CN211103114U - Automatic edge grinding machine - Google Patents

Automatic edge grinding machine Download PDF

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Publication number
CN211103114U
CN211103114U CN201921674162.8U CN201921674162U CN211103114U CN 211103114 U CN211103114 U CN 211103114U CN 201921674162 U CN201921674162 U CN 201921674162U CN 211103114 U CN211103114 U CN 211103114U
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motor
sliding rail
frame
slide rail
oblique
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CN201921674162.8U
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蔡建华
高河森
郑晓波
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Fujian Joborn Machinery Co ltd
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Fujian Joborn Machinery Co ltd
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Abstract

The utility model discloses an automatic edge grinding machine, which belongs to the technical field of edge grinding processing, and comprises a plate leaning frame and a frame, wherein a front chain wheel frame and a rear chain wheel frame are arranged on the plate leaning frame, the rear chain wheel frame is fixedly arranged at the rear side above a support, the front chain wheel frame is fixedly arranged on the upper surfaces of front and rear slide rails a, the front and rear slide rails a are slidably arranged on the front and rear slide rail seats a, the front and rear slide rail seats a are fixedly arranged at the front side above the support, the support is welded on the upper surface of the frame, and a front and rear moving threaded rod is arranged on the front and rear slide; by the aid of the plate leaning frame, the lifting frame, the chain wheel frame, the sliding rail, the corner cutting mechanism, the flat grinding mechanism and the inclined grinding mechanism, mechanized and automatic chamfering and edge grinding operations can be performed on the stone under the condition that the stone is fixed, all advantages of mechanized production are possessed, mass stable production can be achieved, manpower and material resources are saved, and consistency and stability of products can be guaranteed especially during mass production.

Description

Automatic edge grinding machine
Technical Field
The utility model belongs to the technical field of the edging processing, concretely relates to automatic edging machine.
Background
Grinding, which is one of surface modification technologies, generally refers to a processing method for changing physical properties of a material surface by friction with the aid of a rough object, and mainly aims to obtain specific surface roughness, but when workpieces are ground in batch production, manual grinding and polishing often cannot guarantee the grinding and polishing level of each plate, even for skilled workers, when the plates are ground and polished, the grinding and polishing angles of each plate are the same, the plates are obviously or slightly different during butt joint, the product appearance is affected, and a handheld grinding machine is dangerous, cuts are caused when the operation is not proper, and the plates are disabled seriously.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic edging machine to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an automatic edge grinding machine, includes by grillage and frame, be provided with back chain wheel frame and preceding chain wheel frame on by the grillage, by the fixed surface of grillage is connected with the bracing piece, wherein two the equal fixedly connected with back chain wheel frame in surface of bracing piece, preceding chain wheel frame fixed mounting is at the upper surface of front and back slide rail a, slide rail a slidable mounting is on front and back slide rail seat a around, slide rail seat a fixed mounting is in the front side of support top around, the support welding is at the upper surface of frame, the back-and-forth movement threaded rod is installed to the screw thread on front and back slide rail a, and the output shaft fixed connection of back-and-forth movement threaded rod and front-and-back driving motor, front and back driving motor fixed mounting is in the front of support, still be provided with the crane on by the grillage, the screw rod, the left surface of frame is fixed mounting still has main motor, main motor all with external power supply electric connection with front and back driving motor, the surface of front sprocket frame, the surface of back sprocket frame and the surface of crane are provided with conveyer belt b, conveyer belt c and conveyer belt a respectively, conveyer belt a, conveyer belt b and conveyer belt b all with main motor's output shaft between the transmission be connected, still fixed mounting has inclined grinding mechanism, flat grinding mechanism and corner cut mechanism in the frame.
By adopting the scheme, the stone material chamfering and edging operation can be carried out mechanically and automatically by arranging the leaning plate frame, the lifting frame, the chain wheel frame, the sliding rail, the corner cutting mechanism, the flat grinding mechanism and the inclined grinding mechanism under the condition of fixing the stone material, all advantages of mechanical production are possessed, mass stable production can be realized, manpower and material resources are saved, and the consistency and stability of products can be ensured particularly during mass production.
In the above scheme, it should be noted that the models of the front-back driving motor, the main motor, the oblique grinding motor, the oblique moving motor a, the up-down moving motor, the flat grinding motor, the front-back moving motor a, the corner cutting motor, the front-back moving motor b and the oblique moving motor b may be YE 2-112M-4.
As a preferable embodiment, the lifting frame is also fixedly provided with a screw rod sliding block, and the lifting frame moves up and down on the front surface of the backup plate frame through the screw rod sliding block.
By adopting the scheme, the lifting frame can be limited by the screw rod sliding block, so that the lifting frame is not easy to shake and is more stable in the up-and-down moving process.
As a preferred embodiment, the inclined grinding mechanism comprises an inclined grinding motor, an inclined grinding head is fixedly mounted on an output shaft of the inclined grinding motor, the inclined grinding motor is fixedly mounted on the upper surface of an inclined slide rail a, the inclined slide rail a is slidably mounted on an inclined slide rail seat a, an inclined moving motor a is fixedly mounted on the left side surface of the inclined slide rail a, the output shaft of the inclined moving motor a is in transmission connection with the inclined slide rail a through a belt pulley a, a belt pulley b and a transmission belt, and the inclined grinding motor and the inclined moving motor a are both electrically connected with an external power supply.
By adopting the scheme, the inclined grinding motor can move upwards in an inclined manner by utilizing the existence of the inclined slide rail a matched with the inclined slide rail seat a, so that the position of the inclined grinding motor is convenient to adjust.
As a preferred embodiment, the flat grinding mechanism mainly comprises a flat grinding motor, a flat grinding disc is fixedly mounted on an output shaft of the flat grinding motor, the flat grinding motor is fixedly mounted on the right side surfaces of an upper sliding rail and a lower sliding rail, the upper sliding rail and the lower sliding rail are slidably mounted on an upper sliding rail seat and a lower sliding rail seat, the upper sliding rail and the lower sliding rail are fixedly connected with an output shaft of an up-down moving motor, the upper sliding rail seat and the lower sliding rail seat are fixedly mounted on a front sliding rail b and a rear sliding rail b, the front sliding rail b and the rear sliding rail b are slidably mounted on the front sliding rail seat and the rear sliding rail seat, the front sliding rail b and the rear sliding rail b are fixedly connected.
By adopting the scheme, the position of the flat grinding motor is adjusted by utilizing the up-down moving motor and the front-back moving motor a to match with the upper and lower slide rails and the upper and lower slide rail seats as well as the front and back slide rails b and the front and back slide rail seats b, so that the flat grinding motor is convenient to use.
As a preferred embodiment, the corner cutting mechanism mainly comprises a corner cutting motor, a saw blade is fixedly mounted on an output shaft of the corner cutting motor, the corner cutting motor fixes the upper surface of an oblique slide rail b, the oblique slide rail b is slidably mounted on an oblique slide rail seat b, the oblique slide rail b is fixedly connected with the output shaft of the oblique moving motor b, the oblique slide rail seat b is fixedly mounted on the upper surfaces of a front slide rail c and a rear slide rail c, the front slide rail c and the rear slide rail c are slidably mounted on the front slide rail seat c and the rear slide rail c, the front slide rail c and the rear slide rail c are fixedly connected with the output shaft of the front and rear moving motor b, and the corner cutting motor, the front and rear moving motor b and the oblique moving motor.
By adopting the scheme, the position of the bevel motor is adjusted by utilizing the oblique moving motor b and the front-back moving motor b.
Compared with the prior art, the beneficial effects of the utility model are that:
this automatic edging machine leans on grillage, crane, sprocket frame, slide rail, corner cut mechanism, flat grinding mechanism and oblique grinding mechanism through setting up, can carry out mechanized automation under the fixed condition to the panel to the stone material carry out the operation of beveling, edging, possess all advantages of mechanized production, can stable production in batches, practice thrift manpower and materials, especially during batch production, can guarantee the uniformity of product, stable.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the inclined grinding mechanism of the present invention;
FIG. 3 is a schematic structural view of the flat grinding mechanism of the present invention;
fig. 4 is a schematic structural view of the corner cutting mechanism of the present invention;
fig. 5 is an enlarged view of the area a in fig. 1 according to the present invention.
In the figure: 1. a back plate frame; 2. a rear sprocket carrier; 3. a support; 4. a frame; 5. a front sprocket carrier; 6. a front slide rail and a rear slide rail; 7. front and rear slide rail seats a; 8. a front and rear driving motor; 9. a screw; 10. a hand lever; 11. a screw slider; 12. a main motor; 13. a conveyor belt a; 14. a conveyor belt b; 15. a conveyor belt c; 16. a lifting frame; 17. an inclined grinding mechanism; 18. a flat grinding mechanism; 19. a corner cutting mechanism; 20. a skew grinding motor; 21. an oblique slide rail a; 22. an oblique slide rail seat a; 23. a slant moving motor a; 24. a belt wheel a; 25. a pulley b; 26. a transmission belt; 27. a flat grinding motor; 28. an up-and-down moving motor; 29. moving the motor a back and forth; 30. front and rear slide rails b; 31. front and rear slide rail seats b; 32. an upper slide rail and a lower slide rail; 33. an upper slide rail seat and a lower slide rail seat; 34. a corner cutting motor; 35. a front-back movement motor b; 36. a diagonal movement motor b; 37. a front and rear slide rail c; 38. front and rear slide rail seats c; 39. an oblique slide rail b; 40. and (b) an oblique slide rail seat.
Detailed Description
The present invention will be further described with reference to the following examples.
The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention. The condition in the embodiment can be further adjusted according to concrete condition the utility model discloses a it is right under the design prerequisite the utility model discloses a simple improvement of method all belongs to the utility model discloses the scope of claiming.
Referring to fig. 1-5, the utility model provides an automatic edge grinding machine, which comprises a plate frame 1 and a frame 4, a rear chain wheel frame 2 and a front chain wheel frame 5 are arranged on the plate frame 1, the surface of the plate frame 1 is fixedly connected with two support rods, the surface of the two support rods is fixedly connected with the rear chain wheel frame 2, the front chain wheel frame 5 is fixedly arranged on the upper surface of a front slide rail a6 and a rear slide rail a7, the front slide rail a6 is slidably arranged on the front slide rail a7 and the rear slide rail a7 is fixedly arranged on the front side above a support 3, the support 3 is welded on the upper surface of the frame 4, a front slide rail a6 is provided with a front and rear moving threaded rod, the front and rear moving threaded rod is fixedly connected with an output shaft of a front and rear driving motor 8, the front and rear driving motor 8 is fixedly arranged on the front side of the support 3, the, the lifting frame 16 moves up and down on the front side of the backup plate frame 1 through the screw rod sliding block 11 (see figure 1); when carrying out the up-and-down regulation to crane 16, hand rocker 10 drives the rotation of screw rod 9 through the reduction gear when rotating, and then can not rotate when making crane 16 reciprocate under the effect of screw rod slider 11, utilizes the existence of screw rod slider 11 can carry on spacingly to crane 16 for crane 16 is difficult for rocking and more stable at the in-process that reciprocates.
A screw 9 is installed on the lifting frame 16 through threads, one end of the screw 9 is fixedly connected with a hand-operated rod 10 through a speed reducer, a main motor 12 is also fixedly installed on the left side surface of the rack 4, the main motor 12 and the front and back driving motors 8 are electrically connected with an external power supply, a conveying belt b14, a conveying belt c15 and a conveying belt a13 are respectively arranged on the outer surface of the front chain wheel frame 5, the outer surface of the back chain wheel frame 2 and the outer surface of the lifting frame 16, the conveying belt a13, the conveying belt b14 and the conveying belt b14 are respectively in transmission connection with an output shaft of the main motor 12, an inclined grinding mechanism 17, a flat grinding mechanism 18 and a corner cutting mechanism 19 are also fixedly installed on the rack 4, the inclined grinding mechanism 17 comprises an inclined grinding motor 20, an inclined grinding head is fixedly installed on an output shaft of the inclined grinding motor 20, the inclined grinding motor 20 is fixedly installed on the upper surface of an inclined slide rail a21, an inclined slide rail a21 is, an output shaft of the oblique moving motor a23 is in transmission connection with an oblique sliding rail a21 through a belt wheel a24, a belt wheel b25 and a transmission belt 26, and the oblique grinding motor 20 and the oblique moving motor a23 are both electrically connected with an external power supply (see fig. 1 and 2); utilize slant traveling motor a23 to drive band pulley a24 and rotate, drive band pulley b25 under the effect of drive belt 26 and rotate, and then can adjust the position of slant slide rail seat a22 for slant slide rail a21 can move on slant slide rail seat a22, and then can adjust the position of slant grinding motor 20.
The flat grinding mechanism 18 mainly comprises a flat grinding motor 27, a flat grinding disc is fixedly mounted on an output shaft of the flat grinding motor 27, the flat grinding motor 27 is fixedly mounted on the right side surface of an upper sliding rail 32 and a lower sliding rail 32, the upper sliding rail 32 and the lower sliding rail 32 are slidably mounted on an upper sliding rail seat 33 and a lower sliding rail seat 33, the upper sliding rail seat 33 and the lower sliding rail seat 33 are fixedly mounted on a front sliding rail b30 and a rear sliding rail b30, the front sliding rail b30 is slidably mounted on a front sliding rail seat b31 and a rear sliding rail b30 is fixedly connected with an output shaft of a front-rear moving motor a29, and the flat grinding motor 27, the upper-rear moving motor 28 and a front-rear moving motor a 36; the up-down moving motor 28 controls the up-down sliding rail 32 to move up or down on the up-down sliding rail seat 33, and the back-forth moving motor a29 controls the front-back sliding rail b30 to move back and forth on the front-back sliding rail seat b31, so that the up-down position and the front-back position of the flat grinding motor 27 can be adjusted.
The corner cutting mechanism 19 mainly comprises a corner cutting motor 34, a saw blade is fixedly mounted on an output shaft of the corner cutting motor 34, the corner cutting motor 34 is fixedly mounted on the upper surface of an oblique sliding rail b39, an oblique sliding rail b39 is slidably mounted on an oblique sliding rail seat b40, an oblique sliding rail b39 is fixedly connected with an output shaft of an oblique moving motor b36, an oblique sliding rail seat b40 is fixedly mounted on the upper surfaces of front and rear sliding rails c37, a front and rear sliding rail c37 is slidably mounted on the front and rear sliding rail seat c38, a front and rear sliding rail c37 is fixedly connected with an output shaft of a front and rear moving motor b35, and the corner cutting motor 34, the front and rear moving motor b35 and the oblique moving motor b36 are all electrically connected with an external; the front and rear slide rails c37 are controlled by the front and rear moving motor b35 to move back and forth on the front and rear slide rail seats c38, and the oblique slide rails c are controlled by the oblique moving motor b36 to move on the front and rear slide rail seats c38, so that the position of the corner cutting motor 34 can be adjusted.
When in use, the hand-operated lever 10 is rotated to synchronously rotate the screw rod 9, the lifting frame 16 is adjusted to move upwards or downwards to a proper height under the action of the screw rod slide block 11, then the cutting angle, the flat grinding and the inclined grinding head are electrically adjusted to proper positions in turn, finally the position of the front chain wheel frame 5 is adjusted through a front driving motor 8 and a rear driving motor 8 according to the thickness of the grinding and polishing plate to enable the front chain wheel frame 5 to move forwards and backwards, and further the distance between the front chain wheel frame 5 and the rear chain wheel frame 2 is adjusted, the sheet is then placed on the crane 16 to the right, the sheet is transported from right to left by the conveyor a13 on the crane 16, the sheet continues to be transported to the left by the clamping action of the conveyor b14 and the conveyor c15, during this transfer, the corner cutting mechanism 19, the flat grinding mechanism 18 and the bevel grinding mechanism 17 will perform corner cutting, flat grinding and bevel grinding, respectively, on the board, and finally the board is transferred to the discharge area by the conveyor belt a13 on the left side of the crane 16.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. The utility model provides an automatic edging machine, is including leaning on grillage (1) and frame (4), its characterized in that: the utility model discloses a take the technical proposal that lean on being provided with back sprocket carrier (2) and preceding sprocket carrier (5) on grillage (1), lean on the fixed surface of grillage (1) to be connected with the bracing piece, wherein two the equal fixedly connected with back sprocket carrier (2) in surface of bracing piece, back sprocket carrier (2) fixed mounting is at the rear side of support (3) top, preceding sprocket carrier (5) fixed mounting is at the upper surface of front and back slide rail a (6), slide rail a (6) slidable mounting is around on slide rail a (7), slide rail a (7) fixed mounting is at the front side of support (3) top around, support (3) welding is at the upper surface of frame (4), the back-and-forth movement threaded rod is installed to the screw thread on slide rail a (6) around, and the output shaft fixed connection of back-and-forth movement threaded rod and front-and-back driving motor (8), front-and-back driving motor (8) fixed mounting is, the backrest plate frame (1) is also provided with a lifting frame (16), the lifting frame (16) is provided with a screw rod (9) in a threaded manner, one end of the screw rod (9) is fixedly connected with the hand-operated rod (10) through a speed reducer, the left side surface of the frame (4) is also fixedly provided with a main motor (12), the main motor (12) and the front and rear driving motors (8) are electrically connected with an external power supply, the outer surface of the front chain wheel frame (5), the outer surface of the rear chain wheel frame (2) and the outer surface of the lifting frame (16) are respectively provided with a conveyor belt b (14), a conveyor belt c (15) and a conveyor belt a (13), the conveyor belt a (13), the conveyor belt b (14) and the conveyor belt b (14) are in transmission connection with an output shaft of the main motor (12), and the frame (4) is also fixedly provided with an inclined grinding mechanism (17), a flat grinding mechanism (18) and a corner cutting mechanism (19).
2. Automatic edge grinding machine according to claim 1, characterized in that: the lifting frame (16) is also fixedly provided with a screw rod sliding block (11), and the lifting frame (16) moves up and down on the front surface of the backup plate frame (1) through the screw rod sliding block (11).
3. Automatic edge grinding machine according to claim 1, characterized in that: oblique mill mechanism (17) are including oblique mill motor (20), fixed mounting has the oblique angle bistrique on the output shaft of oblique mill motor (20), oblique mill motor (20) fixed mounting is at the upper surface of slant slide rail a (21), slant slide rail a (21) slidable mounting is on slant slide rail seat a (22), slant slide rail a (21) left surface fixed mounting has slant removal motor a (23), the output shaft of slant removal motor a (23) passes through between band pulley a (24), band pulley b (25) and drive belt (26) and slant slide rail a (21) transmission connection, oblique mill motor (20) and slant removal motor a (23) all with external power supply electric connection.
4. Automatic edge grinding machine according to claim 1, characterized in that: the flat grinding mechanism (18) mainly comprises a flat grinding motor (27), a flat grinding disc is fixedly mounted on an output shaft of the flat grinding motor (27), the flat grinding motor (27) is fixedly mounted on the right side surfaces of an upper sliding rail and a lower sliding rail (32), the upper sliding rail and the lower sliding rail (32) are slidably mounted on an upper sliding rail seat and a lower sliding rail seat (33), the upper sliding rail and the lower sliding rail (32) are fixedly connected with an output shaft of an up-down moving motor (28), the upper sliding rail seat and the lower sliding rail seat (33) are fixedly mounted on a front sliding rail b (30) and a rear sliding rail seat b (31), the front sliding rail b (30) and the rear sliding rail b are fixedly connected with an output shaft of a front-back moving motor a (29), and the flat grinding motor (27), the up-down moving motor (28) and the front-back moving motor a (29).
5. Automatic edge grinding machine according to claim 1, characterized in that: the chamfering mechanism (19) mainly comprises a chamfering motor (34), a saw blade is fixedly mounted on an output shaft of the chamfering motor (34), the chamfering motor (34) is used for fixing the upper surface of an oblique sliding rail b (39), the oblique sliding rail b (39) is slidably mounted on an oblique sliding rail seat b (40), the oblique sliding rail b (39) is fixedly connected with an output shaft of a diagonal moving motor b (36), the oblique sliding rail seat b (40) is fixedly mounted on the upper surfaces of a front sliding rail c (37) and a rear sliding rail c (37), the front sliding rail c (37) and the rear sliding rail c (38) are slidably mounted on a front sliding rail seat c (38), the front sliding rail c (37) and the rear sliding rail c (37) are fixedly connected with an output shaft of a front-and-rear moving motor b (35), and the chamfering motor (34), the front-rear moving motor b (35) and the diagonal moving motor b (36) are.
CN201921674162.8U 2019-10-09 2019-10-09 Automatic edge grinding machine Active CN211103114U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921674162.8U CN211103114U (en) 2019-10-09 2019-10-09 Automatic edge grinding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921674162.8U CN211103114U (en) 2019-10-09 2019-10-09 Automatic edge grinding machine

Publications (1)

Publication Number Publication Date
CN211103114U true CN211103114U (en) 2020-07-28

Family

ID=71709093

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921674162.8U Active CN211103114U (en) 2019-10-09 2019-10-09 Automatic edge grinding machine

Country Status (1)

Country Link
CN (1) CN211103114U (en)

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