CN220144866U - Foundry goods cutting device - Google Patents

Foundry goods cutting device Download PDF

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Publication number
CN220144866U
CN220144866U CN202320510590.7U CN202320510590U CN220144866U CN 220144866 U CN220144866 U CN 220144866U CN 202320510590 U CN202320510590 U CN 202320510590U CN 220144866 U CN220144866 U CN 220144866U
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China
Prior art keywords
cutting
bottom plate
casting
fastening
shaft
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CN202320510590.7U
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Chinese (zh)
Inventor
陈志军
赖君生
赖嘉乐
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Dongguan Senang Precision Machinery Co ltd
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Dongguan Senang Precision Machinery Co ltd
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Abstract

The utility model relates to the technical field related to casting cutting, in particular to a casting cutting device which comprises a bottom plate, wherein two cutting assemblies with the same structure are parallelly arranged on the bottom plate, the two cutting assemblies move relatively or oppositely on the bottom plate, two driving devices for respectively driving the two cutting assemblies to move are parallelly arranged on the bottom plate, two movable cutting devices are arranged on the bottom plate, and the cutting position of a casting is adjusted at any time. The cutting machine can cut different workpieces simultaneously, can process two sides of a larger workpiece simultaneously, and improves processing efficiency.

Description

Foundry goods cutting device
Technical Field
The utility model relates to the technical field related to casting cutting, in particular to a casting cutting device.
Background
Existing castings typically have a gate portion after molding. Before these castings are used, the part of the gate that the worker needs to remove is needed. The existing part of the way to remove the gate is usually cut manually by using a grinding wheel knife. However, this cutting method is very prone to certain errors, and some safety accidents may occur in the short-distance cutting.
The Chinese patent with the publication number of CN217889706U discloses a semiautomatic casting cutting machine, which comprises a frame, a clamping device, an adjusting mechanism, a cutting device and a blanking mechanism, wherein the cutting device is fixedly arranged above the frame, the clamping device is movably connected above the frame through the adjusting mechanism, and the blanking mechanism is embedded in the frame; the utility model improves the precision of casting cutting, is provided with the long handle, reduces the splashing of rim charge of the assembly or the damage of sparks to workers, and is provided with the adjusting mechanism for adjusting the front and rear positions and the left and right positions of the device below the clamping device, so that the position of the casting can be adjusted more conveniently. The position of the casting position is adjusted by adopting the scheme, when a large casting is processed, the position of the casting is relatively difficult to adjust, and the cutting impression processing efficiency is realized by adopting a single cutting device.
Disclosure of Invention
In order to solve the problems, the utility model provides a casting cutting device, wherein two movable cutting devices are arranged on a bottom plate, and the cutting position of a casting is adjusted at any time. The cutting machine can cut different workpieces simultaneously, can process two sides of a larger workpiece simultaneously, and improves processing efficiency.
In order to achieve the above purpose, the utility model adopts the following technical scheme: the utility model provides a foundry goods cutting device, includes the bottom plate, and parallel mount has two cutting assemblies that the structure is the same on the bottom plate, and two cutting assemblies are relative or opposite movement on the bottom plate, and parallel arrangement has two drive arrangement that drive two cutting assemblies respectively to remove on the bottom plate.
As the preferable technical scheme, two support shafts are arranged on two sides of the bottom plate in parallel, and the support shafts are fixedly connected with the bottom plate through a support base; two locking positioning sliding blocks are slidably arranged on each supporting shaft, one side cutting assembly is arranged on the two elastic positioning sliding blocks on the same side, and the other side cutting assembly is arranged on the two locking positioning sliding blocks on the other side.
As the preferable technical scheme, drive arrangement is including installing the backup pad in the bottom plate both sides, rotates in the backup pad and is connected with two parallel arrangement's drive lead screw, all overlaps on two drive lead screws and is equipped with the screw seat, and one of them screw seat and one of them cutting assembly fixed connection, another screw seat and another cutting assembly fixed connection.
As the preferable technical scheme, handles are fixedly arranged at the end parts of the two driving screw rods; the handle is positioned on the outer side of the bottom plate.
As the preferable technical scheme, the cutting assembly comprises a cutting bracket, a cutting motor is arranged at the bottom of the cutting bracket, a bearing seat is horizontally arranged at the top of the cutting bracket, a cutting shaft is rotatably arranged in the bearing seat, and the cutting motor is in transmission connection with the cutting shaft; the other end of the cutting shaft is at least fixedly provided with a fastening device, and a cutting blade is arranged in the fastening device.
As the preferable technical scheme, the fastening device comprises a clamping plate and a fastening flange which are coaxially arranged, wherein the centers of the clamping plate and the fastening flange are coaxially provided with a mounting hole matched with the cutting shaft, the clamping plate is provided with a connecting hole matched with the through hole of the cutting blade, and the fastening flange is provided with a threaded hole matched with the connecting hole.
As the preferable technical scheme, the fastening flange is provided with a fixing ring which is coaxially arranged with the mounting hole, and the fixing ring comprises a semicircular fastening ring which is integrally formed with the fastening flange and a mounting ring which is connected with the fastening ring through bolts.
As the preferable technical scheme, the two sides of the cutting motor and the bearing seat are respectively provided with a tightening strip, the tightening strips are fixedly arranged on the cutting support, and two ends of the tightening strips are in threaded connection with two adjusting rods.
The utility model has the beneficial effects that: two movable cutting devices are arranged on the bottom plate, and the cutting position of the casting is adjusted at any time. The cutting machine can cut different workpieces simultaneously, can process two sides of a larger workpiece simultaneously, and improves processing efficiency.
Drawings
FIG. 1 is a schematic view of an isometric view of the utility model.
Fig. 2 is an exploded view of the floor of the present utility model.
Fig. 3 is an exploded view of the cutting assembly of the present utility model.
Reference numerals illustrate: 1. the device comprises a bottom plate, a cutting assembly, a supporting shaft, a supporting base, a locking positioning slide block, a driving device, a supporting plate, a driving screw rod, a screw seat, a handle, a cutting bracket, a cutting motor, a bearing seat, a cutting shaft, a belt pulley, a clamping plate, a fastening flange, a mounting hole, a cutting sheet, a connecting hole, a threaded hole, a fastening ring, a mounting ring, a tightening strip and an adjusting rod.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
Referring to fig. 1-3, the utility model relates to a casting cutting device, which comprises a bottom plate 1, wherein two cutting assemblies 2 with the same structure are parallelly arranged on the bottom plate 1, two support shafts 3 are parallelly arranged on two sides of the bottom plate 1, and the support shafts 3 are fixedly connected with the bottom plate 1 through support bases 4. Two locking positioning sliding blocks 5 are slidably arranged on each supporting shaft 3, one side cutting assembly 2 is arranged on the two elastic positioning sliding blocks on the same side, and the other cutting assembly 2 is arranged on the two locking positioning sliding blocks 5 on the other side, so that the two cutting assemblies 2 move relatively or oppositely on the bottom plate 1. Two driving devices 6 which respectively drive the two cutting assemblies 2 to move are arranged on the bottom plate 1 in parallel, and the driving devices 6 are positioned between the two support shafts 3. The driving device 6 comprises a supporting plate 7 arranged on two sides of the bottom plate 1, two parallel driving screw rods 8 are rotatably connected to the supporting plate 7 through deep groove ball bearings, screw bases 9 are sleeved on the two driving screw rods 8, one screw base 9 is fixedly connected with one cutting assembly 2, and the other screw base 9 is fixedly connected with the other cutting assembly 2. The end parts of the two driving screw rods 8 are fixedly provided with handles 10. The handle 10 is located outside the base plate 1. It should be noted that, besides the handle 10 driving the driving screw 8 to rotate, a servo motor may be used to drive the driving screw to rotate. In the use, loosen handle 10 on locking location slider 5, make left cutting subassembly 2 and right cutting subassembly 2 be in sliding state, through rotating one of them handle 10, drive lead screw 8 through handle 10 and rotate thereby nut seat 9 removes on drive lead screw 8, thereby drive one of them cutting subassembly 2 and remove, after one of them drive subassembly removes the settlement position, lock corresponding locking location slider 5 through handle 10, guarantee one of them cutting subassembly 2 fixed in position, adopt another handle 10 of the same method rotation, adjust the distance of two cutting subassemblies 2. Thereby performing a cutting process on the workpiece required for the cast member. In order to improve the production efficiency in the production process, a plurality of required workpieces are cast on one casting piece at the same time, and when smaller workpieces are cut, two cutting assemblies 2 cut different workpieces at the same time, so that the processing efficiency is improved. When the workpiece with larger diameter is cut, the two sides of the same workpiece can be cut simultaneously, and the falling of the workpiece is accelerated. Since the two cutting assemblies 2 can move left and right on the base plate 1, workpieces with different diameters can be cut, so that the cutting direction is wider.
Referring to fig. 3, the cutting assembly 2 includes a cutting bracket 11 mounted on a locking positioning slide 5, a cutting motor 12 is mounted at the bottom of the cutting bracket 11, a bearing seat 13 is horizontally mounted at the top of the cutting bracket 11, a cutting shaft 14 is rotatably mounted in the bearing seat 13, a belt pulley 15 is mounted at one end of the cutting shaft 14, belt pulleys 15 with the same structure are mounted at the output end of the cutting motor 12, and the two belt pulleys 15 are in transmission connection through a V-belt. The cutting motor 12 is in driving connection with the cutting shaft 14. At least one fastening device is fixedly mounted on the other end of the cutting shaft 14, in which a cutting blade 19 is mounted.
The fastening device comprises a clamping plate 16 and a fastening flange 17 which are coaxially arranged, wherein the centers of the clamping plate 16 and the fastening flange 17 are coaxially provided with a mounting hole 18 which is matched with the cutting shaft 14, the clamping plate 16 is provided with a connecting hole 20 which is matched with a through hole of the cutting plate 19, the fastening flange 17 is provided with a threaded hole 21 which is matched with the connecting hole 20, the clamping plate 16 and the fastening flange 17 are arranged on two sides of the cutting plate 19, and then the clamping plate 16 and the fastening flange 17 sequentially penetrate through the connecting hole 20 on the clamping plate 16 and the through hole on the cutting plate 19 to be in threaded connection with the threaded hole 21 on the fastening flange 17 through bolts. The cutting blade 19 is secured between the fastening flange 17 and the clamping plate 16. The mounting hole 18 is sleeved on the cutting shaft 14 to mount the cutting blade 19. In order to improve the mounting stability of the flange, the fastening flange 17 is provided with a fixing ring coaxially arranged with the mounting hole 18, and the fixing ring comprises a semicircular fastening ring 22 integrally formed with the fastening flange 17 and a mounting ring 23 connected with the fastening ring 22 through bolts. Since the mounting ring 23 and the fastening ring 22 are provided with semicircular fastening holes, the diameter of the fastening hole formed by combining the two semicircular fastening holes is smaller than that of the cutting shaft 14. When the mounting ring 23 is mounted on the fastening ring 22 by bolts, the fastening flange 17 is fastened to the cutting shaft 14. When the cutting blade 19 needs to be replaced, only the bolts connecting the mounting ring 23 and the fastening ring 22 need to be loosened, and the cutting blade 19 can be replaced.
In order to be convenient for adjust the relative position of cutting motor 12 and bearing frame 13 constantly in the installation, all be equipped with in cutting motor 12 and bearing frame 13 both sides and tighten up strip 24, tighten up strip 24 fixed mounting and cut the support, tighten up strip 24's both ends threaded connection has two regulation poles 25, adjusts pole 25 and the bottom of cutting motor 12 and the bottom butt of bearing frame 13.
In the description of the present utility model, it should be understood that the directions or positional relationships indicated by the terms "coaxial," "bottom," "one end," "top," "middle," "other end," "upper," "one side," "top," "inner," "front," "center," "both ends," etc., are based on the directions or positional relationships shown in the drawings, are merely for convenience of description and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the utility model.
In the present utility model, unless explicitly specified and limited otherwise, the terms "mounted," "configured," "connected," "secured," "screwed," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; either directly or indirectly through intermediaries, or in communication with each other or in interaction with each other, unless explicitly defined otherwise, the meaning of the terms described above in this application will be understood by those of ordinary skill in the art in view of the specific circumstances.
The above embodiments are merely illustrative of the preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model, and various modifications and improvements made by those skilled in the art to the technical solution of the present utility model should fall within the scope of protection defined by the claims of the present utility model without departing from the spirit of the design of the present utility model.

Claims (7)

1. The casting cutting device is characterized by comprising a bottom plate, wherein two cutting assemblies with the same structure are parallelly arranged on the bottom plate, the two cutting assemblies move oppositely or oppositely on the bottom plate, and two driving devices for respectively driving the two cutting assemblies to move are parallelly arranged on the bottom plate; two support shafts are arranged on two sides of the bottom plate in parallel, and the support shafts are fixedly connected with the bottom plate through a support base; two locking positioning sliding blocks are slidably arranged on each supporting shaft, one side cutting assembly is arranged on the two elastic positioning sliding blocks on the same side, and the other side cutting assembly is arranged on the two locking positioning sliding blocks on the other side.
2. The casting cutting device of claim 1, wherein: the driving device comprises a supporting plate arranged on two sides of the bottom plate, two driving screw rods which are arranged in parallel are rotationally connected to the supporting plate, screw bases are sleeved on the two driving screw rods, one screw base is fixedly connected with one cutting assembly, and the other screw base is fixedly connected with the other cutting assembly.
3. The casting cutting device of claim 2, wherein: handles are fixedly arranged at the end parts of the two driving screw rods; the handle is positioned on the outer side of the bottom plate.
4. The casting cutting device of claim 1, wherein: the cutting assembly comprises a cutting bracket, a cutting motor is arranged at the bottom of the cutting bracket, a bearing seat is horizontally arranged at the top of the cutting bracket, a cutting shaft is rotatably arranged in the bearing seat, and the cutting motor is in transmission connection with the cutting shaft; the other end of the cutting shaft is at least fixedly provided with a fastening device, and a cutting blade is arranged in the fastening device.
5. The casting cutting device of claim 4, wherein: the fastening device comprises a clamping plate and a fastening flange which are coaxially arranged, the centers of the clamping plate and the fastening flange are coaxially provided with a mounting hole matched with the cutting shaft, the clamping plate is provided with a connecting hole matched with the through hole of the cutting piece, and the fastening flange is provided with a threaded hole matched with the connecting hole.
6. The casting cutting device of claim 5, wherein: the fastening flange is provided with a fixing ring which is coaxially arranged with the mounting hole, and the fixing ring comprises a semicircular fastening ring which is integrally formed with the fastening flange and a mounting ring which is connected with the fastening ring through bolts.
7. The casting cutting device of claim 4, wherein: tightening strips are arranged on two sides of the cutting motor and the bearing seat, the tightening strips are fixedly arranged on the cutting support, and two ends of the tightening strips are in threaded connection with two adjusting rods.
CN202320510590.7U 2023-03-16 2023-03-16 Foundry goods cutting device Active CN220144866U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320510590.7U CN220144866U (en) 2023-03-16 2023-03-16 Foundry goods cutting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320510590.7U CN220144866U (en) 2023-03-16 2023-03-16 Foundry goods cutting device

Publications (1)

Publication Number Publication Date
CN220144866U true CN220144866U (en) 2023-12-08

Family

ID=89016879

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320510590.7U Active CN220144866U (en) 2023-03-16 2023-03-16 Foundry goods cutting device

Country Status (1)

Country Link
CN (1) CN220144866U (en)

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