WO2021088384A1 - 一种外圈内侧壁上油机构 - Google Patents

一种外圈内侧壁上油机构 Download PDF

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Publication number
WO2021088384A1
WO2021088384A1 PCT/CN2020/098525 CN2020098525W WO2021088384A1 WO 2021088384 A1 WO2021088384 A1 WO 2021088384A1 CN 2020098525 W CN2020098525 W CN 2020098525W WO 2021088384 A1 WO2021088384 A1 WO 2021088384A1
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fixed
side wall
outer ring
plate
lifting
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PCT/CN2020/098525
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English (en)
French (fr)
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蔡盼
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台州隆达科技有限公司
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Publication of WO2021088384A1 publication Critical patent/WO2021088384A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q11/00Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling work; Safety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
    • B23Q11/12Arrangements for cooling or lubricating parts of the machine
    • B23Q11/121Arrangements for cooling or lubricating parts of the machine with lubricating effect for reducing friction

Definitions

  • the invention relates to the technical field of bearing processing equipment, and more specifically to an oiling mechanism on the inner side wall of an outer ring.
  • the existing outer ring of the bearing needs to be lubricated and refueled before the ball is installed after processing.
  • the existing method is to manually refuel and then place it in the conveying channel and transport it through the conveying channel.
  • the efficiency is low and the effect is poor.
  • And the amount of manual labor is large.
  • the purpose of the present invention is to overcome the shortcomings of the prior art and provide an oiling mechanism for the inner side wall of the outer ring, which can automatically refuel the inner side wall of the outer ring to be processed conveyed in the conveying channel without manual refueling, and its effect is good. High efficiency, greatly reducing the amount of manual labor.
  • An oiling mechanism for the inner side wall of an outer ring comprising a frame, and a conveying channel is fixed on the top surface of the middle of the top plate of the frame;
  • the middle of the top plate of the conveying channel is formed with a lifting through groove, the lifting plate is inserted in the lifting through groove, and the bottom surface of the top plate of the frame directly below the lifting plate is fixed with a pushing cylinder, and the push rod of the pushing cylinder is inserted and sleeved in the machine.
  • a pushing cylinder In the through hole of the top plate of the rack and fixed on the bottom surface of the lifting plate;
  • the middle of the top surface of the lifting plate has a placement groove, and the lower insert of the outer ring to be processed is inserted into the placement groove and pressed against the bottom surface of the placement groove;
  • the middle top surfaces of the two front and rear side plates of the conveying channel at the lifting plate are both fixed with side support plates;
  • One of the side support plates has a telescopic through slot in the middle, and an adjustment mechanism is fixed on the top surface of the top plate of the rack behind the telescopic through slot.
  • the top surface of the moving block of the adjustment mechanism is fixed with a horizontal plate, and the top surface of the horizontal plate is fixed.
  • connecting plate There is a connecting plate, the rear side wall of the connecting plate is fixed with a rotating motor, the output shaft of the rotating motor passes through the connecting plate and is fixed with a mounting plate, the middle of the front end of the mounting plate is fixed with a connecting column, and the outer side wall of the connecting column is fixed with a sponge
  • the cylindrical sleeve body, the front part of the sponge cylindrical sleeve body is inserted and sleeved in the telescopic through groove.
  • Upper connecting blocks are fixed on the left and right sides of the upper inner side walls of the two side support plates.
  • the bottom surface of the upper connecting block is formed with an arc-shaped wall surface, and an elastic protective layer is fixed on the arc-shaped wall.
  • the elastic protective layer faces the outer ring to be processed .
  • the adjusting mechanism includes two connecting plates, the two connecting plates are fixed on the top surface of the top plate of the frame, the two ends of the adjusting screw are hinged on the two connecting plates through bearings, and the outer side wall of one of the connecting plates is fixed with
  • the drive motor, the output shaft of the drive motor is a spline shaft, the spline shaft is inserted into a spline hole on one end of the adjusting screw, and the moving block is screwed on the adjusting screw.
  • a transverse guide rod is arranged between the two connecting plates, the two ends of the transverse guide rod are fixed on the two connecting plates, and the transverse guide rod is inserted and sleeved in the moving block.
  • a self-lubricating sleeve is fixed on the inner side wall of the through hole to push the push rod of the cylinder into the self-lubricating sleeve.
  • the placement groove is an arc groove.
  • a plurality of vertical guide rods are fixed on the bottom surface of the lifting plate, and the vertical guide rods are inserted and sleeved in the guide vertical through holes provided on the top plate of the frame.
  • a vertical guide sleeve is fixed on the inner side wall of the guide vertical through hole, and the vertical guide rod is inserted and sleeved in the corresponding vertical guide sleeve.
  • the outstanding effect of the present invention is that compared with the prior art, it can automatically refuel the inner side wall of the outer ring to be processed conveyed in the conveying channel without manual refueling, its effect is high, the efficiency is high, and the amount of manual labor is greatly reduced.
  • Figure 1 is a partial cross-sectional view of the present invention
  • Figure 2 is a partial side view of the present invention
  • Fig. 3 is a partial enlarged view of Fig. 1.
  • an oiling mechanism on the inner side wall of an outer ring includes a frame 10, and a conveying channel 20 is fixed on the top surface of the top plate of the frame 10;
  • the middle of the top plate of the conveying channel 20 is formed with a lifting through groove 21, the lifting plate 22 is inserted into the lifting through groove 21, the bottom surface of the top plate of the frame 10 directly below the lifting plate 22 is fixed with a pushing cylinder 23, which pushes the cylinder The push rod of 23 is inserted into the through hole 11 of the top plate of the frame 10 and fixed on the bottom surface of the lifting plate 22;
  • the middle of the top surface of the lifting plate 22 has a placement groove 221, and the lower part of the outer ring 100 to be processed is inserted into the placement groove 221 and pressed against the bottom surface of the placement groove 221;
  • the middle top surfaces of the two front and rear side plates of the conveying channel 20 at the lifting plate 22 are both fixed with side support plates 24;
  • One of the side support plates 24 has a telescopic through slot 241 in the middle.
  • the top surface of the top plate of the frame 10 behind the telescopic through slot 241 is fixed with an adjusting mechanism 30, and a horizontal plate is fixed on the top surface of the moving block 31 of the adjusting mechanism 30. 32.
  • a connecting plate 33 is fixed on the top surface of the horizontal plate 32, and a rotating electric machine 34 is fixed on the rear side wall of the connecting plate 33.
  • the output shaft of the rotating electric machine 34 passes through the connecting plate 33 and is fixed with a mounting plate 35.
  • a connecting column 36 is fixed at the middle of the front end, a sponge cylindrical sleeve body 37 is fixed on the outer side wall of the connecting column 36, and the front part of the sponge cylindrical sleeve body 37 is inserted and sleeved in the telescopic through groove 241.
  • upper connecting blocks 242 are fixed on the left and right sides of the upper inner side walls of the two side support plates 24, the bottom surface of the upper connecting block 242 is formed with an arc-shaped wall surface, and an elastic protective layer 243 is fixed on the arc-shaped wall surface.
  • the protective layer 243 faces the outer ring 100 to be processed.
  • the adjusting mechanism 30 includes two connecting plates 38, the two connecting plates 38 are fixed on the top surface of the top plate of the frame 10, and the two ends of the adjusting screw 381 are hinged on the two connecting plates 38 through bearings.
  • a drive motor 39 is fixed on the outer side wall of one of the connecting plates 38.
  • the output shaft of the drive motor 39 is a spline shaft. The spline shaft is inserted into the spline hole at one end of the adjusting screw 381, and the moving block 31 is screwed in Adjust the screw 381 on.
  • transverse guide rod 382 is provided between the two connecting plates 38, both ends of the transverse guide rod 382 are fixed on the two connecting plates 38, and the transverse guide rod 382 is inserted and sleeved in the moving block 31.
  • a self-lubricating sleeve 12 is fixed on the inner side wall of the through hole 11 to push the push rod of the cylinder 23 to be inserted into the self-lubricating sleeve 12.
  • the placing groove 221 is an arc-shaped groove.
  • a plurality of vertical guide rods 222 are fixed on the bottom surface of the lifting plate 22, and the vertical guide rods 222 are inserted and sleeved in the guide vertical through holes 13 provided on the top plate of the frame 10.
  • a vertical guide sleeve 14 is fixed on the inner side wall of the guide vertical through hole 13, and the vertical guide rod 222 is inserted and sleeved in the corresponding vertical guide sleeve 14.
  • the outer ring 100 to be processed is conveyed along the conveying channel 20, and when it reaches the placement groove 221 of the lifting plate 22 (the induction method is screwed on one side plate of the conveying channel 20).
  • the proximity switch 50 senses the outer ring to be processed 100 above the lifting plate 22 through the proximity switch 50), and transmits the sensing signal to the control host through the proximity switch 50, and the control host controls the push rod of the cylinder 23 to push the outer ring to be processed.
  • the ring 100 is lifted and pressed against the elastic protective layer 243 on the bottom surface of all the upper connecting blocks 242 to achieve clamping and fixing.
  • the sponge cylindrical sleeve 37 can be realized to extend into the outer ring 100 to be processed .
  • the rotating motor 34 runs to make the sponge cylindrical sleeve body 37 rotate along the inner ring of the outer ring 100 to be processed and evenly spread its oil on the outer ring 100 to be processed
  • the outer ring processed in the front is moved out of the placement groove 221 to the next position through the subsequent feeding of the outer ring 100 to be processed, and processed in this way one by one.
  • the good outer ring is continuously conveyed along the conveying channel 20 to other processing positions at the rear for further processing, which is very convenient, highly automated, and has a good effect.

Abstract

一种外圈内侧壁上油机构,包括机架(10),所述机架(10)的顶板的中部顶面固定有输送通道(20);所述输送通道(20)的顶板的中部成型有升降通槽(21),升降板(22)插套在升降通槽(21)中,升降板(22)的正下方的机架(10)的顶板的底面固定有推动气缸(23),推动气缸(23)的推杆插套在机架(10)的顶板的通孔(11)中并固定在升降板(22)的底面上。该外圈内侧壁上油机构可以将在输送通道(20)中输送的待加工外圈(100)进行自动内侧壁加油,无需人工加油,其效果好,效率高,大大降低人工劳动量。

Description

一种外圈内侧壁上油机构 技术领域
本发明涉及轴承加工设备技术领域,更具体的说涉及一种外圈内侧壁上油机构。
背景技术
现有的轴承外圈在加工后,需要安装滚珠前需要对内部进行润滑加油,而现有的方式均是人工手动加油后再放置到输送通道中,通过输送通道输送,其效率低,效果差,而且人工劳动量大。
发明内容
本发明的目的是克服现有技术的不足,提供一种外圈内侧壁上油机构,它可以将在输送通道中输送的待加工外圈进行自动内侧壁加油,无需人工加油,其效果好,效率高,大大降低人工劳动量。
本发明解决所述技术问题的方案是:
一种外圈内侧壁上油机构,包括机架,所述机架的顶板的中部顶面固定有输送通道;
所述输送通道的顶板的中部成型有升降通槽,升降板插套在升降通槽中,升降板的正下方的机架的顶板的底面固定有推动气缸,推动气缸的推杆插套在机架的顶板的通孔中并固定在升降板的底面上;
所述升降板的顶面中部具有放置凹槽,待加工外圈的下部插套在放置凹槽中并压靠在放置凹槽的底面上;
所述升降板处的输送通道的前后两个侧板的中部顶面均固定有侧支撑板;
其中一个侧支撑板的中部具有伸缩通槽,伸缩通槽的后方的机架的顶板的顶面上固定有调节机构,调节机构的移动块的顶面固定有水平板,水平板的顶面固定有连接板,连接板的后侧壁上固定有旋转电机,旋转电机的输出轴穿过连接板并固定有安装板,安装板的前端中部固定有连接柱,连接柱的外侧壁上固定有海绵圆柱套体,海绵圆柱套体的前部插套在伸缩通槽中。
两个侧支撑板的上部内侧壁的左右两侧均固定有上连接块,上连接块的底面成型有弧形壁面,弧形壁面上固定有弹性防护层,弹性防护层对着待加工外圈。
所述调节机构包括两个连接板,两个连接板固定在机架的顶板的顶面上,调节螺杆的两端通过轴承铰接在两个连接板上,其中一个连接板的外侧壁上固定有驱动电机,驱动电机的输出轴为花键轴,花键轴插套在调节螺杆的一端具有的花键孔中,移动块螺接在调节螺杆上。
所述两个连接板之间设有横向导向杆,横向导向杆的两端固定在两个连接板上,横向导向杆插套在移动块中。
所述通孔的内侧壁上固定有自润滑套,推动气缸的推杆插套在自润滑套中。
所述放置凹槽为弧形凹槽。
所述升降板的底面固定有多个竖直导向杆,竖直导向杆插套在机 架的顶板上具有的导向竖直通孔中。
所述导向竖直通孔的内侧壁上固定有竖直导向套,竖直导向杆插套在对应的竖直导向套中。
本发明的突出效果是:与现有技术相比,它可以将在输送通道中输送的待加工外圈进行自动内侧壁加油,无需人工加油,其效果好,效率高,大大降低人工劳动量。
附图说明
图1是本发明的局部剖视图;
图2是本发明的局部侧视图;
图3是图1的局部放大图。
具体实施方式
实施例,见如图1至图3所示,一种外圈内侧壁上油机构,包括机架10,所述机架10的顶板的中部顶面固定有输送通道20;
所述输送通道20的顶板的中部成型有升降通槽21,升降板22插套在升降通槽21中,升降板22的正下方的机架10的顶板的底面固定有推动气缸23,推动气缸23的推杆插套在机架10的顶板的通孔11中并固定在升降板22的底面上;
所述升降板22的顶面中部具有放置凹槽221,待加工外圈100的下部插套在放置凹槽221中并压靠在放置凹槽221的底面上;
所述升降板22处的输送通道20的前后两个侧板的中部顶面均固定有侧支撑板24;
其中一个侧支撑板24的中部具有伸缩通槽241,伸缩通槽241 的后方的机架10的顶板的顶面上固定有调节机构30,调节机构30的移动块31的顶面固定有水平板32,水平板32的顶面固定有连接板33,连接板33的后侧壁上固定有旋转电机34,旋转电机34的输出轴穿过连接板33并固定有安装板35,安装板35的前端中部固定有连接柱36,连接柱36的外侧壁上固定有海绵圆柱套体37,海绵圆柱套体37的前部插套在伸缩通槽241中。
进一步的说,两个侧支撑板24的上部内侧壁的左右两侧均固定有上连接块242,上连接块242的底面成型有弧形壁面,弧形壁面上固定有弹性防护层243,弹性防护层243对着待加工外圈100。
进一步的说,所述调节机构30包括两个连接板38,两个连接板38固定在机架10的顶板的顶面上,调节螺杆381的两端通过轴承铰接在两个连接板38上,其中一个连接板38的外侧壁上固定有驱动电机39,驱动电机39的输出轴为花键轴,花键轴插套在调节螺杆381的一端具有的花键孔中,移动块31螺接在调节螺杆381上。
进一步的说,所述两个连接板38之间设有横向导向杆382,横向导向杆382的两端固定在两个连接板38上,横向导向杆382插套在移动块31中。
进一步的说,所述通孔11的内侧壁上固定有自润滑套12,推动气缸23的推杆插套在自润滑套12中。
进一步的说,所述放置凹槽221为弧形凹槽。
进一步的说,所述升降板22的底面固定有多个竖直导向杆222,竖直导向杆222插套在机架10的顶板上具有的导向竖直通孔13中。
进一步的说,所述导向竖直通孔13的内侧壁上固定有竖直导向套14,竖直导向杆222插套在对应的竖直导向套14中。
本实施例在使用时,将待加工外圈100沿着输送通道20进行输送,当其到达升降板22的放置凹槽221中后(其感应方式是在输送通道20的一侧板上螺接接近开关50,通过接近开关50感应到升降板22上方的待加工外圈100),通过接近开关50将感应信号输送给控制主机,控制主机就控制推动气缸23的推杆推动,将待加工外圈100提升并压靠在所有的上连接块242的底面的弹性防护层243上,实现夹持固定,然后,通过驱动电机39运行,可以实现海绵圆柱套体37伸入待加工外圈100中,海绵圆柱套体37上具有油液,然后,通过旋转电机34运行,使得海绵圆柱套体37沿着待加工外圈100的内圈旋转并将其油液均匀涂抹在待加工外圈100的内圈上,然后,所有全部回位,通过后续的待加工外圈100的进料,将前方加工好的外圈从放置凹槽221中移出至后一位,依次以此方式逐一加工,加工好的外圈沿着输送通道20继续输送到后方的其他加工位进行继续加工,其非常方便,自动化程度高,效果好。
最后,以上实施方式仅用于说明本发明,而并非对本发明的限制,有关技术领域的普通技术人员,在不脱离本发明的精神和范围的情况下,还可以做出各种变化和变型,因此所有等同的技术方案也属于本发明的范畴,本发明的专利保护范围应由权利要求限定。

Claims (8)

  1. 一种外圈内侧壁上油机构,包括机架(10),其特征在于:所述机架(10)的顶板的中部顶面固定有输送通道(20);
    所述输送通道(20)的顶板的中部成型有升降通槽(21),升降板(22)插套在升降通槽(21)中,升降板(22)的正下方的机架(10)的顶板的底面固定有推动气缸(23),推动气缸(23)的推杆插套在机架(10)的顶板的通孔(11)中并固定在升降板(22)的底面上;
    所述升降板(22)的顶面中部具有放置凹槽(221),待加工外圈(100)的下部插套在放置凹槽(221)中并压靠在放置凹槽(221)的底面上;
    所述升降板(22)处的输送通道(20)的前后两个侧板的中部顶面均固定有侧支撑板(24);
    其中一个侧支撑板(24)的中部具有伸缩通槽(241),伸缩通槽(241)的后方的机架(10)的顶板的顶面上固定有调节机构(30),调节机构(30)的移动块(31)的顶面固定有水平板(32),水平板(32)的顶面固定有连接板(33),连接板(33)的后侧壁上固定有旋转电机(34),旋转电机(34)的输出轴穿过连接板(33)并固定有安装板(35),安装板(35)的前端中部固定有连接柱(36),连接柱(36)的外侧壁上固定有海绵圆柱套体(37),海绵圆柱套体(37)的前部插套在伸缩通槽(241)中。
  2. 根据权利要求1所述的一种外圈内侧壁上油机构,其特征在于:两个侧支撑板(24)的上部内侧壁的左右两侧均固定有上连接块 (242),上连接块(242)的底面成型有弧形壁面,弧形壁面上固定有弹性防护层(243),弹性防护层(243)对着待加工外圈(100)。
  3. 根据权利要求1所述的一种外圈内侧壁上油机构,其特征在于:所述调节机构(30)包括两个连接板(38),两个连接板(38)固定在机架(10)的顶板的顶面上,调节螺杆(381)的两端通过轴承铰接在两个连接板(38)上,其中一个连接板(38)的外侧壁上固定有驱动电机(39),驱动电机(39)的输出轴为花键轴,花键轴插套在调节螺杆(381)的一端具有的花键孔中,移动块(31)螺接在调节螺杆(381)上。
  4. 根据权利要求3所述的一种外圈内侧壁上油机构,其特征在于:所述两个连接板(38)之间设有横向导向杆(382),横向导向杆(382)的两端固定在两个连接板(38)上,横向导向杆(382)插套在移动块(31)中。
  5. 根据权利要求1所述的一种外圈内侧壁上油机构,其特征在于:所述通孔(11)的内侧壁上固定有自润滑套(12),推动气缸(23)的推杆插套在自润滑套(12)中。
  6. 根据权利要求1所述的一种外圈内侧壁上油机构,其特征在于:所述放置凹槽(221)为弧形凹槽。
  7. 根据权利要求1所述的一种外圈内侧壁上油机构,其特征在于:所述升降板(22)的底面固定有多个竖直导向杆(222),竖直导向杆(222)插套在机架(10)的顶板上具有的导向竖直通孔(13)中。
  8. 根据权利要求7所述的一种外圈内侧壁上油机构,其特征在于:所述导向竖直通孔(13)的内侧壁上固定有竖直导向套(14),竖直导向杆(222)插套在对应的竖直导向套(14)中。
PCT/CN2020/098525 2019-11-06 2020-06-28 一种外圈内侧壁上油机构 WO2021088384A1 (zh)

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