Automatic pouring equipment for grinding tool

By designing an automated mold casting equipment, the synchronous conveying and continuous casting of multiple mold slots are achieved, solving the problem of low production efficiency in existing equipment and improving the efficiency and automation of mold production.

CN223811974UActive Publication Date: 2026-01-20GUANGDONG DINGHE NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202520076085.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2026-01-20
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

Existing mold manufacturing equipment suffers from limited product quantity and discontinuous production processes, resulting in low production efficiency.

Method used

Design an automatic mold casting device, including a conveyor line, a primary grouting device and a secondary grouting device, combined with a liftable feeding device, to achieve synchronous conveying and continuous casting of multiple mold slots. Automatic feeding is achieved by using a tilting component and a moving module, eliminating manual operation.

Benefits of technology

It increases the number of products formed each time, and the continuous automation of the production process improves production efficiency, reduces manual operation, and enhances production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of manufacturing of grinding tools, and particularly discloses automatic pouring equipment for grinding tools, which comprises a conveying line for conveying a mold frame provided with a plurality of mold box grooves, and a primary grouting device and a secondary grouting device which are sequentially arranged along the conveying direction of the conveying line, a first material supplementing device capable of ascending and descending is arranged on one side of the primary grouting device, and a second material supplementing device capable of ascending and descending is arranged on one side of the secondary grouting device. According to the automatic pouring equipment for the grinding tool, the multiple mold box grooves are sequentially conveyed to the positions below the primary grouting device and the secondary grouting device to be subjected to slurry pouring, so that the multiple mold box grooves filled with the slurry are solidified at the same time, the number of products formed each time is increased, continuous automatic grouting pouring is achieved in the production process, and the production efficiency is improved. The production efficiency is higher; and meanwhile, the primary grouting device and the secondary grouting device can supplement materials through the corresponding material supplementing devices, manual material carrying is not needed for supplementing, time and labor are saved, and the production efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of grinding tool manufacturing, and specifically relates to a grinding tool automatic casting equipment. BACKGROUND

[0002] Grinding tool is a tool for grinding, polishing and polishing, in the existing grinding tool production equipment, usually adopts the press forming, utilizes in the upper and lower mould directly to carry out grouting, makes the slurry solidification forming in the upper and lower mould, however, the product quantity of this forming mode is limited each time, and automatic continuous grouting cannot be carried out, thereby making the production process relatively slow. UTILITY MODEL CONTENTS

[0003] In order to overcome the defects existing in the prior art, the utility model provides a grinding tool automatic casting equipment, which aims at solving the problems in the prior art.

[0004] The utility model solves the technical scheme that the utility model adopts: a grinding tool automatic casting equipment, including conveying line for conveying the mold frame with a plurality of mold box grooves, a one-time grouting device and a secondary grouting device are sequentially arranged along the conveying direction of the conveying line, the one-time grouting device side is provided with the first material supplementing device that can lift, the secondary grouting device side is provided with the second material supplementing device that can lift.

[0005] In the above-mentioned grinding tool automatic casting equipment, the first material bucket platform is arranged above the one-time grouting device, the first material bucket is installed on the first material bucket platform and is communicated with the one-time grouting device, the first material supplementing device corresponds to the first material bucket, the second material bucket platform is arranged above the secondary grouting device, the second material bucket is installed on the second material bucket platform and is communicated with the secondary grouting device, and the second material bucket platform corresponds to the second material bucket.

[0006] In the above-mentioned grinding tool automatic casting equipment, a plurality of mold box grooves for positioning and placing mold boxes are arranged on the mold frame.

[0007] In the above-mentioned grinding tool automatic casting equipment, the first material supplementing device and the second material supplementing device both include a longitudinal frame, a lifting motor is installed on the upper end of the longitudinal frame, a first driving wheel is installed on the output shaft of the lifting motor, a first driven wheel is arranged on the lower end of the longitudinal frame, the first driving wheel and the first driven wheel are connected through a first belt, a tilting support is arranged in the longitudinal frame, pulleys are installed on the four corners of the tilting support and are in contact with the inner wall of the longitudinal frame, the two ends of the first belt are connected with the tilting support, a tilting assembly is arranged in the tilting support, and a slurry bucket is installed on the tilting assembly.

[0008] The automatic pouring equipment for the abrasive tool comprises a driving motor installed at one end of a pouring support, a push block installed in the pouring support through a sliding rail sliding block, a screw rod installed in the push block through a screw thread, the driving motor connected with one end of the screw rod, one end of each of two connecting rods hinged to two ends of the push block, a turnover frame hinged to the other end of each of the two connecting rods, a barrel support installed at one end of the turnover frame, the slurry barrel installed on the barrel support, vertical supports arranged at two sides of the end of the pouring support away from the driving motor, and the one end of the turnover frame connected with the vertical supports through a rotating shaft.

[0009] The automatic pouring equipment for the abrasive tool comprises a driving motor installed at one end of a pouring support, a push block installed in the pouring support through a sliding rail sliding block, a screw rod installed in the push block through a screw thread, the driving motor connected with one end of the screw rod, one end of each of two connecting rods hinged to two ends of the push block, a turnover frame hinged to the other end of each of the two connecting rods, a barrel support installed at one end of the turnover frame, the slurry barrel installed on the barrel support, vertical supports arranged at two sides of the end of the pouring support away from the driving motor, and the one end of the turnover frame connected with the vertical supports through a rotating shaft.

[0010] The automatic pouring equipment for the abrasive tool comprises a driving motor installed at one end of a pouring support, a push block installed in the pouring support through a sliding rail sliding block, a screw rod installed in the push block through a screw thread, the driving motor connected with one end of the screw rod, one end of each of two connecting rods hinged to two ends of the push block, a turnover frame hinged to the other end of each of the two connecting rods, a barrel support installed at one end of the turnover frame, the slurry barrel installed on the barrel support, vertical supports arranged at two sides of the end of the pouring support away from the driving motor, and the one end of the turnover frame connected with the vertical supports through a rotating shaft.

[0011] The automatic pouring equipment for the abrasive tool comprises a driving motor installed at one end of a pouring support, a push block installed in the pouring support through a sliding rail sliding block, a screw rod installed in the push block through a screw thread, the driving motor connected with one end of the screw rod, one end of each of two connecting rods hinged to two ends of the push block, a turnover frame hinged to the other end of each of the two connecting rods, a barrel support installed at one end of the turnover frame, the slurry barrel installed on the barrel support, vertical supports arranged at two sides of the end of the pouring support away from the driving motor, and the one end of the turnover frame connected with the vertical supports through a rotating shaft.

[0012] The first moving module and the second moving module each comprise a material groove moving plate installed on the upper end face of the first material groove / the second material groove, a connecting pipe is installed through the material groove moving plate, a guide shaft sleeve is installed at both ends of the material groove moving plate, a guide rod is installed through the guide shaft sleeve, a second driving wheel is installed at one end of the first grouting frame and the second grouting frame, a second driven wheel is installed at the other end, a moving motor is connected to the second driving wheel, the second driving wheel and the second driven wheel are connected through a second belt, and both ends of the second belt are connected to the material groove moving plate.

[0013] The mold box grooves are sequentially conveyed to below the primary grouting device and the secondary grouting device for separate grouting of the slurry, so that the mold box grooves filled with the slurry are simultaneously solidified, the number of products formed each time is improved, the production process is continuous automatic grouting, the traditional mold grouting mode is not needed, production efficiency is higher, the primary grouting device and the secondary grouting device can be supplemented through corresponding material supplementing devices, manual material moving is not needed, time and labor are saved, and production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a three-dimensional structural schematic view of the mold automatic grouting equipment of the embodiment.

[0015] Figure 2 It is a three-dimensional structural schematic view of the mold frame and the mold box groove.

[0016] Figure 3 It is a three-dimensional structural schematic view of the first material supplementing device.

[0017] Figure 4 It is a three-dimensional structural schematic view of the pouring assembly.

[0018] Figure 5 It is a three-dimensional structural schematic view of the primary grouting device.

[0019] Figure 6 It is a three-dimensional structural schematic view of the first material groove, the first material distribution groove and the soft pipe clamp.

[0020] Figure 7 It is a three-dimensional structural schematic view of the secondary grouting device.

[0021] Figure 8 It is a three-dimensional structural schematic view of the second material groove and the second material distribution groove.

[0022] The figure: conveying line 1, primary grouting device 2, first bucket platform 3, first bucket 4, first replenishment device 5, secondary grouting device 6, second bucket platform 7, second bucket 8, second replenishment device 9, mold frame 10, mold box groove 11, mold box 12, longitudinal frame 13, lifting motor 14, first driving wheel 15, first driven wheel 16, first belt 17, pouring support 18, pulley 19, slide rail slider 20, push block 21, driving motor 22, screw rod 23, vertical frame 24, overturning frame 25, connecting rod 26, bucket frame 27, first grouting frame 28, second driving wheel 29, second driven wheel 30, second belt 31, guide rod 32, moving motor 33, connecting pipe 34, trough moving plate 35, guide shaft sleeve 36, first material trough 37, first material distribution trough 38, first scraper 39, first through hole 40, discharging head 41, rubber pipe 42, duckbill head 43, pipe clamping seat 44, finger cylinder 45, first pipe clamping plate 46, second grouting frame 47, second material trough 48, second scraper 49, second material distribution trough 50, second through hole 51, discharging guide seat 52. DETAILED DESCRIPTION

[0023] The specific embodiments of the utility model will be further described below in combination with the drawings. It should be noted that the description of these embodiments is used to help understand the utility model, but does not constitute the limitation of the utility model. In addition, the technical features involved in each embodiment of the utility model described below can be combined with each other as long as they do not conflict with each other.

[0024] In combination Figures 1 to 8 An automatic grinding tool pouring equipment shown in the figure, including conveying line 1 for conveying the mold frame 10 where multiple mold box grooves 11 are placed, primary grouting device 2 and secondary grouting device 6 are sequentially arranged along the conveying direction of conveying line 1, the primary grouting device 2 is provided with a first replenishment device 5 that can be lifted on one side, and the secondary grouting device 6 is provided with a second replenishment device 9 that can be lifted on one side; In this embodiment, multiple mold box grooves 11 are synchronously conveyed by conveying line 1, so that multiple mold box grooves 11 are sequentially conveyed to the lower part of primary grouting device 2 and secondary grouting device 6 for pouring grouting material respectively, so that multiple mold box grooves 11 filled with grouting material can be solidified at the same time, thereby increasing the number of products formed each time, and the production process is continuous automatic grouting pouring, without using the traditional upper and lower mold grouting mode, the production efficiency is faster; At the same time, primary grouting device 2 and secondary grouting device 6 can be replenished by corresponding replenishment devices, without manual material moving mode for replenishment, saving time and effort, and improving production efficiency.

[0025] The first material bucket platform 3 is provided above the primary grouting device 2, the first material bucket 4 is installed on the first material bucket platform 3 and is communicated with the primary grouting device 2, the first material supplementing device 5 corresponds to the first material bucket 4, the second material bucket platform 7 is provided above the secondary grouting device 6, the second material bucket 8 is installed on the second material bucket platform 7 and is communicated with the secondary grouting device 6, and the second material bucket platform 7 corresponds to the second material bucket 8; so that the first material bucket 4 and the second material bucket 8 can be automatically supplemented by the corresponding material supplementing devices, without manual operation in the form of pouring, thereby saving time and effort.

[0026] It is worth noting that the mold box slots 11 for positioning the mold boxes 12 are arranged on the mold frame 10, a plurality of mold boxes 12 can be poured with slurry at a time, the production efficiency is improved, and the mold box slots 11 can position each mold box 12 to prevent deviation.

[0027] The first material supplementing device 5 and the second material supplementing device 9 both include the longitudinal frame 13, the lifting motor 14 is installed on the upper end of the longitudinal frame 13, the first driving wheel 15 is installed on the output shaft of the lifting motor 14, the first driven wheel 16 is arranged on the lower end of the longitudinal frame 13, the first driving wheel 15 and the first driven wheel 16 are connected by the first belt 17, the pouring support 18 is arranged in the longitudinal frame 13, the pulley 19 in contact with the inner wall of the longitudinal frame 13 is installed on the four corners of the pouring support 18, the two ends of the first belt 17 are connected with the pouring support 18, the pouring assembly is arranged in the pouring support 18, and the slurry bucket is installed on the pouring assembly; the lifting motor 14 drives the first belt 17 to run, so that the pouring support 18 is lifted in the longitudinal frame 13, so as to lift the slurry bucket, without manual lifting to the corresponding position for pouring and supplementing, thereby saving time and effort, and the lifting process of the pouring support 18 is smoother under the action of the pulley 19.

[0028] The pouring assembly includes the driving motor 22 installed at one end in the pouring support 18, the push block 21 is installed in the pouring support 18 through the sliding rail sliding block 20, the screw rod 23 is screw-installed in the push block 21, the driving motor 22 is connected with one end of the screw rod 23, the two ends of the push block 21 are hingedly connected with one end of the connecting rod 26, the other end of the connecting rod 26 is hingedly connected with the turnover frame 25, the bucket frame 27 is installed at one end of the turnover frame 25, the slurry bucket is installed on the bucket frame 27, the vertical frame 24 is arranged at the two sides of the end of the pouring support 18 away from the driving motor 22, and one end of the turnover frame 25 is connected with the vertical frame 24 through the rotating shaft; the driving motor 22 drives the screw rod 23 to rotate, so that the push block 21 moves along the sliding rail sliding block 20, so that the connecting rod 26 drives the turnover frame 25 to swing around the rotating shaft, so as to pour the slurry bucket on the bucket frame 27, and pour the slurry into the first material bucket 4 or the second material bucket 8 for supplementing.

[0029] The one-time grouting device 2 of the embodiment comprises a first grouting frame 28, a first material dropping groove 37 is installed in the first grouting frame 28 through a first moving module, the upper end of the first material dropping groove 37 is connected with the first material bucket 4 through a hose, the lower end of the first material dropping groove 37 is installed with a first scraper 39 on both sides, the first material dropping groove 37 is arranged in a first material distribution groove 38, the lower end of the first scraper 39 is in contact with the surface of the first material distribution groove 38, the first material distribution groove 38 is provided with a plurality of first through holes 40, the lower end of each of the plurality of first through holes 40 is communicated and provided with a material outlet head 41, the material outlet head 41 is inserted and installed with a rubber tube 42 at the lower end, the rubber tube 42 is communicated and provided with a duckbill head 43 at the lower end, a hose clamp is installed below the first material distribution groove 38 through a supporting rod; the first material dropping groove 37 can move in the first material distribution groove 38 through the first moving module, in the moving process, the slurry in the first material dropping groove 37 can enter the first through hole 40, at the same time, the first scraper 39 can scrape the slurry in the first material distribution groove 38 clean to prevent solidification on the surface, the slurry enters the rubber tube 42 through the first through hole 40 and is output to the mold box 12 from the duckbill head 43, thereby completing the first-time slurry pouring, the hose clamp can prevent the phenomenon that the slurry continues to flow out after the pouring is completed.

[0030] The hose clamp of the embodiment comprises a clamp seat 44 connected with the supporting rod, a plurality of corresponding finger air cylinders 45 are installed on both sides of the clamp seat 44, the two sides of the finger air cylinders 45 are connected through two first clamp plates 46, and the rubber tube 42 is located between the two first clamp plates 46; each finger air cylinder 45 can drive the two first clamp plates 46 to clamp the rubber tube 42, thereby blocking the flow to prevent the slurry from seeping.

[0031] The secondary grouting device 6 of the embodiment comprises a second grouting frame 47, a second material dropping groove 48 is installed in the second grouting frame 47 through a second moving module, the upper end of the second material dropping groove 48 is communicated with the second material bucket 8 through a hose, the lower end of the second material dropping groove is provided with a second scraper 49 on both sides, the second scraper 49 is located in a second material distribution groove 50, the second material distribution groove 50 is fixedly installed in the second grouting frame 47, a plurality of second through holes 51 are formed in the second material distribution groove 50, a plurality of material outlet guide seats 52 are installed at the lower end of the second material distribution groove 50 and communicated with the second through holes 51, the material outlet guide seat 52 is in an L shape, and a plurality of third through holes are formed at the lower end of the material outlet guide seat 52; the second material dropping groove 48 moves in the second material distribution groove 50, thereby dropping the secondary slurry in the second material dropping groove 48 into the second through hole 51, at the same time, the second scraper 49 can scrape the slurry on the surface of the second material distribution groove 50 clean to prevent solidification on the surface, the secondary slurry falls into the material outlet guide seat 52 from the second through hole 51, and the secondary slurry falls into the surface of the primary slurry in the mold box 12 from the plurality of third through holes at the lower end uniformly, and the material outlet guide seat 52 can shorten the dropping distance to prevent impact when the secondary slurry falls into the surface of the primary slurry.

[0032] The consistency of the primary slurry and the secondary slurry is different.

[0033] It is worth mentioning that the two sides of the hose connected between the second material chute 48 and the second material bucket 8 can be provided with a clamp cylinder for connecting or blocking the passage between the second material chute 48 and the second material bucket 8.

[0034] The first moving module and the second moving module of the embodiment both include a material chute moving plate 35 installed on the upper end surface of the first material chute 37 / second material chute 48, a connecting pipe 34 is installed on the material chute moving plate 35, a guide shaft sleeve 36 is installed on both ends of the material chute moving plate 35, a guide rod 32 is installed in the guide shaft sleeve 36, a second driving wheel 29 is installed on one end of the first grouting frame 28 and the second grouting frame 47, a second driven wheel 30 is installed on the other end, a moving motor 33 is connected to the second driving wheel 29, the second driving wheel 29 and the second driven wheel 30 are connected through a second belt 31, and both ends of the second belt 31 are connected to the material chute moving plate 35; the material chute moving plate 35 on the first material chute 37 / second material chute 48 is driven by the second belt 31, so that the first material chute 37 / second material chute 48 can move, and the moving process is more stable under the action of the guide shaft sleeve 72 and the guide rod 57.

[0035] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, replacements and modifications can be made to these embodiments without departing from the principles and spirits of the utility model, and still fall within the protection scope of the utility model.

Claims

1. An automatic pouring apparatus for grinding elements, comprising a conveying line (1) for conveying a mould rack (10) in which a plurality of mould boxes (11) are placed, characterised in that, A primary grouting device (2) and a secondary grouting device (6) are sequentially arranged along the conveying direction of the conveying line (1), the primary grouting device (2) is provided with a first material supplementing device (5) capable of lifting on one side, and the secondary grouting device (6) is provided with a second material supplementing device (9) capable of lifting on one side.

2. An apparatus for automatically pouring abrasive articles according to claim 1, wherein A first material bucket platform (3) is arranged above the primary grouting device (2), the first material bucket platform (3) is provided with a first material bucket (4) connected with the primary grouting device (2), the first material supplementing device (5) corresponds to the first material bucket (4), a second material bucket platform (7) is arranged above the secondary grouting device (6), the second material bucket platform (7) is provided with a second material bucket (8) connected with the secondary grouting device (6), and the second material bucket platform (7) corresponds to the second material bucket (8).

3. An apparatus for automatically pouring abrasive articles according to claim 1, wherein A plurality of mold box grooves (11) for positioning and placing mold boxes (12) are arranged on the mold frame (10).

4. An apparatus for automatically pouring abrasive articles according to claim 2, wherein The first material supplementing device (5) and the second material supplementing device (9) each include a longitudinal frame (13), a lifting motor (14) is installed on the upper end of the longitudinal frame (13), a first driving wheel (15) is installed on the output shaft of the lifting motor (14), a first driven wheel (16) is arranged on the lower end of the longitudinal frame (13), the first driving wheel (15) and the first driven wheel (16) are connected through a first belt (17), a dumping support (18) is arranged in the longitudinal frame (13), pulleys (19) in contact with the inner wall of the longitudinal frame (13) are installed on the four corners of the dumping support (18), the two ends of the first belt (17) are connected with the dumping support (18), a dumping assembly is arranged in the dumping support (18), and a slurry bucket is installed on the dumping assembly.

5. An apparatus for automatically pouring abrasive articles according to claim 4, wherein The dumping assembly includes a driving motor (22) installed at one end in the dumping support (18), a push block (21) is arranged in the dumping support (18) through a sliding rail sliding block (20), a screw rod (23) is screwedly installed in the push block (21), the driving motor (22) is connected with one end of the screw rod (23), the two ends of the push block (21) are hingedly connected with one end of a connecting rod (26), the other end of the connecting rod (26) is hingedly connected with a turnover frame (25), a bucket frame (27) is installed at one end of the turnover frame (25), the slurry bucket is installed on the bucket frame (27), vertical frames (24) are arranged on the two sides of the end of the dumping support (18) away from the driving motor (22), and one end of the turnover frame (25) is connected with the vertical frame (24) through a rotating shaft.

6. An apparatus for automatically pouring abrasive articles according to claim 1, wherein The primary grouting device (2) comprises a first grouting frame (28), a first material dropping groove (37) is installed in the first grouting frame (28) through a first moving module, the upper end of the first material dropping groove (37) is connected with a first material bucket (4) through a hose, the lower end of the first material dropping groove (37) is installed with a first scraper (39) on both sides, the first material dropping groove (37) is arranged in a first material distribution groove (38), the lower end of the first scraper (39) is in contact with the surface of the first material distribution groove (38), a plurality of first through holes (40) are formed in the first material distribution groove (38), a discharging head (41) is arranged in communication at the lower end of each of the first through holes (40), a rubber tube (42) is insertedly installed at the lower end of the discharging head (41), a duckbill head (43) is arranged in communication at the lower end of the rubber tube (42), and a hose clamp is installed below the first material distribution groove (38) through a supporting rod.

7. An apparatus for automatically pouring abrasive articles according to claim 6, wherein The hose clamp comprises a pipe clamping seat (44) connected with the supporting rod, a plurality of finger air cylinders (45) are installed on both sides of the pipe clamping seat (44) in correspondence with each other, the finger air cylinders (45) on both sides are connected through two first pipe clamping plates (46), and the rubber tube (42) is located between the two first pipe clamping plates (46).

8. An apparatus for automatically pouring abrasive articles according to claim 6, wherein The secondary grouting device (6) comprises a second grouting frame (47), a second material dropping groove (48) is installed in the second grouting frame (47) through a second moving module, the upper end of the second material dropping groove (48) is connected in communication with a second material bucket (8) through a hose, second scrapers (49) are arranged on both sides of the lower end of the second material dropping groove, the second scrapers (49) are located in a second material distribution groove (50), the second material distribution groove (50) is fixedly installed in the second grouting frame (47), a plurality of second through holes (51) are formed in the second material distribution groove (50), a plurality of discharging guide seats (52) in communication with the second through holes (51) are installed at the lower end of the second material distribution groove (50), the discharging guide seats (52) are L-shaped, and a plurality of third through holes are arranged at the lower end of the discharging guide seats (52).

9. An apparatus for automatically pouring abrasive articles according to claim 8, wherein The first moving module and the second moving module both comprise a material groove moving plate (35) installed on the upper end face of the first material dropping groove (37) / the second material dropping groove (48), a connecting pipe (34) is installed in penetration on the material groove moving plate (35), guide shaft sleeves (36) are installed at both ends of the material groove moving plate (35), guide rods (32) are installed in penetration in the guide shaft sleeves (36), a second driving wheel (29) is installed at one end of the first grouting frame (28) and the second grouting frame (47), a second driven wheel (30) is installed at the other end, a moving motor (33) is connected with the second driving wheel (29), and the second driving wheel (29) and the second driven wheel (30) are connected through a second belt (31), and both ends of the second belt (31) are connected with the material groove moving plate (35).