• <tr id="yyy80"></tr>
  • <sup id="yyy80"></sup>
  • <tfoot id="yyy80"><noscript id="yyy80"></noscript></tfoot>
  • 99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

    Comparison of the Vortex and Ring Spun Cotton Yarns and Their Knitted Fabric Properties

    2013-12-28 07:53:22PEIZeguang

    PEI Ze-guang()()

    1 College of Mechanical Engineering,Donghua Univeristy,Shanghai 201620,China

    2 Engineering Research Center of Advanced Textile Machinery,Ministry of Education,Donghua University,Shanghai 201620,China

    Introduction

    Vortex spinning,which is regarded as an innovative air-jet spinning technology,incorporates high-speed swirling airflow to insert twist into the fiber strand[1].With the advantages of the highly increased productivity,shortened process,and decreased number of operators,vortex spinning has become one of the most promising technological innovations in the yarn spinning industry[2-6].In vortex spinning,yarn with a core of parallel fibers held together by wrapper fibers is formed[7].Although the conventional ring spinning has exposed some disadvantages such as lower production speed and longer process compared with some unconventional spinning technologies,it has the widest spinnable count range and is currently the most widely used spinning technique[8].Advantages of vortex spinning and its products have challenged the leading position of the conventional ring spinning.Therefore,there is a great necessity to compare the vortex and ring spun yarns and their fabric properties to evaluate the vortex and ring spinning technologies and their products.Soeetal.compared the structures of vortex spun cotton yarns with ring yarns by observation with an optical microscope and explained the differences in measured yarn properties such as bulkiness,compression properties,and bending properties[9].Becerenetal.made an experimental comparison on the properties of the combed ring,compact and vortex yarns and their knitted fabric performances including bursting strength,abrasion resistance,and pilling[10].Erdumluetal.also compared the properties of fabrics made from combed ring and vortex spun yarns including bursting strength,dimensional stability,and pilling[11].In this paper,carded vortex and ring spun cotton yarn properties,including tensile properties,evenness,and hairiness,are investigated.Further,the properties of the knitted fabrics with the same structure produced using the carded vortex and ring spun yarns,including air permeability,drapeability,bursting strength,pilling and abrasion resistance,

    are tested and compared.The carded yarns are spun with different process parameters from previous researchers to enrich the studies on the vortex fabric properties.In addition,comparison of some of the ring and vortex fabric properties,such as air permeability and drapeability has not been reported previously.The goal of this work is to provide a reference to the application of vortex yarns and fabrics and evaluate the latent capability of the vortex spinning technology.

    1 Experimental

    Cotton fibers with an UHML value of 29.32 mm and micronair value of 3.96 were adopted to spin 100% cotton yarns of Ne30 on the vortex and ring spinning system,respectively.The cotton fibers were subjected to three passages of drawing after being opened and carded.Vortex yarns were spun on the latest type of No.861 Murata vortex spinning frame taking the third passage sliver.Rovings made from the sliver were fed to a Rieter G33 ring frame to produce the ring yarns.The spinning conditions used on the vortex and ring system are given in Table 1.Yarn tensile properties were tested by the Uster Tensorapid 3 yarn strength tester (Uster Technologies AG,Switzerland).The gauge length was 500 mm and the testing speed was 500 mm/min.And 100 samples were tested for each type of the yarns.Yarn evenness was tested by the Uster tester.And 10 samples were tested for each type of the yarns and the testing speed was 400 m/min.The Uster tester was also used to test the yarn hairiness.The 10 samples were tested for each type of the yarns.The segment length was 10 m and the testing speed was 30 m/min.Plain-knit fabrics from the vortex and ring spun yarns were knitted by a sample circular knitting machine.The walewise density of the knitted fabric is 74 stitches/(5 cm) and the coursewise density is 52 stitches/(5 cm).Air permeability was tested by the YG461E digital air permeability tester (Ningbo Textiles Instrument Factory,China) according to ASTM D 737 standard.Fabric drapeability was tested by the XDP-1 drapeability tester (Shanghai New Fiber Instrument Co.,Ltd.,China) based on the testing standard FZ/T01045 of China.Bursting strengths of the fabrics were tested by the YG-031 bursting strength tester (Laizhou Electronic Instrument Co.,Ltd.) according to ASTM D3787 standard.Pilling test was conducted by the YG502 pilling tester (Nantong Hongda Experiment Instruments Co.,Ltd.,China) according to the testing standard GB/T4802.1 of China.Abrasion resistance was tested by the Y522 round disc fabric abrasion resistance tester (Changzhou No.2 Textile Machinery Factory,China) according to ASTM D3884 standard.All the yarn and fabric samples were conditioned under standard conditions ((20 ± 2)℃,(65 ± 2)% relative humidity) for 24 h before testing.

    Table 1 The spinning conditions used to produce the vortex and ring yarns

    2 Results and Discussion

    2.1 Yarn tensile properties

    Table 2 shows the tensile properties of the vortex and ring yarns.Surprisingly,the tenacity of the ring yarn is slightly lower than that of the vortex spun yarn,which is contradictory to the expectation that the tenacity of the vortex yarn is lower than that of the ring yarn.This may be due to the improper process parameters chosen for spinning the ring yarn.This result also indicates that under some conditions the tenacity of the vortex yarn can be comparable to the ring yarn.As for the elongation,it can be seen from Table 2 that the vortex spun yarn has a larger elongation than the ring yarn.In the ring yarn,fibers are helically bound together by strong transverse forces in between with obvious fiber migration.The fibers are difficult to slip between each other as the yarn breaks.This causes a relatively small elongation of the yarn.Consequently,the vortex yarn has a wrapped structure of a core of twistless,parallel fibers held together by surface wrapper fibers that helically wind onto the yarn core.As a result,fiber slippage between the core and wrapper fibers is expected to take place as the yarn breaks.This contributes to the increase of the yarn elongation.The work of rupture of a yarn is the work done to the yarn by the external force during the process of breaking the yarn.The work of rupture value of a yarn reflects the energy possessed by the yarn to resist the damage caused by the external forces.Our results show that the vortex yarn has larger work of rupture than the ring yarn,which denotes the vortex yarn is more capable of resisting the external damages.

    Table 2 Tensile properties of the vortex and ring yarns

    2.2 Yarn evenness and imperfection

    Table 3 shows the evenness and imperfection values of the vortex and ring spun yarns.The results reveal that the vortex yarn has better evenness than the ring yarn since in the vortex yarn,and the parallel core fibers are bound together by the wrapper fibers tightly and evenly.The fibers are well controlled in the resultant yarn and the yarn shows a regular appearance.As for the imperfection,the vortex yarn has more thin places,fewer thick places and neps compared with the ring yarn.During the vortex spinning process,most of the linters and impurities in the fibers are removed from the spinning nozzle by the airflows.This results in a reduced number of the neps in the vortex spun yarn.

    Table 3 Evenness and imperfection values of the vortex and ring spun yarns

    Note: the “m” is short for mass; U stands for the irregularity of the mass with a cut length of approximately 1 cm

    2.3 Yarn hairiness

    Table 4 shows the hairiness index values of the vortex and ring spun yarns.With the increase of the hairiness length,the hairiness values of the vortex and ring yarns both decrease.As can be seen,the vortex yarn has much less hairiness of all lengths than the ring yarn.Another distinctive point is that the vortex yarn has no hairiness longer than 3 mm.In the vortex yarn,the long fibers converge to the yarn core which is tightly held and fixed by the wrapper fibers in the outer layer.This unique yarn structure gives the vortex yarn the feature of having less hairiness.

    Table 4 Hairiness index values of the vortex and ring spun yarns

    2.4 Fabric air permeability

    Table 5 shows the properties of the fabrics made from the vortex and ring yarns.It can be seen that both the air permeability value and variation of the fabric made from the vortex yarns are higher than those of the fabric made from the ring yarns.The air permeability is evaluated by the flux of the air perpendicularly permeating the fabric in unit time.For the vortex fabric,the air can permeate the fabric from both the space between the adjacent yarns in the fabric and the space between the parallel core fibers in the yarn.While in the ring yarn,the fibers are tightly entangled and migrate in the radial direction of the yarn.As a result,the ring yarn has a more compact structure than the vortex yarn,which resists the permeation of air.This leads to a decreased value of air permeability for the ring fabric.

    Table 5 Properties of fabrics made from vortex and ring yarns

    2.5 Fabric drapeability

    The drapeability of a fabric is the degree of the fabric edge drooping from the deadweight when the fabric drapes into the three-dimensional shape.The drapeability of a fabric is evaluated by the drape coefficient defined as the ratio of the area of the projected shadow of the fabric to the original area of the fabric.A smaller drape coefficient value indicates better drapeability of the fabric.The two types of the fabrics are cut into round samples and hanged onto the pedestal of the drapemeter.The shadow of the fabric sample is projected on the background when a light perpendicularly irradiates the fabric and its area can be obtained by an optical scanner and calculated.Due to the unbalanced internal forces of the stitches of the knitted fabrics,the edges of the fabrics are crimped and the drapeability tests are difficult to perform.To avoid the influence of the fabric crimp,a simple flatting treatment was performed to the fabrics before testing.From Table 5 it can be seen that the drape coefficient of the ring fabric is smaller than the vortex fabric,which means the ring fabric has better drapeability than the vortex fabric.The fabric drapeability reflects the stiffness of a fabric.A stiffer fabric has lower drapeability.When a fabric drapes,both the bending and shear effects of the yarns in the fabric take place.Therefore,the bending property,and the slippage and rotation of the intersectional points of the yarns in the fabric have evident influence on the fabric drapeability.Since the two types of the fabrics are of the same structure,the intersectional points of the yarns in the vortex and ring fabrics have similar degrees of slippage and rotation.Therefore,the drapeability values of the vortex and ring fabrics are mainly influenced by the bending property and stiffness of the yarns.The vortex spun yarn is considered to be stiffer than the ring yarn.This leads to the lower drapeability of the vortex fabric.

    2.6 Fabric bursting properties

    Bursting is the destruction of a fabric when it is gradually compressed and destroyed by the concentrated load.Bursting strength and bursting elongation are important indicators for the mechanical properties of knitted fabrics.In the testing process,the fabric is subjected to forces in all the directions along the fabric.As can be seen from Table 5,the bursting strength,elongation,and work of rupture of the vortex fabric are all higher than those of the ring fabric.It is known that with the same fabric structure,higher breaking elongation of the yarn results in higher bursting elongation of the fabric.In this situation,the components of the tensions of the fabric in the direction of compression are higher.This leads to a higher bursting strength.According to the results of the yarn tensile properties,the vortex yarn has higher tenacity and elongation than the ring yarn.This must be the reason for the better bursting properties of the vortex fabric than the ring fabric.

    2.7 Fabric pilling

    Figures 1 and 2 illustrate the surfaces of the vortex and ring fabrics before and after the pilling test,respectively.It can be seen that the pilling resistance of the vortex fabric is much better than the ring fabric.The surface of the vortex fabric is only covered by a layer of unobvious hairiness.The pilling resistance can reach grade 4.In comparison,the whole surface of the ring fabric is covered by pills with different sizes and distribution densities.The pilling resistance is only of grade 1/2.The pilling of a fabric is resulted from the entanglement of the fibers on the fabric surface when the fabric is under friction.The fibers on the fabric surface can be the hairiness of the yarns making the fabric or the loose fibers pulled out from the yarns when experiencing friction.According to the yarn hairiness results,the vortex yarn has much less hairiness than the ring yarn.Besides,since the core fibers of the vortex spun yarn are tightly held by the wrapper fibers,the fibers are not prone to being pulled out.This leads to a smaller probability to pill for the vortex fabric.Comparatively,the ring yarn has more hairiness,especially the long hairiness.The fibers are not as tightly fixed in the yarn as those in the vortex yarn.Therefore,the fibers are prone to being pulled out and tend to tangle together.As a result,fabric pilling is more likely to occur in the ring fabric.

    (a) Before the pilling test (b) After the pilling test

    (a) Before the pilling test (b) After the pilling test

    2.8 Fabric abrasion resistance

    The weight loss of the ring fabric is lower than that of the vortex fabric after the abrasion resistance test,as shown in Table 5.This denotes that the ring fabric is more abrasion resistant than the vortex fabric.This conclusion could also be drawn by assessing the surface appearances of the fabric samples after abrasion.Figures 3 and 4 show the surface appearances of the vortex and ring fabrics after the same working rounds of the abrasion disc,respectively.The appearance of the ring fabric is better than the ring fabric sample after abrasion.Table 6 lists the number of holes on the vortex and ring fabrics.There are fewer holes on the ring fabric than the vortex fabric after the same working round of the abrasion disc.The core of the vortex yarn is considered to be composed of parallel fibers with fewer twists.After the wrapper fibers in the outer layers of the vortex yarns break during the abrasion,the core fibers are exposed to the abrasion and they are easier to break.Comparatively,the ring yarn has a structure with the fibers helically entangled and twisted.The abrasion resistance of the ring yarn is consequently more even.This may be the explanation for the better abrasion resistance of the ring fabric than the vortex fabric.

    (a) 100 rounds (b) 300 rounds

    (a) 100 rounds (b) 300 rounds

    Table 6 Number of holes on the surfaces of the vortex and ring fabrics during the abrasion resistance test

    3 Conclusions

    In this paper,the vortex and ring spun cotton yarn properties in terms of tensile properties,evenness and imperfections,and hairiness are compared.Further,the two types of yarns are made into plain-knit fabrics.The fabric properties in terms of air permeability,drapeability,bursting strength,pilling and abrasion resistance,are tested and compared.The results show that under some conditions the tenacity of the vortex yarn can be comparable with that of the ring yarn.The elongation and evenness of the vortex yarn are better than the ring yarn.The vortex yarn has much less hairiness than the ring yarn.The vortex fabric has better air permeability,bursting properties,and pilling resistance than the ring fabric,while the ring fabric shows better drapeability and abrasion resistance than the vortex fabric.The comparison results reveal that the vortex spinning is a promising technology with satisfactory product qualities.

    [1] Erdumlu N,Ozipek B,Oxenham W.The Structure and Properties of Carded Cotton Vortex Yarns [J].TextileResearchJournal,2012,82(7): 708-718.

    [2] Price C,Senter H,Foulk J,etal.Relationship of Fiber Properties to Vortex Yarn Quality via Partial Least Squares [J].JournalofEngineeredFibersandFabrics,2009,4(4): 37-46.

    [3] Li Q,Brady P R,Hurren C J,etal.The Dimensional and Mechanical Properties of Wool/Polyester Fabrics Made from Vortex and Ring-Spun Yarns [J].JournaloftheTextileInstitute,2008,99(6): 561-568.

    [4] Kilic G B,Sular V.Frictional Properties of Cotton-Tencel Yarns Spun in Different Spinning Systems [J].TextileResearchJournal,2012,82(8): 755-765.

    [5] Pei Z G,Hu B Y,Diao C Y,etal.Investigation on the Motion of Different Types of Fibers in the Vortex Spinning Nozzle [J].PolymerEngineeringandScience,2012,52(4): 856-867.

    [6] Erdumlu N,Ozipek B.Effect of the Draft Ratio on the Properties of Vortex Spun Yarn [J].Fibres&TextilesinEasternEurope,2010,18(3): 38-42.

    [7] Basal G,Oxenham W.Vortex Spun Yarnvs.Air-Jet Spun Yarn [J].AUTEXResearchJournal,2003,3(3): 96-101.

    [8] Lawrence C A.Fundamentals of Spun Yarn Technology [M].Boca Raton,Florida: CRC Press LLC,2003.

    [9] Soe A K,Takahashi M,Nakajima M,etal.Structure and Properties of MVS Yarns in Comparison with Ring Yarns and Open-End Rotor Spun Yarns [J].TextileResearchJournal,2004,74(9): 819-826.

    [10] Beceren Y,Nergis B U.Comparison of the Effects of Cotton Yarns Produced by New,Modified and Conventional Spinning Systems on Yarn and Knitted Fabric Performance [J].TextileResearchJournal,2008,78(4): 297-303.

    [11] Erdumlu N,Ozipek B,Oztuna A S,etal.Investigation of Vortex Spun Yarn Properties in Comparison with Conventional Ring and Open-End Rotor Spun Yarns [J].TextileResearchJournal,2009,79(7): 585-595.

    老女人水多毛片| 丁香六月欧美| 午夜福利视频1000在线观看| 一个人免费在线观看电影| 午夜亚洲福利在线播放| 中文字幕熟女人妻在线| 国产精品女同一区二区软件 | 夜夜看夜夜爽夜夜摸| 成人国产综合亚洲| 欧美激情久久久久久爽电影| 日本成人三级电影网站| 国产极品精品免费视频能看的| 国产精品久久久久久久电影| 欧美区成人在线视频| 亚洲经典国产精华液单 | 免费人成视频x8x8入口观看| 亚洲五月天丁香| 综合色av麻豆| 一个人免费在线观看电影| 男女视频在线观看网站免费| 中文字幕熟女人妻在线| 国产精品久久久久久人妻精品电影| 狠狠狠狠99中文字幕| 欧美成人一区二区免费高清观看| 一本久久中文字幕| 熟女人妻精品中文字幕| 成年人黄色毛片网站| 国产美女午夜福利| 又爽又黄无遮挡网站| 日日夜夜操网爽| av天堂中文字幕网| 日韩人妻高清精品专区| 日韩成人在线观看一区二区三区| 国产不卡一卡二| 久久99热这里只有精品18| 男女下面进入的视频免费午夜| 日本 av在线| 少妇人妻一区二区三区视频| 日本 av在线| 国产精品久久久久久精品电影| 久久久成人免费电影| 亚洲美女视频黄频| 我的女老师完整版在线观看| 哪里可以看免费的av片| 欧美日韩中文字幕国产精品一区二区三区| 久久久久久大精品| 久久久久久久精品吃奶| 国产精品自产拍在线观看55亚洲| 一级毛片久久久久久久久女| 性色av乱码一区二区三区2| 免费人成视频x8x8入口观看| www.www免费av| 亚洲最大成人手机在线| 成人av在线播放网站| 久久午夜亚洲精品久久| 亚洲人成电影免费在线| 国内精品久久久久久久电影| bbb黄色大片| 国产精品美女特级片免费视频播放器| 精品午夜福利视频在线观看一区| 蜜桃久久精品国产亚洲av| 亚洲久久久久久中文字幕| 国产综合懂色| 日韩大尺度精品在线看网址| 精品人妻一区二区三区麻豆 | 日韩精品青青久久久久久| h日本视频在线播放| 身体一侧抽搐| 熟女电影av网| 国产一区二区三区视频了| 老熟妇仑乱视频hdxx| 18禁黄网站禁片免费观看直播| 久久精品夜夜夜夜夜久久蜜豆| 国产91精品成人一区二区三区| 一二三四社区在线视频社区8| 亚洲熟妇熟女久久| 日本免费a在线| 亚洲aⅴ乱码一区二区在线播放| 久久亚洲真实| 在现免费观看毛片| 精品欧美国产一区二区三| bbb黄色大片| 日韩欧美在线二视频| 亚洲在线观看片| 人人妻人人看人人澡| 搞女人的毛片| 亚洲成人免费电影在线观看| 成人毛片a级毛片在线播放| 婷婷色综合大香蕉| 国产私拍福利视频在线观看| 深夜精品福利| 国产精品三级大全| 亚洲综合色惰| 波多野结衣高清作品| 免费在线观看影片大全网站| 亚洲av成人不卡在线观看播放网| 亚洲成人中文字幕在线播放| 男女床上黄色一级片免费看| 五月伊人婷婷丁香| 亚洲自偷自拍三级| 亚洲av一区综合| 国产精品久久视频播放| 成人av在线播放网站| 99久国产av精品| 免费在线观看日本一区| 内射极品少妇av片p| 伦理电影大哥的女人| 日本黄大片高清| 久久国产乱子免费精品| 久久这里只有精品中国| 亚洲内射少妇av| 国产黄色小视频在线观看| 男人的好看免费观看在线视频| 色视频www国产| 十八禁国产超污无遮挡网站| 99久久99久久久精品蜜桃| 亚洲va日本ⅴa欧美va伊人久久| 午夜福利在线观看免费完整高清在 | 亚洲国产精品成人综合色| 久久午夜福利片| 99热这里只有是精品在线观看 | 少妇丰满av| 88av欧美| 欧美激情在线99| 欧美日韩福利视频一区二区| 99热这里只有精品一区| 又爽又黄a免费视频| 日日摸夜夜添夜夜添av毛片 | 国产黄片美女视频| 国产三级中文精品| 黄片小视频在线播放| 久久人人爽人人爽人人片va | 99热6这里只有精品| 成年女人毛片免费观看观看9| 日本三级黄在线观看| 国产精品野战在线观看| 老熟妇乱子伦视频在线观看| 国产av在哪里看| 哪里可以看免费的av片| 一个人观看的视频www高清免费观看| 成年人黄色毛片网站| 校园春色视频在线观看| 亚洲三级黄色毛片| 国产毛片a区久久久久| 久久久久久九九精品二区国产| 久久人人精品亚洲av| 亚洲片人在线观看| 长腿黑丝高跟| 啪啪无遮挡十八禁网站| 简卡轻食公司| 国产av一区在线观看免费| 日日摸夜夜添夜夜添av毛片 | 麻豆久久精品国产亚洲av| 美女大奶头视频| 免费av毛片视频| 欧美日韩乱码在线| 午夜福利视频1000在线观看| 欧美黄色淫秽网站| 成人欧美大片| 欧美区成人在线视频| 无遮挡黄片免费观看| 精品午夜福利在线看| 老鸭窝网址在线观看| 欧美3d第一页| 成人一区二区视频在线观看| 久久久久久久久久成人| 我的老师免费观看完整版| av欧美777| 99国产综合亚洲精品| 在现免费观看毛片| 亚洲人成网站在线播| 在线播放无遮挡| 欧美日韩黄片免| 亚洲美女视频黄频| 90打野战视频偷拍视频| 免费观看的影片在线观看| 亚洲欧美精品综合久久99| 欧美潮喷喷水| 久久国产精品影院| 自拍偷自拍亚洲精品老妇| 久久人人爽人人爽人人片va | 又黄又爽又刺激的免费视频.| 熟妇人妻久久中文字幕3abv| 亚洲第一区二区三区不卡| 搡女人真爽免费视频火全软件 | 天堂网av新在线| h日本视频在线播放| 亚洲精品在线观看二区| 国产成人福利小说| 亚洲欧美清纯卡通| 国产精品久久电影中文字幕| 亚洲,欧美,日韩| 又粗又爽又猛毛片免费看| 亚洲精品色激情综合| 最近最新免费中文字幕在线| 中出人妻视频一区二区| 99热精品在线国产| 女同久久另类99精品国产91| 午夜福利18| 欧美一区二区国产精品久久精品| 18禁裸乳无遮挡免费网站照片| 美女高潮的动态| 中文字幕av在线有码专区| 国产午夜福利久久久久久| 久久精品国产亚洲av香蕉五月| 免费看美女性在线毛片视频| 51国产日韩欧美| 国产成人a区在线观看| 婷婷精品国产亚洲av| 3wmmmm亚洲av在线观看| 51午夜福利影视在线观看| 无人区码免费观看不卡| 中文字幕久久专区| 午夜福利在线观看免费完整高清在 | 欧美绝顶高潮抽搐喷水| 一进一出抽搐gif免费好疼| 悠悠久久av| 中文亚洲av片在线观看爽| 亚洲在线观看片| 成年女人毛片免费观看观看9| 成年人黄色毛片网站| 乱人视频在线观看| 亚洲熟妇熟女久久| 变态另类丝袜制服| 国产欧美日韩精品亚洲av| 一进一出好大好爽视频| av视频在线观看入口| 免费黄网站久久成人精品 | av在线天堂中文字幕| x7x7x7水蜜桃| 亚洲,欧美,日韩| 日本与韩国留学比较| 国产精品爽爽va在线观看网站| 欧美xxxx性猛交bbbb| 精品国内亚洲2022精品成人| 全区人妻精品视频| 他把我摸到了高潮在线观看| 亚洲国产精品成人综合色| 久久精品国产99精品国产亚洲性色| 久久久久免费精品人妻一区二区| 神马国产精品三级电影在线观看| 久久精品综合一区二区三区| 久99久视频精品免费| 国产精品一区二区免费欧美| 亚洲一区二区三区色噜噜| 黄片小视频在线播放| 国产精华一区二区三区| 久久人妻av系列| av天堂中文字幕网| 久久精品夜夜夜夜夜久久蜜豆| 夜夜爽天天搞| 蜜桃久久精品国产亚洲av| 国产精品一区二区三区四区免费观看 | 51午夜福利影视在线观看| 欧美3d第一页| 熟妇人妻久久中文字幕3abv| 日韩成人在线观看一区二区三区| 欧美日韩中文字幕国产精品一区二区三区| 午夜福利视频1000在线观看| 中文在线观看免费www的网站| 黄色日韩在线| 欧美午夜高清在线| 一区二区三区免费毛片| 精品午夜福利视频在线观看一区| 国产伦在线观看视频一区| 久久久久亚洲av毛片大全| 国产一区二区激情短视频| bbb黄色大片| 国产伦精品一区二区三区四那| 大型黄色视频在线免费观看| 床上黄色一级片| 精品欧美国产一区二区三| 天堂网av新在线| 99久久久亚洲精品蜜臀av| 亚洲内射少妇av| 一进一出抽搐动态| 亚洲不卡免费看| 激情在线观看视频在线高清| 无遮挡黄片免费观看| 久久伊人香网站| 国产午夜精品论理片| 日韩成人在线观看一区二区三区| 制服丝袜大香蕉在线| 三级毛片av免费| 国产欧美日韩精品一区二区| 好男人电影高清在线观看| 亚洲国产欧美人成| 很黄的视频免费| 好看av亚洲va欧美ⅴa在| 无遮挡黄片免费观看| 女人十人毛片免费观看3o分钟| 中文字幕免费在线视频6| 国产乱人伦免费视频| avwww免费| 久久久久久久精品吃奶| 亚洲人成网站在线播| av福利片在线观看| 黄片小视频在线播放| 国产精品嫩草影院av在线观看 | 51国产日韩欧美| 日日摸夜夜添夜夜添av毛片 | 欧美bdsm另类| 国产高清有码在线观看视频| 久久精品国产亚洲av天美| 中文亚洲av片在线观看爽| 久久中文看片网| 国产精品嫩草影院av在线观看 | 一级黄片播放器| 成人永久免费在线观看视频| 日本与韩国留学比较| 一区二区三区四区激情视频 | 中文字幕免费在线视频6| 亚洲专区国产一区二区| 国产精品久久久久久精品电影| 日韩高清综合在线| 成人美女网站在线观看视频| 不卡一级毛片| 国产成人福利小说| xxxwww97欧美| 亚洲av五月六月丁香网| 亚州av有码| 中文字幕精品亚洲无线码一区| 欧美日本视频| 少妇人妻一区二区三区视频| 亚洲精华国产精华精| 国产精品一区二区免费欧美| 日韩人妻高清精品专区| 亚洲av一区综合| 亚洲精品乱码久久久v下载方式| 99视频精品全部免费 在线| 精品午夜福利在线看| 亚洲人成伊人成综合网2020| 两性午夜刺激爽爽歪歪视频在线观看| 成人毛片a级毛片在线播放| 18禁在线播放成人免费| 欧美中文日本在线观看视频| 黄色日韩在线| 亚洲精品粉嫩美女一区| 久久精品国产99精品国产亚洲性色| 欧美激情久久久久久爽电影| avwww免费| 亚洲精品久久国产高清桃花| 99热精品在线国产| 亚洲乱码一区二区免费版| 男女视频在线观看网站免费| 又黄又爽又刺激的免费视频.| 大型黄色视频在线免费观看| 一级毛片久久久久久久久女| 国产在视频线在精品| 日韩人妻高清精品专区| 最近中文字幕高清免费大全6 | 午夜福利视频1000在线观看| 赤兔流量卡办理| 一级a爱片免费观看的视频| 色精品久久人妻99蜜桃| 国产精品电影一区二区三区| 精品人妻视频免费看| a在线观看视频网站| 波多野结衣巨乳人妻| 国产主播在线观看一区二区| 午夜福利视频1000在线观看| 色综合婷婷激情| av欧美777| 能在线免费观看的黄片| 91狼人影院| 男女做爰动态图高潮gif福利片| 俺也久久电影网| 精品久久久久久久人妻蜜臀av| 日韩成人在线观看一区二区三区| 给我免费播放毛片高清在线观看| 少妇的逼水好多| eeuss影院久久| 久久九九热精品免费| 国产伦一二天堂av在线观看| 国产精品久久久久久精品电影| 简卡轻食公司| 国产乱人伦免费视频| 99在线人妻在线中文字幕| 男人狂女人下面高潮的视频| 国产老妇女一区| 舔av片在线| 亚洲人成网站在线播| 国内少妇人妻偷人精品xxx网站| av视频在线观看入口| 国产探花在线观看一区二区| 精品久久久久久久久亚洲 | 成年人黄色毛片网站| 搡老熟女国产l中国老女人| 色综合亚洲欧美另类图片| 国产精品美女特级片免费视频播放器| 少妇熟女aⅴ在线视频| 十八禁网站免费在线| 国产精品伦人一区二区| 永久网站在线| 欧美成人性av电影在线观看| 高潮久久久久久久久久久不卡| 国产真实伦视频高清在线观看 | 一本久久中文字幕| 中文资源天堂在线| 日韩欧美三级三区| 桃色一区二区三区在线观看| 亚洲 欧美 日韩 在线 免费| 欧美性猛交╳xxx乱大交人| 国产又黄又爽又无遮挡在线| 好男人电影高清在线观看| 啪啪无遮挡十八禁网站| 少妇的逼水好多| 一a级毛片在线观看| 在现免费观看毛片| 欧美激情久久久久久爽电影| 日本精品一区二区三区蜜桃| 蜜桃亚洲精品一区二区三区| 免费在线观看影片大全网站| 亚洲国产精品成人综合色| 麻豆国产97在线/欧美| 国产精品永久免费网站| av在线蜜桃| 女人十人毛片免费观看3o分钟| 啦啦啦韩国在线观看视频| 午夜福利欧美成人| 欧美在线一区亚洲| 淫妇啪啪啪对白视频| 国产野战对白在线观看| 久久性视频一级片| 免费av观看视频| 男女下面进入的视频免费午夜| 真人一进一出gif抽搐免费| 欧美日韩国产亚洲二区| 日韩欧美三级三区| 欧美成人免费av一区二区三区| 日韩欧美 国产精品| 日韩av在线大香蕉| 久久人妻av系列| 国产午夜精品久久久久久一区二区三区 | 国产伦人伦偷精品视频| 国产av麻豆久久久久久久| 国产精品,欧美在线| 蜜桃亚洲精品一区二区三区| 免费在线观看影片大全网站| 亚洲av第一区精品v没综合| 免费在线观看日本一区| 国产高清激情床上av| 51国产日韩欧美| 又紧又爽又黄一区二区| or卡值多少钱| 国产大屁股一区二区在线视频| 人人妻人人澡欧美一区二区| 在现免费观看毛片| 成年版毛片免费区| a级毛片a级免费在线| 九色国产91popny在线| 久久久久亚洲av毛片大全| 两个人视频免费观看高清| 精品久久久久久久人妻蜜臀av| 香蕉av资源在线| 中出人妻视频一区二区| 每晚都被弄得嗷嗷叫到高潮| 国产黄色小视频在线观看| 免费观看精品视频网站| xxxwww97欧美| 啪啪无遮挡十八禁网站| 国产亚洲精品av在线| 欧美午夜高清在线| 婷婷丁香在线五月| 91午夜精品亚洲一区二区三区 | 欧美一区二区国产精品久久精品| 如何舔出高潮| 日本五十路高清| 国产亚洲av嫩草精品影院| 国产亚洲精品av在线| 国产av不卡久久| 高清在线国产一区| 99国产极品粉嫩在线观看| 精品一区二区三区视频在线| 亚洲精品一卡2卡三卡4卡5卡| 性色av乱码一区二区三区2| 国产精品99久久久久久久久| 亚洲av电影在线进入| 精品久久久久久久人妻蜜臀av| 亚洲国产欧美人成| 99热只有精品国产| 久久久精品欧美日韩精品| 午夜视频国产福利| 少妇的逼好多水| 亚洲在线自拍视频| 免费高清视频大片| 99热这里只有是精品50| 一二三四社区在线视频社区8| 高潮久久久久久久久久久不卡| 97超视频在线观看视频| 如何舔出高潮| 国产高清激情床上av| 中文字幕人妻熟人妻熟丝袜美| 国产精品免费一区二区三区在线| 中文字幕精品亚洲无线码一区| 久久人人精品亚洲av| 禁无遮挡网站| av天堂中文字幕网| 嫩草影院新地址| 怎么达到女性高潮| 在线免费观看的www视频| 高清在线国产一区| 亚洲精品一区av在线观看| 夜夜夜夜夜久久久久| 亚洲精品在线观看二区| 欧美xxxx性猛交bbbb| 日本黄大片高清| 91久久精品国产一区二区成人| 免费无遮挡裸体视频| 成人特级av手机在线观看| 国产av麻豆久久久久久久| 国产精品av视频在线免费观看| 亚洲人成伊人成综合网2020| 亚洲专区中文字幕在线| 给我免费播放毛片高清在线观看| 亚洲第一区二区三区不卡| 99精品久久久久人妻精品| 欧美+亚洲+日韩+国产| 很黄的视频免费| 亚洲国产精品999在线| 免费黄网站久久成人精品 | 一个人观看的视频www高清免费观看| 在线观看66精品国产| 久久久色成人| 久久久久亚洲av毛片大全| 婷婷丁香在线五月| 日韩欧美一区二区三区在线观看| 级片在线观看| 国产主播在线观看一区二区| 直男gayav资源| 成人毛片a级毛片在线播放| 国产亚洲欧美98| 欧美在线黄色| 丰满人妻熟妇乱又伦精品不卡| 国产高清激情床上av| 久久久国产成人精品二区| av国产免费在线观看| 日本三级黄在线观看| 99热只有精品国产| 国产精品野战在线观看| 午夜福利免费观看在线| 国产熟女xx| 亚洲aⅴ乱码一区二区在线播放| 波野结衣二区三区在线| 18美女黄网站色大片免费观看| 身体一侧抽搐| 午夜精品在线福利| 不卡一级毛片| 国产成人av教育| 少妇人妻一区二区三区视频| 亚洲avbb在线观看| 丰满的人妻完整版| 成人美女网站在线观看视频| 天堂√8在线中文| 宅男免费午夜| 一本一本综合久久| 男人舔奶头视频| 国产精品亚洲av一区麻豆| 热99在线观看视频| 最近最新中文字幕大全电影3| 国产私拍福利视频在线观看| 成人一区二区视频在线观看| 中文字幕熟女人妻在线| 国内精品一区二区在线观看| 男人的好看免费观看在线视频| 老熟妇仑乱视频hdxx| 亚洲一区高清亚洲精品| 久久久成人免费电影| 淫妇啪啪啪对白视频| 久久久久久国产a免费观看| 欧美日本视频| 深爱激情五月婷婷| 好看av亚洲va欧美ⅴa在| 一夜夜www| 网址你懂的国产日韩在线| 欧美乱妇无乱码| 国产三级中文精品| 狂野欧美白嫩少妇大欣赏| 婷婷色综合大香蕉| 老师上课跳d突然被开到最大视频 久久午夜综合久久蜜桃 | 51午夜福利影视在线观看| 久久香蕉精品热| 熟女人妻精品中文字幕| 一级a爱片免费观看的视频| 国内久久婷婷六月综合欲色啪| 亚州av有码| 一本综合久久免费| 日韩av在线大香蕉| 国语自产精品视频在线第100页| 中国美女看黄片| 老熟妇仑乱视频hdxx| 中出人妻视频一区二区| 国产精品av视频在线免费观看| 亚洲久久久久久中文字幕| 国产免费av片在线观看野外av| 亚洲精品乱码久久久v下载方式| 久久久久久久久久黄片| 看免费av毛片| 深爱激情五月婷婷| 亚洲经典国产精华液单 | 一区二区三区高清视频在线| 亚洲一区高清亚洲精品| 久久99热这里只有精品18| 中文字幕久久专区| 性色av乱码一区二区三区2| 国产精品久久久久久久电影| 亚洲人成伊人成综合网2020| 亚洲精品成人久久久久久| 天堂影院成人在线观看| 九色成人免费人妻av| 亚洲欧美日韩东京热| 国产精品嫩草影院av在线观看 | 国产老妇女一区| 国内精品久久久久久久电影| 欧美bdsm另类|