Self-cleaning high-stability horizontal machining center
By designing a chip removal seat, chip collection and cleaning mechanism in the horizontal machining center, the problems of inconvenient position conversion of the clamping mechanism and inconvenient chip cleaning are solved, and automatic collection and cleaning of chips are realized, ensuring machining accuracy and efficiency.
Patent Information
- Application Number
- CN202510789501.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-13
- Publication Date
- 2025-10-10
AI Technical Summary
During the use of existing high-stability horizontal machining centers, the clamping mechanism position change is inconvenient, the debris collection and cleaning is inconvenient, the debris splashes and damages the lathe, affecting the processing accuracy and efficiency.
A chip removal seat, debris collection and cleaning mechanism are designed, including a push plate, connecting rope, winding roller and motor. The motor drives the automatic collection and cleaning of debris. A clamping mechanism and a baffle are set to prevent debris from splashing. The hydraulic rod and nozzle are used to clean the debris. The electric telescopic rod and waste box are combined to realize the centralized collection and cleaning of debris.
It realizes the automatic collection and cleaning of debris, avoids debris splashing and damaging the lathe, ensures processing accuracy and efficiency, and prevents debris accumulation from affecting part processing.
Smart Images

Figure CN120755707A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of horizontal machining centers, in particular to a self-cleaning high-stability horizontal machining center. Background Art
[0002] The horizontal machining center is a CNC machine tool capable of multi-surface processing, automated integration and deep hole processing. Due to its high efficiency and high precision, it is widely used in the automotive, aerospace, energy and mold manufacturing fields. It can mass-produce heavy parts and complex parts and is suitable for the field of multi-process integration. It can reduce the number of clamping times and improve precision and efficiency. High-stability horizontal machining centers can. There are many kinds of horizontal machining centers on the market.
[0003] For example, the utility model with authorization announcement number CN208147463U discloses a horizontal machining center, including a base, the top of the base is fixedly connected to a load-bearing plate, the left side of the top of the load-bearing plate is fixedly connected to a power box, the rear side of the top surface of the base is fixedly connected to a fixing plate, the top of the front surface of the fixing plate is fixedly connected to a positioning plate, and the center of the front surface of the positioning plate is fixedly connected to a forward and reverse motor.
[0004] For example, the utility model with authorization announcement number CN213225350U discloses a horizontal machining center, including a machine tool, a touch panel provided on one side of the outer surface of the machine tool, a heat dissipation mechanism and a finished product outlet slot provided on the front outer surface of the machine tool, the heat dissipation mechanism being located on one side of the finished product outlet slot, and a base provided on the lower outer surface of the touch panel. When the horizontal machining center described in the utility model needs to manufacture parts, it is powered by plugging a pin into a socket and controlling the power supply through the control panel.
[0005] For example, the invention with authorization announcement number CN105234682B provides a horizontal machining center, including a base, a spindle head assembly and a column assembly, the column assembly is arranged on one side above the base, the column assembly is slidably connected to the base, and the end above the base away from the installation of the column assembly is a workbench, the setting direction of the workbench is the same as the sliding direction of the column assembly, the spindle head assembly is arranged on one side of the column assembly, the spindle head assembly is arranged facing the workbench and perpendicular to the X-direction end face of the workbench, the spindle head assembly is slidably connected relative to the column assembly, the spindle head assembly includes a spindle box and a spindle, and the spindle box and the spindle are slidably connected along the Z-axis direction.
[0006] However, in actual use, the current high-stability horizontal machining center is not convenient for changing the position of the clamping mechanism, and it is inconvenient to collect and clean the debris. The flying debris will damage the interior of the lathe, resulting in reduced machining accuracy. It is also inconvenient to automatically clean the debris, which will affect the normal progress of the machining. The accumulation of debris will have an adverse effect on the processing of parts.
[0007] Therefore, we propose a self-cleaning high-stability horizontal machining center to solve the above problems. Summary of the Invention
[0008] The purpose of the present invention is to provide a self-cleaning high-stability horizontal machining center to solve the problems raised in the above background technology that the current high-stability horizontal machining center is inconvenient to change the position of the clamping mechanism, the debris collection and cleaning are inconvenient, the debris splashing will damage the interior of the lathe, resulting in reduced machining accuracy, and it is inconvenient to automatically clean the debris, the debris will affect the normal progress of the machining, and the accumulation of debris will have an adverse effect on the processing of parts.
[0009] To achieve the above-mentioned object, the present invention provides the following technical solution: a self-cleaning high-stability horizontal machining center, comprising: a housing placed on the ground;
[0010] Also includes:
[0011] A chip removal seat, the chip removal seat is fixed at the lower inner portion of the housing, and the longitudinal section of the chip removal seat is a trapezoidal structure;
[0012] A shielding plate, wherein the shielding plate is connected to the housing via a slot, and the shielding plate and the housing are rotatably connected;
[0013] A debris collection mechanism is provided on the outside of the chip discharge seat, and includes a push plate, a rear connecting rope, a rear winding roller, and a rear dual-axis motor. The rear side of the push plate is fixedly connected to the rear connecting rope, which is wound around the rear winding roller, and the rear dual-axis motor is installed on the inner side of the rear winding roller.
[0014] The debris cleaning mechanism is installed on the front side of the shell, and the debris cleaning mechanism includes a mounting frame, a connecting wheel, an adjustment plate, a hydraulic rod and a second nozzle. The mounting frame is rotatably connected to the connecting wheel inside, and the second nozzle is installed below the connecting wheel. The upper part of the connecting wheel is meshed with the adjustment plate, and the front side of the adjustment plate is installed with a hydraulic rod.
[0015] Preferably, a first drive motor is installed inside the chip removal seat, and a base is installed at the output end of the first drive motor. A first nozzle is provided on the upper rear side of the chip removal seat, and the first nozzle is installed on the housing.
[0016] Preferably, a clamping mechanism is symmetrically installed front and back on the upper part of the base, a shielding plate is installed in the upper middle part of the base, and an observation window is embedded in the interior of the shielding plate.
[0017] Preferably, the rear winding roller is symmetrically distributed about the vertical center axis of the rear dual-axis motor, and the rear winding roller is rotatably connected in the housing.
[0018] Preferably, the debris collection mechanism also includes a front connecting rope, a front winding roller and a front dual-axis motor, the front connecting rope is fixed to the front side of the push plate, and the front connecting rope is wound around the outside of the front winding roller, and the front dual-axis motor is installed on the inside of the front winding roller.
[0019] Preferably, the debris cleaning mechanism further comprises an electric telescopic rod, an electric slide rail and an electric slide seat. The output end of the electric telescopic rod is equipped with the electric slide rail, and the lower portion of the electric slide rail is slidably connected to the electric slide seat.
[0020] Preferably, the electric telescopic rod is installed on the upper front side of the housing, and the electric telescopic rod is symmetrically arranged on the left and right;
[0021] A mounting frame is installed below the electric slide.
[0022] Preferably, an air pipe is installed on the outer side of the second nozzle, and an air pump is installed on the right end of the air pipe.
[0023] Preferably, the front inner slot of the shell is connected to an adjustment rod, and a support spring is wound around the outside of the adjustment rod. The cross section of the adjustment rod is a "stem"-shaped structure, and the adjustment rod is slidably connected to the shell through the support spring.
[0024] Preferably, the outer slot of the inner end of the adjusting rod is connected to an adjusting handle, and a waste box is fixed to the rear side of the adjusting handle, and the adjusting handle and the waste box are both connected to the outer shell through slots.
[0025] Compared with the prior art, the present invention has the following beneficial effects: the self-cleaning high-stability horizontal machining center can easily change the position of the clamping mechanism, can collect the chips separately, can prevent the chips from splashing and damaging the interior of the lathe, and can protect the lathe; and can automatically clean the chips to ensure the normal processing and avoid the adverse effects of the accumulation of chips on the processing of parts;
[0026] 1. A chip removal seat, a first drive motor and a base are provided. The first drive motor is installed in the chip removal seat, and the first drive motor drives the base to rotate. A clamping mechanism is symmetrically installed on the base. The shielding plate is connected to the housing slot to shield the clamping mechanism, facilitate the position change of the clamping mechanism, and can collect the debris separately;
[0027] 2. A connecting wheel, an adjusting plate and a hydraulic rod are provided. The adjusting plate is pushed by the hydraulic rod to move, and the adjusting plate drives the connecting wheel to rotate. The connecting wheel drives the second nozzle to swing. The second nozzle sprays gas to clean the external debris, which can prevent the debris from splashing and damaging the interior of the lathe, thereby protecting the lathe.
[0028] 3. A rear winding roller, a rear dual-axis motor and a front dual-axis motor are provided. The rear winding roller is installed through the output end of the rear dual-axis motor, and a rear connecting rope is wound around the outside of the rear winding roller. The front winding roller is installed at the output end of the front dual-axis motor, and a front connecting rope is wound around the outside of the front winding roller. The rear winding roller and the front winding roller cooperate with each other to pull the push plate to slide in the shell, which can automatically clean the debris, ensure the normal processing, and avoid the adverse effects of debris accumulation on part processing;
[0029] 4. An adjusting rod, a supporting spring and a waste box are provided. The adjusting rod and the adjusting handle slot are connected, and the waste box and the outer shell slot are connected. The push plate pushes the debris into the waste box. The waste box can be pulled out by pulling the adjusting rod, which is convenient for collecting and cleaning debris. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0031] Figure 2 This is a schematic structural diagram of the shielding plate in a rotating state according to the present invention;
[0032] Figure 3 This is a schematic diagram of the overall structure of the base and the housing connected in the present invention;
[0033] Figure 4 This is a schematic diagram of the overall structure of the connection between the first drive motor and the base of the present invention;
[0034] Figure 5 This is a schematic diagram of the overall structure of the debris collection mechanism of the present invention;
[0035] Figure 6 This is a schematic diagram of the overall structure of the electric telescopic rod and the electric slide rail connected to the present invention;
[0036] Figure 7 This is a schematic diagram of the overall structure of the connection between the connecting wheel and the adjustment plate of the present invention;
[0037] Figure 8 For the present invention Figure 2 A in the middle is an enlarged structural diagram;
[0038] Figure 9 This is a schematic diagram of the overall structure of the connection between the adjustment handle and the waste box of the present invention.
[0039] In the figure: 1. Housing; 2. Chip removal seat; 3. First drive motor; 4. Base; 5. Clamping mechanism; 6. Shielding plate; 7. Observation window; 8. First nozzle; 9. Push plate; 10. Rear connecting rope; 11. Rear winding roller; 12. Rear double-axis motor; 13. Front connecting rope; 14. Front winding roller; 15. Front double-axis motor; 16. Electric telescopic rod; 17. Electric slide rail; 18. Electric slide seat; 19. Mounting frame; 20. Connecting wheel; 21. Adjustment plate; 22. Hydraulic rod; 23. Second nozzle; 24. Air pipe; 25. Air pump; 26. Adjustment rod; 27. Support spring; 28. Adjustment handle; 29. Waste box. DETAILED DESCRIPTION
[0040] 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.
[0041] See also Figures 1-9 , the present invention provides a technical solution: a self-cleaning high-stability horizontal machining center, comprising: a housing 1 placed on the ground;
[0042] Also includes:
[0043] The chip removal seat 2 is fixed at the lower part of the inner portion of the housing 1, and the longitudinal section of the chip removal seat 2 is a trapezoidal structure;
[0044] The shielding plate 6 is connected to the housing 1 through a slot, and the shielding plate 6 and the housing 1 are rotatably connected;
[0045] The debris collection mechanism includes a push plate 9, a rear connecting rope 10, a rear winding roller 11 and a rear dual-axis motor 12. The rear side of the push plate 9 is fixedly connected to the rear connecting rope 10, and the rear connecting rope 10 is wound around the rear winding roller 11. The rear dual-axis motor 12 is installed on the inner side of the rear winding roller 11;
[0046] The debris cleaning mechanism includes a mounting frame 19, a connecting wheel 20, an adjusting plate 21, a hydraulic rod 22 and a second nozzle 23. The internal rotation of the mounting frame 19 is connected to the connecting wheel 20, and the second nozzle 23 is installed below the connecting wheel 20. The upper part of the connecting wheel 20 is meshed with the adjusting plate 21, and the front side of the adjusting plate 21 is installed with a hydraulic rod 22.
[0047] By adopting the above technical solution, a debris collection mechanism is formed by combining the push plate 9, the rear connecting rope 10, the rear winding roller 11 and the rear dual-axis motor 12, which is convenient for collecting debris. The installation frame 19, the connecting wheel 20, the adjustment plate 21, the hydraulic rod 22 and the second nozzle 23 are combined to form a debris cleaning mechanism, which is convenient for cleaning debris.
[0048] As attached Figure 2 and attached Figure 4 As shown in , a first drive motor 3 is installed inside the chip removal seat 2, and a base 4 is installed at the output end of the first drive motor 3. A first nozzle 8 is provided on the upper rear side of the chip removal seat 2, and the first nozzle 8 is installed on the outer shell 1.
[0049] By adopting the above technical solution, a first drive motor 3 is installed inside the chip removal seat 2, and a base 4 is installed at the output end of the first drive motor 3. The direction of the base 4 can be adjusted to realize multi-station processing.
[0050] As attached Figure 2 , Attachment Figure 3 and attached Figure 4 As shown in , a clamping mechanism 5 is symmetrically installed on the upper part of the base 4, a shielding plate 6 is installed in the upper middle part of the base 4, and an observation window 7 is embedded in the interior of the shielding plate 6.
[0051] By adopting the above technical solution, the clamping mechanism 5 is symmetrically installed on the upper part of the base 4, and the shielding plate 6 is installed on the upper middle part of the base 4, which can improve the processing efficiency.
[0052] As attached Figure 5 As shown in , the rear winding roller 11 is symmetrically distributed about the vertical center axis of the rear dual-axis motor 12, and the rear winding roller 11 is rotatably connected in the housing 1.
[0053] By adopting the above technical solution, the rear winding roller 11 is symmetrically distributed about the vertical center axis of the rear dual-axis motor 12, and the rear winding roller 11 is rotatably connected in the outer shell 1, and the rear dual-axis motor 12 can drive the rear winding roller 11 to rotate simultaneously.
[0054] As attached Figure 5 As shown in the figure, the debris collection mechanism also includes a front connecting rope 13, a front winding roller 14 and a front dual-axis motor 15. The front connecting rope 13 is fixed to the front side of the push plate 9, and the front connecting rope 13 is wound around the outside of the front winding roller 14, and the front dual-axis motor 15 is installed on the inside of the front winding roller 14.
[0055] By adopting the above technical solution, a debris collection mechanism is formed by combining the front connecting rope 13, the front winding roller 14 and the front dual-axis motor 15, which facilitates the push plate 9 to move and push the debris for collection.
[0056] As attached Figure 1 and attached Figure 6As shown in the figure, the debris cleaning mechanism further comprises an electric telescopic rod 16, an electric sliding rail 17 and an electric sliding seat 18, the output end of the electric telescopic rod 16 is provided with the electric sliding rail 17, and the lower side of the electric sliding rail 17 is slidably connected with the electric sliding seat 18.
[0057] By adopting the technical scheme, the electric telescopic rod 16, the electric sliding rail 17 and the electric sliding seat 18 are combined to form the debris cleaning mechanism, so that the position of the mounting frame 19 mounted below the electric sliding seat 18 can be conveniently adjusted.
[0058] As shown in the figure, Figure 1 As shown in the figure, the electric telescopic rod 16 is mounted on the upper front side of the shell 1, and the electric telescopic rod 16 is symmetrically arranged left and right;
[0059] The lower side of the electric sliding seat 18 is provided with the mounting frame 19.
[0060] By adopting the technical scheme, the electric telescopic rod 16 is mounted on the upper front side of the shell 1, and the electric telescopic rod 16 is symmetrically arranged left and right, so that the electric sliding rail 17 can be stably driven to rise and fall, and the height of the mounting frame 19 can be adjusted.
[0061] As shown in the figure, Figure 1 As shown in the figure, the outer side of the second spray head 23 is provided with a gas conveying pipe 24, and the right end of the gas conveying pipe 24 is provided with a gas pump 25.
[0062] By adopting the technical scheme, the outer side of the second spray head 23 is provided with the gas conveying pipe 24, and the right end of the gas conveying pipe 24 is provided with the gas pump 25, so that gas supply is facilitated.
[0063] As shown in the figure, Figure 8 and the figure, Figure 9 As shown in the figure, the inner side of the front side of the shell 1 is clamped with an adjusting rod 26, the outer side of the adjusting rod 26 is wound with a supporting spring 27, the cross section of the adjusting rod 26 is a "gan" structure, and the adjusting rod 26 is slidably connected in the shell 1 through the supporting spring 27.
[0064] By adopting the technical scheme, the outer side of the adjusting rod 26 is wound with the supporting spring 27, and the adjusting rod 26 is slidably connected in the shell 1 through the supporting spring 27, so that the position of the adjusting rod 26 can be conveniently adjusted by pulling it.
[0065] As shown in the figure, Figure 8 and the figure, Figure 9 As shown in the figure, the inner end of the adjusting rod 26 is clamped with an adjusting handle 28, the rear side of the adjusting handle 28 is fixed with a waste box 29, and the adjusting handle 28 and the waste box 29 are clamped in the shell 1.
[0066] The technical scheme is adopted, the inner end of the rod 26 is connected with the adjusting handle 28 through the outer side clamping groove, the rear side of the adjusting handle 28 is fixed with the waste box 29, the waste box 29 can be effectively limited, and the stability of the waste box 29 is ensured.
[0067] As shown in the accompanying Figure 1 , the accompanying Figure 2 , the accompanying Figure 3 and the accompanying Figure 4 , the chip removal seat 2 is fixed below the inside of the shell 1, the first driving motor 3 is installed in the inside of the chip removal seat 2, the first driving motor 3 is opened, the output end of the first driving motor 3 is installed with the base 4, the first driving motor 3 drives the base 4 to rotate, the direction of the base 4 is adjusted, the clamping mechanism 5 is symmetrically installed above the front and rear of the base 4, the clamping mechanism 5 clamps and fixes the workpiece to be processed, the first driving motor 3 drives the base 4 to rotate, and the fixed workpiece is rotated into the shell 1, the shielding plate 6 is installed above the middle part of the base 4, the shielding plate 6 is clamped and connected in the shell 1, so as to avoid the splashing of the debris, the observation window 7 is inlaid in the inside of the shielding plate 6, the processing state is observed, the longitudinal section of the chip removal seat 2 is trapezoidal structure, when the cutter in the shell 1 processes the workpiece on the clamping mechanism 5, the generated debris falls on the chip removal seat 2, the chip removal seat 2 guides the debris, and the debris is discharged into the groove arranged in the shell 1, the first spray head 8 is arranged above the rear side of the chip removal seat 2, the first spray head 8 is installed on the shell 1, the first spray head 8 blows the breeze, and the debris is avoided to be left on the chip removal seat 2;
[0068] As shown in the accompanying Figure 1 , the accompanying Figure 6 and the accompanying Figure 7As shown in the figure, the debris cleaning mechanism includes a mounting frame 19, a connecting wheel 20, an adjusting plate 21, a hydraulic rod 22 and a second nozzle 23. The hydraulic rod 22 installed in the mounting frame 19 is opened, and the rear end of the hydraulic rod 22 is installed with an adjusting plate 21. The hydraulic rod 22 pushes the adjusting plate 21 to move. The lower part of the adjusting plate 21 is engaged and connected with a connecting wheel 20. The adjusting plate 21 drives the connecting wheel 20 to rotate in the mounting frame 19. A second nozzle 23 is installed below the connecting wheel 20. The connecting wheel 20 drives the second nozzle 23 to swing back and forth. An air pipe 24 is installed on the outside of the second nozzle 23. An air pump 25 is installed on the right end of the air pipe 24. When the air pump 25 is turned on, the second nozzle 23 moves toward the base. 4 and the clamping mechanism 5 spray air to blow off the debris on the base 4 and the clamping mechanism 5 to avoid debris residue. The debris cleaning mechanism also includes an electric telescopic rod 16, an electric slide rail 17 and an electric slide seat 18. The electric telescopic rod 16 is opened. The output end of the electric telescopic rod 16 is installed with an electric slide rail 17. The electric telescopic rod 16 drives the electric slide rail 17 to rise and fall, which is convenient for adjusting the height of the mounting frame 19 to prevent the mounting frame 19 and the second nozzle 23 from affecting the rotation of the baffle 6. The lower part of the electric slide rail 17 is slidably connected to the electric slide seat 18. The electric slide seat 18 drives the mounting frame 19 to slide, adjust the position of the second nozzle 23, increase the jet range of the second nozzle 23, and ensure the cleaning effect;
[0069] As attached Figure 3 and attached Figure 5 As shown in the figure, the debris collection mechanism includes a push plate 9, a rear connecting rope 10, a rear winding roller 11 and a rear double-axis motor 12. The debris falls into the groove of the shell 1 under the guidance of the chip discharge seat 2. When the debris in the groove needs to be cleaned up, the rear double-axis motor 12 is turned on. The left and right ends of the rear double-axis motor 12 are equipped with rear winding rollers 11. The rear double-axis motor 12 drives the rear winding rollers 11 to rotate in the shell 1. The debris collection mechanism also includes a front connecting rope 13, a front winding roller 14 and a front double-axis motor 15. When the front double-axis motor 15 is turned on, the front double-axis motor 15 drives the rear winding rollers 11 to rotate in the shell 1. The left and right ends of the machine 15 are both equipped with front winding rollers 14. The front dual-axis motor 15 drives the front winding rollers 14 to rotate. The rear connecting rope 10 is wound around the outside of the rear winding roller 11. When the rear winding roller 11 rotates, the rear winding roller 11 releases the rear connecting rope 10 on its outside. When the front winding roller 14 rotates, the front winding roller 14 winds up the front connecting rope 13. The front connecting rope 13 pulls the push plate 9 to move, so that the push plate 9 slides in the housing 1 connected to the slot therewith. The push plate 9 pushes the debris in the groove of the housing 1, so that the debris falls into the waste box 29.
[0070] As attached Figure 8 and attached Figure 9As shown in the figure, the waste box 29 is connected to the housing 1 by a slot. When the waste box 29 needs to be taken out and the debris in the waste box 29 needs to be poured out, a support spring 27 is wound around the outside of the adjusting rod 26. The adjusting rod 26 is slidably connected to the housing 1 through the support spring 27. The adjusting rod 26 is pulled outward. The cross section of the adjusting rod 26 is a "stem"-shaped structure. The adjusting rod 26 compresses the support spring 27, so that the adjusting rod 26 is disengaged from the slot connection with the adjusting handle 28. An adjusting handle 28 is fixed to the front side of the waste box 29. The adjusting handle 28 is pulled outward to disengage the waste box 29 from the housing 1, and the debris in the waste box 29 can be cleaned. The waste box 29 is placed in the housing 1, and the adjusting rod 26 is loosened. The support spring 27 pushes the adjusting rod 26 to reset, so that the adjusting rod 26 and the adjusting handle 28 are connected by the slot, and the waste box 29 is fixed in the housing 1.
[0071] This is the entire working process of the self-cleaning high-stability horizontal machining center. Contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field.
[0072] The standard parts used in the present invention can all be purchased from the market, and special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt conventional means such as mature bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the circuit connection adopts the conventional connection method in the existing technology, which will not be described in detail here.
[0073] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A self-cleaning, high-stability horizontal machining center, comprising: A housing (1) placed on the ground; It is characterized by further comprising: A chip removal seat (2), wherein the chip removal seat (2) is fixed at the lower interior of the housing (1), and the longitudinal section of the chip removal seat (2) is a trapezoidal structure; A shielding plate (6), wherein the shielding plate (6) is connected to the housing (1) via a slot, and the shielding plate (6) and the housing (1) are rotatably connected; A debris collection mechanism, the debris collection mechanism being arranged on the outside of the chip discharge seat (2), the debris collection mechanism comprising a push plate (9), a rear connecting rope (10), a rear winding roller (11) and a rear double-axis motor (12), the rear side of the push plate (9) being fixedly connected to the rear connecting rope (10), the rear connecting rope (10) being wound around the rear winding roller (11), and the rear double-axis motor (12) being installed on the inner side of the rear winding roller (11); A debris cleaning mechanism is installed on the front side of the housing (1), and comprises a mounting frame (19), a connecting wheel (20), an adjustment plate (21), a hydraulic rod (22) and a second nozzle (23); the mounting frame (19) is rotatably connected to the connecting wheel (20) inside, and the second nozzle (23) is installed below the connecting wheel (20); the adjusting plate (21) is meshedly connected above the connecting wheel (20), and the hydraulic rod (22) is installed on the front side of the adjustment plate (21).
2. A self-cleaning high-stability horizontal machining center according to claim 1, characterized in that: A first drive motor (3) is installed inside the chip removal seat (2), and a base (4) is installed at the output end of the first drive motor (3). A first nozzle (8) is provided on the upper rear side of the chip removal seat (2), and the first nozzle (8) is installed on the housing (1).
3. The self-cleaning high-stability horizontal machining center according to claim 2, characterized in that: A clamping mechanism (5) is symmetrically installed front and back above the base (4), a shielding plate (6) is installed in the middle of the upper part of the base (4), and an observation window (7) is embedded inside the shielding plate (6).
4. The self-cleaning high-stability horizontal machining center according to claim 1, characterized in that: The rear winding roller (11) is symmetrically distributed about the vertical center axis of the rear dual-axis motor (12), and the rear winding roller (11) is rotatably connected in the housing (1).
5. The self-cleaning high-stability horizontal machining center according to claim 1, characterized in that: The debris collection mechanism further comprises a front connecting rope (13), a front winding roller (14) and a front double-axis motor (15), wherein the front connecting rope (13) is fixed to the front side of the push plate (9), and the front connecting rope (13) is wound around the outside of the front winding roller (14), and the front double-axis motor (15) is installed on the inside of the front winding roller (14).
6. The self-cleaning high-stability horizontal machining center according to claim 1, characterized in that: The debris cleaning mechanism further comprises an electric telescopic rod (16), an electric slide rail (17) and an electric slide seat (18); the output end of the electric telescopic rod (16) is provided with the electric slide rail (17), and the lower portion of the electric slide rail (17) is slidably connected to the electric slide seat (18).
7. The self-cleaning high-stability horizontal machining center according to claim 6, characterized in that: The electric telescopic rod (16) is installed on the upper front side of the housing (1), and the electric telescopic rod (16) is symmetrically arranged on the left and right sides; A mounting frame (19) is installed below the electric slide (18).
8. The self-cleaning high-stability horizontal machining center according to claim 1, characterized in that: An air delivery pipe (24) is installed on the outer side of the second nozzle (23), and an air pump (25) is installed on the right end of the air delivery pipe (24).
9. The self-cleaning high-stability horizontal machining center according to claim 1, characterized in that: The front inner slot of the housing (1) is connected to an adjusting rod (26), and a supporting spring (27) is wound around the outer side of the adjusting rod (26). The cross section of the adjusting rod (26) is a "stem"-shaped structure, and the adjusting rod (26) is slidably connected to the housing (1) via the supporting spring (27).
10. The self-cleaning high-stability horizontal machining center according to claim 9, characterized in that: The outer slot of the inner end of the adjusting rod (26) is connected to an adjusting handle (28), and a waste box (29) is fixed to the rear side of the adjusting handle (28). The adjusting handle (28) and the waste box (29) are both connected to the housing (1) through slots.
Citation Information
Patent Citations
Horizontal machining center
CN105234682B
Horizontal -type processing center
CN208147463U
Horizontal machining center
CN213225350U
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