Concave surface treatment device for tungsten steel die machining

By designing the combination of tungsten steel mold clamping unit, recessed surface processing treatment unit and control cleaning unit, the problems of excessive temperature and debris cleaning in tungsten steel mold processing are solved, and efficient processing and precise recessed surface treatment are achieved.

CN120502769APending Publication Date: 2025-08-19CHANGSHU SINOMA TUNGSTEN TECH CO LTD
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Patent Information

Application Number
CN202510635459.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2025-08-19

AI Technical Summary

Technical Problem

The existing depression surface treatment device for tungsten steel mold processing is too high during processing, resulting in damage to the cutting tool, and the debris generated during processing cannot be effectively cleaned, affecting the processing accuracy.

Method used

A device including a tungsten steel mold clamping unit, a recessed surface processing unit and a control and cleaning unit is designed. The tungsten steel mold is fixed and moved through an electric push rod and transmission gear system, and the electromagnetic clamping plate and cutting tool fixing column are used for clamping and processing. Combined with the annular nozzle water spray cooling and the high-pressure nozzle cleaning of debris, the debris cleaning and temperature control are achieved.

Benefits of technology

It effectively prevents damage to the cutting tool, improves the processing efficiency of tungsten steel molds, ensures that the processing accuracy is not affected, and extends the service life of the cutting tool.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a sunken surface treatment device for tungsten steel die machining, and relates to the technical field of sunken surface treatment device design, and the sunken surface treatment device comprises a sunken surface treatment device main body, a tungsten steel die clamping unit, a sunken surface machining treatment unit and a control cleaning unit, the four corners of the lower side surface of the concave surface treatment device body are each fixedly connected with a stable supporting leg, a partition plate is arranged in the concave surface treatment device body, and a concave surface machining treatment unit is arranged on the surface of a top plate in the concave surface treatment device body; a control cleaning unit is arranged on the surface of the low end in the concave surface treatment device body, when machining and surface treatment are conducted, the generated temperature is too high, the device is used for cooling, a cutter is prevented from being damaged, the tungsten steel mold machining efficiency is improved, chippings generated in the machining process can be cleaned, and the machining precision is not affected.
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Description

Technical Field

[0001] The invention relates to the technical field of concave surface processing device design, in particular to a concave surface processing device for tungsten steel mold processing. Background Art

[0002] Tungsten steel (hard alloy) has a series of excellent properties such as high hardness, wear resistance, good strength and toughness, heat resistance, corrosion resistance, etc., especially its high hardness and wear resistance, which remain basically unchanged even at a temperature of 500°C, and still has high hardness at 1000°C. Tungsten steel material refers to an alloy material obtained by mixing, pressing and sintering WC and Co powder as the main raw materials using powder metallurgy methods through a series of processing techniques. It has the characteristics of hardness, high strength, corrosion resistance, and stainlessness. It is widely used in hardware, machinery, chemical industry, national defense and other industries to produce high-precision and high-wear-resistant key components. In order to facilitate the production of tungsten steel molds, grooves need to be processed. In order to facilitate processing, a concave surface processing device for tungsten steel mold processing is required.

[0003] The existing concave surface treatment device for tungsten steel mold processing has the problem that the temperature generated during processing and surface treatment is too high, which damages the cutting tool and affects the efficiency of tungsten steel mold processing. The debris generated during the processing cannot be cleaned, affecting the processing accuracy. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to overcome the existing defects and provide a concave surface processing device for tungsten steel mold processing. During processing and surface treatment, the temperature generated is too high, and the device is used to cool down the surface to prevent damage to the cutting tool, thereby improving the efficiency of tungsten steel mold processing. The debris generated during the processing can be cleaned up without affecting the processing accuracy, which can effectively solve the problems in the background technology.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: a concave surface processing device for tungsten steel mold processing, comprising a concave surface processing device body, a tungsten steel mold clamping unit, a concave surface processing unit and a control and cleaning unit;

[0006] The main body of the concave surface treatment device: a stable support leg is fixedly connected to each of the four corners of the lower surface, a partition plate is provided inside the main body of the concave surface treatment device, a concave surface processing unit is provided on the top plate surface of the main body of the concave surface treatment device, and a control cleaning unit is provided on the lower end surface of the main body of the concave surface treatment device;

[0007] Tungsten steel mold clamping unit: includes a fixed cross bar, an adjusting slider 1, a supporting fixing frame, a tungsten steel mold fixing table and an electric push rod 2. The inner rear surface of the concave surface processing device body is located at the position above the partition plate and is fixedly connected to a fixed cross bar. A slide groove 1 is provided on the front side of the fixed cross bar. The slide groove 1 is slidably connected to the adjusting slider 1. The front side of the adjusting slider 1 is connected to the supporting fixing frame. The supporting fixing frame is fixedly connected to the tungsten steel mold fixing table. An electromagnetic fixing plate is provided on the tungsten steel mold fixing table. The left side of the concave surface processing device body is fixedly connected to the electric push rod 2 through the supporting frame. The extended end of the electric push rod 2 extends into the concave surface processing device body and is fixedly connected to the supporting fixing frame. The input end of the electric push rod 2 is electrically connected to the output end of the external power supply through an external control switch group.

[0008] The main body of the recessed surface processing device is used for fixed protection, the stable support legs are used for support, the recessed surface processing unit is used for mold processing, the control cleaning unit is used to control the device to clean debris for easy use, the fixed cross bar is used to fix the adjustment slider one, the adjustment slider one is used to fix the support fixing frame, the support fixing frame is used to fix the tungsten steel mold fixing table, the tungsten steel mold fixing table is used to fix the tungsten steel mold for processing, the electric push rod two is started to adjust the position of the tungsten steel mold fixing table for processing, thereby processing the recessed surface.

[0009] Furthermore, the tungsten steel mold clamping unit also includes a rectangular rod, an auxiliary sliding column, a movable slider 2 and an electric pulley. The left and right sides of the tungsten steel mold fixing platform are fixedly connected to the rectangular rod through support rods respectively. The upper surfaces of the two rectangular rods are respectively provided with a slide groove 2, and an auxiliary sliding column is fixedly connected in the two slide grooves 2. A movable slider 2 is slidably connected in the two slide grooves 2. The sliding holes on the two movable sliders 2 are slidably connected on the corresponding auxiliary sliding columns. The lower sides of the two movable sliders 2 are respectively provided with clamping grooves on the left and right sides of the auxiliary sliding columns. An electric pulley is respectively arranged in each clamping groove. The electric pulleys on the two movable sliders 2 are slidably connected in the corresponding slide groove 2. The input end of the electric pulley is electrically connected to the output end of the external power supply through an external control switch group.

[0010] The rectangular rod is used to fix the auxiliary slide column, which is used to make the movement of the movable slider 2 more stable. The movable slider 2 is used to fix the electric pulley, which is used to provide power for the movement of the movable slider 2, thereby driving the tungsten steel mold to move, making it convenient to pour out the debris generated by the processing, thereby being used for processing. The electric pulley uses a motor moving wheel.

[0011] Furthermore, the tungsten steel mold clamping unit also includes a rectangular plate, an electric push rod 1 and an electromagnetic clamping plate. The upper surfaces of the two movable sliders 2 are respectively fixedly connected to a rectangular plate. Circular holes are respectively opened on the two rectangular plates. The two circular holes are respectively connected to the electric push rod 1 through bearings. The extended ends of the two electric push rods 1 are respectively fixedly connected to the corresponding electromagnetic clamping plates. The two electromagnetic clamping plates are located on the left and right sides of the tungsten steel mold fixing platform. The input end of the electric push rod 1 is electrically connected to the output end of the external power supply through an external control switch group.

[0012] The rectangular plate is used to fix the electric push rod. Once the electric push rod is started, the position of the electromagnetic clamping plate is adjusted. The electromagnetic clamping plate is used to clamp the mold, thereby being used for tungsten steel mold processing.

[0013] Furthermore, the tungsten steel mold clamping unit also includes a transmission gear and a power motor, wherein a motor fixing plate is provided on one of the rectangular plates, the motor fixing plate is fixedly connected to the power motor through a support frame, the output shaft on the power motor is fixedly connected to the power cylinder, and a transmission gear is fixedly sleeved on the power cylinder and the corresponding electric push rod respectively, the two transmission gears are meshed with each other, and the input end of the power motor is electrically connected to the output end of the external power supply through an external control switch group.

[0014] The transmission gear rotates to rotate the electric push rod, thereby rotating the workpiece, making it convenient to pour out the debris generated by the processing, and facilitating processing. The power motor is used to provide power for the rotation of the transmission gear, thereby performing processing.

[0015] Furthermore, the concave surface processing unit includes a movable cylinder, a position moving slider, an electric push rod three and an electric push rod four, and the front and rear side surfaces of the inner body of the concave surface processing device are respectively fixedly connected to two equally spaced movable cylinders, and a position moving slider is slidably connected to the two movable cylinders, and the sliding holes on the position moving slider are slidably connected to the corresponding movable cylinders, and a push block is provided on the position moving slider, and a push block is provided on the position moving slider, and the rear side surface of the concave surface processing device body is located at the position corresponding to the push block and is fixedly connected to the electric push rod three through a supporting fixed frame, and the extended end of the electric push rod three extends into the inner body of the concave surface processing device and is fixedly connected to the push block on the position moving slider. A circular hole two is opened on the position moving slider, and the circular hole two is fixedly connected to the electric push rod four, and the input ends of the electric push rod three and the electric push rod four are electrically connected to the output end of the external power supply through an external control switch group.

[0016] The moving cylinder is used to make the position moving slider move more stably. The position moving slider is used to fix the electric push rod four. The electric push rod four is used to adjust the angle for easy processing. The electric push rod three is used to provide power for the movement of the position moving slider, thereby facilitating the adjustment of the position for processing.

[0017] Furthermore, the concave surface processing unit also includes a fixed rectangular plate, a rotating cylinder, a power motor 2 and an angle adjustment frame. The extended end of the electric push rod 4 is fixedly connected to the fixed rectangular plate, and the rear side of the fixed rectangular plate is fixedly connected to the power motor 2 through a motor support frame. A circular hole 3 is opened on the fixed rectangular plate, and the circular hole 3 is rotatably connected to the rotating cylinder through a bearing. The output shaft on the power motor 2 is fixedly connected to the rear end of the rotating cylinder. An angle adjustment frame is fixedly sleeved on the rotating cylinder at a position on the front side of the fixed rectangular plate. The input end of the power motor 2 is electrically connected to the output end of the external power supply through an external control switch group.

[0018] The fixed rectangular plate is used to fix the power motor 2, and the power motor 2 is used to rotate the rotating cylinder. The rotating cylinder rotates to adjust the angle to process concave surfaces in different positions. The angle adjustment frame is used to fix the cutting tool fixing column for processing.

[0019] Furthermore, the recessed surface processing unit also includes a cutting blade fixing column, a power motor three and a cutting blade. A circular hole four is opened on the angle adjustment frame, and the circular hole four is rotatably connected to the cutting blade fixing column through a bearing. The lower end of the cutting blade fixing column is fixedly clamped with the cutting blade. The angle adjustment frame is fixedly connected to the power motor three, and the output shaft on the power motor three is fixedly connected to the upper end of the cutting blade fixing column. The cutting blade corresponds to the tungsten steel mold fixing platform, and the input end of the power motor three is electrically connected to the output end of the external power supply through an external control switch group.

[0020] The cutting blade fixing column is used for fixing the cutting blade, the cutting blade is used for surface treatment and is convenient for use, and the power motor three is used for providing power for the rotation of the cutting blade.

[0021] Furthermore, the recessed surface processing unit also includes a protective cover, a power pump and an annular nozzle. The lower side of the angle adjustment frame is located at the edge of the cutting tool fixing column and is fixedly connected to the protective cover through a support block. The cutting tool fixing column is rotatably connected to the protective cover through a bearing. An annular nozzle is provided in the protective cover. The multiple water nozzles on the annular nozzle correspond to the cutting tool. The rear side of the fixed rectangular plate is fixedly connected to the power pump through a support frame. The water inlet on the annular nozzle is connected to one end of the pipe, and the other end of the pipe passes through the protective cover and is connected to the output port on the power pump. The water inlet on the power pump is connected to an external pipe. One end of the external pipe passes through the main body of the recessed surface processing device and is connected to an external water source. The input end of the power pump is electrically connected to the output end of the external power supply through an external control switch group.

[0022] The protective cover is used for protection to prevent the debris generated by processing from splashing. The power pump is used to provide power for the annular nozzle to spray water. The annular nozzle is used to spray water for cooling, thereby increasing the service life of the cutting tool and facilitating processing.

[0023] Furthermore, the control cleaning unit includes a high-pressure nozzle, a power pump 2, a cleaning cover and a controller. The position on the upper side of the partition plate in the main body of the recessed surface treatment device is inclined at a certain angle. A high-pressure nozzle is fixedly connected to the left side surface of the main body of the recessed surface treatment device. The water inlet hole on the high-pressure nozzle is connected to one end of a hose. A power pump 2 is fixedly connected to the left side surface of the main body of the recessed surface treatment device. The other end of the hose passes through the main body of the recessed surface treatment device and is connected to the water outlet hole on the power pump 2. The water inlet hole on the power pump 2 is connected to the external water inlet pipe. A controller is provided on the lower end surface of the main body of the recessed surface treatment device. A cleaning hole is provided on the right side surface of the main body of the recessed surface treatment device at the upper side of the partition plate. The cleaning hole is fixedly engaged with the cleaning cover. The input end of the power pump 2 and the controller is electrically connected to the output end of the external power supply through an external control switch group.

[0024] The high-pressure nozzle is used to spray water to cool down, to increase the service life of the cutting blade, to increase precision, and to facilitate use. The controller is used to control the use of the device. When the cleaning cover is used to clean debris, the cleaning cover is opened to clean the interior. The power pump 2 is started to provide power for water circulation, which is convenient for spraying water and cleaning debris.

[0025] Furthermore, the control cleaning unit also includes an observation switch door plate and an inspection cover plate. The front surface of the main body of the recessed surface processing device is provided with an inspection hole at a position below the partition plate, and the inspection hole is fixedly connected to the inspection cover plate. The front surface of the main body of the recessed surface processing device is provided with a material extraction hole at a position above the partition plate, and the material extraction hole is movably connected to the observation switch door plate through a hinge. A pulling handrail is provided on the front side of the observation switch door plate, and an observation hole is provided on the observation switch door plate, and the observation hole is fixedly connected to the glass observation plate.

[0026] The observation switch door panel is used for protection during processing, which is convenient for protection and use; the inspection cover is used for protection of the controller, which is convenient for inspection and use.

[0027] Compared with the prior art, the present invention has the following beneficial effects:

[0028] 1. The concave surface processing device for tungsten steel mold processing has the following advantages: a tungsten steel mold clamping unit is provided, which is used to fix the adjustment slider 1 through the fixed cross bar, the adjustment slider 1 is used to fix the support fixing frame, the support fixing frame is used to fix the tungsten steel mold fixing table, the tungsten steel mold fixing table is used to fix the tungsten steel mold for processing, the electric push rod 2 is started to adjust the position of the tungsten steel mold fixing table, the rectangular rod is used to fix the auxiliary slide column, the auxiliary slide column is used to make the movement of the movable slider 2 more stable, the movable slider 2 is used to fix the electric pulley, the electric pulley is used to provide power for the movement of the movable slider 2, thereby driving the tungsten steel mold to move, which is convenient for pouring out the debris generated by the processing, thereby processing, the rectangular plate is used to fix the electric push rod 1, the electric push rod 1 is started to adjust the position of the electromagnetic clamping plate, the electromagnetic clamping plate is used to clamp the mold, the transmission gear rotates to rotate the electric push rod 1, thereby rotating the workpiece, thereby facilitating the pouring out of the debris generated by the processing, and convenient processing, the power motor 1 is used to provide power for the rotation of the transmission gear to fix the raw material and process the debris generated by the processing;

[0029] 2. The concave surface processing device for tungsten steel mold processing has the following advantages: a concave surface processing unit is provided, the moving cylinder is used to make the position moving slider move more stably, the position moving slider is used to fix the electric push rod four, the electric push rod four is used to adjust the angle, which is convenient for processing and use, the electric push rod three is used to provide power for the movement of the position moving slider, thereby facilitating the position adjustment, the fixed rectangular plate is used to fix the power motor two, the power motor two is used to rotate the rotating cylinder, the rotating cylinder rotates to adjust the angle, and process concave surfaces in different positions, the angle adjustment frame is used to fix the cutting tool fixing column, the cutting tool fixing column is used to fix the cutting tool, the cutting tool is used for surface treatment, and is convenient to use, the power motor three is used to provide power for the rotation of the cutting tool, the protective cover is used for protection to prevent the debris generated by the processing from splashing, the power pump one is used to provide power for the annular sprinkler to spray water, the annular sprinkler is used to spray water for cooling, thereby increasing the service life of the cutting tool, and is used for concave surface processing;

[0030] 3. This concave surface treatment device for tungsten steel mold processing has the following advantages: a control cleaning unit is provided, which uses a high-pressure nozzle to spray water to reduce the temperature, increase the service life of the cutting tool, increase the precision, and is convenient to use. The controller is used to control the device. When the cleaning cover is used to clean the debris, the cleaning cover is opened to clean the interior. The power pump is started to provide power for water circulation. The observation switch door panel is used for protection during processing, which is convenient for protection. The inspection cover is used to protect the controller and clean the debris.

[0031] 4. This concave surface treatment device for tungsten steel mold processing has the following advantages: when processing and surface treatment, the temperature generated is too high, and the device can be used to reduce the temperature, thereby preventing the cutting tool from being damaged and improving the efficiency of tungsten steel mold processing. The debris generated during the processing can be cleaned up without affecting the processing accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 This is a schematic diagram of the front structure of the present invention;

[0033] Figure 2 This is a schematic side sectional structural diagram of the present invention;

[0034] Figure 3 This is a partial cross-sectional structural diagram of the tungsten steel mold clamping unit of the present invention;

[0035] Figure 4 This is a schematic diagram of the partial structure of the movable slider of the present invention;

[0036] Figure 5 This is a schematic diagram of the partial structure of the concave surface processing unit of the present invention;

[0037] Figure 6 It is a partial cross-sectional structural schematic diagram of the concave surface processing unit of the present invention.

[0038] In the figure: 1 the main body of the concave surface processing device, 2 the stable support leg, 3 the tungsten steel mold clamping unit, 31 the fixed crossbar, 32 the adjusting slider 1, 33 the supporting fixed frame, 34 the tungsten steel mold fixing table, 35 the rectangular rod, 36 the moving slider 2, 37 the electric pulley, 38 the rectangular plate, 39 the electric push rod 1, 310 the electromagnetic clamping plate, 311 the auxiliary slide column, 312 the electric push rod 2, 313 the transmission gear, 314 the power motor 1, 4 the concave surface processing unit, 41 the moving Cylinder, 42 position moving slider, 43 electric push rod three, 44 electric push rod four, 45 fixed rectangular plate, 46 rotating cylinder, 47 power motor two, 48 angle adjustment frame, 49 cutting knife fixing column, 410 power motor three, 411 cutting knife, 412 protective cover, 413 power pump one, 414 annular nozzle, 5 control cleaning unit, 51 high pressure nozzle, 52 power pump two, 53 cleaning cover, 54 controller, 55 observation switch door panel, 56 maintenance cover. DETAILED DESCRIPTION

[0039] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0040] See also Figure 1-6 , this embodiment provides a technical solution: a concave surface processing device for tungsten steel mold processing, including a concave surface processing device body 1, a tungsten steel mold clamping unit 3, a concave surface processing unit 4 and a control cleaning unit 5;

[0041] The main body 1 of the concave surface treatment device has four corners on the lower side of the device, each of which is fixedly connected to a stable support leg 2. A partition plate is provided inside the main body 1 of the concave surface treatment device. A concave surface processing unit 4 is provided on the top surface of the main body 1 of the concave surface treatment device. A control cleaning unit 5 is provided on the lower end surface of the main body 1 of the concave surface treatment device.

[0042] Tungsten steel mold clamping unit 3: includes a fixed cross bar 31, an adjusting slider 32, a supporting and fixing frame 33, a tungsten steel mold fixing table 34 and an electric push rod 2 312. The inner rear surface of the concave surface processing device body 1 is located at the position above the partition plate and is fixedly connected to a fixed cross bar 31. The front side of the fixed cross bar 31 is provided with a slide groove 1, and the slide groove 1 is slidably connected to the adjusting slider 32. The front side of the adjusting slider 1 32 is connected to the supporting and fixing frame 33. The supporting and fixing frame 33 is fixedly connected to the tungsten steel mold fixing table 34. An electromagnetic fixing plate is provided on the tungsten steel mold fixing table 34. The left side of the concave surface processing device body 1 is fixedly connected to the electric push rod 2 312 through the supporting frame. The extended end of the electric push rod 2 312 extends into the concave surface processing device body 1 and is fixedly connected to the supporting and fixing frame 33. The input end of the electric push rod 2 312 is electrically connected to the output end of the external power supply through the external control switch group.

[0043] The main body 1 of the recessed surface processing device is used for fixing and protecting, the stable support legs 2 are used for supporting, the recessed surface processing unit 4 is used for mold processing, the control and cleaning unit 5 is used to control the device to clean up debris for easy use, the fixed cross bar 31 is used to fix the adjustment slider 1 32, the adjustment slider 1 32 is used to fix the support fixing frame 33, the support fixing frame 33 is used to fix the tungsten steel mold fixing table 34, the tungsten steel mold fixing table 34 is used to fix the tungsten steel mold for processing, the electric push rod 2 312 is started to adjust the position of the tungsten steel mold fixing table 34 for processing, thereby processing the recessed surface.

[0044] The tungsten steel mold clamping unit 3 also includes a rectangular rod 35, an auxiliary sliding column 311, a movable slider 2 36 and an electric pulley 37. The left and right sides of the tungsten steel mold fixing platform 34 are fixedly connected to the rectangular rod 35 by support rods respectively. The upper surfaces of the two rectangular rods 35 are respectively provided with a sliding groove 2, and an auxiliary sliding column 311 is fixedly connected in the two sliding grooves 2. A movable slider 2 36 is slidably connected in the two sliding grooves 2. The sliding holes on the two movable sliders 2 36 are slidably connected on the corresponding auxiliary sliding column 311. The lower sides of the two movable sliders 2 36 are respectively provided with clamping grooves on the left and right sides of the auxiliary sliding column 311. An electric pulley 37 is respectively provided in each clamping groove. The electric pulleys 37 on the two movable sliders 2 36 are slidably connected in the corresponding sliding groove 2. The input end of the electric pulley 37 is electrically connected to the output end of the external power supply through the external control switch group.

[0045] The rectangular rod 35 is used to fix the auxiliary slide 311, and the auxiliary slide 311 is used to make the movement of the movable slider 2 36 more stable. The movable slider 2 36 is used to fix the electric pulley 37, and the electric pulley 37 is used to provide power for the movement of the movable slider 2 36, thereby driving the tungsten steel mold to move, making it convenient to pour out the debris generated by the processing, thereby being used for processing. The electric pulley 37 uses a motor moving wheel.

[0046] The tungsten steel mold clamping unit 3 also includes a rectangular plate 38, an electric push rod 39 and an electromagnetic clamping plate 310. The upper surfaces of the two movable sliders 36 are respectively fixedly connected to a rectangular plate 38. Circular holes are respectively opened on the two rectangular plates 38. The two circular holes are respectively connected to the electric push rod 39 through bearings. The extended ends of the two electric push rods 39 are respectively fixedly connected to the corresponding electromagnetic clamping plates 310. The two electromagnetic clamping plates 310 are located on the left and right sides of the tungsten steel mold fixing platform 34. The input end of the electric push rod 39 is electrically connected to the output end of the external power supply through an external control switch group.

[0047] The rectangular plate 38 is used to fix the electric push rod 39. The electric push rod 39 is started to adjust the position of the electromagnetic clamping plate 310. The electromagnetic clamping plate 310 is used to clamp the mold, thereby being used for tungsten steel mold processing.

[0048] The tungsten steel mold clamping unit 3 also includes a transmission gear 313 and a power motor 314, wherein a motor fixing plate is provided on one of the rectangular plates 38, and the motor fixing plate is fixedly connected to the power motor 314 through a support frame. The output shaft on the power motor 314 is fixedly connected to the power cylinder 1, and a transmission gear 313 is fixedly sleeved on the power cylinder 1 and the corresponding electric push rod 1 39 respectively. The two transmission gears 313 are meshed with each other, and the input end of the power motor 314 is electrically connected to the output end of the external power supply through an external control switch group.

[0049] The transmission gear 313 rotates to rotate the electric push rod 39, thereby rotating the workpiece, thereby facilitating the discharge of debris generated during processing and facilitating processing. The power motor 314 is used to provide power for the rotation of the transmission gear 313, thereby performing processing.

[0050] The concave surface processing unit 4 includes a movable cylinder 41, a position moving slider 42, an electric push rod three 43 and an electric push rod four 44. Two equally spaced movable cylinders 41 are fixedly connected to the front and rear surfaces of the concave surface processing device body 1 respectively, and a position moving slider 42 is slidably connected to the two movable cylinders 41. The sliding hole on the position moving slider 42 is slidably connected to the corresponding movable cylinder 41. A push block is provided on the position moving slider 42. The rear surface of the concave surface processing device body 1 is located at the position corresponding to the push block and is fixedly connected to the electric push rod three 43 through a supporting fixed frame. The extended end of the electric push rod three 43 extends into the concave surface processing device body 1 and is fixedly connected to the push block on the position moving slider 42. A circular hole two is opened on the position moving slider 42, and the circular hole two is fixedly connected to the electric push rod four 44. The input ends of the electric push rod three 43 and the electric push rod four 44 are electrically connected to the output end of the external power supply through an external control switch group.

[0051] The movable cylinder 41 is used to make the position moving slider 42 move more stably. The position moving slider 42 is used to fix the electric push rod four 44. The electric push rod four 44 is used to adjust the angle for convenient processing. The electric push rod three 43 is used to provide power for the movement of the position moving slider 42, thereby facilitating the adjustment of the position for processing.

[0052] The concave surface processing unit 4 also includes a fixed rectangular plate 45, a rotating cylinder 46, a power motor 2 47 and an angle adjustment frame 48. The extended end of the electric push rod 44 is fixedly connected to the fixed rectangular plate 45, and the rear side of the fixed rectangular plate 45 is fixedly connected to the power motor 2 47 through a motor support frame. A circular hole 3 is opened on the fixed rectangular plate 45, and the circular hole 3 is rotatably connected to the rotating cylinder 46 through a bearing. The output shaft on the power motor 2 47 is fixedly connected to the rear end of the rotating cylinder 46, and an angle adjustment frame 48 is fixedly sleeved on the position of the rotating cylinder 46 on the front side of the fixed rectangular plate 45. The input end of the power motor 2 47 is electrically connected to the output end of the external power supply through an external control switch group.

[0053] The fixed rectangular plate 45 is used to fix the power motor 2 47, and the power motor 2 47 is used to rotate the rotating cylinder 46. The rotating cylinder 46 rotates to adjust the angle to process the concave surfaces in different positions. The angle adjustment frame 48 is used to fix the cutting tool fixing column 49 for processing.

[0054] The recessed surface processing unit 4 also includes a cutting blade fixing column 49, a power motor three 410 and a cutting blade 411. A circular hole four is opened on the angle adjustment frame 48, and the circular hole four is rotatably connected to the cutting blade fixing column 49 through a bearing. The lower end of the cutting blade fixing column 49 is fixedly engaged with the cutting blade 411. The angle adjustment frame 48 is fixedly connected to the power motor three 410. The output shaft on the power motor three 410 is fixedly connected to the upper end of the cutting blade fixing column 49. The cutting blade 411 corresponds to the tungsten steel mold fixing platform 34. The input end of the power motor three 410 is electrically connected to the output end of the external power supply through an external control switch group.

[0055] The cutting blade fixing column 49 is used to fix the cutting blade 411, and the cutting blade 411 is used for surface treatment and is convenient for use. The power motor 3 410 is used to provide power for the cutting blade 411 to rotate.

[0056] The concave surface processing unit 4 also includes a protective cover 412, a power pump 413 and an annular nozzle 414. The lower side of the angle adjustment frame 48 is located at the edge of the cutting tool fixing column 49 and is fixedly connected to the protective cover 412 through a support block. The cutting tool fixing column 49 is rotatably connected to the protective cover 412 through a bearing. An annular nozzle 414 is provided in the protective cover 412. The multiple water nozzles on the annular nozzle 414 correspond to the cutting tool 411. The rear side of the fixed rectangular plate 45 is fixedly connected to the power pump 413 through a support frame. The water inlet hole on the annular nozzle 414 is connected to one end of the pipe, and the other end of the pipe passes through the protective cover 412 and is connected to the output port on the power pump 413. The water inlet hole on the power pump 413 is connected to an external pipe. One end of the external pipe passes through the concave surface processing device body 1 and is connected to an external water source. The input end of the power pump 413 is electrically connected to the output end of the external power supply through an external control switch group.

[0057] The protective cover 412 is used for protection to prevent the debris generated by processing from splashing. The power pump 413 is used to provide power for the annular nozzle 414 to spray water. The annular nozzle 414 is used to spray water for cooling, thereby increasing the service life of the cutting tool and facilitating processing.

[0058] The control cleaning unit 5 includes a high-pressure nozzle 51, a power pump 2 52, a cleaning cover 53 and a controller 54. The position on the upper side of the partition plate in the main body 1 of the concave surface treatment device is inclined at a certain angle. A high-pressure nozzle 51 is fixedly connected to the left side surface of the main body 1 of the concave surface treatment device. The water inlet hole on the high-pressure nozzle 51 is connected to one end of the hose. A power pump 2 52 is fixedly connected to the left side surface of the main body 1 of the concave surface treatment device. The other end of the hose passes through the main body 1 of the concave surface treatment device and is connected to the water outlet hole on the power pump 2 52. The water inlet hole on the power pump 2 52 is connected to the external water inlet pipe. A controller 54 is provided on the lower end surface of the main body 1 of the concave surface treatment device. A cleaning hole is provided on the right side surface of the main body 1 of the concave surface treatment device, which is located on the upper side of the partition plate. The cleaning hole is fixedly engaged with the cleaning cover 53. The input end of the power pump 2 52 and the controller 54 is electrically connected to the output end of the external power supply through the external control switch group.

[0059] The high-pressure nozzle 51 is used to spray water to cool down, to increase the service life of the cutting blade 411, to increase precision, and to facilitate use. The controller 54 is used to control the use of the device. When the cleaning cover 53 is used to clean debris, the cleaning cover 53 is opened to clean the interior. The power pump 2 52 is started to provide power for water circulation, which is convenient for spraying water and cleaning debris.

[0060] The control and cleaning unit 5 also includes an observation switch door panel 55 and an inspection cover panel 56. An inspection hole is provided on the front surface of the main body 1 of the recessed surface treatment device, located at the lower side of the partition plate. The inspection hole is fixedly connected to the inspection cover panel 56. A material extraction hole is provided on the front surface of the main body 1 of the recessed surface treatment device, located at the upper side of the partition plate. The material extraction hole is movably connected to the observation switch door panel 55 through a hinge. A pulling handrail is provided on the front side of the observation switch door panel 55. An observation hole is provided on the observation switch door panel 55, and the observation hole is fixedly connected to the glass observation panel.

[0061] The observation switch door plate 55 is used for protection during processing, and is convenient for protection and use. The maintenance cover plate 56 is used for protecting the controller 54, and is convenient for maintenance and use.

[0062] The working principle of the concave surface processing device for tungsten steel mold processing provided by the present invention is as follows: first, a fixed cross bar 31 is used to fix the adjustment slider 1 32, the adjustment slider 1 32 is used to fix the support fixing frame 33, the support fixing frame 33 is used to fix the tungsten steel mold fixing platform 34, the tungsten steel mold fixing platform 34 is used to fix the tungsten steel mold for processing, the electric push rod 2 312 is started to adjust the position of the tungsten steel mold fixing platform 34, the rectangular rod 35 is used to fix the auxiliary sliding column 311, the auxiliary sliding column 311 is used to make the movement of the moving slider 2 36 more stable, the moving slider 2 36 is used to fix the electric pulley 37, and the electric pulley 37 is used to provide power for the movement of the moving slider 2 36, thereby bringing The tungsten steel mold is moved to facilitate the pouring out of the debris generated by the processing, thereby performing processing. The rectangular plate 38 is used to fix the electric push rod 39. The electric push rod 39 is started to adjust the position of the electromagnetic clamping plate 310. The electromagnetic clamping plate 310 is used to clamp the mold. The transmission gear 313 rotates to rotate the electric push rod 39, thereby rotating the workpiece, thereby facilitating the pouring out of the debris generated by the processing, thereby facilitating processing. The power motor 314 is used to provide power for the rotation of the transmission gear 313 to fix the raw material, and then the moving cylinder 41 is used to make the movement of the position moving slider 42 more stable. The position moving slider 42 is used to fix the electric push rod 44. Rod four 44 is used to adjust the angle for convenient processing. Electric push rod three 43 is used to provide power for the movement of the position moving slider 42, thereby facilitating the adjustment of the position. Fixed rectangular plate 45 is used to fix power motor two 47. Power motor two 47 is used to rotate the rotating cylinder 46. The rotating cylinder 46 rotates to adjust the angle to process concave surfaces at different positions. Angle adjustment frame 48 is used to fix the cutting tool fixing column 49. The cutting tool fixing column 49 is used to fix the cutting tool 411. The cutting tool 411 is used for surface treatment and is convenient to use. Power motor three 410 is used to provide power for the rotation of the cutting tool 411. The protective cover 412 is used for protection to prevent the debris generated by the processing from splashing. The power pump 1 413 is used to provide power for the annular nozzle 414 to spray water. The annular nozzle 414 is used to spray water for cooling for processing. After processing, the high-pressure nozzle 51 is used to spray water for cooling, to increase the service life of the cutting tool 411, to increase precision, and to facilitate use. The controller 54 is used to control the use of the device. When the cleaning cover 53 is used to clean debris, the cleaning cover 53 is opened to clean the interior. The power pump 2 52 is started to provide power for water circulation. The observation switch door panel 55 is used for protection during processing, which is convenient for protection. The maintenance cover 56 is used to protect the controller 54 to clean debris.

[0063] It is worth noting that the core chip of the external control switch group disclosed in the above embodiments is a PLC single-chip microcomputer, the electric pulley 37 uses a motor moving wheel, the power motor 1 314, the power motor 3 410 and the power motor 2 47 use servo motors, and the external control switch group controls the electric pulley 37, the power motor 1 314, the power motor 3 410, the electric push rod 1 39, the electric push rod 2 312, the electric push rod 3 43, the power pump 1 413, the power pump 2 52, the controller 54 and the power motor 2 47 using methods commonly used in the prior art.

[0064] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A concave surface processing device for tungsten steel mold processing, characterized by: It comprises a concave surface processing device body (1), a tungsten steel mold clamping unit (3), a concave surface processing unit (4) and a control and cleaning unit (5); The main body (1) of the concave surface treatment device has four corners on the lower side of the device fixedly connected to a stabilizing support leg (2), a partition plate is provided inside the main body (1), a concave surface processing unit (4) is provided on the top plate surface of the main body (1), and a control cleaning unit (5) is provided on the lower end surface of the main body (1); The tungsten steel mold clamping unit (3) comprises a fixed crossbar (31), an adjusting slider (32), a supporting frame (33), a tungsten steel mold fixing platform (34) and a second electric push rod (312). The inner rear surface of the concave surface processing device body (1) is located on the upper side of the partition plate and is fixedly connected to a fixed crossbar (31). A sliding groove (1) is provided on the front side of the fixed crossbar (31). The sliding groove (1) is slidably connected to the adjusting slider (32). The front side of the adjusting slider (32) is connected to the supporting frame (33). The support fixing frame (33) is fixedly connected to the tungsten steel mold fixing platform (34), and an electromagnetic fixing plate is provided on the tungsten steel mold fixing platform (34). The left side of the concave surface processing device body (1) is fixedly connected to the electric push rod 2 (312) through the support frame. The extended end of the electric push rod 2 (312) extends into the concave surface processing device body (1) and is fixedly connected to the support fixing frame (33). The input end of the electric push rod 2 (312) is electrically connected to the output end of the external power supply through an external control switch group.

2. The concave surface processing device for tungsten steel mold processing according to claim 1 is characterized in that: The tungsten steel mold clamping unit (3) further comprises a rectangular rod (35), an auxiliary sliding column (311), a second movable slider (36) and an electric pulley (37). The left and right sides of the tungsten steel mold fixing platform (34) are respectively fixedly connected to the rectangular rod (35) through support rods. The upper surfaces of the two rectangular rods (35) are respectively provided with a second slide groove. An auxiliary sliding column (311) is respectively fixedly connected in the two second slide grooves. A second movable slider (36) is respectively slidably connected in the two second slide grooves. The sliding holes on the two second movable sliders (36) are slidably connected on the corresponding auxiliary sliding column (311). The lower sides of the two second movable sliders (36) are respectively provided with a clamping groove at the positions on the left and right sides of the auxiliary sliding column (311). An electric pulley (37) is respectively arranged in each clamping groove. The electric pulleys (37) on the two second movable sliders (36) are slidably connected in the corresponding second slide groove. The input end of the electric pulley (37) is electrically connected to the output end of the external power supply through an external control switch group.

3. The concave surface processing device for tungsten steel mold processing according to claim 2 is characterized in that: The tungsten steel mold clamping unit (3) further comprises a rectangular plate (38), an electric push rod (39) and an electromagnetic clamping plate (310). The upper surfaces of the two movable sliders (36) are respectively fixedly connected to a rectangular plate (38). The two rectangular plates (38) are respectively provided with circular holes. The two circular holes are respectively connected to the electric push rod (39) through bearings. The extended ends of the two electric push rods (39) are respectively fixedly connected to the corresponding electromagnetic clamping plates (310). The two electromagnetic clamping plates (310) are located on the left and right sides of the tungsten steel mold fixing platform (34). The input end of the electric push rod (39) is electrically connected to the output end of the external power supply through an external control switch group.

4. The concave surface processing device for tungsten steel mold processing according to claim 3 is characterized in that: The tungsten steel mold clamping unit (3) further comprises a transmission gear (313) and a power motor (314), wherein a motor fixing plate is provided on one of the rectangular plates (38), the motor fixing plate is fixedly connected to the power motor (314) via a support frame, the output shaft on the power motor (314) is fixedly connected to the power cylinder (314), the power cylinder (314) and the corresponding electric push rod (39) are respectively fixedly sleeved with a transmission gear (313), the two transmission gears (313) are meshed with each other, and the input end of the power motor (314) is electrically connected to the output end of the external power supply via an external control switch group.

5. The concave surface processing device for tungsten steel mold processing according to claim 1 is characterized in that: The concave surface processing unit (4) comprises a movable cylinder (41), a position movable slider (42), an electric push rod three (43) and an electric push rod four (44). The front and rear surfaces of the inner body (1) of the concave surface processing device are respectively fixedly connected to two equally spaced movable cylinders (41). A position movable slider (42) is slidably connected to the two movable cylinders (41). The sliding hole on the position movable slider (42) is slidably connected to the corresponding movable cylinder (41). A push block is provided on the position movable slider (42). The concave surface The rear surface of the processing device body (1) is located at a position corresponding to the push block and is fixedly connected to the electric push rod three (43) through a supporting fixed frame. The extended end of the electric push rod three (43) extends into the concave surface processing device body (1) and is fixedly connected to the push block on the position moving slider (42). A circular hole two is opened on the position moving slider (42), and the circular hole two is fixedly connected to the electric push rod four (44). The input ends of the electric push rod three (43) and the electric push rod four (44) are electrically connected to the output end of the external power supply through an external control switch group.

6. The concave surface processing device for tungsten steel mold processing according to claim 5, characterized in that: The concave surface processing unit (4) further comprises a fixed rectangular plate (45), a rotating cylinder (46), a second power motor (47) and an angle adjustment frame (48). The extended end of the fourth electric push rod (44) is fixedly connected to the fixed rectangular plate (45). The rear side of the fixed rectangular plate (45) is fixedly connected to the second power motor (47) through a motor support frame. A third circular hole is provided on the fixed rectangular plate (45). The third circular hole is rotatably connected to the rotating cylinder (46) through a bearing. The output shaft of the second power motor (47) is fixedly connected to the rear end of the rotating cylinder (46). An angle adjustment frame (48) is fixedly sleeved on the position of the rotating cylinder (46) located on the front side of the fixed rectangular plate (45). The input end of the second power motor (47) is electrically connected to the output end of the external power supply through an external control switch group.

7. The concave surface processing device for tungsten steel mold processing according to claim 6, characterized in that: The recessed surface processing unit (4) further comprises a cutting blade fixing column (49), a power motor (410) and a cutting blade (411). A circular hole (4) is provided on the angle adjustment frame (48). The circular hole (4) is rotatably connected to the cutting blade fixing column (49) via a bearing. The lower end of the cutting blade fixing column (49) is fixedly engaged with the cutting blade (411). The angle adjustment frame (48) is fixedly connected to the power motor (410). The output shaft of the power motor (410) is fixedly connected to the upper end of the cutting blade fixing column (49). The cutting blade (411) corresponds to the tungsten steel mold fixing platform (34). The input end of the power motor (410) is electrically connected to the output end of the external power supply via an external control switch group.

8. The concave surface processing device for tungsten steel mold processing according to claim 7, characterized in that: The concave surface processing unit (4) further comprises a protective cover (412), a power pump (413) and an annular nozzle (414); the lower side of the angle adjustment frame (48) is located at the edge of the cutting blade fixing column (49) and is fixedly connected to the protective cover (412) through a support block; the cutting blade fixing column (49) is rotatably connected to the protective cover (412) through a bearing; an annular nozzle (414) is provided in the protective cover (412); a plurality of water spray ports on the annular nozzle (414) correspond to the cutting blade (411); The rear side of the fixed rectangular plate (45) is fixedly connected to the power pump (413) through a support frame, the water inlet on the annular nozzle (414) is connected to one end of a pipe, the other end of the pipe passes through the protective cover (412) and is connected to the output port on the power pump (413), the water inlet on the power pump (413) is connected to an external pipe, one end of the external pipe passes through the main body of the concave surface treatment device (1) and is connected to an external water source, and the input end of the power pump (413) is electrically connected to the output end of the external power supply through an external control switch group.

9. The concave surface processing device for tungsten steel mold processing according to claim 1, characterized in that: The control cleaning unit (5) includes a high-pressure nozzle (51), a power pump (52), a cleaning cover (53) and a controller (54). The position on the upper side of the partition plate in the main body (1) of the concave surface treatment device is inclined at a certain angle. A high-pressure nozzle (51) is fixedly connected to the left side surface of the main body (1) of the concave surface treatment device. The water inlet hole on the high-pressure nozzle (51) is connected to one end of a hose. A power pump (52) is fixedly connected to the left side surface of the main body (1) of the concave surface treatment device. The other end of the hose passes through the concave surface. The processing device body (1) is connected to the water outlet hole on the power pump 2 (52), the water inlet hole on the power pump 2 (52) is connected to the external water inlet pipe, a controller (54) is provided on the lower end surface of the inner surface of the recessed surface processing device body (1), a cleaning hole is provided on the right side surface of the recessed surface processing device body (1) at the upper side of the partition plate, the cleaning hole is fixedly connected with the cleaning cover (53), and the input end of the power pump 2 (52) and the controller (54) is electrically connected to the output end of the external power supply through an external control switch group.

10. The concave surface processing device for tungsten steel mold processing according to claim 9, characterized in that: The control cleaning unit (5) further comprises an observation switch door plate (55) and an inspection cover plate (56); an inspection hole is provided on the front side surface of the main body (1) of the recessed surface treatment device at a position below the partition plate, and the inspection cover plate (56) is fixedly engaged with the inspection hole; a material taking hole is provided on the front side surface of the main body (1) of the recessed surface treatment device at a position above the partition plate, and the material taking hole is movably connected to the observation switch door plate (55) through a hinge; a pulling handrail is provided on the front side of the observation switch door plate (55); an observation hole is provided on the observation switch door plate (55), and the observation hole is fixedly engaged with the glass observation plate.