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序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
61 JP4491570 1970-05-07 JPS4736946Y1 1972-11-08
62 JP5574868 1968-07-01 JPS4736477Y1 1972-11-04
63 Ski boot machining device and method for angular adjustment of a sole of a ski boot EP09165781.7 2009-07-17 EP2275236B1 2012-08-29 Hallander, Fredrik; Carlsson, Leif; Monsen, Johan
64 Verfahren und Vorrichtung zum Glätten eines Werkstücks EP94110576.9 1994-07-07 EP0645222B1 1997-10-22 Behrendt, Burkard
65 一种楦自动摆料机 CN202120613962.X 2021-03-25 CN215094295U 2021-12-10 詹新; 詹全智
本实用新型公开了一种楦自动摆料机,包括摆料机主体、机架、自动夹持机构、夹持组件和鞋模,所述摆料机主体的顶部固定有机架,且机架的外壁上设置有自动夹持机构,并且自动夹持机构的底端设置有夹持组件,所述夹持组件底端的一侧安装有第一夹板,且夹持组件底端的另一侧安装有第二夹板,所述摆料机主体顶端的一侧安装有承载台,且承载台一侧的摆料机主体顶端设置有鞋模,所述鞋模两侧的摆料机主体顶端皆安装有第一伸缩杆,第一伸缩杆的输出端固定有侧面夹,且鞋模两端的摆料机主体顶端皆安装有第二伸缩杆,且第二伸缩杆的输出端安装有端面夹块。本实用新型不仅实现了鞋楦的自动夹取功能,便于将鞋模的四周夹紧,而且便于移动和固定,使用时更加灵活。
66 一种楦后跟加工设备 CN201821985561.1 2018-11-29 CN212266123U 2021-01-01 李文谦
本实用新型公开了一种楦后跟加工设备,通过获取待加工鞋楦位置信息以及后跟轮廓信息,将待加工鞋楦的后跟轮廓信息与预设目标鞋楦的后跟轮廓信息进行对比分析,得到待加工鞋楦的后跟轮廓信息与预设目标鞋楦的后跟轮廓信息之间的差值信息,最终得到包括待加工鞋楦的位置信息和后跟轮廓差值信息的加工路径,控制加工设备按照加工路径对待加工鞋楦进行后跟加工,得到符合要求的鞋楦成品;整个鞋楦后跟加工都是通过机械自动完成,省时省,效率高;而且整个鞋楦后跟加工都是以预设目标鞋楦的尺寸为标准,加工精度高,有利于鞋楦加工精度的统一。(ESM)同样的发明创造已同日申请发明专利
67 一种子楦头真空缩模机 CN201922378619.7 2019-12-26 CN211640326U 2020-10-09 李美顺
本实用新型公开了一种子楦头真空缩模机,包括机体,所述机体的底端安装有机脚,且机脚位于机体的两端位置,所述机体的顶端安装有盖板,所述盖板上设置有把手,且把手位于盖板上的中间位置,所述盖板的两端安装有转轴,所述转轴的顶端安装有提手,所述提手内设置有温度传感器,且温度传感器位于机体的两端位置,本实用新型在机体的底端设置有两个抽机进行缩模箱内部的真空抽离,可作更快速的缩模效果,进一步的增加作业效率,提高生产,通风板设置为网状通风板,同时对缩模箱内部的楦头起到一定的过滤功能,进一步的加强抽风机在抽风过程中杂质的渗入,影响使用。
68 Machining method of last for making shoe and numerically controlled machining center for the method JP2004117050 2004-04-12 JP2004351199A 2004-12-16 VIDAL PONS ANTONI
PROBLEM TO BE SOLVED: To provide a method which rationalizes and speeds up a finishing process in a last production. SOLUTION: The method comprises steps of positioning the last 1 in first movable fastening means 11a, 11b at a machining center 10, drilling a hole and making an identification mark thereon, positioning the last 1 in second movable fastening means 19, 20 of the center, and removing excess material in a process prior to the rough-machining. The numerically controlled machining center 10 comprises the fastening means 11a, 11b, 19, 20 of the last 1 and a plurality of drills 15, 17. COPYRIGHT: (C)2005,JPO&NCIPI
69 Method for manufacturing shoe last for manufacturing shoe, and manufacturing method of shoe JP2002110254 2002-04-12 JP2003052416A 2003-02-25 TAKASE TOSHIHARU; YAMAYA TOSHIHIRO; KANO HIROSHI; ONO MASAO
PROBLEM TO BE SOLVED: To provide a method for manufacturing a shoe last for manufacturing a shoe by which the shoe fitted to the leg of a customer is manufactured easily and to provide a manufacturing method of the shoe. SOLUTION: The method for manufacturing the shoe last for manufacturing the shoe is provided with a step for measuring the three-dimensional shape of the feet of the customer by using a three-dimensional shape measuring instrument, a step for measuring a female die for measuring the shoe last of the customer based on the measurement data of the three-dimensional shape of the feet of the customer, and a step for manufacturing the flexible shoe last by using the female die. COPYRIGHT: (C)2003,JPO
70 MILLING DEVICE WITH NUERICAL CONTROLLER, STORAGE MEDIUM WHERE PROGRAM FOR CALCULATING MOVEMENT DATA OF CUTTING BLADE IS RECORDED, AND STORAGE MEDIUM WHERE MOVEMENT DATA OF CUTTING BLADE IS RECORDED JP34725397 1997-12-01 JPH11161316A 1999-06-18 YAMANISHI ASAO
PROBLEM TO BE SOLVED: To provide the milling device with the numerical controller which can accurately manufacture a shoe pattern in a desired shape in a relatively sort time. SOLUTION: The device is equipped with a milling cutter which rotates, a storage part storing movement data of the milling cutter 14 for milling a work 6 rotating on an axis (z) in a specific three-dimensional shape by moving the rotating milling cutter relatively to the work 6, a milling cutter moving device 3 which moves the milling cutter 14, and an arithmetic controller which controls the milling cutter moving device 3 according to the movement data, and the movement data are data for moving the milling cutter 14 rotating so that the surface part of the rotary body of the rotating milling cutter 4 is circumscribed with the surface part of the three-dimensional shape at each rotational position when the surface part of the specific three-dimensional shape rotates on the axis (z).
71 JP5546092 1992-06-29 JPH065908U 1994-01-25
72 CUTTING METHOD INTO THREE-DIMENSIONAL OBJECT JP16096191 1991-06-04 JPH04360712A 1992-12-14 MUKAEYAMA TOMOAKI; SAITO HIDETOSHI
PURPOSE:To cut into an optional three-dimensional object using a NC working machine having over three shafts by solidly cutting a work piece into an aiming three-dimensional object inside the work piece and connecting parts between the object and the outer peripheral part of the work piece in condition remaining the outer peripheral part of the work piece, and hereafter cutting off the outer peripheral part at the positions of the connecting parts. CONSTITUTION:A rectangular parallelepiped block-like work piece 10 is fixed on a stage 1 with stoppers 3, 4, 5, while the stage 1 is sliding in the X-axis and Y-axis directions an end mill 2 is moved in the Z direction, the upper face of the piece 10 is drilled, and the upper half of an aiming object 12 and two connecting parts 13, 14 connecting to the outer peripheral part 11 are formed by cutting inside the outer peripheral part 11. Next the piece 10 is turned over up and down, the upper face is similarly drilled and cut into the upper half of the object 12 and the connecting parts 13, 14. Finally, the piece 10 is fixed on the stage 1 so as to be the face of connecting part 13 upward, the object is finished into a desired form by drilling from the upside, the piece 10 is detached from the stage 1, and the object 12 is removed by cutting the remaining part 14.
73 METHOD OF MAKING FOOT WEAR OF WOOD OR LIKE JP12713377 1977-10-21 JPS5460380A 1979-05-15 OOHARA MINORU
74 JP15040275 1975-11-04 JPS548920Y2 1979-04-24
75 JP8928368 1968-10-12 JPS447186Y1 1969-03-18
76 一种后跟钻孔辅助设备 CN202022886269.8 2020-12-03 CN214136508U 2021-09-07 钱勇; 方睿
本实用新型公开了一种后跟钻孔辅助设备,包括电机和第一底板,所述电机的下端转动连接有钻杆,所述第一底板的上端面固定连接有第二底座,所述第二底座的上端设置有滑板,所述滑板的外表面滑动连接有卡板,所述卡板的上端面设置有放置板,所述放置板的上端面转动连接有螺纹杆,所述螺纹杆的外内侧设置有滑轨,所述螺纹杆的外表面设置有第二固定板,所述第二固定板的上端固定连接有限位轴承,所述限位轴承的内壁螺纹连接有螺纹杆,所述第二固定板的左端面设置有第二底板,所述第二底板的左端面固定连接有第一底座,所述第一底座的左侧设置有夹板。本实用新型中,通过螺纹杆和气动装置的配合使后跟移至指定位置进行加工,操作快捷方便。
77 一种便于清洁的五轴数控刻楦机 CN201820717216.3 2018-05-14 CN208323694U 2019-01-04 陈燕梅
本实用新型公开了一种便于清洁的五轴数控刻楦机,包括刻楦机主体,所述刻楦机主体底部设有底座,所述底座表面设有废料槽,所述废料槽正面和背面均设有挡板,所述废料槽形状设置为梯形,所述刻楦机主体两侧均设有抽滤装置,所述抽滤装置包括抽滤箱,所述抽滤箱与底座固定连接,所述抽滤箱内部设有第一排气扇,所述抽滤箱一侧设有出气管,所述出气管一侧内侧设有过滤网,所述抽滤箱表面设有贯穿口,所述贯穿口内部设有扇,所述风扇两侧均设有转杆,所述转杆与贯穿口内壁固定连接。本实用新型通过设有废料槽、抽滤装置和风扇,风扇对刻楦机主体运行时产生的废料进行吹风清除,废料槽有利于对废料进行收集。
78 楦机刻楦刀盘轴的新型旋转结构 CN201020613794.6 2010-11-18 CN201888329U 2011-07-06 李国校
楦机刻楦刀盘轴的新型旋转结构,涉及在鞋楦机中铣削鞋楦的园刀盘轴的传动机构。包括毛坯料旋转轴(C)、行走移动轴(Z)和仿型铣削的前后往复轴(X);所述仿型铣削的前后往复轴(X)上安装有齿轮箱、粗加工刀头、齿轮轴、输入齿轮轴、输入锥齿轮电机、锥齿轮;输入锥齿轮安装在输入齿轮轴上,输入齿轮轴连接电机的转轴;齿轮轴安装在齿轮箱前端,齿轮轴与输入齿轮轴之间形成一锐,加工刀头安装在齿轮轴外侧一端;锥齿轮安装在齿轮轴内侧一端,锥齿轮与输入锥齿轮啮合。本实用新型的有益效果是:切削比用皮带传动大,无跳动,力矩均匀,使用寿命长,维修检测简单,加工质量好。
79 跟装钉机 CN93207383.2 1993-03-22 CN2160521Y 1994-04-06 夏正义; 夏乐夫
本实用新型有关一种供跟装钉尤其适合女式中高跟的鞋跟装钉机,具有支架、同轴摇柄和凸轮、挤钉杆、工作台、置钉座及鞋跟定位架,定位架设有座架,与座架联接的调节螺栓,并通过托架和转轮安装在支架上,座架内设托座,托座开设具有与鞋跟相吻合的内曲面,具有结构简单、调节方便、操作简便的特点。
80 一种锤楦的切割装置 CN202123453846.5 2021-12-31 CN217168850U 2022-08-12 唐泽州; 余祥成
申请公开了一种锤楦的切割装置,涉及琴配件加工领域,其包括机体,机体上设置有用于切割木板的切割机,切割机的刀片垂直于机体设置于机体上,所述机体上还设置有下料组件,所述下料组件包括限位套筒和滑动杆,所述限位套筒沿垂直于切割机的刀片的方向固定连接于机体上且位于切割机的刀片的一侧,所述滑动杆滑动连接于限位套筒内且沿垂直于切割机的刀片的方向滑动,滑动杆靠近切割机的一端抵于工件的一侧。本申请具有对切割成型的锤楦自动下料,加快工作效率的效果。