Circular glass edging device
Technical Field
The utility model belongs to the technical field of glass edge machining, in particular to circular glass edging device.
Background
In the production process of glass, the glass is usually required to be cut into different shapes (such as circular shapes), and after the glass is cut, the edges of the glass are usually required to be polished, so as to improve the roughness of the surface, further avoid cutting hands and improve the attractiveness of the glass product. However, glass edging device among the prior art mainly includes fixing device, drive arrangement and grinding device, and wherein fixing device is used for fixing circular glass, and drive arrangement is used for driving fixing device rotatory, and grinding device is used for polishing circular glass edge, but the problem that exists among the prior art is: when circular glass is placed on fixing device, the center of glass is difficult for adjusting and fixing device's rotation center coincidence for fixing device drives circular glass and carries out eccentric rotation, when resulting in grinding device to polish circular glass, the glass edge is close to rotation center department and is difficult for being polished or the volume of polishing is few, and the rotation center department is kept away from at the glass edge easily by too much polishing, leads to polishing inhomogeneous, and the edging effect is poor.
SUMMERY OF THE UTILITY MODEL
The utility model provides a circular glass edging device to solve the technical problem in the above-mentioned background art.
The utility model discloses the technical scheme who adopts:
a circular glass edge grinding device comprises a shell seat, a rotating shaft, a worm and a top frame, wherein the upper surface of the shell seat is provided with a plurality of straight sliding chutes, a slide block is arranged in the straight chute in a sliding way, the top and the bottom of the slide block are respectively provided with an adjusting claw and a sliding pin, the rotating shaft is rotatably arranged on the shell seat in a penetrating way, the bottom, the middle part and the top of the rotating shaft are respectively provided with a rotating motor, a worm wheel and a supporting disk, the rotating motor is arranged on the bottom of the shell seat, the worm wheel is arranged in the shell seat, a plurality of arc-shaped sliding grooves are arranged on the upper surface of the worm wheel at intervals, the sliding pin is movably arranged in the arc-shaped sliding chute, the worm is rotatably arranged on the shell seat in a penetrating way and is meshed with the worm wheel, the worm is characterized in that a handheld part is arranged at the end part of the worm, the top frame is arranged on the upper surface of the shell seat, and a telescopic polishing mechanism and a pressing mechanism are respectively arranged on the side wall and the top wall of the top frame.
Furthermore, hold-down mechanism is including locating telescopic link one on the roof-rack top, a telescopic link tip rotates through the connecting piece and is connected with the pressure disk, the pressure disk with the supporting disk is aligned.
Furthermore, flexible grinding machanism includes slide and telescopic link two, the slide slides and wears to locate on the roof-rack lateral wall, the slide front end is equipped with grinding motor, be equipped with the bistrique on grinding motor's the output shaft, telescopic link two connect in between roof-rack and slide lateral wall.
Further, straight spout and arc spout move towards respectively the center department of supporting disk and worm wheel sets up, and is a plurality of straight spout and arc spout all are cyclic annular equidistant setting, the quantity of straight spout and arc spout is all not less than 3.
Furthermore, a plurality of supporting legs are arranged at the bottom of the shell seat.
Further, the driving part is a servo motor or a hand wheel.
Compared with the prior art, the beneficial effects of the utility model are that:
1. utilize the worm to drive the worm wheel rotatory in the pivot, required operating force is little, the worm wheel drives the slider through a plurality of arc spouts and slides in straight spout, a plurality of sliders drive a plurality of regulation claws respectively and are close to the central removal of supporting disk and carry out centering regulation, can be quick adjust circular glass to the center department of supporting disk for circular glass's edge obtains evenly polishing, has effectively guaranteed circular glass's the effect of polishing, has improved circular glass's size machining precision.
2. Utilize hold-down mechanism to press circular glass on the supporting disk, it is rotatory and then drive circular glass rotatory to drive the supporting disk through rotating electrical machines, and polishes the glass edge through flexible grinding machanism, makes circular glass comprehensively polish, and it is efficient to polish, polishes effectually.
Drawings
FIG. 1 is a schematic overall structure diagram according to a first embodiment;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a schematic view of the inner fitting structure of FIG. 2;
FIG. 4 is a schematic diagram illustrating an internal structure according to the first embodiment;
FIG. 5 is a cross-sectional view taken at A-A of FIG. 4;
FIG. 6 is a schematic view of a structure of a slider engaged with a straight sliding groove according to an embodiment;
FIG. 7 is a schematic view of the overall structure of the second embodiment;
in the figure: 1. grinding heads; 2. polishing the motor; 3. a worm; 4. a hand wheel; 5. a slide base; 6. a second telescopic rod; 7. a top frame; 8. a first telescopic rod; 9. a connecting member; 10. a platen; 11. an adjusting claw; 12. a slider; 13. a housing base; 14. supporting legs; 15. a support disc; 16. a rotating shaft; 17. a rotating electrical machine; 18. a straight chute; 19. a worm gear; 20. a slide pin; 21. an arc-shaped chute; 22. a servo motor.
Detailed Description
In order to better understand the technical content of the present invention, the following embodiments are provided, and the present invention is further described with reference to the accompanying drawings.
Example one
Referring to fig. 1 to 6, the utility model provides a circular glass edging device, including shell base 13, pivot 16, worm 3 and roof-rack 7, shell base 13 upper surface is equipped with 3 straight spout 18, 3 straight spout 18 all are towards the center of supporting disk 15, and 3 straight spout 18 are the annular interval along supporting disk 15 circumference and set up, slide block 12 that is equipped with in the straight spout 18, slide block 12 cross section is the I-shaped, slide block 12 top and bottom are fixed respectively and are equipped with regulating claw 11 and sliding pin 20, pivot 16 rotates and wears to locate on shell base 13, the both sides of pivot 16 are connected with the upper and lower wall of shell base 13 rotation respectively, the bottom of pivot 16, middle part and top are equipped with rotating electrical machines 17 respectively, worm wheel 19 and supporting disk 15, the axis of pivot 16, the center of worm wheel 19 coincides with the center of supporting disk 15, rotating electrical machines 17 installs on shell base 13 bottom, worm wheel 19 passes through the bearing and is connected with pivot 16, in shell seat 13 was located to worm wheel 19, 19 upper surfaces of worm wheel are equipped with 3 arc spout 21 along its interval on circumference, 3 arc spout 21 all are towards 19 center departments of worm wheel, sliding pin 20 activity is located in arc spout 21, worm 3 rotates and wears to locate on shell seat 13, the both ends of worm 3 rotate with shell seat 13's both sides wall respectively and are connected, worm 3 meshes with worm wheel 19, be equipped with hand wheel 4 on the 3 tip of worm, shell seat 13 upper surface is located to roof-rack 7, roof-rack 7 is the L shape structure, be equipped with flexible grinding machanism and hold-down mechanism on 7 lateral walls of roof-rack and the roof respectively.
When polishing is needed, circular glass is placed on a supporting plate 15, a worm 3 is rotated through a hand wheel 4, the worm 3 drives a worm wheel 19 to rotate anticlockwise (in the direction shown in figure 3) on a rotating shaft 16, the worm wheel 19 drives an arc-shaped chute 21 to rotate, under the matching action of the straight chute 18 and the arc-shaped chute 21, a sliding pin 20 slides in the arc-shaped chute 21 along the direction close to the center of the worm wheel 19, the sliding pin 20 drives a sliding block 12 to slide in the straight chute 18 along the direction close to the center of the supporting plate 15, the sliding block 12 drives an adjusting claw 11 to push the circular glass to move towards the center of the supporting plate 15, after the three adjusting claws 11 are contacted with the edge of the circular glass (indicating that the circular glass is located at the center of the supporting plate 15), the three adjusting claws 11 are far away from the circular glass through reversely rotating the worm 3, the circular glass is pressed on the supporting plate 15 to be fixed through controlling a compression polishing mechanism, and then the edge of the circular glass is polished through controlling a telescopic polishing mechanism, when polishing, the motor drives the rotating shaft 16 to rotate on the shell seat 13, the rotating shaft 16 drives the circular glass to rotate through the supporting disk 15 so as to polish the circular glass in a whole circle, the edge of the circular glass is comprehensively and uniformly polished, the polishing effect of the circular glass is effectively guaranteed, and the size processing precision of the circular glass is improved.
Specifically, hold-down mechanism is including fixed telescopic link 8 of locating on roof-rack 7 top, telescopic link 8 adopts the cylinder among the prior art, pneumatic cylinder or electric telescopic handle, a 8 tip of telescopic link rotates through connecting piece 9 and is connected with pressure disk 10, connecting piece 9 can adopt the bearing among the prior art, pressure disk 10 sets up with supporting disk 15 is concentric, drive pressure disk 10 downstream and compress tightly circular glass on supporting disk 15 through control telescopic link 8, make supporting disk 15 drive circular glass and pressure disk 10 corotation.
Specifically, flexible grinding machanism includes slide 5 and two 6 telescopic links, and two 6 telescopic links adopt pneumatic cylinder or electric telescopic handle among the prior art, and slide 5 is L shape structure, and on slide 5 slided and wears to locate the roof-rack 7 lateral wall, be equipped with grinding motor 2 on the 5 antethecas of slide, be equipped with bistrique 1 on grinding motor 2's the output shaft, two 6 telescopic links are connected between roof-rack 7 lateral wall and 5 lateral walls of slide. Starting grinding motor 2 and driving bistrique 1 rotatory, driving slide 5 through control two 6 telescopic links and sliding on roof-rack 7 lateral walls, making slide 5 drive grinding motor and remove to circular glass for bistrique 1 laminates and polishes in circular glass edge, and it is rotatory that restart rotating electrical machines 17 drives circular glass, and it is efficient to polish, and effectual.
Specifically, the bottom of the shell base 13 is provided with a plurality of supporting legs 14, which are used for supporting the shell base 13 to facilitate the processing operation and installation of the rotating motor 17.
Example two
Referring to fig. 7, the difference from the first embodiment is that the end of the worm 3 is connected with a servo motor 22 in a driving manner, the servo motor 22 is installed on the side wall of the shell base 13, and the worm 3 is driven to rotate by controlling the servo motor 22, so that the adjustment work is labor-saving and convenient.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the technical principle of the present invention, and these improvements and decorations should also be regarded as the protection scope of the present invention.