CN220127571U - Die casting forming machine is used in machining of machine parts - Google Patents

Die casting forming machine is used in machining of machine parts Download PDF

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Publication number
CN220127571U
CN220127571U CN202321553136.6U CN202321553136U CN220127571U CN 220127571 U CN220127571 U CN 220127571U CN 202321553136 U CN202321553136 U CN 202321553136U CN 220127571 U CN220127571 U CN 220127571U
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China
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fixed
die
connecting plate
side face
die casting
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CN202321553136.6U
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Chinese (zh)
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魏安庄
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Zhengzhou Hengfeng Machinery Manufacturing Co ltd
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Zhengzhou Hengfeng Machinery Manufacturing Co ltd
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Abstract

The utility model discloses a die-casting forming machine for machining mechanical accessories, which relates to the technical field of die-casting forming machines and comprises a bottom plate and a die-casting assembly; a bottom plate: the upper side face is provided with a PLC controller and a display, and the middle part of the upper side face of the bottom plate is fixed with a lower die barrel; and (3) die casting the assembly: contain mounting bracket, motor, fixed box, connecting plate, go up the mould post, servo motor, threaded rod and gag lever post, be fixed with two corresponding mounting brackets on the last side of bottom plate, install the motor on the last side of left mounting bracket, the fixed box is provided with two, rotates on the corresponding medial surface of two fixed boxes and is connected with the connecting plate, be fixed with the mould post on the last side of connecting plate, the internally mounted of left fixed box has servo motor, servo motor's output shaft is fixed on the left surface of connecting plate, can be very convenient preheat die casting die's inside.

Description

Die casting forming machine is used in machining of machine parts
Technical Field
The utility model relates to the technical field of die-casting forming machines, in particular to a die-casting forming machine for machining mechanical accessories.
Background
The die casting is a metal casting process, which is characterized in that a die cavity is used for applying high pressure to molten metal, the die is usually processed by alloy with higher strength, the process is similar to injection molding, most of die casting castings are free of iron, such as zinc, copper, aluminum, magnesium, lead, tin and lead-tin alloy, and the alloy thereof, the casting equipment and the die are high in cost, the die casting process is generally only used for manufacturing a large number of products in batches, the manufacturing of die casting parts is relatively easy, four main steps are generally needed, single cost increment is very low, the die casting is particularly suitable for manufacturing a large number of small and medium-sized castings, the die casting is the most widely used one in various casting processes, if the existing die casting forming device is not used for performing die casting operation, the die casting die is preheated, the casting loses fluidity because of chilling, the casting production quality is not successfully finished, and the die casting is usually preheated outside, but the die casting equipment is not controlled in temperature in a good way, and a die casting machine is difficult to operate.
Disclosure of Invention
The utility model aims to overcome the existing defects, and provides a die-casting forming machine for machining mechanical accessories, which can preheat the inside of a die-casting die very conveniently and can effectively solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions: a die-casting molding machine for machining mechanical accessories comprises a bottom plate and a die-casting assembly;
a bottom plate: the upper side face is provided with a PLC controller and a display, and the middle part of the upper side face of the bottom plate is fixed with a lower die barrel;
and (3) die casting the assembly: the die-casting die comprises a mounting frame, a motor, a fixing box, a connecting plate, an upper die column, a servo motor, a threaded rod and a limiting rod, wherein two corresponding mounting frames are fixed on the upper side face of a bottom plate, the motor is installed on the upper side face of the mounting frame on the left side, the fixing boxes are provided with two, the connecting plate is connected on the corresponding inner side faces of the two fixing boxes in a rotating mode, the upper die column is fixed on the upper side face of the connecting plate, the servo motor is installed in the inner part of the fixing box on the left side, an output shaft of the servo motor is fixed on the left side face of the connecting plate, a threaded hole is formed in the upper side face of the fixing box on the left side, the threaded rod is connected in a rotating mode, an output shaft of the motor is fixed on the upper end face of the threaded rod, a through hole is formed in the upper side face of the fixing box on the right side, the limiting rod is connected in a sliding mode, the limiting rod is fixed in the mounting frame on the right side, a heating assembly is installed on the lower side face of the connecting plate, and die-casting is performed through the die-casting assembly;
wherein: the input end of the PLC is electrically connected with the output end of an external power supply, and the output end of the PLC is electrically connected with the input ends of the display, the motor and the servo motor respectively.
Further, heating element contains fixed pipe, first heating pipe and temperature sensor, be fixed with fixed pipe on the downside of connecting plate, fixed pipe's internally mounted has evenly distributed's first heating pipe, install temperature sensor on the downside of connecting plate, the output of PLC controller is connected to the input electricity of first heating pipe, temperature sensor and the two-way electricity of PLC controller are connected, preheat the lower mould bucket through setting up heating element.
Further, an annular groove is formed in the circumferential surface of the lower die barrel, an annular pipe is fixed in the annular groove, and cooling water can be injected into the annular pipe to cool the lower die barrel after die casting through the annular pipe.
Furthermore, the inside of the water inlet and the water outlet which are arranged on the circumferential surface of the annular pipe is fixed with a connecting pipe, and the end surface of the connecting pipe is buckled with a cap.
Further, the upper ends of the corresponding inner side surfaces of the two mounting racks are fixedly provided with fixed boxes, second heating pipes which are uniformly distributed are arranged in the fixed boxes, the input ends of the second heating pipes are electrically connected with the output ends of the PLC, and the upper die columns are preheated by the second heating pipes.
Further, four corresponding clamping grooves are formed in the left side and the right side of the connecting plate, two corresponding electric telescopic rods are mounted on the inner wall of the fixing box, clamping columns are fixed on telescopic arms of the electric telescopic rods, the clamping columns correspond to the clamping grooves, the input end of the electric telescopic rods is electrically connected with the output end of the PLC, and the connecting plate is fixed through the electric telescopic rods, the clamping columns and the clamping grooves.
Compared with the prior art, the utility model has the beneficial effects that: the die-casting molding machine for machining the mechanical parts has the following advantages:
through setting up die-casting subassembly and heating element and making can start the motor in the in-process of using, thereby make the threaded rod rotate and drive the connecting plate downwardly moving after the motor starts, the connecting plate downwardly moving drives heating element downwardly moving, and after heating element moves the inside of lower mould bucket, start heating element and can preheat the inside of lower mould bucket.
Drawings
FIG. 1 is a schematic view of the front side structure of the present utility model;
FIG. 2 is a front cross-sectional view of the present utility model;
FIG. 3 is an enlarged view of the utility model at A.
In the figure: 1 bottom plate, 2PLC controllers, 3 displays, 4 lower mould barrels, 5 die casting components, 51 mounting frames, 52 motors, 53 fixing boxes, 54 connecting plates, 55 upper mould columns, 56 servo motors, 57 threaded rods, 58 limit rods, 6 heating components, 61 fixing pipes, 62 first heating pipes, 63 temperature sensors, 7 annular pipes, 8 connecting pipes, 9 caps, 10 fixing boxes, 11 second heating pipes, 12 electric telescopic rods, 13 clamping columns and 14 clamping grooves.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the present embodiment provides a technical solution: a die-casting molding machine for machining mechanical accessories comprises a bottom plate 1 and a die-casting assembly 5;
the base plate 1: the upper side surface is provided with a PLC (programmable logic controller) 2 and a display 3, and the middle part of the upper side surface of the bottom plate 1 is fixed with a lower die barrel 4;
die casting assembly 5: comprises a mounting frame 51, a motor 52, a fixing box 53, a connecting plate 54, an upper die column 55, a servo motor 56, a threaded rod 57 and a limiting rod 58, wherein two corresponding mounting frames 51 are fixed on the upper side surface of the bottom plate 1, the motor 52 is installed on the upper side surface of the left mounting frame 51, the fixing boxes 53 are provided with two fixing boxes 53, the corresponding inner side surfaces of the two fixing boxes 53 are rotationally connected with the connecting plate 54, the upper die column 55 is fixed on the upper side surface of the connecting plate 54, the servo motor 56 is installed in the left fixing box 53, an output shaft of the servo motor 56 is fixed on the left side surface of the connecting plate 54, a threaded hole is formed in the upper side surface of the left fixing box 53, the threaded rod 57 is connected with the internal threads of the threaded hole, the threaded rod 57 is rotationally connected in the inner part of the left mounting frame 51, the output shaft of the motor 52 is fixed on the upper end face of the threaded rod 57, a through hole is formed in the upper side face of the right fixing box 53, a limiting rod 58 is connected in a sliding manner in the through hole, the limiting rod 58 is fixed in the right mounting frame 51, a heating component 6 is mounted on the lower side face of the connecting plate 54, the heating component 6 comprises a fixing pipe 61, a first heating pipe 62 and a temperature sensor 63, the fixing pipe 61 is fixed on the lower side face of the connecting plate 54, uniformly distributed first heating pipes 62 are mounted in the fixing pipe 61, the temperature sensor 63 is mounted on the lower side face of the connecting plate 54, the input end of the first heating pipe 62 is electrically connected with the output end of the PLC controller 2, the temperature sensor 63 is electrically connected with the PLC controller 2 in a bidirectional manner, the lower die barrel 4 is preheated by the heating component 6, and die casting is performed by the die casting component 5;
wherein: the input end of the PLC controller 2 is electrically connected with the output end of an external power supply, and the output end of the PLC controller 2 is respectively electrically connected with the input ends of the display 3, the motor 52 and the servo motor 56.
Wherein: an annular groove is formed in the circumferential surface of the lower die barrel 4, an annular pipe 7 is fixed in the annular groove, and cooling water can be injected into the annular pipe 7 to cool the lower die barrel 4 after die casting through the annular pipe 7.
Wherein: the inside of the water inlet and the water outlet which are arranged on the circumferential surface of the annular pipe 7 is fixed with a connecting pipe 8, and the end surface of the connecting pipe 8 is buckled with a cap 9.
Wherein: the upper ends of the corresponding inner sides of the two mounting frames 51 are fixedly provided with a fixing box 10, second heating pipes 11 which are uniformly distributed are arranged in the fixing box 10, the input ends of the second heating pipes 11 are electrically connected with the output ends of the PLC controller 2, and the upper die columns 55 are preheated by arranging the second heating pipes 11.
Wherein: four corresponding clamping grooves 14 are formed in the left side and the right side of the connecting plate 54, two corresponding electric telescopic rods 12 are mounted on the inner wall of the fixing box 53, clamping columns 13 are fixed on telescopic arms of the electric telescopic rods 12, the clamping columns 13 correspond to the clamping grooves 14, the input end of each electric telescopic rod 12 is electrically connected with the output end of the PLC 2, and the connecting plate 54 is fixed through the arrangement of the electric telescopic rods 12, the clamping columns 13 and the clamping grooves 14.
The utility model provides a die-casting molding machine for machining mechanical parts, which has the following working principle: before die casting, the motor 52 is started, the threaded rod 57 is enabled to rotate after the motor 52 is started, the threaded rod 57 rotates to drive the left fixed box 53 to move downwards, the left fixed box 53 moves downwards to drive the connecting plate 54 to move downwards, the connecting plate 54 moves downwards to drive the heating component 6 to move downwards, when the heating component 6 moves downwards to the inside of the lower die barrel 4, all the first heating pipes 62 are started to preheat the inside of the lower die barrel 4, the temperature sensor 63 continuously detects the temperature inside the fixed pipe 61 in the preheating process, temperature data are sent to the inside of the display 3 after detection to be displayed, the motor 52 is controlled to rotate when the proper temperature is reached, the connecting plate 54 is restored to the original position, then all the second heating pipes 11 preheat the upper die post 55, the motor 52 is controlled to work after the preheating, the connecting plate 54 moves downwards, the servo motor 56 is enabled to rotate when the connecting plate 54 is moved to the proper position, the servo motor 56 is enabled to be closed after the upper die post 55 rotates to the lower side, then all the telescopic rods 12 are enabled to enable the clamping post 13 to enter the clamping groove 14 to be detected, the inside of the clamping post 14 is enabled to enter the clamping groove, the inside of the clamping post 14 is enabled to be fixed, and then the metal post 52 is enabled to enter the inside the fixing post 55, and the die casting post is enabled to be fixed to enter the inside after the fixing post is enabled to enter the fixing post 55.
It should be noted that, in the PLC controller 2 disclosed in the above embodiment, the specific model is siemens S7-200, and the motor 52, the servo motor 56, the first heating pipe 62, the temperature sensor 63, the second heating pipe 11 and the electric telescopic rod 12 can be freely configured according to the actual application scenario, and the PLC controller 2 controls the motor 52, the servo motor 56, the first heating pipe 62, the second heating pipe 11 and the electric telescopic rod 12 to work by the methods commonly used in the prior art.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.

Claims (6)

1. The utility model provides a machine for machine parts processing die casting make-up machine which characterized in that: comprises a bottom plate (1) and a die casting assembly (5);
bottom plate (1): the upper side face is provided with a PLC (programmable logic controller) 2 and a display 3, and the middle part of the upper side face of the bottom plate 1 is fixed with a lower die barrel 4;
die casting assembly (5): the novel automatic limit device comprises a mounting frame (51), a motor (52), a fixing box (53), a connecting plate (54), an upper die column (55), a servo motor (56), a threaded rod (57) and a limit rod (58), wherein two corresponding mounting frames (51) are fixed on the upper side face of a bottom plate (1), the motor (52) is mounted on the upper side face of the left mounting frame (51), the fixing boxes (53) are provided with two, the corresponding inner side faces of the two fixing boxes (53) are rotationally connected with the connecting plate (54), the upper die column (55) is fixed on the upper side face of the connecting plate (54), the servo motor (56) is mounted in the left fixing box (53), an output shaft of the servo motor (56) is fixed on the left side face of the connecting plate (54), a threaded hole is formed in the upper side face of the left fixing box (53), the threaded hole is connected with the threaded rod (57) in an internal thread mode, an output shaft of the motor (52) is fixed on the upper end face of the right fixing box (57), the limit rod (58) is connected with the inner side face of the right fixing box (53) in a sliding mode, the limit rod (58) is connected with the inner side of the limit rod, a heating component (6) is arranged on the lower side surface of the connecting plate (54);
wherein: the input end of the PLC (2) is electrically connected with the output end of an external power supply, and the output end of the PLC (2) is electrically connected with the input ends of the display (3), the motor (52) and the servo motor (56) respectively.
2. The die casting machine for machining a machine part according to claim 1, wherein: the heating assembly (6) comprises a fixed pipe (61), a first heating pipe (62) and a temperature sensor (63), wherein the fixed pipe (61) is fixed on the lower side face of the connecting plate (54), the first heating pipe (62) which is evenly distributed is installed in the fixed pipe (61), the temperature sensor (63) is installed on the lower side face of the connecting plate (54), the input end of the first heating pipe (62) is electrically connected with the output end of the PLC controller (2), and the temperature sensor (63) is electrically connected with the PLC controller (2) in a bidirectional mode.
3. The die casting machine for machining a machine part according to claim 1, wherein: an annular groove is formed in the circumferential surface of the lower die barrel (4), and an annular pipe (7) is fixed in the annular groove.
4. A die casting machine for machining a machine part according to claim 3, wherein: the inner parts of the water inlet and the water outlet which are arranged on the circumferential surface of the annular pipe (7) are respectively fixed with a connecting pipe (8), and the end surface of the connecting pipe (8) is buckled with a cap (9).
5. The die casting machine for machining a machine part according to claim 1, wherein: the upper ends of the corresponding inner side surfaces of the two mounting frames (51) are fixedly provided with fixed boxes (10), second heating pipes (11) which are uniformly distributed are arranged in the fixed boxes (10), and the input ends of the second heating pipes (11) are electrically connected with the output ends of the PLC (2).
6. The die casting machine for machining a machine part according to claim 1, wherein: four corresponding clamping grooves (14) are formed in the left side and the right side of the connecting plate (54), two corresponding electric telescopic rods (12) are mounted on the inner wall of the fixed box (53), clamping columns (13) are fixed on telescopic arms of the electric telescopic rods (12), the clamping columns (13) correspond to the clamping grooves (14) mutually, and the input end of each electric telescopic rod (12) is electrically connected with the output end of the PLC (2).
CN202321553136.6U 2023-06-19 2023-06-19 Die casting forming machine is used in machining of machine parts Active CN220127571U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321553136.6U CN220127571U (en) 2023-06-19 2023-06-19 Die casting forming machine is used in machining of machine parts

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321553136.6U CN220127571U (en) 2023-06-19 2023-06-19 Die casting forming machine is used in machining of machine parts

Publications (1)

Publication Number Publication Date
CN220127571U true CN220127571U (en) 2023-12-05

Family

ID=88961945

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321553136.6U Active CN220127571U (en) 2023-06-19 2023-06-19 Die casting forming machine is used in machining of machine parts

Country Status (1)

Country Link
CN (1) CN220127571U (en)

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