:系统能够有效检测出管纱的毛羽水平。 展开更多
关键词 细络联 管纱 毛羽 图像算法 无损检测
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涤纶筒子纱染色层差及白粉问题解决方案
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作者 周伟 金泽 +2 位作者 余培泽 金鲜花 吴伟泽 《印染助剂》 2025年第8期52-55,共4页
针对涤纶筒子纱染色易出现层差及低聚物“白粉”粘附问题,研究了助剂对分散染料及涤纶低聚物的作用效果。结果表明:TF-288E可实现染色的真实缓染性,含油体系中与去油剂搭配稳定性好,配合TF-115KA使用移染性、分散性良好;TF-288E+TF-115K... 针对涤纶筒子纱染色易出现层差及低聚物“白粉”粘附问题,研究了助剂对分散染料及涤纶低聚物的作用效果。结果表明:TF-288E可实现染色的真实缓染性,含油体系中与去油剂搭配稳定性好,配合TF-115KA使用移染性、分散性良好;TF-288E+TF-115KA+TF-2501对微观、宏观低聚物的防沾分散效果好。 展开更多
关键词 涤纶筒子纱 层差 低聚物 缓染性 防沾分散效果
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环锭细纱机集体落纱系统几何量化分析
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作者 韦金平 李毅 《纺织器材》 2025年第1期11-14,72,共5页
针对环锭细纱机集体落纱系统应用故障多、维护难度大等问题,介绍人字臂形集落系统结构特点、动作原理,详细分析其摇杆与拉杆铰接点升降与气缸伸缩量间的几何量关系,以及拉杆空间运动量和摆杆摆角间的几何关系,总结常见集落系统故障产生... 针对环锭细纱机集体落纱系统应用故障多、维护难度大等问题,介绍人字臂形集落系统结构特点、动作原理,详细分析其摇杆与拉杆铰接点升降与气缸伸缩量间的几何量关系,以及拉杆空间运动量和摆杆摆角间的几何关系,总结常见集落系统故障产生原因和解决办法。指出:集落系统发展应紧跟环锭细纱机发展,分析集落系统各部结构的几何原理并进行量化计算,可为其研发和改造提供理论依据;集落系统的气架升降运动采用人字臂升降方案,而凸盘传输和抓管器摆动(平动)可根据实际需求采取合理方案,以兼顾经济性、稳定性和可靠性。 展开更多
关键词 环锭细纱机 集体落纱 纱管 人字臂 气架 升降 摆动 凸盘传输 抓管器
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一种细纱机用理落管技术方案设想
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作者 刘文敬 类兴茹 《纺织器材》 2025年第2期20-22,共3页
为了提高细纱机集体落纱时的理落管速度及效率,基于客户需求和理落管技术现状,设想一种新型理落管技术方案。通过技术路线规划、方案设计、主要机构设计、系统构成设计以及理论计算,证实该方案切实可行。指出:采用预摆管技术及空管箱分... 为了提高细纱机集体落纱时的理落管速度及效率,基于客户需求和理落管技术现状,设想一种新型理落管技术方案。通过技术路线规划、方案设计、主要机构设计、系统构成设计以及理论计算,证实该方案切实可行。指出:采用预摆管技术及空管箱分离技术设计的理落管技术方案,理管效率和落管效率均可控,且系统构成简单、成本增加较少,能满足纺粗号纱产品及细纱机超长车集落提速的需求。 展开更多
关键词 细纱机 粗号纱 长车集落 理管 落管 纱管 预摆管 管箱
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倍捻机锭子气圈流场参数化仿真及结构优化设计
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作者 徐魏魏 林敏 《纺织器材》 2025年第4期1-6,共6页
为了实现倍捻机的节能降耗,以倍捻机锭子气圈为研究对象,运用计算流体动力学技术,建立三维气圈流场仿真模型并构建参数化仿真分析框架,系统研究结构参数与工况参数对倍捻机气圈流场的影响规律。通过对气圈高度、气圈直径、供纱筒长径比... 为了实现倍捻机的节能降耗,以倍捻机锭子气圈为研究对象,运用计算流体动力学技术,建立三维气圈流场仿真模型并构建参数化仿真分析框架,系统研究结构参数与工况参数对倍捻机气圈流场的影响规律。通过对气圈高度、气圈直径、供纱筒长径比及锭子转速等因素的变化进行仿真分析,探讨其对气流速度、压力分布及能耗的影响规律,并提出降低锭子气圈阻力损耗的最优结构参数组合。指出:导纱钩高度、储纱盘高度、供纱筒的长径比以及锭子转速是影响气圈能耗的关键因素;缩短导纱钩与供纱筒的垂直距离以减少空气流场阻力,在储纱盘与供纱筒间增设辅助装置以优化纱线运动路径,控制供纱筒长径比约为1.4,在保证产能的前提下合理控制锭子转速,有利于提升气圈稳定性,降低倍捻机锭子气圈阻力和能耗。 展开更多
关键词 倍捻机 锭子 气圈 气流速度 导纱钩 储纱盘 供纱筒 能耗
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