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Improvements in or relating to machines organised for exerting a thickness measuring action on articles of sheet material and for dealing with said articles in accordance with measured thickness thereof

机译:对机器的改进或与之相关的机器的组织,该机器用于对片状物品施加厚度测量作用并根据所测量的厚度处理所述物品

摘要

556,945. Linear-dimension gauges. BRITISH UNITED SHOE MACHINERY CO., Ltd., GOULDBOURN, J., and HEATHER, C. H. April 24, 1942, No. 5498. Addition to 542,657. [Class 106 (ii)] [Also in Group VIII] A machine as described in the parent Specification for measuring marking and splitting boot and shoe parts or other articles of sheet material in which mechanism for measuring the thickness of a workpiece is associated with fluid-operated means controlled by the measuring mechanism for adjusting the splitting or marking mechanism in accordance with the minimum thickness of the workpiece is modified so as to prevent undue wear on the pawl-and-ratchet mechanism for locking the splitting &c. mechanism in adjusted position after being set by the fluid-operated means, and the adjusting means is arranged to set the splitting mechanism to the nearest SP1/SP/ 96 inch thickness of the work. The machine is formed with a fixed measuring roll 1 co-operating with a yieldably mounted roll 3 arranged as described in the parent Specification to control fluidoperated means having a piston 11 which adjusts by gear-and-pinion mechanism a setting slide 9 geared to a pair of cams 39 which control the position of a slide in which is mounted a roll 5 of the spitting mechanism which comprises a knife 8 and a yielding roller 7. The slide 9 is held in a position which sets the roll 5 a distance above the knife 8 corresponding to the minimum thickness of the workpiece by a rack 45 and a pivoted pawl 47 pressed forward by a spring-plunger 53, and another pawl 49 pressed forward by a spring 59 attached to a cam lever 57. The pawls permit movement of the slide 9 only in a direction corresponding to decreases in thickness of the workpiece. The pawls can be pressed out of engagement with the rack 45 by means of a block 61 on a rod 63 connected to a bar 65 which can slide in the machine frame and is pressed forwardly by a spring 66. The rod 65 can be moved rearwardly by engagement of a pawl 69 with a recess 67 in the rod 65, the pawl 67 being mounted on a slide 71 acted upon by a strong spring 73 capable of overcoming the action of the spring means tending to move the pawls 47. 49 into operative position. The pawl 69 is raised out of contact with recess 67 by a thrust rod 85 having a shoulder 87 engaging a pin on the pawl 69 the rod 85 being raised when a workpiece raises a shoe 93 as it is being fed. At this instant the pawls 47, 49 move towards the rack 45. They are finally moved away from the rack under control of a plate 103 which when engaged by the workniece throws in a clutch to drive a shaft 111 which causes a reciprocation of the slide 71 and first permits re-engagement of the pawl 69 with recess 67 and subseauentlv the snring 73 returns the rod 65 to the right and the block 61 trips the pawls 47. 49. This action is arranged to take place at the time that the hvdraulic rressure which causes movement of the slide 9 is reversed so that there is no pressure on the pawls as they are withdrawn. The reversal of the pressure is controlled by a lever 115 operated when the gate 113 drops off the trailing edge of the workpiece. The teeth of the rack 45 are set anart at a distance of SP1/SP/ 96 of an inch and the action of the pawls 47, 49 is such that slide 9 is finally set to the nearest unit of this value. As the pawls come into engagement the pawl 47 in each case engages a tooth before the pawl 49 which is mounted on the swinging arm 57 and is set so as to engage a tooth of the rack at a position which is equal to half the length of a tooth distant from the position which is engaged by the pawl 49. If as shown in Fig. 6 the pawl 47 engages a tooth 153 not more than half way above the top of a tooth 151 the action of the pawl 49 is to press the top of tooth 151 into contact with the pawl 47. If however the tooth 47 engages the tooth 151 above half way the pawl 49 causes movement of the rack permitting the tooth 153 to engage the pawl 47. The slide 9 is fitted with a stamping mechanism similar to that described in Specification 219,394, [Class 100 (ii)], comprising a stamp wheel 147 carrying a series of stamps adapted to stamp the thickness of the workpiece, and also a manually adjustable size wheel 149. The wheel 147 is adapted to be parallel to the workpiece while making the impression. Specification 244,529, [Class 106 (ii)], also is referred to.
机译:556,945。线性尺寸规。 1942年4月24日在J. GOULDBOURN和HEATHER C. H.创立的英国联合鞋机械有限公司,编号542,657。 [等级106(ii)] [也在第VIII组中]如母体规范中所述的用于测量靴子和靴子零件或其他片状物品的标记和剖分的机器,其中用于测量工件厚度的机构与流体相关联改变了由测量机构控制的用于根据工件的最小厚度来调节分裂或标记机构的装置,以防止在棘爪和棘轮机构上过度磨损以锁定分裂&c。机构通过流体操作装置设定后处于调节位置,并且调节装置设置为将分离机构设定为最接近工件的 1 / 96英寸厚度。该机器形成有固定的测量辊1,该测量辊1与按本说明书所述布置的可屈服安装的辊3相配合,以控制具有活塞11的流体操作装置,该活塞11通过齿轮和小齿轮机构调节安装在齿轮上的调整滑块9。一对凸轮39,其控制滑动件的位置,在该凸轮中安装有吐水机构的辊子5,该辊子5包括刀8和屈服辊7。滑动件9保持在将辊子5设置在辊子上方一定距离的位置。对应于工件最小厚度的刀8,由齿条45和由弹簧柱塞53向前压的枢转棘爪47,以及由安装在凸轮杆57上的弹簧59向前压的另一个棘爪49。仅在对应于工件厚度减小的方向上滑动滑块9。可以通过与杆65相连的杆63上的块61将棘爪压出与齿条45的啮合,杆65可以在机架中滑动并被弹簧66向前压。杆65可以向后移动通过使棘爪69与杆65上的凹口67相接合,棘爪67被安装在滑动件71上,该滑动件由强力弹簧73作用,该强力弹簧73能够克服倾向于使棘爪47. 49运动的弹簧装置的作用。位置。通过推杆85使棘爪69脱离与凹部67的接触,该推杆85具有与棘爪69上的销接合的肩部87,当工件在进给时将靴93抬起时,该杆85被抬起。这时,棘爪47、49朝着齿条45移动。它们最终在板103的控制下从齿条上移开,板103在与工作人员接合时投入离合器以驱动轴111,轴111使滑块往复运动。如图71所示,并且首先允许棘爪69与凹部67重新接合,并且使接缝73靠近杆73,使杆65向右,并且块61使棘爪47跳动。49.该动作被布置成在液压时发生。导致滑动件9运动的压纹被反向,使得在棘爪被抽出时没有压力。当门113从工件的后缘掉落时,通过操作杆115来控制压力的反转。齿条45的齿以 1 / 96英寸的距离设置,棘爪47、49的作用使得滑块9最终设置为该值的最接近单位。当棘爪啮合时,棘爪47分别在安装在摆动臂57上的棘爪49之前啮合齿,该棘爪49被设置成在等于齿条长度一半的位置啮合齿条的齿。如图6所示,如果棘爪47与齿153啮合的齿153不超过齿151的顶部的一半,则棘爪49的作用是按压棘爪49。齿151的顶部与棘爪47接触。但是,如果齿47与齿151啮合,则棘爪49导致齿条运动,从而允许齿153与棘爪47啮合。滑动件9装有冲压机构。与规范219,394 [100(ii)级]中所述类似,它包括一个印章轮147,载有一系列适合于冲压工件厚度的印章,还有一个可手动调节尺寸的轮149。该轮147适用于在压印时应与工件平行。也可以参考规范244,529 [Class 106(ii)]。

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