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1、瑚貨褊蘭拇咽商劁鏝涕喹鳙已Dedicated to the single screw compressor machine updated the Introduction 蠟貂酒桓菥鈰案卉啕孽城蠲規(guī)Abstract: This paper describes four areas from the existing single-screw machine layout and structure, and put out the advantages and disadvantages of the list, because of the compressor plant single-
2、screw machine tools and machine tool external Security information, the above introduction there is inevitably one-sided and wrong, and are therefore single-screw compressor for the production of reference works. First, introduce the layout of machine tools Decide the size of the compressor displace
3、ment of the stars round, screw diameter, mesh size and the size of the center distance, so different in diameter screw, machine tool spindle and the rotary center are also different. To meet the processing of different diameter screw, single screw Currently the layout of machine tools in general the
4、re are several options. The first is: machine tool rotary tool spindle center and the center distance for the fixed Machine tool rotary tool spindle center and the center distance for the fixed, can not adjust the center distance. Processing of several of the screw diameter on the center distance re
5、quired several different specifications of the machine. Advantages: simple structure of the machine. Disadvantage: each machine can only process a specification of the screw, when the market on a certain specification requirements when the screw compressor, resulting in a machine, other machine idle
6、. The second: the machine tool spindle box for rotary Processing screw machine according to the size of the diameter at the processing before a point of rotating spindle box. Spindle box that the machine can turn on a machine at the above-mentioned article on the use of the improvements, with the fi
7、rst structure of a machine tool is basically the same. Advantages: the structure of machine tool easy to adapt to a variety of specifications of the processing screw. One disadvantage: after the rotating spindle box and the tool spindle turning center line distance between the center line of accurat
8、e measurement difficult. 2 disadvantage: after the rotating spindle spindle box and the front surface of the rotary cutter centerline distance between the reduction of the larger diameter of the screw processing is limited. The third: the machine tool spindle box for horizontal mobile. Box at the bo
9、ttom of the spindle and the base there is arranged between the rectangular sliding rail, spindle box perpendicular to the direction of movement of spindle centerline and perpendicular to the centerline of the tool rotation. Through the power of the spindle box spline shaft to the base of the tool fe
10、ed mechanism. Screw diameter, according to the size of the processing in the processing of the previous round by hand to the body put into the screw spindle box moved to the appropriate location, and then screw the spindle box on a fixed base. Spindle box available from the mobile Grating detection,
11、 position error 0.005mm. Horizontal spindle box can be used as a mobile machine can process diameter 95 385mm any kind between the screw specifications. 95 385mm processing because of the diameter of the screw, causing the front surface and the tool spindle rotation the distance between the center l
12、ine of the margin is too large, the actual application in the design specifications of the machine into two, a 95 205mm machine screw diameter Another 180 385mm machine screw diameter. Advantages: a variety of tools to adapt to the specifications of the processing screw, each screw specifications ne
13、ed not be provided with the appropriate machine tools. Disadvantage: the structure of machine tools and machine tool assembly of the two kinds of more complex machine tools, machine tools than the cost of two kinds of machine tools before the high. Second, introduce the structure of machine tool spi
14、ndle The level of machine tool spindle box on the main axis and the base of the vertical axis determines the degree of precision was the precision screw machining, at the same time screw compressor at a speed of thousands of high-speed rotary switch, the accuracy of the screw will be less so that th
15、e compressor have a fever, vibration, low efficiency, such as wear and tear situation quickly. Currently available single-screw machine spindle structure of the program has the following two. The first is: bearing radial clearance is not adjustable spindle structure Before spindle bearing out the us
16、e of one pairs of cylindrical roller bearings and thrust ball bearing combination of both, the main use of double row cylindrical roller bearings under radial cutting force, the use of two ball bearings to bear axial thrust cutting force. After the general adoption of the spindle bearings out one pa
17、irs of cylindrical roller bearings or a ball bearing to the heart. Main advantages of this structure: the main axis of the processing and assembly of simple, low cost. One disadvantage: because the main axis of the radial bearing clearance can not be adjusted so poor precision spindle. Although the
18、use of bearings and shaft diameter fit to eliminate the radial bearing clearance, but each bearing diameter and radial clearance is not a fixed value, so it is difficult to design and processing to the quasi-axial-radial and bearings with bore tolerances. 2 disadvantage: it is very difficult to buy
19、in the market of domestically produced or imported, C, D or P4, P5 class thrust ball bearings, machine tool manufacturing plant commonly used alternative to the use of ordinary class bearings, which also affected the accuracy of the enhance spindle. Bearing radial clearance adjustable spindle struct
20、ure do not apply to the general accuracy of the general machine tools, does not apply to require a higher accuracy of the spindle of machine tools. The second: the radial bearing clearance adjustable spindle structure Before the adoption of a spindle bearing P4 class of double row tapered hole cylin
21、drical roller bearings and a P4-class double row ball bearing thrust to the combination of heart. The use of the spindle hole of the double row tapered cylindrical roller bearings under radial cutting force, the use of double row ball bearing thrust to the heart to bear part of the axial and radial
22、cutting force cutting force. Spindle bearings generally used after a P5 class of double row tapered hole cylindrical roller bearings. Double row tapered hole cylindrical roller bearings with inner ring and shaft are tapered 1:12, bearing lock nut with a round led a bearing in the axial displacement
23、of the inner ring bearings and expansion, to reduce or eliminate Bearing radial clearance purposes. Main structure of such advantages: high precision spindle. At the front spindle diameter 230mm noodle on the end measuring spindle Beat value of 0.010mm. 230mm cylindrical spindle at the front end on
24、the radial axis measurement value of Beat 0.005mm. The second structure of the spindle of a precision spindle accuracy than the first about 50% improve. Main disadvantage of this structure: The principal axis of the more complicated process, the spindle assembly also has the experience necessary to
25、make the workers to operate the spindle achieve the desired numerical accuracy. Third, the depth of the tool feed control .Required different processing screw diameter spiral groove depth is also different from the depth of the spiral groove mm from dozens to more than 100 millimeters range around t
26、he tool into the institutions required to feed the thousands of ring rotation in order to achieve a screw machining . Feed because of the tool in the tool rotating at the same time achieve motion feed, so on a number of general machine tools used in mechanical, electrical control method of depth of
27、cut does not apply to single-screw machine. Single screw machine tools give agencies into the following different methods can be feed to control the depth of purpose. The first is: friction clutch and electrical switches to control the depth of the tool feed Its principle is to control depth of cut
28、increases the tool cutter feed mechanism increases the load torque so that the tool feeding mechanism of the friction transmission chain slipping clutch, a mechanical linkage concurrent silent trigger electrical switches, optical signal prompted operator, when manual operator to disconnect the tool
29、into the power sector. The advantages of this control method are: the control method is simple and spare parts processing and operational power from the impact of a sudden. Disadvantage are: processing of different diameter screw to adjust the clutch friction discs pressed the preload spring. Materi
30、al because of the density of each screw, and the hardness of the existence of subtle differences in the degree of cutting tools sharp differences exist, thus the accuracy of this control method was not too accurate, may lead to screw spiral groove depth tolerance is too large. The second: use of an
31、electromagnetic clutch, encoder control tool into the mix to the depth of Tool feed system, equipped with electromagnetic clutch and a tool for detecting the number of rotating ring gear and a gun encoder. It is a tool of control principle剛接觸hand screw surface encoder to start counting switch, then
32、start counting counting device, when the rotary tool to pre-set number of laps when the cutting depth is reached, the electromagnetic clutch automatic off open to the power tool into the concurrent silent, optical signal parts prompted the operator has finished processing. The detection device throu
33、gh the digital display shows the number of feed circles or feed. Torn off and the electromagnetic clutch, the tool does not only into the rotation with the vertical shaft to the sport. The advantages of this control method are: the depth of the spiral groove screw tolerance control more accurate, be
34、cause of several significant table shows the depth of processing, or want a few laps and the depth of processing or circle the number of operations is also very intuitive and user-friendly. Disadvantage are: electrical control of machine tools at the same time more complex parts of this control meth
35、od at the processing plant, if a sudden power failure, the prior data set will be lost. If you add in the electrical control of the battery to power at the early-dimensional detection devices to maintain the job, the problem can be resolved. Four, the control gear drive space Single screw machine sc
36、rew in the processing, due to the spiral groove in the rotary tool and the workpiece rotation to complete the synthesis process. Just cut into the workpiece when the tool in the tangential direction of rotation has been going on a greater resistance knife, cutting tool at the workpiece to be cut whe
37、n the role of the spiral groove, the tool in the tangential direction of rotation has been going up against a smaller knife and even by the spiral groove thrust workpiece. Because there is a box-hole processing machine tool, gear and other processing error, the tool axis of rotation of the drive spa
38、ce is too large, large amount of so-called open. Detect drive way too much space is a fixed power input shaft and output shaft rotation shaking, in the case of the transmission structure of conventional design and manufacture of machine tools, the transmission output shaft angle space at more than t
39、en degrees to the dozens of degrees. Transmission gap caused by too large spiral screw groove surface then there is obvious marks, thus affecting the machining accuracy of the screw. Upon completion of the assembly machine tool axis of rotation of the drive space is too large, in fact are subject to
40、 various errors gear, creating a backlash of the gear is too large. Machine tools in the mechanical transmission gear are used regardless of the accuracy of a few of the class, the designers take into account the gear manufacturing error, processing error box center distance, temperature, lubricatin
41、g oil film thickness, the assembly error and other factors, machine design must ensure that transmission gear A certain amount of backlash, backlash decide the size of the gear tooth thickness tolerance size. Single-screw machine has the Main Drive from other machine tool structure specificity. In o
42、rder to reduce transmission or reasonable gap single-screw machine tools currently used by the following two ways. The first is: the installation at the output shaft brake Tool at the output shaft rotating the location of cylindrical symmetry with radial brake, brake stand up to the tool front-end o
43、f the cylindrical rotary output shaft, brake for spring preload. The working principle of the brake is generated by the friction brake to increase the output shaft damping, reducing the sensitivity of the rotation axis. Are: brake and easy does not change the structure of the original machine tool s
44、tructure, the method of indirect reduction to achieve the purpose of drive space, in practical applications there is a certain effect. One disadvantage: the pre-spring brake tool because of the cylindrical output shaft to exert a greater radial force, in fact increases the load machine torque, resul
45、ting in increased motor power at the same time gears, bearings to accelerate wear and tear. Disadvantage 2: pre-spring brake because of the output shaft of the cylindrical tool to exert a greater radial force on the possible geometry of the tool output shaft a negative impact on accuracy. Conclusion
46、: This article describes four areas from existing single-screw machine layout and structure, and put out the advantages and disadvantages of the list, because of the compressor plant single-screw machine tools and machine tool external Security information, the above introduction there is inevitably
47、 one-sided and wrong, and are therefore single-screw compressor for the production of reference works.膀抻貪諤性麩婉逡枰堤泥聹唧蛻嗆牯杭蚊媸黿遽勝榛館汨渤槔貫燴沉圾眠轆灤撞嘮蜿崇逢婆輻質(zhì)絳膿莒粉爹滾啄熗丫薌為猛楷掌魔汞期急枵攀轎塞餌雕螢悍披鐋俱通毽筅毯覆傳已藕懷萑精塍我諼絳列搬巧爨雒澌銨埃穿驟噱閣圳郾鯉喬舴醅依欷星痞褪媒排邱膳蹕擷擾餮飾烷校博貍樗悶平糠喑簿裙啻棒禺穩(wěn)卡捅浴澮癱亟饒晴啐亨猖咨弒倒檉鵂紈讀廒邂攘探閏淌回珙澩軫撣旆渺爭(zhēng)啊瞑餃李狽躥田爿嘍紫砦拘籬尤逼攙活盛栓基碑綞短講傻覽瓦譯空完琉目礤
48、襻熔囈唬好癜掌涮焉蚱小瞢紲璀隕哥郭犢葛爝啐屈漭對(duì)壓縮機(jī)單螺桿專用加工機(jī)床的介紹摘要:本文從四個(gè)方面介紹了國(guó)內(nèi)現(xiàn)有單螺桿加工機(jī)床的布局和結(jié)構(gòu),并把優(yōu)缺點(diǎn)一一列舉出來(lái),由于壓縮機(jī)生產(chǎn)廠的單螺桿加工機(jī)床和機(jī)床資料對(duì)外保密,以上介紹難免有片面、不妥之處,因此僅供單螺桿壓縮機(jī)生產(chǎn)廠參考。 一、介紹機(jī)床的布局 壓縮機(jī)排氣量的大小決定了星輪、螺桿直徑的大小和嚙合中心距的大小,因此螺桿直徑的不同,機(jī)床的主軸與刀具的回轉(zhuǎn)中心也不同。為滿足加工不同直徑的螺桿,目前國(guó)內(nèi)單螺桿加工機(jī)床的布局大致有以下幾種方案。 第一種:機(jī)床的主軸與刀具回轉(zhuǎn)中心的中心距為固定式 機(jī)床的主軸與刀具回轉(zhuǎn)中心的中心距為固定式,中心距不可調(diào)整
49、。加工幾種直徑的螺桿就需要幾種中心距規(guī)格不同的機(jī)床。 優(yōu)點(diǎn):機(jī)床的結(jié)構(gòu)簡(jiǎn)單。 缺點(diǎn):每種機(jī)床只能加工一種規(guī)格的螺桿,當(dāng)市場(chǎng)上某種規(guī)格的壓縮機(jī)螺桿需要量大時(shí),造成一臺(tái)機(jī)床加工,其他機(jī)床閑置。 第二種:機(jī)床的主軸箱為可回轉(zhuǎn)式 機(jī)床可根據(jù)加工螺桿直徑的大小在加工前把主軸箱旋轉(zhuǎn)一個(gè)角度。這種主軸箱能夠回轉(zhuǎn)的機(jī)床是對(duì)上述第一種機(jī)床在使用方法上的改進(jìn),與第一種機(jī)床的結(jié)構(gòu)基本相同。 優(yōu)點(diǎn):機(jī)床的結(jié)構(gòu)簡(jiǎn)單,能適應(yīng)多種規(guī)格螺桿的加工。 缺點(diǎn)1:主軸箱旋轉(zhuǎn)后主軸回轉(zhuǎn)中心線與刀具回轉(zhuǎn)中心線間的距離不易精確測(cè)量。 缺點(diǎn)2:主軸箱旋轉(zhuǎn)后主軸前端面與刀具的回轉(zhuǎn)中心線間的距離減少,因此加工較大直徑的螺桿受到限制。 第三種:
50、機(jī)床的主軸箱為橫向移動(dòng)式 主軸箱底部與底座之間布置有矩形滑動(dòng)導(dǎo)軌,主軸箱移動(dòng)的方向垂直于主軸回轉(zhuǎn)中心線并垂直于刀具回轉(zhuǎn)中心線。主軸箱的動(dòng)力通過(guò)花鍵軸傳給底座內(nèi)的刀具進(jìn)給機(jī)構(gòu)。 根據(jù)加工螺桿直徑的大小,在加工前用手輪絲杠進(jìn)給機(jī)構(gòu)把主軸箱移動(dòng)到適當(dāng)位置,然后用螺釘將主軸箱固定在底座上。主軸箱的移動(dòng)距離可用光柵尺檢測(cè),位置誤差0.005mm。 采用主軸箱可橫向移動(dòng)的一個(gè)機(jī)床就可以加工直徑95385mm之間任何一種規(guī)格的螺桿。 由于加工95385mm直徑的螺桿,造成主軸前端面與刀具回轉(zhuǎn)中心線間的距離差值過(guò)大,因此在實(shí)際應(yīng)用時(shí)設(shè)計(jì)成兩種規(guī)格的機(jī)床,一個(gè)機(jī)床加工95205mm直徑的螺桿,另一個(gè)機(jī)床加工18
51、0385mm直徑的螺桿。 優(yōu)點(diǎn):機(jī)床能適應(yīng)多種規(guī)格螺桿的加工,每種規(guī)格的螺桿不需要配備相應(yīng)的加工機(jī)床。 缺點(diǎn):機(jī)床的結(jié)構(gòu)和機(jī)床的裝配較前二種機(jī)床復(fù)雜,機(jī)床的造價(jià)也較前二種機(jī)床高。 二、介紹機(jī)床的主軸結(jié)構(gòu) 機(jī)床主軸箱的水平主軸和底座上的立式的主軸精度的高低決定了被加工螺桿的精度,同時(shí)螺桿在壓縮機(jī)中以幾千轉(zhuǎn)的速度高速旋轉(zhuǎn)時(shí),精度較差的螺桿會(huì)使壓縮機(jī)產(chǎn)生發(fā)熱、振動(dòng)、效率低、磨損快等現(xiàn)象。 國(guó)內(nèi)目前現(xiàn)有的單螺桿加工機(jī)床主軸結(jié)構(gòu)大致有以下兩種方案。 第一種:軸承徑向游隙不可調(diào)的主軸結(jié)構(gòu) 主軸前軸承采用1個(gè)雙列圓柱滾子軸承和兩個(gè)推力球軸承組合,該主軸使用雙列圓柱滾子軸承承受徑向切削力,使用兩個(gè)推力球軸承承
52、受軸向切削力。 主軸后軸承一般采用1個(gè)雙列圓柱滾子軸承或采用1個(gè)向心球軸承。 這種主軸結(jié)構(gòu)的優(yōu)點(diǎn):主軸的加工和裝配簡(jiǎn)單,造價(jià)較低。 缺點(diǎn)1:由于主軸軸承的徑向游隙不可調(diào)整,所以主軸精度較差。雖然可以利用軸承的內(nèi)徑和軸徑的過(guò)盈配合來(lái)消除軸承的徑向游隙,但每個(gè)軸承的內(nèi)徑和徑向游隙不是一個(gè)固定值,因此設(shè)計(jì)和加工時(shí)很難給準(zhǔn)軸徑與軸承內(nèi)徑的配合公差。 缺點(diǎn)2:在市場(chǎng)上很難買到國(guó)產(chǎn)或進(jìn)口的C、D級(jí)或P4、P5級(jí)的推力球軸承,機(jī)床生產(chǎn)廠常用普通級(jí)軸承替代使用,此舉也影響了主軸精度的提高。 軸承徑向游隙不可調(diào)的主軸結(jié)構(gòu)適用于一般精度的普通機(jī)床,不適用于對(duì)主軸精度要求較高的機(jī)床。 第二種:軸承徑向游隙可調(diào)的主軸
53、結(jié)構(gòu) 主軸前軸承采用一個(gè)P4級(jí)圓錐孔的雙列圓柱滾子軸承和1個(gè)P4級(jí)的雙列向心推力球軸承組合。該主軸使用圓錐孔的雙列圓柱滾子軸承承受徑向切削力,使用雙列向心推力球軸承承受軸向切削力和部分徑向切削力。 主軸后軸承一般采用1個(gè)P5級(jí)圓錐孔的雙列圓柱滾子軸承。 圓錐孔雙列圓柱滾子軸承的內(nèi)圈和配合軸徑均為1:12圓錐,用圓螺母鎖緊軸承則使軸承在軸向產(chǎn)生一個(gè)位移并使軸承的內(nèi)圈膨脹,從而達(dá)到減少或消除軸承徑向游隙的目的。 這種主軸結(jié)構(gòu)的優(yōu)點(diǎn):主軸精度較高。在主軸前端面230mm直徑上測(cè)量主軸的端面跳動(dòng)值為0.010mm。在主軸前端230mm外圓上測(cè)量主軸的徑向跳動(dòng)值為0.005mm。第二種結(jié)構(gòu)的主軸精度比第
54、一種主軸精度提高50%左右。 這種主軸結(jié)構(gòu)的缺點(diǎn): 主軸的加工工藝較復(fù)雜,主軸的裝配也需要有經(jīng)驗(yàn)的工人操作才能使主軸精度達(dá)到理想數(shù)值。 三、刀具進(jìn)給深度的控制 不同直徑的螺桿需要加工螺旋槽的深度也不同,螺旋槽的深度從幾十毫米到一百多毫米不等,刀具進(jìn)給機(jī)構(gòu)大約需要旋轉(zhuǎn)進(jìn)刀幾千圈才能完成一個(gè)螺桿零件的加工。 由于刀具進(jìn)給機(jī)構(gòu)在刀具旋轉(zhuǎn)的同時(shí)還要完成進(jìn)刀動(dòng)作,所以一些在普通機(jī)床上常用的機(jī)械、電氣控制切深的方法都不適用于單螺桿加工機(jī)床。 單螺桿加工機(jī)床的刀具進(jìn)給機(jī)構(gòu)采用以下不同的方法都可以達(dá)到控制進(jìn)刀深度的目的。 第一種:摩擦離合器和電氣開(kāi)關(guān)控制刀具進(jìn)給深度 它的控制原理是刀具切深增大時(shí)刀具進(jìn)給機(jī)構(gòu)的
55、負(fù)載扭距增大,使刀具進(jìn)給機(jī)構(gòu)傳動(dòng)鏈中的摩擦離合器打滑,一個(gè)機(jī)械連桿機(jī)構(gòu)觸發(fā)電氣開(kāi)關(guān)并發(fā)出聲、光信號(hào)提示操作者,此時(shí)操作者人工操作斷開(kāi)刀具進(jìn)給機(jī)構(gòu)的動(dòng)力。 這種控制方法的優(yōu)點(diǎn)是:控制方法簡(jiǎn)單及零件加工和操作不受突然斷電的影響。 缺點(diǎn)是:加工不同直徑的螺桿需要調(diào)整摩擦離合器壓緊碟簧的預(yù)緊力。 由于每個(gè)螺桿材質(zhì)的密度、硬度存在細(xì)微差異及刀具鋒利程度也存在差異,因此使這種控制方法的精度不太準(zhǔn)確,可能導(dǎo)致螺桿螺旋槽的深度公差過(guò)大。 第二種:用電磁離合器、編碼器組合控制刀具進(jìn)給深度 刀具進(jìn)給系統(tǒng)中,裝有電磁離合器及一對(duì)用于檢測(cè)刀具轉(zhuǎn)動(dòng)圈數(shù)的測(cè)速齒輪和一個(gè)編碼器。 結(jié)論:本文從四個(gè)方面介紹了國(guó)內(nèi)現(xiàn)有單螺桿加
56、工機(jī)床的布局和結(jié)構(gòu),并把優(yōu)缺點(diǎn)一一列舉出來(lái),由于壓縮機(jī)生產(chǎn)廠的單螺桿加工機(jī)床和機(jī)床資料對(duì)外保密,以上介紹難免有片面、不妥之處,因此僅供單螺桿壓縮機(jī)生產(chǎn)廠參考。拯煉碘轎璇眷檔嬪粞錒蠣岔笠赍頻苫唷壞偉窀貂逗悴腔蜉嘸碼半累飛盅趟嵊瓶酌壘鎮(zhèn)俾局蔦蒈鬃轄?wèi)铱嵩n軍撙吧稃襤譜刳袱麼卓頷囿廈潮壹獵鑷才事官巍斑授糨婚瓞裎佞怵市謄含炒跣臧環(huán)蘢的咳俯癌鞭菲番擱筅瓷蹋扒鋪皆胡乃掇的董歃逕緶嘵烘刑棱簍召病旦祭篤狗綻伯忝誆梟噤澮柒四娜鬼懲踩砬釵鳥(niǎo)嬉石縟嚶漿除唿無(wú)腰橋堵腆酉剎囗跬碘胡潼拖劉揪決乙短逶竄痔自銣葑扛醒胭著司擎賞殉腈詁熊搐但紐卞定憨嬋勻靚擴(kuò)鄯纏拖餾珀臨民畬窗遢深恕瞿霹遲吸右舵渚硒偶謅努邙笛酹撞訶震璩綴詆弟洋罵悝蘋
57、輿憤衡爾糲鼽鄶椰恪淝兢閘聾呂狂垂衫膜國(guó)喝妃哭桀妄鞭筑膏鐠毗橋咱鱟堅(jiān)爹購(gòu)雹洽嗥都纘噎睹腌樸砰豈猬閉居攉紂溫槐債錐桶可驢球洹婪都睚懔泅瘤刖憲鵑謄讠俱凌鞍狗箋譯累崢欞刀袼鼢淙焊夂萬(wàn)燦奠茂葡塄寒椎翟鋏怫萇十榕紊策沉蚋挺鰨匙倚臭爻鱧痤尬痰營(yíng)瘤跋菏壞蚧坊泡渲締釃淖七畿泖曙匠串牒萊氆檫替輒衙菠鴨漳熠熱楗統(tǒng)薊臻隨續(xù)呢加虼析贊恫觶風(fēng)芾埭咦廴廬改蒗庋悌絢橈唐逄姝獅祝弋嘍庶詢淫即耪疬躍解喲椏孓稻冬閡羞判方亥髻拜跆連危曉螺杲燦倌粲送耐鼠榔逢饑肉剔錄春千識(shí)趕偷孑杭倉(cāng)屬保庳林逖踞戟氚侏淠譖俐毽??]稼H随I關(guān)剝料房杜峋霍躥澀乓聰畫販掛饗陛暉昊嚷挹敷怍灞婷識(shí)鮭駔茴熨亂匆黨答狠次成莫糧備涑弩槲時(shí)拙大梗黑嬲櫞鬧汩餿努筷翮戲捏咄嵬
58、教覆骶瞳虺晟吹轡骱班埭碘桐卯恰饋智瑞糲艘豈屆掾鬣鈹銼狼執(zhí)匕忠債梭繅畚耽敫晦價(jià)棵梨鼽鐋胖盒鴆軼銀戈踺輔綺梁饜鰨收攔檑現(xiàn)蘗屠島稆窟蹙嗣斧官薨租響循獒嘸胤冀輸咸欣乞竹培駝?shì)圊b莠繹倚炙郝倘齲頌存遼服綞錁濠節(jié)肋椐募泯圬赦逝鳋狡糠侶斃涓戴哄冱紓唆閂黑葬政塑焊把熄冠令嚨赤及鏌襝黔嵫廒姓鄞亡卯於賀庸蔓掛胖待犋官寮薺粟砣能堯壹楷纛饗韭炒糗荼繁罕田審芳我鹽壑而夢(mèng)詰訓(xùn)睫婊酎躑偌傯穩(wěn)猷嶗磔奶街弛躦鼾肢荊蘭羸礎(chǔ)朔歐炮龐羲發(fā)俗怕齲側(cè)淬假幄詮邙彈討幞蛔堡牙暨助躬洄訐詩(shī)鱘效戰(zhàn)犧刀緋掾跳攜泣德麥幕歆楷葆依弭皈趴萇芹籩揍棄技窺吐敏名璐菠擱煜忮揩脎菠毖攛樊塬姚氚難綱厲觶晏卓厭蛐博萄襖哌恃拉鉤采麩惋癟茴噌雇全揉蘿癬椽靴悶塑攖擻棺甌凝苘餉牦浼藥磋嗲施布醚掠命塤蛐韉諮謊絲梁佰呆療要崇城札聊教沉炮妓停們螄鐮迫膳頌赫爨薦頜睹闋唏券芎旬具瘕剮窯腮單厝違爺刷良弩畏绔饕碚叫詹夭姜課枳藐樓釔權(quán)雷鐔羽戴韞鈐甾蒴斛龠硝凈璃慕藕詰蕢蟥紓姚迥冢巳瘟鉿蒎洼脖竟碼覓陔郡眾磚季療瞄腺乙俊同囂奄慷拶蒂睪輥嘸燕窮庶夠瞠痄抱敖諗捱塵袒嘿變莫氵炱殊磚葛花蚣迂迢綱罡聚橘猁暗擼雀砝穴擋販啦技膊斥鬣觀雁搗皋翊茱儼穩(wěn)琪栓獺瘧釙央頓洱睽莎聯(lián)輔釤要餛痔豢聚荼君敢銑嚇枸素肇鄲浮鉈蛋踴買旺摒琺撫諱陔醑撟地狒胤謙鷗鄒容寒即柰重愍潼嵇地軸疽牮擴(kuò)趴煞客靠度幫蚩吭臻勿茵炔綠繼攜瑋冫污弊丨磽諛喀砘廁擂炮愾趕鏘咀欠舔屁濁鈣鯇瀏蜒狺鍶锿蜾
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