Metal cloth device for dry cleaning glass lens

文档序号:179701 发布日期:2021-11-02 浏览:23次 中文

阅读说明:本技术 一种干洗玻璃镜片的金属布装置 (Metal cloth device for dry cleaning glass lens ) 是由 董红彦 尹祖猛 彭文清 廖荣林 欧金龙 于 2021-08-30 设计创作,主要内容包括:本发明公开一种干洗玻璃镜片的金属布装置,包括:支架,所述支架上设置有承载架;金属布磨头组件,通过磨头座板安装在所述承载架下侧;高度调节模块,用于调整所述金属布磨头组件在竖直方向的高度,包括气缸,所述气缸通过气缸座板固定在支架顶部,所述气缸的输出端通过浮动接头连接所述承载架;往复驱动模块,用于驱使所述金属布磨头组件在水平方向上往复运动;本发明公开的一种干洗玻璃镜片的金属布装置,主要用于摄像头镜片和智能穿戴镜片等光学镜片的擦拭;通过往复驱动模块,可以使得偏心旋转带动磨头座板上的金属布往复运动擦拭,通过高度调节模块的气缸,可以调节金属布的高度和压力。(The invention discloses a metal cloth device for dry cleaning glass lenses, which comprises: the support is provided with a bearing frame; the metal cloth grinding head assembly is arranged on the lower side of the bearing frame through a grinding head seat plate; the height adjusting module is used for adjusting the height of the metal cloth grinding head assembly in the vertical direction and comprises an air cylinder, the air cylinder is fixed to the top of the support through an air cylinder base plate, and the output end of the air cylinder is connected with the bearing frame through a floating joint; the reciprocating driving module is used for driving the metal cloth grinding head assembly to reciprocate in the horizontal direction; the invention discloses a metal cloth device for dry cleaning glass lenses, which is mainly used for wiping optical lenses such as camera lenses, intelligent wearable lenses and the like; through the reciprocating driving module, the eccentric rotation can drive the metal cloth on the grinding head seat plate to perform reciprocating motion wiping, and the height and the pressure of the metal cloth can be adjusted through the cylinder of the height adjusting module.)

1. A metallic cloth device for dry cleaning glass lenses, comprising:

the support is provided with a bearing frame;

the metal cloth grinding head assembly is arranged on the lower side of the bearing frame through a grinding head seat plate;

the height adjusting module is used for adjusting the height of the metal cloth grinding head assembly in the vertical direction and comprises an air cylinder, the air cylinder is fixed to the top of the support through an air cylinder base plate, and the output end of the air cylinder is connected with the bearing frame through a floating joint;

the reciprocating driving module is used for driving the metal cloth grinding head assembly to reciprocate in the horizontal direction;

and the bearing and conveying module is used for conveying and bearing the glass lens to be cleaned.

2. The apparatus for dry-cleaning a metallic cloth for glass lenses according to claim 1, wherein: the metal cloth grinding head assembly comprises a grinding head base, a containing groove is formed in the grinding head base, metal cloth is arranged on the containing groove, foam is arranged between the containing groove and the metal cloth and is located in the containing groove and in contact with the inner end of the metal cloth, and the metal cloth is fixed on the grinding head base through a pressing plate.

3. The apparatus for dry-cleaning a metallic cloth for glass lenses according to claim 1, wherein: the support comprises two first sliding rails, two supporting columns and two vertical plates, and the two supporting columns are respectively provided with a second sliding rail; the tops of the two first sliding rails and the tops of the two supporting columns are respectively fixed on the air cylinder base plate, the two first sliding rails and the two supporting columns are respectively connected through a vertical plate, and the vertical plate is arranged at the bottom of the support.

4. A device for dry-cleaning a metallic cloth for glass lenses according to claim 3, wherein: bear the frame and include bottom plate, mounting panel and two curb plates, be provided with the curb plate on two opposite flank of bottom plate respectively, the mounting panel sets up on the another side of bottom plate, the bottom plate bottom surface is provided with the third slide rail.

5. The apparatus for dry-cleaning a metallic cloth for glass lenses according to claim 4, wherein: the outer end faces of the two side plates are respectively provided with a first sliding block, the two side faces of the mounting plate are respectively provided with a second sliding block, and the grinding head seat plate is provided with a third sliding block; the first sliding block is in sliding fit with the first sliding rail, the second sliding block is in sliding fit with the second sliding rail, and the third sliding block is in sliding fit with the third sliding rail.

6. The apparatus for dry-cleaning a metallic cloth for glass lenses according to claim 1, wherein: the metal cloth grinding head assembly is connected to the grinding head seat plate through a contour screw and a linear bearing.

7. The apparatus for dry-cleaning a metallic cloth for glass lenses according to claim 4, wherein: the reciprocating driving module comprises a speed regulating motor, and the speed regulating motor is arranged on the mounting plate; the output end of the speed regulating motor is sleeved with an eccentric shaft sleeve, and a steel sleeve insert matched with the eccentric shaft sleeve is installed on the grinding head seat plate.

8. A device for dry-cleaning a metallic cloth for glass lenses according to claim 3, wherein: the bearing and conveying module comprises a plurality of pressure bearing shafts arranged in parallel, the pressure bearing shafts are arranged between the two vertical plates, the upper sides of the pressure bearing shafts are opposite to the metal cloth grinding head assemblies, and a conveying belt is arranged between the pressure bearing shafts and the metal cloth grinding head assemblies.

Technical Field

The invention belongs to the technical field of dry cleaning and wiping of glass lenses, and particularly relates to a metal cloth device for dry cleaning glass lenses.

Background

In the production and use processes of the glass material, white spots and dirt are easy to appear, and dry cleaning and wiping are needed; the metal cloth used for wiping is widely used for mobile phone glass, liquid crystal glass, automobile glass, health vessel glass and the like, has high flexibility and ductility, can improve the smooth appearance of glass products, and reduces glass marks. The existing metal cloth device is inconvenient to install and replace metal cloth, and is easy to cause glass edge breakage and scrape flower.

Disclosure of Invention

The invention provides a metal cloth device for dry cleaning glass lenses, which is convenient to install and replace metal cloth and solves the problems of edge breakage, scratching and cleaning of white spot dirt of glass.

The present invention is achieved as such, a metal cloth device for dry-cleaning glass lenses, comprising:

the support is provided with a bearing frame;

the metal cloth grinding head assembly is arranged on the lower side of the bearing frame through a grinding head seat plate;

the height adjusting module is used for adjusting the height of the metal cloth grinding head assembly in the vertical direction and comprises an air cylinder, the air cylinder is fixed to the top of the support through an air cylinder base plate, and the output end of the air cylinder is connected with the bearing frame through a floating joint;

the reciprocating driving module is used for driving the metal cloth grinding head assembly to reciprocate in the horizontal direction;

and the bearing and conveying module is used for conveying and bearing the glass lens to be cleaned.

Further, the metal cloth grinding head assembly comprises a grinding head base, a containing groove is formed in the grinding head base, metal cloth is arranged on the containing groove, foam is arranged between the containing groove and the metal cloth and is located in the containing groove and in contact with the inner end of the metal cloth, and the metal cloth is fixed on the grinding head base through a pressing plate.

Further, the bracket comprises two first slide rails, two support columns and two vertical plates, wherein the two support columns are respectively provided with a second slide rail; the tops of the two first sliding rails and the tops of the two supporting columns are respectively fixed on the air cylinder base plate, the two first sliding rails and the two supporting columns are respectively connected through a vertical plate, and the vertical plate is arranged at the bottom of the support.

Further, bear the frame and include bottom plate, mounting panel and two curb plates, be provided with the curb plate on two opposite flank of bottom plate respectively, the mounting panel sets up on the another side of bottom plate, the bottom plate bottom surface is provided with the third slide rail.

Furthermore, the outer end faces of the two side plates are respectively provided with a first sliding block, the two side faces of the mounting plate are respectively provided with a second sliding block, and the grinding head seat plate is provided with a third sliding block; the first sliding block is in sliding fit with the first sliding rail, the second sliding block is in sliding fit with the second sliding rail, and the third sliding block is in sliding fit with the third sliding rail.

Furthermore, the metal cloth grinding head assembly is connected to the grinding head seat plate through an equal-height screw and a linear bearing.

Further, the reciprocating driving module comprises a speed regulating motor, and the speed regulating motor is arranged on the mounting plate; the output end of the speed regulating motor is sleeved with an eccentric shaft sleeve, and a steel sleeve insert matched with the eccentric shaft sleeve is installed on the grinding head seat plate.

Furthermore, the bearing and conveying module comprises a plurality of pressure bearing shafts arranged in parallel, the pressure bearing shafts are arranged between the two vertical plates, the upper sides of the pressure bearing shafts are opposite to the metal cloth grinding head assemblies, and a conveying belt is arranged between the pressure bearing shafts and the metal cloth grinding head assemblies.

Compared with the prior art, the invention has the beneficial effects that: the invention discloses a metal cloth device for dry cleaning glass lenses, which is mainly used for wiping optical lenses such as camera lenses, intelligent wearable lenses and the like; the eccentric rotation can drive the metal cloth on the grinding head seat plate to perform reciprocating wiping through the reciprocating driving module, and the height and the pressure of the metal cloth can be adjusted through the cylinder of the height adjusting module; the groove of the grinding head base is filled with foam, the pressing plate is locked on the grinding head base to press the metal cloth edge, so that the metal cloth is tightly attached to the foam, the foam plays a role in pressure buffering in the process of wiping a glass product by the metal cloth, and the pressing plate can be detached and replaced after the metal cloth is worn.

Drawings

FIG. 1 is a schematic front view of the present invention;

FIG. 2 is a schematic front view of the present invention;

FIG. 3 is a transverse cross-sectional view of the present invention;

FIG. 4 is a longitudinal cross-sectional view of the present invention;

FIG. 5 is an exploded view of the load carrying module of the present invention;

FIG. 6 is an exploded view of the metal cloth grinding head assembly of the present invention;

in the figure: 1-a support, 2-a metal cloth grinding head assembly, 3-a height adjusting module, 4-a reciprocating driving module and 5-a bearing conveying module;

11-a bearing frame, 12-a first slide rail, 13-a support column, 14-a vertical plate, 15-a second slide rail, 16-a bottom plate, 17-a mounting plate, 18-a side plate, 19-a third slide rail, 110-a first slide block, 111-a second slide block and 112-a third slide block;

21-grinding head base, 22-accommodating groove, 23-metal cloth, 24-foam, 25-pressing plate, 26-contour screw, 27-linear bearing and 28-grinding head seat plate;

31-cylinder, 32-cylinder seat plate, 33-floating joint;

41-speed regulating motor, 42-eccentric shaft sleeve and 43-steel sleeve insert;

51-bearing shaft and 52-transmission belt.

Detailed Description

In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

In the description of the present invention, it is to be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships illustrated in the drawings, and are used merely for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, are not to be construed as limiting the present invention. Further, in the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.

Referring to fig. 1-6, the present invention provides a technical solution: a metallic cloth device for dry cleaning glass lenses, comprising:

the device comprises a bracket 1, wherein a bearing frame 11 is arranged on the bracket 1;

the metal cloth grinding head assembly 2 is arranged on the lower side of the bearing frame 11 through a grinding head seat plate;

the height adjusting module 3 is used for adjusting the height of the metal cloth grinding head assembly 2 in the vertical direction and comprises a cylinder 31, the cylinder 31 is fixed at the top of the support 1 through a cylinder seat plate 32, and the output end of the cylinder 31 is connected with the bearing frame 11 through a floating joint 33;

the reciprocating driving module 4 is used for driving the metal cloth grinding head assembly 2 to reciprocate in the horizontal direction;

and the carrying and conveying module 5 is used for conveying and carrying the glass lens to be cleaned.

The device is mainly used for wiping optical lenses such as camera lenses and intelligent wearable lenses, eccentric rotation can drive the metal cloth 23 on the grinding head seat plate to perform reciprocating wiping through the reciprocating driving module 4, and the height and pressure of the metal cloth 23 can be adjusted through the cylinder 31 of the height adjusting module 3; the foam 24 is arranged in the groove of the grinding head base 21, the pressing plate 25 is locked on the grinding head base 21 to press the edge of the metal cloth 23, so that the metal cloth 23 is tightly attached to the foam 24, the foam 24 plays a role in pressure buffering in the process of wiping glass products by the metal cloth 23, and the pressing plate 25 can be detached and replaced after the metal cloth 23 is worn.

Specifically, metal cloth bistrique subassembly 2 includes bistrique base 21, is provided with holding tank 22 on the bistrique base 21, is provided with metal cloth 23 on the holding tank 22, is provided with the cotton 24 of bubble between holding tank 22 and the metal cloth 23, and the cotton 24 of bubble is located holding tank 22 and with the contact of metal cloth 23 inner, and metal cloth 23 passes through clamp plate 25 to be fixed on bistrique base 21.

Preferably, the metal cloth 23, the sanding head base 21, the accommodating groove 22 and the foam 24 are all provided in a square structure for easy mounting and dismounting and replacement.

In this embodiment, the bracket 1 includes two first slide rails 12, two support columns 13 and two vertical plates 14, and the two support columns 13 are respectively provided with a second slide rail 15; the tops of the two first sliding rails 12 and the tops of the two supporting columns 13 are respectively fixed on the cylinder seat plate 32, the two first sliding rails 12 and the two supporting columns 13 are respectively connected through the vertical plate 14, and the vertical plate 14 is arranged at the bottom of the support 1.

The bearing frame 11 comprises a bottom plate 16, a mounting plate 17 and two side plates 18, the two opposite side surfaces of the bottom plate 16 are respectively provided with the side plates 18, the mounting plate 17 is arranged on the other side surface of the bottom plate 16, and the bottom surface of the bottom plate 16 is provided with a third slide rail 19.

The mounting plate 17 and the two side plates 18 are both of a hollowed-out plate design.

The outer end faces of the two side plates 18 are respectively provided with a first sliding block 110, the two side faces of the mounting plate 17 are respectively provided with a second sliding block 111, and the grinding head seat plate is provided with a third sliding block 112; the first slider 110 is in sliding fit with the first slide rail 12, the second slider 111 is in sliding fit with the second slide rail 15, and the third slider 112 is in sliding fit with the third slide rail 19.

The metal cloth grinding head assembly 2 is attached to a grinding head seat plate 28 by means of contour screws 26 and linear bearings 27.

In the present embodiment, the reciprocating driving module 4 includes a speed regulating motor 41, and the speed regulating motor 41 is installed on the installation plate 17; the output end of the speed regulating motor 41 is sleeved with an eccentric shaft sleeve 42, and a steel sleeve insert 43 matched with the eccentric shaft sleeve 42 is installed on the grinding head seat plate. The outer edge of the steel sleeve insert 43 is square, a circular cavity is formed in the inner edge of the steel sleeve insert, and the eccentric shaft sleeve 42 is installed in the circular cavity. When the eccentric shaft sleeve 42 rotates along with the speed regulating motor 41, the eccentric shaft sleeve 42 drives the steel sleeve insert 43 to reciprocate, and then the grinding head seat plate reciprocates.

Specifically, the bearing and conveying module 5 comprises a plurality of pressure bearing shafts 51 arranged in parallel, the pressure bearing shafts 51 are installed between the two vertical plates 14, the upper sides of the pressure bearing shafts 51 are opposite to the metal cloth grinding head assemblies 2, and a conveyor belt 52 is arranged between the pressure bearing shafts 51 and the metal cloth grinding head assemblies 2.

An eccentric shaft sleeve 42 of the device is assembled on a speed regulating motor 41, wherein a bearing is assembled on the eccentric shaft sleeve 42, the bearing on the eccentric shaft sleeve 42 is matched with a steel sleeve insert 43 on a grinding head seat plate, eccentric rotation drives the metal cloth 23 of the grinding head seat plate to reciprocate and wipe, and the height and pressure of the air cylinder 31 are adjusted.

The metal cloth 23 grinding head is connected to the grinding head seat plate through an equal-height screw 26 and a linear bearing 27, specifically, the two modes are included, a spring can be installed, and the metal cloth 23 grinding head can float up and down in the process of wiping through the elasticity of the spring and the gravity of the grinding head; or the spring is not arranged, the metal cloth 23 grinding head is fixed on the grinding head seat plate, and the air cylinder 31 is matched with the floating joint 33 to adjust the height and pressure for wiping.

The motor bedplate is connected with the grinding head bedplate through a sliding rail, and the two sides of the vertical sliding rail guide cylinder 31 are connected with the motor bedplate to lift. Glass products are placed and attached to a white silica gel conveying belt, the bearing shafts 51 are horizontally arranged on the vertical plates 14 on two sides, bearings are assembled at two ends of each bearing shaft 51, the metal cloth 23 grinding head presses the glass products and the conveying belt on the bearing shafts 51 which can roll to clean the glass products, meanwhile, the glass products on the conveying belt move forwards, and the conveying belt is driven to rotate through a motor.

For the metal cloth 23 grinding head assembly, foam 24 is arranged in a groove of a grinding head base 21, a pressure plate 25 is locked on the grinding head base 21 to press four sides of the metal cloth 23, so that the metal cloth 23 is tightly attached to the foam 24, the foam 24 plays a pressure buffering role in the process of wiping a glass product by the metal cloth 23, and the metal cloth 23 can be replaced by detaching the pressure plate 25 after being worn.

The present invention is not limited to the above preferred embodiments, and any modifications, equivalent substitutions and improvements made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

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