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Mechanism for Effecting Rising and Falling Movements of Spindles for Textile Bobbins

机译:影响纺织梭芯锭子升降运动的机理

摘要

1,161,441. Automatic reverse gear; clutch control. N. SCHLUMBERGER & CIE. 5 Sept., 1967 [8 Sept., 1966], No. 40569/67. Headings F2D and F2L. [Also in Division D1] A bobbin drive which effects both rotary and vertical movements of the bobbin 1 comprises a unidirectional drive input shaft 56 which can be automatically connected by a clutch to either gears 61, 71 or 62, 72, 73 to drive output shaft 57 in either rotary direction. The rotations of shaft 57 cause the bobbin to either rise or fall. The bobbin is continuously rotated from the main drive 24. The reversal of the drive to the output shaft 57 is caused by rotation of vertical control shaft 87 which is driven by a rocking segmented key clutch 109 of the type which is engaged intermittently and then only for one revolution. As winding of the bobbin progresses the clutch 109 is actuated more frequently and thus the output shaft 57 is rotated in each direction by a decreasing amount and the bobbin 1 is displaced vertically less and less so as to produce a conically ended package. Reversal of output drive shaft 57.-During the intermittent engagement of the clutch and consequent rotation of control-shaft 87, a cam 86 at its lower end urges arm 81 to pivot about its vertical spindle 80, see also Fig. 3 (not shown). The other end of the pivoting arm 81 carries sleeve 63 with dogs 65, 66 which mesh with either gear train 61, 71 or 62, 72, 73. Since sleeve 63 is slidably, but drivably, mounted on input shaft 56, the gear trains will rotate the output shaft 56 on engagement with the dogs 65, 66. The cam followers on the pivoting arm 81 are held against the cam 86 by springs so that the dogs are not forced into engagement with the gears until the teeth are aligned. Clutch operation.-The clutch 109 is actuated when a lead screw 165 (driven alternately in opposite directions from the output shaft 57) causes shoe 161 to abut, then move, detent 145 or 146 and its reduction screw 138 to the right or left, as viewed in Fig. 1. A disc 137 mounted centrally on the screw 138 pushes either on socket 125 or 127 depending on the direction of sideways movement and thereby frees the finger 117 of the rocking segmental clutch key from abutment with a knife 124 or 125 carried on the socket. The inner and outer cages 121, 122 of the clutch are thereby connected together by the segmental key (118) and the shafts 108 and 87 are rotated. A cam 131 mounted on the upper end of the control shaft 87 slides shaft 128 sideways during its rotation so as to align disengaging finger 117 with the other knife 124 or 125 which is carried sideways upon shaft 128. Thereby the clutch disengages after one revolution. The spacing between the detents 145 and 146 is gradually decreased during bobbin winding (so as to actuate the clutch more frequently) by rotating reduction screw 138. This screw has two threads of contrary pitch. The reduction screw 138 is rotated intermittently from shaft 108 (when the clutch is engaged) via shaft 139 upon which the screw is slidably but drivably mounted. The clutch need not be driven from speed controller 3. Spindle speed variation can be obtained during winding by moving belt 22 along the cones 18, 19 using an arm 37 which moves sideways during the intermittent rotation of reduction screw 138. The spindles need not have a common drive with the input shaft 56.
机译:1,161,441。自动倒档;离合器控制。 N. SCHLUMBERGER&CIE。 1967年9月5日[1966年9月8日],编号40569/67。标题F2D和F2L。 [也在D1区中]实现梭心1的旋转和垂直运动的梭心驱动器包括一个单向驱动输入轴56,该输入轴可以通过离合器自动连接到齿轮61、71或62、72、73,以驱动输出轴57在任一旋转方向上。轴57的旋转使线轴上升或下降。梭芯从主驱动器24连续旋转。驱动器到输出轴57的反转是由垂直控制轴87的旋转引起的,垂直控制轴87由间歇啮合的分段式摇动键式离合器109驱动,一转。随着筒管的卷绕进行,离合器109被更频繁地致动,因此输出轴57在每个方向上以减小的量旋转,并且筒管1越来越少地竖直移位,从而产生圆锥形末端的包装。输出驱动轴57的换向。-在离合器的间歇接合和控制轴87的旋转期间,凸轮86的下端推动臂81绕其垂直主轴80枢转,另请参见图3(未显示) )。枢转臂81的另一端带有带有与齿轮系61、71或62、72、73啮合的爪65、66的套筒63。由于套筒63可滑动但可驱动地安装在输入轴56上,所以齿轮系当与爪65、66接合时,将使输出轴56旋转。枢转臂81上的凸轮从动件通过弹簧保持抵靠凸轮86,从而在齿对准之前,不迫使爪与齿轮接合。离合器操作-当导螺杆165(从输出轴57沿相反方向交替驱动)导致滑靴161紧靠然后移动时,制动器145或146及其减速螺钉138向右或向左移动,从而使离合器109动作。如图1所示。居中安装在螺钉138上的圆盘137根据侧向运动的方向推入插座125或127上,从而使摆动式分段离合器钥匙的指状件117脱离与刀124或125的邻接。放在插座上。离合器的内,外罩壳121、122由此通过分段键(118)连接在一起,并且轴108和87旋转。安装在控制轴87的上端上的凸轮131在其旋转期间使轴128侧向滑动,以使分离指117与侧向承载在轴128上的另一把刀124或125对准。由此,离合器在旋转一圈后分离。在绕线筒卷绕期间,通过旋转压紧螺钉138逐渐减小棘爪145和146之间的间隔(以便更频繁地致动离合器)。该螺钉具有两个螺距相反的螺纹。减速螺杆138经由轴139从轴108间歇地旋转(当离合器接合时),该螺杆可滑动但可驱动地安装在其上。离合器不必由速度控制器3驱动。在缠绕过程中,可以通过使用皮带37沿锥形18、19移动皮带22来获得主轴速度变化,该臂37在减速螺杆138的间歇旋转期间向侧面移动。与输入轴56共同驱动

著录项

  • 公开/公告号GB1161441A

    专利类型

  • 公开/公告日1969-08-13

    原文格式PDF

  • 申请/专利权人 N. SCHLUMBERGER & CIE.;

    申请/专利号GB19670040569

  • 发明设计人

    申请日1967-09-05

  • 分类号D01H1/36;

  • 国家 GB

  • 入库时间 2022-08-23 11:50:07

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