Automatic universal oil groove milling machine
By designing the loading unit and milling mechanism of the automatic universal oil trough milling machine, the angle and height of the slide plate are automatically adjusted, solving the problem that existing milling machines can only cut at a single angle, and improving the flexibility and efficiency of milling.
Patent Information
- Application Number
- CN202520031256.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing milling machines can only cut and mill grooves at a single angle, which is insufficient to meet the milling needs of different angles in the production process.
An automatic universal oil tank milling machine was designed, including a loading unit and a milling mechanism. The loading unit realizes the left and right movement and 360-degree rotation of the loading platform through sliding components and a rotating device. The milling mechanism realizes the forward and backward movement and up and down movement of the milling machine through first and second moving components. Combined with an external control system, it realizes automated control.
It enables automatic adjustment of the cutting angle of the slide plate placed on the platform and the cutting height of the milling machine, thereby enabling milling from different angles and improving the flexibility and efficiency of milling.
Smart Images

Figure CN223684499U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a groove milling machine field especially relates to a kind of automatic universal oil groove milling machine. BACKGROUND
[0002] Groove milling machine is a kind of equipment for milling processing to metal or other materials in industrial field, such as when making sliding bearing, oil groove is often needed to be set up on slide by groove milling machine, so as to facilitate lubricating oil to embed in the oil groove to provide lubrication for the sliding bearing.
[0003] The existing groove milling machine can only carry out single-angle cutting groove, such as the automatic groove milling mechanism of numerical control groove milling machine disclosed in the utility model patent with announcement number CN217701507U, which includes fixed base plate, and support bracket is installed on the fixed base plate. The top of support bracket is installed with first driving motor, and first driving motor is connected with transmission screw rod. Transmission screw rod is threadedly connected with lifting slide block, and double-station automatic groove milling assembly is installed on lifting slide block. So as to reach double-station groove milling simultaneously by double-station automatic groove milling assembly, improve groove milling efficiency, and the spacing between double-station automatic groove milling assembly is adjusted, so as to reach different-interval groove milling effect, and further improve the application range of groove milling machine, which can meet the use demand under different conditions.
[0004] But the automatic groove milling mechanism can only mill groove in single direction, which is difficult to meet the milling demand of different angles in production process. SUMMARY
[0005] Therefore, the utility model provides a kind of automatic universal oil groove milling machine to solve the above problems.
[0006] The utility model provides an automatic universal milling oil groove machine, which comprises a carrying unit fixedly installed on a machine table and a milling groove mechanism fixedly installed on the machine table and located at one side of the carrying unit. The carrying unit comprises a sliding assembly fixedly arranged on the machine table, a rotating device fixedly arranged on the side of the sliding assembly away from the machine table, and a carrying table fixedly arranged on the rotating device. The sliding assembly comprises a sliding base fixedly arranged on the machine table, a sliding groove arranged on the sliding base, a screw rod movably arranged in the sliding groove, a sliding plate movably arranged on the sliding base, and a driving motor arranged at one end of the sliding base and fixedly connected with the screw rod. The rotating device comprises a rotating base fixedly arranged on the sliding plate, a rotating table rotatably connected with the rotating base, and a rotating motor fixedly arranged on one side of the rotating base. The milling groove mechanism comprises a first moving assembly fixedly arranged on the machine table, a second moving assembly fixedly arranged on the first moving assembly, a mounting table fixedly arranged on the second moving assembly, and a milling groove machine fixedly arranged on the mounting table. The first moving assembly is located at one side of the carrying unit and extends in a direction perpendicular to the extending direction of the sliding assembly. The first moving assembly comprises a first moving base fixedly arranged on the machine table, a first moving plate slidably connected with the first moving base, a first adjusting screw threadedly connected with the first moving base, and a mounting partition plate fixedly arranged on the first moving plate. The second moving assembly is arranged perpendicularly to the first moving assembly. The second moving assembly comprises a second moving base fixedly arranged on the mounting partition plate, a second moving plate slidably connected with the second moving base, and a second adjusting screw threadedly connected with the second moving base.
[0007] Further, the milling groove machine comprises a machine base fixedly arranged on the mounting table, a connecting rod rotatably arranged on the machine base, at least one milling cutter fixedly arranged on the connecting rod, and a driving motor fixedly arranged on the machine base.
[0008] Further, the machine base is in L-shaped structure, and one side of the L-shaped structure is parallel to the moving direction of the first moving assembly.
[0009] Further, the rotating table comprises a main body, a connecting disc arranged on the side of the main body facing the rotating base, and a placing plate arranged on the side of the main body away from the rotating base.
[0010] Further, the first moving base comprises a first base body fixedly arranged on the machine table, a first sliding guide groove arranged on two sides of the first base body, a sliding cavity opened on the first base body, and a first adjusting screw mounting hole arranged on the first base body.
[0011] Further, the second moving base comprises a second base body, a second sliding guide groove arranged on two sides of the second base body, a second sliding cavity opened on the second base body, a second adjusting screw mounting hole arranged on the second base body, and a base support frame fixedly arranged on the mounting partition plate.
[0012] Further, the second adjusting screw is consistent with the structure of the first adjusting screw, and is composed of a screw body and a handle.
[0013] Further, the mounting table comprises a mounting frame fixedly arranged on the second moving plate, a reinforcing plate arranged on the mounting frame, a loading plate fixedly arranged on the mounting partition plate, and two guide columns fixedly arranged on one side of the mounting frame.
[0014] Compared with the prior art, the automatic universal milling groove machine comprises a loading unit and a milling groove mechanism. The loading unit comprises a sliding assembly fixedly arranged on the machine table, a rotating device fixedly arranged on the side, opposite to the machine table, of the sliding assembly, and a loading table fixedly arranged on the rotating device. The sliding assembly can control the left-right movement of the loading table, and the rotating device can control the 360-degree rotation of the loading table. Meanwhile, the milling groove mechanism is further provided with the first moving assembly and a second moving assembly fixedly arranged on the first moving assembly. The first moving assembly is perpendicular to the sliding assembly and is used for controlling the forward-backward movement of the milling groove machine. The second moving assembly is arranged perpendicular to the first moving assembly and is used for controlling the up-down movement of the milling groove machine. The sliding assembly and the rotating device can be further connected with an external control system to realize automatic control. Therefore, the automatic universal milling groove machine can automatically adjust the cutting angle of the sliding plate placed on the loading table, and can also adjust the cutting height and cutting position of the milling groove machine, so as to realize milling from different angles. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 FIG. 1 is a structural schematic view of the automatic universal milling groove machine.
[0016] Figure 2 FIG. 2 is another view of the automatic universal milling groove machine. Figure 1 FIG. 3 is a structural schematic view of another view of the automatic universal milling groove machine.
[0017] Figure 3 for Figure 1 A schematic diagram of the structure of the first movable base of the automatic universal oil tank milling machine.
[0018] Figure 4 for Figure 1 A schematic diagram of the rotary table structure of the automatic universal oil tank milling machine.
[0019] Figure 5 for Figure 1 A schematic diagram of the structure of the second movable base of the automatic universal oil tank milling machine.
[0020] Figure 6 for Figure 1 An exploded view of the load-carrying unit of the automatic universal oil tank milling machine. Detailed Implementation
[0021] The specific embodiments of this utility model will be described in further detail below. It should be understood that the description of this utility model herein is not intended to limit the scope of protection of this utility model.
[0022] like Figures 1 to 6 The diagram shown is a structural schematic of an automatic universal oil tank milling machine provided by this utility model. The automatic universal oil tank milling machine includes a machine base 10, a loading unit 20 fixedly mounted on the machine base 10, and a milling mechanism 30 fixedly mounted on the machine base 10 and located on one side of the loading unit 20. It is conceivable that the automatic universal oil tank milling machine should also include some other functional components, such as assembly components and installation components, which are all prior art known to those skilled in the art and will not be described in detail here.
[0023] The machine platform 10 may consist of a horizontal tabletop, support legs, a pad, etc., and is used to support the loading unit 20 and the milling mechanism 30, thereby facilitating the assembly of the loading unit 20 and the milling mechanism 30 into a whole. The machine platform 10 itself is existing technology and will not be described in detail here.
[0024] The loading unit 20 includes a sliding assembly 21 fixedly mounted on the machine base 10, a rotating device 22 fixedly mounted on one side of the sliding assembly 21, and a loading platform 23 fixedly mounted on the rotating device 22.
[0025] The sliding assembly 21 comprises a sliding base 211 fixed on the machine table 10, a sliding groove 212 arranged on the sliding base 211, a screw rod 213 movably arranged in the sliding groove 212, a sliding plate 214 slidingly arranged on the sliding base 211, and a driving motor 215 arranged at one end of the sliding base 211 and fixedly connected with the screw rod 213.
[0026] The sliding base 211 is used for mounting the screw rod 213 and the sliding plate 214, so as to facilitate the assembly of the sliding assembly 21 as a whole. The sliding base 211 can be fixedly mounted on the machine table 10 by screws.
[0027] The sliding groove 212 is arranged along the length direction of the sliding base 211 and used for arranging the screw rod 213. Meanwhile, the sliding groove 212 forms a space for the connection between the sliding plate 214 and the screw rod 213, so that the sliding plate 214 can be moved leftward and rightward under the driving of the screw rod 213.
[0028] The screw rod 213 is arranged in the sliding groove 212 and rotatably connected with the sliding base 211 at one end by a bearing (not shown) and fixedly connected with the driving motor 215 at the other end, so as to be rotatable under the driving of the driving motor 215.
[0029] The sliding plate 214 is slidingly connected with the sliding base 211 at two sides and arranged above the sliding groove 212. A connecting part (not shown) for connecting the sliding plate 214 and the screw rod 213 is arranged on the side of the sliding plate 214 facing the sliding groove 212, and the sliding plate 214 is screw-connected to the screw rod 213 through the connecting part. Therefore, when the screw rod 213 rotates, the sliding plate 214 rotates relative to the screw rod 213, so that the sliding plate 214 can move along the length direction of the sliding groove 212, and the left and right positions of the object table 23 can be adjusted. The moving direction of the sliding plate 214 can be controlled according to the rotating direction of the screw rod 213, for example, the sliding plate 214 moves leftward when the screw rod 213 rotates clockwise, and the sliding plate 214 moves rightward when the screw rod 213 rotates counterclockwise.
[0030] The driving motor 215 is located at one end of the sliding base 211 and is fixedly installed on the machine table 10. The output end of the driving motor 215 is fixedly connected with the lead screw 213. The driving motor 215 is used to drive the lead screw 213 to rotate, thereby driving the sliding plate 214 to slide.
[0031] The rotating device 22 comprises a rotating base 221 fixedly arranged on the sliding plate 214, a rotating table 222 rotatably connected with the rotating base 221, and a rotating motor 223 fixedly arranged on one side of the rotating base 221.
[0032] The rotating base 221 can be in polygonal structure, thereby facilitating the installation of the rotating motor 223 on the outer side thereof. The rotating base 211 can be fixedly screwed on the sliding plate 214 by means of a nut, for arranging the rotating table 222 and the rotating motor 223.
[0033] The rotating table 222 comprises a rotating body 2221, a connecting disc 2222 arranged on one side of the body 2221 towards the rotating base 221, and a placing plate 2223 arranged on the side of the body 2221 opposite to the rotating base 221.
[0034] The connecting disc 2222 can be fixedly connected with the rotating base 221 by means of a nut, thereby installing the rotating table 222 on the rotating base 221. The connecting disc 2222 should be provided with a worm and gear device (not shown) for connecting the rotating body 2221. The worm and gear is a common mechanical transmission device, mainly used for transmitting the movement and power between two intersecting shafts with an intersection angle of 90°, which is itself a prior art and will not be described here.
[0035] One end of the rotating body 2221 is fixedly connected with the worm on the connecting disc 2222, thereby forming rotatable connection with the connecting disc 2222. The rotating body 2221 can be in cylindrical structure, thereby facilitating rotation.
[0036] The placing plate 2223 can be in rectangular plate body, which is fixedly arranged on the end of the rotating body 2221 opposite to the connecting disc 2222 and rotates together with the rotating body 2221. Thereby driving the object table 23 to rotate, thereby adjusting the cutting angle of the slide plate placed on the object table 23.
[0037] The rotary motor 223 is fixedly installed on one side of the rotary base 221, and is used to drive the rotary table 222 to rotate. An output shaft of the rotary motor 223 is fixedly connected with a worm on the connecting disc 2222, so as to drive the worm to rotate, and drive the turbine coupled with the worm to rotate, and further drive the rotary body 2221 to rotate.
[0038] The object table 23 is used to place the slide plate to be milled, so as to prevent the cutter from cutting too deep and damaging the rotary table 222. The object table 23 can be a cuboid structure, which is fixedly arranged on the object plate 2223, and thus can slide left and right with the sliding assembly 21, and can also rotate 360 degrees with the rotary device 22, so as to adjust the milling position and milling angle of the slide plate placed on the object table 23. It is conceivable that the sliding assembly 21 and the rotary device 22 can also be connected with an external control system to realize automatic control. The external control system should be the prior art known to those skilled in the art, and will not be described here.
[0039] The milling mechanism 30 comprises a first moving assembly 31 fixedly arranged on the machine table 10, a second moving assembly 32 fixedly arranged on the first moving assembly 31, a mounting table 33 fixedly arranged on the second moving assembly 32, and a milling machine 34 fixedly arranged on the mounting table 33.
[0040] The first moving assembly 31 is located on one side of the object unit 20, and the sliding direction thereof is perpendicular to the sliding direction of the sliding assembly 21. The first moving assembly 31 comprises a first moving base 311 fixedly installed on the machine table 10, a first moving plate 312 in sliding connection with the first moving base 311, a first adjusting screw 313 screwed on the first moving base 311, and a mounting partition plate 314 fixedly arranged on the first moving plate 312.
[0041] The first moving base 311 comprises a first base body 3111 fixedly installed on the machine table 10, a first sliding guide slot 3112 arranged on both sides of the first base body 3111, a sliding cavity 3113 opened on the first base body 3111, and a first adjusting screw installation hole 3114 arranged on the first base body 3111. The first base body 3111 can be a cuboid structure, and the length direction thereof is perpendicular to the length direction of the sliding base 211. The first sliding guide slot 3112 is arranged on both sides of the base body 311 along the length direction of the first base body 3111, and is used for guiding the first sliding plate 312 to slide back and forth along the length direction of the first base body 3111. The first sliding cavity 3113 is opened on the first base body 3111 along the length direction of the first base body 3111, and is used for accommodating the connecting part of the first moving plate 312 and the first adjusting screw 313, and forms a space for accommodation when the first adjusting screw 313 rotates, so that the first moving plate 312 can slide back and forth along the first sliding guide slot 3112 with the rotation of the first adjusting screw 313. The first adjusting screw installation hole 3114 is used for arranging the first adjusting screw 313, and can be a screw hole matched with the first adjusting screw 313. Both ends of the first adjusting screw installation hole 3114 penetrate through the first base body 3111 and are in communication with the first sliding cavity 3113.
[0042] The structure and size of the first moving plate 312 are matched with the first moving base 311, and both sides thereof are slidably buckled in the first sliding guide slot 3112, so as to be slidably installed on the first moving base 311. The side of the first moving plate 312 facing the first sliding cavity 3113 can be provided with a connecting block (not shown in the figure), and is fixedly screwed to the first adjusting screw 313 through the connecting block, so that when the first adjusting screw 313 rotates, the first moving plate 312 can move back and forth along the first sliding guide slot 3112.
[0043] The first adjusting screw 313 comprises a screw body 3131 screwed into the first adjusting screw installation hole 3114, and an adjusting handle 3132 arranged at one end of the screw body 3131. One end of the screw body 3131 is fixedly connected with the adjusting handle 3132. When the adjusting handle 3132 is rotated, the screw body 3131 is inserted into or protrudes from the first adjusting screw installation hole 3114, so as to drive the first moving plate 312 to slide.
[0044] The mounting partition plate 314 is fixedly arranged between the first moving assembly 31 and the second moving assembly 32. The mounting partition plate 314 is fixedly mounted on the first moving plate 312 and is used for arranging the second moving assembly 32 and the mounting table 33, so as to avoid that the second moving assembly 32 and the mounting table 33 are directly mounted on the first moving plate 312, thereby avoiding that too many mounting screw holes are opened and repeated dismounting damages the first moving assembly 31.
[0045] The sliding direction of the second moving assembly 32 is arranged perpendicular to the sliding direction of the first moving assembly 31, and is used for controlling the cutting height of the slot milling machine 34. The second moving assembly 32 comprises a second moving base 321 fixedly arranged on the mounting partition plate 314, a second moving plate 322 in sliding connection with the second moving base 321, and a second adjusting screw 323 screwed on the second moving base 321.
[0046] The second moving base 321 comprises a second base body 3211, second sliding guide grooves 3212 arranged on both sides of the second base body 3211, a second sliding cavity 3213 opened on the second base body 3211, a second adjusting screw mounting hole 3214 arranged on the second base body 3211, and a base support frame 3215 fixedly mounted on the mounting partition plate 314. The second base body 3211 is fixedly mounted on the mounting partition plate 314 through the base support frame 3215. The second sliding guide grooves 3212 are arranged on both sides of the second base body 3211 along the length direction of the second base body 3211, and are used for guiding the second moving plate 322 to slide up and down along the second base body 3211. The second sliding cavity 3213 is used for accommodating the connecting part of the second moving plate 322 and the second adjusting screw 323, and forms a space for accommodation when the second adjusting screw 323 rotates, so that the second moving plate 322 can slide up and down along the second sliding guide grooves 3212 with the rotation of the second adjusting screw 323. The second adjusting screw mounting hole 3214 is used for arranging the second adjusting screw 323, which can be a screw hole matched with the second adjusting screw 323. The base support frame 3215 is arranged at one end of the second base body 3211 towards the mounting partition plate 314, and is used for increasing the contact area between the second base body 3211 and the mounting partition plate 314, thereby improving the stability of the second base body 3211.
[0047] The second moving plate 322 is in structure and size adapted to the second moving base 321, and is slidably buckled on both sides in the second sliding guide slot 3212, so as to be slidably mounted on the second moving base 311. The second moving plate 312 is provided with a connecting block (not shown in the figure) on the side facing the second sliding cavity 3213, and is fixedly connected to the second adjusting screw 323 through the connecting block. Thus, when the second adjusting screw 313 rotates, the second moving plate 322 can move up and down along the second sliding guide slot 3212.
[0048] The second adjusting screw 323 is consistent in structure with the first adjusting screw 313, and is also composed of a screw body and a handle. The second adjusting screw 323 is screwed into the second screw mounting hole 3214, and is fixedly connected to the second moving plate 322, so that when the second adjusting screw 323 rotates, it can drive the second moving plate 322 to slide up and down, thereby achieving the purpose of adjusting the height of the slot milling machine 34.
[0049] The mounting table 33 includes a mounting frame 331 fixedly arranged on the second moving plate 322, a reinforcing plate 332 arranged on the mounting frame 331, a carrier plate 333 fixedly arranged on the mounting partition plate 314, and two guide columns 334 fixedly arranged on one side of the mounting frame 331.
[0050] The mounting frame 331 can be in L-shaped structure, one side of the L-shaped structure being parallel to the second moving plate 322 and being fixedly connected together with the second moving plate 322. The other side of the L-shaped structure is parallel to the mounting partition plate 314, and is used for supporting the slot milling machine 34.
[0051] The reinforcing plate 332 is in right-angled triangular structure, and the two sides of the right-angled side of the triangle are fixedly connected to the two sides of the L-shaped mounting frame 331, so as to strengthen the structural stability of the mounting frame 331.
[0052] The carrier plate 333 is fixedly mounted on the mounting partition plate 314, and is provided with two positioning holes adapted to the guide columns 334 on the side opposite to the second moving assembly 32, and the guide columns 334 are movably inserted into the positioning holes, so that when the mounting frame 331 moves up and down with the second moving assembly 32, the positioning holes can guide and position the guide columns 334, thereby ensuring the stability of the slot milling machine 34 during the movement.
[0053] One end of the guide column 334 is fixedly connected with the mounting frame 331, and the other end is inserted into the positioning hole of the carrier plate 333, so as to form a guide when the mounting frame 331 moves up and down with the second moving assembly 32. The length of the guide column 334 is set according to the maximum vertical distance between the side of the mounting frame 331 for supporting the slot milling machine 34 and the carrier plate 333, that is, the length of the guide column 334 should be such that when the side of the mounting frame 331 for supporting the slot milling machine 34 and the carrier plate 333 are at the maximum distance, the guide column 334 does not come out of the positioning hole of the carrier plate 333.
[0054] The slot milling machine 34 comprises a base 341 fixedly arranged on the mounting table 22, a connecting rod 342 rotatably arranged on the base 341, at least one milling cutter 343 fixedly arranged on the connecting rod 342, and a driving motor 344 fixedly arranged on the base 341.
[0055] The base 341 is used to arrange the connecting rod 342 and the driving motor 344, so as to facilitate the assembly of the slot milling machine 34 into a whole. The base 341 can be an L-shaped structure, and the side of the L-shaped structure is parallel to the moving direction of the first moving assembly 31.
[0056] The connecting rod 342 is inserted into the side of the base 341 parallel to the moving direction of the first moving assembly 31 and is rotatably connected between the base 341. The connecting rod 342 is used to arrange the milling cutter 343, which can be connected together with the driving motor 344 through a belt (not shown in the figure), so that the connecting rod 342 can be rotated under the driving of the driving motor 344, thereby driving the milling cutter 343 to rotate.
[0057] The milling cutter 343 can be selected according to the thickness and material of the processed slide plate, and a plurality of milling cutters 343 can be arranged according to the number of oil grooves required to be arranged on the slide plate, so as to achieve the effect of processing a plurality of oil grooves at one time.
[0058] The driving motor 344 is fixedly arranged on the side of the base 341 parallel to the connecting rod and located on the side of the base 341 facing the object carrying unit 20. The driving motor 344 is used to drive the connecting rod 343 to rotate, thereby driving the milling cutter 343 to rotate.
[0059] Compared with the prior art, the automatic universal milling oil groove machine comprises a carrying unit 20 and a milling groove mechanism 30. The carrying unit 20 comprises a sliding assembly 21 fixedly arranged on the machine table 10, a rotating device 22 fixedly arranged on the side opposite to the machine table 10 of the sliding assembly 21, and a carrying table 23 fixedly arranged on the rotating device 22. The sliding assembly 21 can control the carrying table 23 to move left and right, and the rotating device 22 can control the carrying table 23 to rotate by 360 degrees. Meanwhile, the milling groove mechanism 30 is further provided with the first moving assembly 31 and a second moving assembly 32 fixedly arranged on the first moving assembly 31. The first moving assembly 31 is perpendicular to the sliding assembly 21 and is used for controlling the front and back movement of the milling groove machine 34. The second moving assembly 32 is arranged perpendicular to the first moving assembly 31 and is used for controlling the up and down movement of the milling groove machine 34. The sliding assembly 21 and the rotating device 22 can be further connected with an external control system to realize automatic control. Therefore, the automatic universal milling oil groove machine can automatically adjust the cutting angle of the slide plate placed on the carrying table 23, and can also adjust the cutting height and cutting position of the milling groove machine 34, so as to realize milling from different angles.
[0060] The above is only the preferred embodiment of the utility model and is not used for limiting the protection scope of the utility model, and any modification, equivalent replacement or improvement within the utility model spirit is covered in the claim scope of the utility model.
Claims
1. An automatic universal oil groove milling machine characterized by: The automatic universal milling oil groove machine comprises a carrying unit fixedly arranged on a machine table and a milling groove mechanism fixedly arranged on the machine table and located at one side of the carrying unit.
2. The automatic universal milling groove machine according to claim 1, wherein: The milling groove mechanism comprises a first moving assembly fixedly arranged on the machine table, a second moving assembly fixedly arranged on the first moving assembly, a mounting table fixedly arranged on the second moving assembly and a milling groove machine fixedly arranged on the mounting table.
3. The automatic gundrilling machine according to claim 2, characterized in that: The first moving assembly is located at one side of the carrying unit and extends perpendicularly to the extending direction of the sliding assembly.
4. The automatic gundrilling machine of claim 1, wherein: The first moving assembly comprises a first moving base fixedly arranged on the machine table, a first moving plate in sliding connection with the first moving base, a first adjusting screw threaded on the first moving base and a mounting partition plate fixedly arranged on the first moving plate.
5. The automatic gundrilling machine according to claim 1, characterized in that: The second moving assembly is arranged perpendicularly to the first moving assembly. The second moving assembly comprises a second moving base fixedly arranged on the mounting partition plate, a second moving plate in sliding connection with the second moving base and a second adjusting screw threaded on the second moving base. The machine seat is in L-shaped structure and one side of the L-shaped structure is parallel to the moving direction of the first moving assembly. The rotating table comprises a main body, a connecting disc arranged on one side of the main body facing the rotating base and a placing plate arranged on the other side of the main body opposite to the rotating base. The first moving base comprises a first base main body fixedly arranged on the machine table, first sliding guide grooves arranged on both sides of the first base main body, a sliding cavity formed in the first base main body and a first adjusting screw mounting hole arranged on the first base main body. The first moving base comprises a first base main body fixedly arranged on the machine table, first sliding guide grooves arranged on both sides of the first base main body, a sliding cavity formed in the first base main body and a first adjusting screw mounting hole arranged on the first base main body.
6. The automatic gundrilling machine of claim 1, wherein: The second mobile base comprises a second base body, a second sliding guide groove arranged on both sides of the second base body, a second sliding cavity opened on the second base body, a second adjusting screw mounting hole arranged on the second base body, and a base support frame fixedly installed on the installation partition plate.
7. The automatic gundrilling machine of claim 1, wherein: The second adjusting screw is consistent with the first adjusting screw in structure, and both are composed of a screw body and a handle.
8. The automatic gundrilling machine of claim 1, wherein: The mounting table comprises a mounting frame fixedly arranged on the second mobile plate, a reinforcing plate arranged on the mounting frame, a carrier plate fixedly arranged on the installation partition plate, and two guide columns fixedly arranged on one side of the mounting frame.
Citation Information
Patent Citations
Automatic slot milling mechanism of numerical control slot milling machine
CN217701507U