Horizontal milling and boring machine for production of coil-assisting arm device
Technical Field
The utility model relates to the field of boring and milling machines, in particular to a horizontal boring and milling machine for producing a coil arm assisting device.
Background
Milling is to process a plane or an arc by rotating and moving a milling cutter, and boring is mainly used for processing a large plane or a large circular plane. The horizontal milling and boring machine is a universal machine tool with higher automation degree, has the characteristics of advanced structure and excellent performance after great improvement, can be used for carrying out cutting processing such as drilling, boring, reaming, facing, milling, grooving, threading and the like on a workpiece, and is a key device for processing box parts.
In the process of producing a coil-supporting arm device, milling and boring are required by a milling and boring machine, and in the issued Chinese patent publication No. CN218461571U, the digital display horizontal milling and boring machine can drive the fixed block and the movable rod to move obliquely inwards together through the cooperation of the screw rod, the lifting plate, the first fixed plate, the second sliding groove and the fixed block, and the movable rod which moves obliquely inwards can drive the limiting block to move obliquely inwards together so as to realize clamping and limiting on the outer wall of the cylinder at the top end of the bearing.
Disclosure of utility model
The utility model aims to overcome the defects of unstable clamping and small application range in the prior art and provides a horizontal milling and boring machine for producing a coil arm assisting device.
The utility model solves the technical problems by the following technical scheme:
The utility model provides a horizontal milling and boring machine for producing a coil arm assisting device, which comprises a supporting table and a milling and boring module, wherein the milling and boring module is arranged at the top of the supporting table,
The placing table is arranged above the supporting table and is used for placing parts of the rolling assisting device;
The height adjusting mechanism is arranged at the top of the supporting table, the top end of the height adjusting mechanism is connected with the bottom of the placing table, and the height adjusting mechanism can be used for adjusting the height of the placing table;
The fixing belt is arranged above the placing table and used for clamping and fixing parts of the winding assisting device;
the fixing clamp assembly is arranged on the side surface of the placing table and connected with the end surface of the fixing belt, and is used for adjusting the length of the fixing belt and assisting the fixing belt to clamp and fix the parts of the winding assisting device;
The auxiliary assembly is arranged on the side face of the placing table in an adjustable mode, and is used for assisting clamping of the fixing belt.
In this technical scheme, utilize the elasticity degree of solid adjustable fixed band of clamp subassembly to cooperate auxiliary assembly, can carry out centre gripping, fixed to the not part of equidimension's helping a roll arm device, and can follow upper portion and side and carry out centre gripping, fixed to helping a roll arm device's part, increase helping the fixed stability of a roll arm device's part, thereby increase milling and boring accuracy.
Preferably, the height adjusting mechanism comprises a fixed outer frame, and the fixed outer frame is arranged at the top of the supporting table;
the inner side of the fixed outer frame is rotationally connected with a first bidirectional threaded column, and the surface of the first bidirectional threaded column is in threaded connection with two symmetrically distributed moving plates;
a plurality of adjusting columns are arranged above the moving plate, and rotating frames are connected to two ends of each adjusting column in a rotating mode;
The rotating frame located below is arranged at the top of the moving plate, and the rotating frame located above is arranged at the bottom of the placing table.
In the technical scheme, the height of the placing table can be adjusted by utilizing the height adjusting mechanism so as to adapt to the parts of the auxiliary winding arm device with different heights, and the parts of the auxiliary winding arm device with different heights can be processed.
Preferably, the fixed frame outside is provided with the power supply that increases, the power supply that increases is installed in the brace table top, the output of power supply that increases is connected with two-way screw thread post one-to-one.
In the technical scheme, the driving force can be provided for the rotation of the first bidirectional threaded column by using the height-adjusting power source.
Preferably, the fixing clamp assembly comprises a retraction assembly and a follow-up assembly, and the retraction assembly comprises a first fixing plate;
two symmetrically distributed first fixing plates are fixedly connected to one side of the placing table, and a special-shaped folding and unfolding shaft is rotatably connected to the position between the two first fixing plates;
The surface of the special-shaped retractable shaft is slidably but non-rotatably sleeved with an anti-rotation sleeve, and the surface of the anti-rotation sleeve is connected with one end of the fixed belt;
The other end of the fixing belt is connected with a follow-up assembly, and the follow-up assembly is arranged on one side of the placing table far away from the retraction assembly.
In the technical scheme, the fixing clamp assembly is utilized to fix parts of the winding assisting arm devices with different sizes.
Preferably, one of the first fixing plates is provided with a retractable power source, and the surface of the output end of the retractable power source is rotatably connected with the first fixing plate in a penetrating way;
one end of the special-shaped folding and unfolding shaft is rotationally connected with the side face of the other first fixing plate, and the other end of the special-shaped folding and unfolding shaft is connected with the output end of the folding and unfolding power source.
In the technical scheme, the driving force can be provided for the rotation of the special-shaped winding and unwinding shafts by utilizing the winding and unwinding power source.
Preferably, the follow-up assembly comprises a fixed shaft, two ends of the fixed shaft are fixedly connected with second fixed plates, and one side of each second fixed plate is connected with one side of the placing table;
The surface of the fixed shaft is connected with a follow-up sleeve in a sliding manner, and the follow-up sleeve is connected with one end of the placing table far away from the anti-rotation sleeve.
In the technical scheme, the moving track of the follow-up sleeve can be limited by the fixed shaft.
Preferably, the auxiliary assembly comprises a compression shaft, two symmetrically distributed compression shafts are arranged above the placement table, and two ends of each compression shaft are connected with positioning assemblies.
In this technical scheme, utilize auxiliary assembly can assist the fixed band to helping the fixed of a roll arm device spare part, make the fixed band laminate helping a roll arm device spare part more to increase helping the fixed stability of a roll arm device spare part.
Preferably, the positioning assembly comprises a two-way threaded column II, and two symmetrically distributed sliding plates are connected to the surface of the two-way threaded column II in a threaded manner;
One side of the sliding plate is connected with a connecting column, and the connecting column is connected with the side surface of the placing table in a sliding penetrating manner;
The one end that the spliced pole was kept away from the sliding plate is connected, the spliced pole is connected with compressing tightly axle head face rotation.
In the technical scheme, the position of the compression shaft can be adjusted by utilizing the two-way threaded column II.
Preferably, one end of the second bidirectional threaded column is rotatably connected with the inner wall of the placing table, and the other end of the second bidirectional threaded column is rotatably connected with one side of the placing table in a penetrating way;
one end of the second bidirectional threaded column, which is far away from the placing table, is connected with the output end of the positioning power source, and the positioning power source is arranged on the side surface of the placing table.
In the technical scheme, the driving force can be provided for the rotation of the two-way threaded column II by utilizing the positioning power source.
Preferably, the section of the special-shaped folding and unfolding shaft is of a non-circular special-shaped structure.
In this technical scheme, can drive the rotation-proof sleeve and rotate when making the dysmorphism receive and release axle rotate, prevent changeing the sleeve simultaneously and can carry out horizontal slip at the dysmorphism receive and release axle.
On the basis of conforming to the common knowledge in the field, the above preferred conditions can be arbitrarily combined to obtain the preferred examples of the utility model.
The utility model has the positive progress effects that:
The tightness of the fixing belt can be adjusted by utilizing the fixing clamp assembly, and the auxiliary assembly is matched, so that parts of the rolling-assisting arm device with different sizes can be clamped and fixed, and parts of the rolling-assisting arm device can be clamped and fixed from the upper part and the side surface, the stability of the fixing of the parts of the rolling-assisting arm device is improved, and the accuracy of milling and boring processing is improved;
Meanwhile, the height of the placing table can be adjusted, so that parts of the coil supporting arm devices with different heights can be clamped and fixed, and the application range of the milling and boring machine is further enlarged.
Drawings
Fig. 1 is a schematic structural diagram of a horizontal milling and boring machine for producing a coil arm device according to an embodiment of the present utility model.
Fig. 2 is a schematic diagram of the overall internal structure of the horizontal milling and boring machine for producing the coil arm assisting device shown in fig. 1.
Fig. 3 is a schematic top view of a placement table of the horizontal boring and milling machine for producing the coil supporting arm device shown in fig. 1.
Description of the reference numerals
1. A support table;
2. milling and boring module;
3. A placement table;
4. A height adjusting mechanism; 41, a fixed outer frame, 42, a first bidirectional threaded column, 43, a movable plate, 44, an adjusting column, 45, a rotating frame, 46 and a heightening power source;
5. A fixing belt;
6. The device comprises a fixing and clamping assembly, a first fixing plate, a special-shaped folding and unfolding shaft, a 63, an anti-rotation sleeve, a 64, a folding and unfolding power source, a 65, a fixing shaft, a 66, a second fixing plate and a 67, a follow-up sleeve, wherein the fixing and clamping assembly is arranged on the fixing and clamping assembly;
7. the device comprises an auxiliary component, a pressing shaft, a second bidirectional threaded column, a sliding plate, a connecting column, a mounting plate, a positioning power source and a positioning power source.
Detailed Description
The utility model is further illustrated by means of the following examples, which are not intended to limit the scope of the utility model.
Fig. 1 to 3 are schematic structural views of an embodiment of a horizontal boring and milling machine for producing a coil arm device according to the present utility model. The horizontal milling and boring machine for producing the coil-supporting arm device comprises a supporting table 1 and a milling and boring module 2, wherein the milling and boring module 2 is arranged at the top of the supporting table 1, the milling and boring module 2 comprises a milling and boring cutter and a driving mechanism, and the milling and boring module 2 can be used for milling and boring parts of the coil-supporting device;
The placing table 3 is arranged above the supporting table 1, and the placing table 3 is used for placing parts of the winding-up assisting device;
The height adjusting mechanism 4 is arranged at the top of the supporting table 1, the top end of the height adjusting mechanism 4 is connected with the bottom of the placing table 3, and the height adjusting mechanism 4 can adjust the height of the placing table 3;
the fixing belt 5 is arranged above the placing table 3, and a plurality of adjustable fixing belts 5 are arranged above the placing table 3, and the fixing belts 5 are used for clamping and fixing parts of the winding assisting device;
The fixing clamp assembly 6 is arranged on the side surface of the placing table 3, the fixing clamp assembly 6 is connected with the end surface of the fixing belt 5, the fixing clamp assembly 6 is used for adjusting the length of the fixing belt 5, and the fixing belt 5 is assisted to clamp and fix parts of the winding assisting device;
an auxiliary assembly 7, a plurality of auxiliary assemblies 7 are adjustably arranged on the side face of the placing table 3, and the auxiliary assemblies 7 are used for assisting clamping of the fixing belt 5.
In this technical scheme, utilize the elasticity degree of solid fixed band 5 of pressing from both sides subassembly 6 adjustable to cooperate auxiliary assembly 7, can carry out centre gripping, fixed to the not part of equidimension to helping the arm device of rolling up, and can follow upper portion and side and carry out centre gripping, fixed to helping the part of rolling up the arm device, increase helping the fixed stability of part of rolling up the arm device, thereby increase and mill the accuracy of boring processing.
The height adjusting mechanism 4 comprises a fixed outer frame 41, and the fixed outer frame 41 is arranged at the top of the supporting table 1;
The inner side of the fixed outer frame 41 is rotationally connected with a first bidirectional threaded column 42, and the surface of the first bidirectional threaded column 42 is in threaded connection with two symmetrically distributed movable plates 43;
a plurality of adjusting columns 44 are arranged above the moving plate 43, and rotating frames 45 are rotatably connected to two ends of the adjusting columns 44;
The rotating frame 45 positioned below is mounted on the top of the moving plate 43, and the rotating frame 45 positioned above is mounted on the bottom of the placing table 3.
In the technical scheme, the height of the placing table 3 can be adjusted by utilizing the height adjusting mechanism 4 so as to adapt to the parts of the auxiliary winding arm device with different heights, and the parts of the auxiliary winding arm device with different heights can be processed.
The outside of the fixed outer frame 41 is provided with a height-adjusting power source 46, the height-adjusting power source 46 is arranged at the top of the supporting table 1, and the output end of the height-adjusting power source 46 is connected with one end of the two-way threaded column I42.
In this embodiment, the power source 46 is used to provide driving force for the rotation of the first threaded stud 42.
When the rolling assisting device is used, the height adjusting power source 46 is utilized to drive the two-way threaded column I42 to rotate, so that the moving plates 43 on two sides are driven to move oppositely or back to back, at the moment, the adjusting column 44 can be driven to rotate under the cooperation of the rotating frame 45, the placing table 3 is driven to move, the height of the placing table 3 is adjusted, and therefore the height of the rolling assisting device parts is adjusted.
The fixing clamp assembly 6 comprises a retraction assembly and a follow-up assembly, and the retraction assembly comprises a first fixing plate 61;
Two symmetrically distributed first fixing plates 61 are fixedly connected to one side of the placing table 3, and a special-shaped folding and unfolding shaft 62 is rotatably connected to the position between the two first fixing plates 61;
The surface of the special-shaped folding and unfolding shaft 62 is slidably but non-rotatably sleeved with an anti-rotation sleeve 63, and the surface of the anti-rotation sleeve 63 is connected with one end of the fixed belt 5;
The other end of the fixing belt 5 is connected with a follow-up assembly, and the follow-up assembly is arranged on one side of the placing table 3 far away from the retraction assembly.
In the technical scheme, the fixing clamp assembly 6 can be used for fixing parts of the winding-assisting arm devices with different sizes.
One of the first fixing plates 61 is provided with a retractable power source 64, and the output end surface of the retractable power source 64 is rotatably connected with the first fixing plate 61 in a penetrating way;
One end of the special-shaped folding and unfolding shaft 62 is rotatably connected with the side face of the other first fixing plate 61, and the other end of the special-shaped folding and unfolding shaft 62 is connected with the output end of the folding and unfolding power source 64.
In this embodiment, the retraction power source 64 can be used to provide a driving force for the rotation of the shaped retraction shaft 62.
The follow-up assembly comprises a fixed shaft 65, two ends of the fixed shaft 65 are fixedly connected with a second fixed plate 66, and one side of the second fixed plate 66 is connected with one side of the placing table 3;
the surface of the fixed shaft 65 is connected with a follow-up sleeve 67 in a sliding manner, and the follow-up sleeve 67 is connected with one end of the placing table 3 far away from the anti-rotation sleeve 63.
In this embodiment, the movement locus of the follower sleeve 67 can be defined by the fixed shaft 65.
When the auxiliary winding device is used, firstly, the auxiliary winding device parts are placed on the placing table 3, then the auxiliary winding device parts are rotated to respectively slide the anti-rotation sleeve 63 and the follow-up sleeve 67 according to the sizes and the processing positions of the auxiliary winding device parts, so that the positions of the fixing belts 5 can be moved, and a plurality of fixing belts 5 are respectively moved to the auxiliary winding device parts;
Then, the winding and unwinding power source 64 is utilized to drive the special-shaped winding and unwinding shaft 62 to rotate, so that the anti-rotation sleeve 63 is driven to rotate, and the anti-rotation sleeve 63 can wind the fixing belt 5 at the moment, so that the fixing belt 5 is tightly attached to the parts of the winding assisting device, and the parts of the winding assisting device are clamped and fixed.
The auxiliary assembly 7 comprises a compression shaft 71, two symmetrically distributed compression shafts 71 are arranged above the placement table 3, and two ends of each compression shaft 71 are connected with positioning assemblies.
In this technical scheme, utilize auxiliary assembly 7 can assist the fixed band 5 to helping the fixed of a roll arm device spare part, make fixed band 5 laminate helping a roll arm device spare part more to increase helping the fixed stability of a roll arm device spare part.
The positioning assembly comprises a second bidirectional threaded column 72, and two symmetrically distributed sliding plates 73 are connected to the surface of the second bidirectional threaded column 72 in a threaded manner;
a connecting column 74 is connected to one side of the sliding plate 73, and the connecting column 74 is connected with the side surface of the placing table 3 in a sliding penetrating manner;
The connecting post 74 is connected with one end far away from the sliding plate 73, and the connecting post 74 is rotatably connected with the end face of the pressing shaft 71.
In this embodiment, the position of the compression shaft 71 can be adjusted by the second bidirectional screw post 72.
One end of the second bidirectional threaded column 72 is rotatably connected with the inner wall of the placing table 3, and the other end of the second bidirectional threaded column 72 is rotatably connected with one side of the placing table 3 in a penetrating way;
One end of the second bidirectional threaded column 72, which is far away from the placement table 3, is connected with the output end of the positioning power source 76, and the positioning power source 76 is installed on the side surface of the placement table 3.
In this embodiment, the positioning power source 76 is used to provide driving force for the rotation of the second bidirectional threaded column 72.
Before the fixing belt 5 is wound, the positioning power source 76 is utilized to drive the two-way threaded columns 72 to rotate, so that the sliding plates 73 on two sides are driven to move oppositely, at the moment, the connecting columns 74 can be driven to move in the same direction, so that the mounting plate 75 and the pressing shaft 71 are driven to move in the same direction, the pressing shafts 71 on two sides are moved to two sides of the parts of the winding assisting device, the parts of the winding assisting device can be contacted in the largest area when the fixing belt 5 is tightened, and therefore the fixing stability of the parts of the winding assisting device is improved.
The section of the special-shaped folding shaft 62 is a non-circular special-shaped structure.
In this technical scheme, make dysmorphism receive and release axle 62 rotate the time can drive anti-rotation sleeve 63 and rotate, anti-rotation sleeve 63 can carry out horizontal slip at dysmorphism receive and release axle 62 simultaneously.
The height adjustment power source 46, the retraction power source 64 and the positioning power source 76 are motors or other devices capable of outputting rotational kinetic energy.
While specific embodiments of the utility model have been described above, it will be appreciated by those skilled in the art that this is by way of example only, and the scope of the utility model is defined by the appended claims. Various changes and modifications to these embodiments may be made by those skilled in the art without departing from the principles and spirit of the utility model, but such changes and modifications fall within the scope of the utility model.