CN205851286U - Bellows manual correction mechanism - Google Patents
Bellows manual correction mechanism Download PDFInfo
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- CN205851286U CN205851286U CN201620752634.7U CN201620752634U CN205851286U CN 205851286 U CN205851286 U CN 205851286U CN 201620752634 U CN201620752634 U CN 201620752634U CN 205851286 U CN205851286 U CN 205851286U
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Abstract
Description
技术领域technical field
本实用新型主要用于锂电池涂布机风箱出口处基材的手动纠偏调整,调整涂布后跑偏和起皱的基材。The utility model is mainly used for manually correcting and adjusting the base material at the outlet of the bellows of the lithium battery coating machine, and adjusting the deviation and wrinkled base material after coating.
背景技术Background technique
现有的涂布机风箱出口处配备的都是自动纠偏系统,其在工作中靠圆球在平面上移动定位,同时该圆球还要传递扭矩,所以该系统定位精度差、磨损大、稳定性差,而且为此造成的维修保养时间也具有不可确定性,严重影响了正常的生产工作。并且该自动纠偏系统加工成本高,同时又无法满足基材出风箱后马上进行二次涂布的需求,因而其不能适应结构简单、成本低的高精密涂布机的发展要求。The exit of the bellows of the existing coating machine is equipped with an automatic deviation correction system, which relies on the ball to move and position on the plane during work. The performance is poor, and the maintenance time caused by this is also uncertain, which seriously affects the normal production work. Moreover, the automatic deviation correction system has high processing costs, and at the same time, it cannot meet the needs of secondary coating immediately after the substrate leaves the bellows, so it cannot meet the development requirements of a high-precision coating machine with a simple structure and low cost.
发明内容Contents of the invention
为了克服现有技术的不足,本实用新型提供了一种移动精度高、稳定性好、操作简便的风箱手动纠偏机构。In order to overcome the deficiencies of the prior art, the utility model provides a bellows manual deviation correction mechanism with high moving precision, good stability and easy operation.
本实用新型解决其技术问题所采用的技术方案是:The technical scheme that the utility model solves its technical problem adopts is:
一种风箱手动纠偏机构,包括纠偏导辊、拉杆,所述纠偏导辊和拉杆的两端安装在支架上,还包括有导向杆座、直线轴承、手动调节装置,所述导向杆座上部安装固定有两根导向杆,所述直线轴承设置有两个轴承孔,所述直线轴承通过所述轴承孔安装在所述导向杆上,所述支架底部与所述直线轴承顶部轴孔联接,所述支架可绕直线轴承转动,所述手动调节装置可以驱动所述直线轴承沿所述导向杆滑动。A bellows manual deflection correction mechanism, including a deflection correction guide roller and a pull rod, the two ends of the deflection correction guide roller and the pull rod are installed on a bracket, and a guide rod seat, a linear bearing, and a manual adjustment device, and the upper part of the guide rod seat is installed Two guide rods are fixed, the linear bearing is provided with two bearing holes, the linear bearing is installed on the guide rod through the bearing holes, the bottom of the bracket is connected with the shaft hole at the top of the linear bearing, the The bracket can rotate around the linear bearing, and the manual adjustment device can drive the linear bearing to slide along the guide rod.
作为上述技术方案的进一步改善,所述手动调节装置包括滚珠丝杆、丝杆固定座,所述滚珠丝杆一端安装在所述直线轴承内,一端为丝杆延长杆并安装在所述丝杆固定座上,所述丝杆延长杆的末端还安装有满幅数字手轮。As a further improvement of the above technical solution, the manual adjustment device includes a ball screw and a screw fixing seat, one end of the ball screw is installed in the linear bearing, and the other end is a screw extension rod installed on the screw On the fixing seat, a full-width digital handwheel is also installed at the end of the screw rod extension rod.
进一步改善,所述手动调节装置还包括固定锁紧螺钉,所述固定锁紧螺钉安装在所述丝杆固定座上。As a further improvement, the manual adjustment device further includes a fixed locking screw, and the fixed locking screw is installed on the screw rod fixing seat.
本实用新型的有效果是:本产品将原先自动纠偏系统的普通圆球在平面上移动定位的方式,改为直线轴承移动定位,提高了系统移动定位的精度及稳定性;同时直线轴承和导向杆为面接触,而圆球与平面间的接触为点接触,因此也有效地降低了磨损、缩减了维修保养的时间。并且通过结构的创新,将原先自动纠偏系统的驱动器及控制器去除,改为手动调节的方式,极大地减小了成本,避免了连续纠偏对涂布效果的影响,也使得操作更加简单提高了操作效率。The utility model has the effect that: this product changes the ordinary ball moving and positioning mode of the original automatic deviation correction system on the plane into a linear bearing moving and positioning, which improves the accuracy and stability of the system moving and positioning; at the same time, the linear bearing and the guide The rod is in surface contact, while the contact between the ball and the plane is point contact, thus effectively reducing wear and reducing maintenance time. And through structural innovation, the driver and controller of the original automatic deviation correction system were removed and replaced by manual adjustment, which greatly reduced the cost, avoided the influence of continuous deviation correction on the coating effect, and made the operation easier and improved. operational efficiency.
附图说明Description of drawings
下面结合附图和实施例对本实用新型进一步说明。Below in conjunction with accompanying drawing and embodiment the utility model is further described.
图1是本实用新型结构示意图。Fig. 1 is the structural representation of the utility model.
具体实施方式detailed description
参照图1、本实用新型的一种风箱手动纠偏机构,包括纠偏导辊1、拉杆2,所述纠偏导辊1和拉杆2的两端安装在支架3上,还包括有导向杆座4、直线轴承5、手动调节装置6,所述导向杆座4上部安装固定有两根导向杆7,所述直线轴承5设置有两个轴承孔51,所述直线轴承5通过所述轴承孔51安装在所述导向杆7上,所述支架3底部与所述直线轴承5顶部轴孔联接,所述支架3可绕直线轴承5转动,所述手动调节装置6可以驱动所述直线轴承5沿所述导向杆7滑动。Referring to Fig. 1 , a bellows manual deviation correction mechanism of the present utility model includes a deviation correction guide roller 1 and a pull rod 2, and the two ends of the deviation correction guide roller 1 and the pull rod 2 are installed on a bracket 3, and also includes a guide rod seat 4, Linear bearing 5, manual adjustment device 6, two guide rods 7 are installed and fixed on the upper part of the guide rod seat 4, the linear bearing 5 is provided with two bearing holes 51, and the linear bearing 5 is installed through the bearing holes 51 On the guide rod 7, the bottom of the bracket 3 is connected to the shaft hole at the top of the linear bearing 5, the bracket 3 can rotate around the linear bearing 5, and the manual adjustment device 6 can drive the linear bearing 5 along the The guide rod 7 slides.
与原先自动纠偏系统相比,本产品采用所述直线轴承5移动定位的方式,提高了系统移动定位的精度及稳定性;同时所述直线轴承5和所述导向杆7为面接触,因此也可以有效地降低磨损、缩减维修保养的时间。并且将原先自动纠偏系统的驱动器及控制器去除,改为手动调节的方式,极大地减小了成本,避免了连续纠偏对涂布效果的影响,也使得操作更加简单提高了操作效率。Compared with the original automatic deviation correction system, this product adopts the linear bearing 5 moving and positioning method, which improves the accuracy and stability of the system moving and positioning; at the same time, the linear bearing 5 and the guide rod 7 are in surface contact, so it is also Can effectively reduce wear and reduce maintenance time. In addition, the driver and controller of the original automatic deviation correction system are removed and replaced by manual adjustment, which greatly reduces the cost, avoids the influence of continuous deviation correction on the coating effect, and also makes the operation easier and improves the operation efficiency.
所述手动调节装置6包括滚珠丝杆61、丝杆固定座63,所述滚珠丝杆61一端安装在所述直线轴承5内,一端为丝杆延长杆62并安装在所述丝杆固定座63上,所述丝杆延长杆62的末端还安装有满幅数字满幅数字手轮64;所述滚珠丝杆61运行平稳并且具有极高的传动精度,可以满足高精密涂布机的需求,而采用所述满幅数字手轮64可以非常直观的显示位置信息,便于操作。The manual adjusting device 6 includes a ball screw 61 and a screw fixing seat 63, one end of the ball screw 61 is installed in the linear bearing 5, and the other end is a screw extension rod 62 and is installed in the screw fixing seat 63, the end of the screw extension rod 62 is also equipped with a full-scale digital full-scale digital handwheel 64; the ball screw 61 runs smoothly and has extremely high transmission accuracy, which can meet the needs of high-precision coating machines , and the use of the full-width digital handwheel 64 can display position information very intuitively, which is convenient for operation.
所述手动调节装置6还包括固定锁紧螺钉65,所述固定锁紧螺钉65安装在所述丝杆固定座63上;采用所述固定锁紧螺钉63可以将所述滚珠丝杆6锁紧固定,保证不会因如误触所述满幅数字手轮64等误操作而导致所述直线轴承5位置发生改变而影响纠正效果。The manual adjustment device 6 also includes a fixed locking screw 65, which is installed on the screw fixing seat 63; the ball screw 6 can be locked by using the fixed locking screw 63 It is fixed to ensure that the position of the linear bearing 5 will not change due to misoperation such as accidentally touching the full-width digital handwheel 64, which will affect the correction effect.
以上所述只是本实用新型的较佳实施方式,但本实用新型并不限于上述实施例,只要其以任何相同或相似手段达到本实用新型的技术效果,都应落入本实用新型的保护范围之内。The above is only a preferred embodiment of the utility model, but the utility model is not limited to the above-mentioned embodiment, as long as it achieves the technical effect of the utility model by any same or similar means, it should fall into the protection scope of the utility model within.
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN106000797A (en) * | 2016-07-14 | 2016-10-12 | 中山松德新材料装备有限公司 | Manual rectification mechanism for air bellows |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN106000797A (en) * | 2016-07-14 | 2016-10-12 | 中山松德新材料装备有限公司 | Manual rectification mechanism for air bellows |
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Effective date of registration: 20200903 Address after: No.3-2 of the factory building, No.1, Yandong 5th Road, Dayan village, Huangpu town, Zhongshan City, Guangdong Province 528400 Patentee after: Zhongshan Youlu Zhide Digital Technology Co.,Ltd. Address before: Nantou Zhen Tong Fu Road 528400 Guangdong city of Zhongshan province Guangdong Zhongshan City No. 180 Patentee before: ZHONGSHAN SOTECH NEW MATERIAL EQUIPMENT Co.,Ltd. |