CN114986204A - Numerical control lathe machining center - Google Patents

Numerical control lathe machining center Download PDF

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Publication number
CN114986204A
CN114986204A CN202210829011.5A CN202210829011A CN114986204A CN 114986204 A CN114986204 A CN 114986204A CN 202210829011 A CN202210829011 A CN 202210829011A CN 114986204 A CN114986204 A CN 114986204A
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China
Prior art keywords
frame
fixing
fixed
guide
sets
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Withdrawn
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CN202210829011.5A
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Chinese (zh)
Inventor
宋礼政
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Nanjing Zhengxu Technology Co ltd
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Nanjing Zhengxu Technology Co ltd
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Priority to CN202210829011.5A priority Critical patent/CN114986204A/en
Publication of CN114986204A publication Critical patent/CN114986204A/en
Withdrawn legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q1/00Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
    • B23Q1/72Auxiliary arrangements; Interconnections between auxiliary tables and movable machine elements

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Machine Tool Units (AREA)

Abstract

The invention relates to the field of numerical control facilities, in particular to a numerical control lathe machining center which comprises a lathe body, wherein an L-shaped frame is rotatably arranged on the lower portion of the front end face of the lathe body, a base extends from the front end face of the L-shaped frame, an arc-shaped fixing piece is arranged between the side face of the base and the side face of the lathe body, an underframe is slidably arranged on the upper end face of the base, and an adjusting fixing piece is arranged at the upper end of the underframe. The invention can improve the convenience of clamping the workpiece, meet the use requirement, ensure the stability during treading and reduce the space occupation area when not in use.

Description

Numerical control lathe machining center
Technical Field
The invention relates to the field of numerical control facilities, in particular to a numerical control lathe machining center.
Background
The numerical control technology, which is called numerical control for short, is a technology for automatically controlling a certain working process by adopting a numerical control method, and is widely used on a lathe, however, when an existing numerical control lathe machining center is used, the upper half of an operator is difficult to insert into the lathe for operation due to the height problem of the operator, namely, the phenomenon of blockage during workpiece clamping is caused, and the workpiece clamping is inconvenient.
Disclosure of Invention
The invention aims to solve the defects in the background art and provides a numerical control lathe machining center.
In order to achieve the purpose, the invention adopts the technical scheme that: the utility model provides a numerical control lathe machining center, includes lathe body, lathe body's preceding terminal surface lower part is rotated and is installed L shape frame, the preceding terminal surface extension of L shape frame has the base, install the arc mounting between the side of base and lathe body's side, the up end slidable mounting of base has the chassis, the regulation mounting is installed to the upper end of chassis.
Preferably, the arc-shaped fixing part comprises a fixing frame extending to the side face of the base, the fixing frame is arc-shaped, a fixing shell is inlaid at the front edge of the side face of the lathe body, the fixing frame is attached to the inside of the fixing shell, a bearing frame body extends to the side face of the fixing shell, a fixing clamping column is elastically mounted in the manner of penetrating through the side face of the bearing frame body in an attaching manner, and the fixing clamping column is sequentially attached to the side face of the fixing shell and the side face of the fixing frame in an attaching manner.
Preferably, two sets of fixed orificess have been seted up to the side symmetry of mount, the edge of fixed orificess is seted up to the inclined plane, the fixing clip post laminating is in the inside of one of them set of fixed orificess, the coaxial inlaying of surface of fixing clip post has the drive disk, fixing clip post and drive disk integrated into one piece, it has the uide bushing to run through to inlay in the side of bearing frame body, the fixing clip post laminating is in the inside of uide bushing, the tip of fixing clip post is inlayed and is had the pulling ring.
Preferably, the upper and lower terminal surface of push disk has all extended the direction lug, the upper and lower terminal surface of bearing the frame body has all run through and has seted up square groove, the direction lug laminating is in the inside in square groove, the outside winding of fixing clip post has fixed spring, fixed spring is located between push disk and the uide bushing.
Preferably, there are two sets of guide bars, two sets of the surface laminating respectively of guide bar installs two sets of sliding sleeves, inlay the upper end of sliding sleeve has even solid piece, the tip and the chassis fixed connection who link solid piece, the lower terminal surface extension of sliding sleeve has the wheel carrier, the inside of wheel carrier is provided with the bearing wheel, the bearing wheel laminating is in the up end edge of base.
Preferably, adjust the mounting and run through the guide post of elastic mounting at the up end corner of chassis including the laminating, the lower extreme of guide post is inlayed and is had the footstock, the lower terminal surface of footstock extends and has fixed rack on the multiunit, the up end middle part of base extends and has fixed rack under the multiunit, it cooperatees with lower fixed rack to go up fixed rack, the upper end of guide post is inlayed and is had the plummer, the up end corner of plummer is inlayed and is had the guide cylinder, the direction core is installed in the inside laminating of guide cylinder, the upper end fixed mounting of direction core has the footboard.
Preferably, the up end of chassis runs through and has seted up the direction through-hole, the guide post laminates in the inside of direction through-hole, the outside winding of guide post has reset spring, reset spring is located between the upper end of chassis and the lower extreme of plummer, edge extends around the upper end of chassis has the cushion, the up end mid-rotation of plummer installs the threaded rod, the outside of threaded rod is screwed respectively has two sets of screw thread section of thick bamboos, the surface mosaic of screw thread section of thick bamboo has the propelling movement frame, the tip fixed mounting of threaded rod has the control ring, two sets of loading boards are installed respectively to the front and back of the up end threaded rod of plummer, the loading board laminating runs through in the tip of propelling movement frame.
Preferably, the tip fixed mounting of loading board has fixed flange, fixed flange and plummer fixed connection, the spout has been seted up to the tip of propelling movement frame, the loading board is laminated in the inside of spout, two sets of spread grooves have been seted up to the up end symmetry of propelling movement frame, and are two sets of the inside of spread groove is rotated respectively and is installed two sets of adjustment framves, and is two sets of the adjustment frame is the slope setting, the lower terminal surface of footboard extends there is the connection frame, the tip of adjustment frame is rotated with the inboard of connection frame and is connected.
Compared with the prior art, the invention has the following beneficial effects:
1. through the footboard that sets up, can supply operating personnel to step on, so that operating personnel's health can visit this internal operation such as clamping to the work piece of carrying out of lathe, with this degree of convenience when improving the clamping work piece, and through directly rotating the threaded rod, can drive the screw thread section of thick bamboo and remove, and then drive and promote the frame and remove, spout on the promotion frame is laminated and is slided on the loading board this moment, remove with supplementary promotion frame, push up the adjustment frame of slope with utilizing to promote the frame, with the inclination that changes the adjustment frame, make the footboard reciprocate under the direction of the promotion of adjustment frame and guide cylinder and direction core, with the height of adjustment footboard, with satisfy and use needs.
2. Directly promote the footboard, the sliding sleeve of connection on the chassis slides on the guide bar this moment, in order to lead the footboard to the removal, make the footboard can be the straight line and remove about, in order to remove the footboard to required position and trample, with this further satisfy and use required, and trample the back, reset spring between plummer and the chassis can receive the action of gravity and shrink deformation, and then order about the footstock of guide post tip and move down, make the last fixed rack on the footstock and the lower fixed rack looks block on the base, in order to restrict the footboard, in order to guarantee trampling the steadiness of in-process.
3. Through the regulation mounting that sets up, can directly stimulate the pull ring, move to the outside in order to order about the fixing clip post, the direction lug slides in square groove this moment and leads, the deformation takes place for the fixing spring shrink, let the fixing clip post can break away from one of them set of fixed orifices on the mount, turn up the base upwards after that, the mount slides in fixed housing this moment, loosen the pull ring afterwards, the fixing spring who makes the shrink can resume deformation and reset in order to drive the fixing clip post, make the fixing clip post can get into in another set of fixed orifices on the mount, in order to fix the base of turning up, space area when not using with this reduction.
Drawings
FIG. 1 is a schematic structural diagram of a machining center of a numerically controlled lathe according to the present invention;
FIG. 2 is a schematic view of a fixed housing of a CNC machining center of the present invention;
FIG. 3 is a schematic view of a pedal of a CNC machining center according to the present invention;
FIG. 4 is a schematic view of a guide post of a CNC machining center of the present invention;
FIG. 5 is a schematic view of an adjusting rack of a machining center of a numerically controlled lathe according to the present invention;
FIG. 6 is a schematic view of a sliding sleeve of a machining center of a CNC lathe according to the present invention.
In the figure: 1. a base; 2. an L-shaped frame; 3. a sliding sleeve; 4. a pedal; 5. a fixed mount; 6. a stationary housing; 7. a guide bar; 8. a wheel carrier; 9. a load-bearing wheel; 10. connecting and fixing blocks; 11. a chassis; 12. cushion blocks; 13. a bearing table; 14. fixing the convex plate; 15. a carrier plate; 16. a pushing frame; 17. a threaded rod; 18. a threaded barrel; 19. a grip ring; 20. a chute; 21. an adjusting frame; 22. a connecting frame; 23. connecting grooves; 24. a guide post; 25. a return spring; 26. a top seat; 27. fixing a rack; 28. fixing a rack at the lower part; 29. a guide through hole; 30. a guide lug; 31. pushing the disc; 32. fixing the clamping column; 33. fixing the spring; 34. a guide sleeve; 35. pulling the ring; 36. a bearing frame body; 37. a square groove; 38. a lathe body; 39. a fixing hole; 40. a guide cylinder; 41. and a guide core.
Detailed Description
The following description is presented to disclose the invention so as to enable any person skilled in the art to practice the invention. The preferred embodiments described below are by way of example only, and other obvious variations will occur to those skilled in the art.
The numerical control lathe machining center shown in fig. 1-6 comprises a lathe body 38, wherein an L-shaped frame 2 is rotatably mounted on the lower portion of the front end face of the lathe body 38, a base 1 extends from the front end face of the L-shaped frame 2, an arc-shaped fixing member is mounted between the side face of the base 1 and the side face of the lathe body 38, an underframe 11 is slidably mounted on the upper end face of the base 1, and an adjusting fixing member is mounted on the upper end of the underframe 11.
Arc mounting is including extending the mount 5 in the side of base 1, the shape of mount 5 is circular-arcly, lathe body 38 side front edge department is inlayed and is had fixed casing 6, fixed casing 6 plays the effect of restricting mount 5, mount 5 laminates in the inside of fixed casing 6, the side of fixed casing 6 extends there is bearing frame body 36, bearing frame body 36's side laminating is run through elastic mounting and is had fixing clip post 32, bearing frame body 36 plays the effect of restricting fixing clip post 32, fixing clip post 32 laminates in proper order and runs through the side of fixed casing 6 and the side of mount 5, fixing clip post 32 plays the effect of fixing mount 5.
Two sets of fixed orificess 39 have been seted up to mount 5's side symmetry, fixed orificess 39 plays the effect of carrying out the restriction to fixing clip post 32, the edge of fixed orificess 39 is seted up and is the inclined plane, the inclined plane plays the effect that fixing clip post 32 got into of being convenient for, fixing clip post 32 laminates in the inside of one of them a set of fixed orificess 39, coaxial the inlaying of surface of fixing clip post 32 has push disc 31, push disc 31 plays the effect that is promoted by fixed spring 33, fixing clip post 32 and push disc 31 integrated into one piece, bearing frame body 36's side is run through and is inlayed and have uide bushing 34, uide bushing 34 plays the effect to fixing clip post 32 direction, fixing clip post 32 laminates in the inside of uide bushing 34, fixing clip post 32's tip is inlayed and is had pull ring 35, pull ring 35 plays the effect of being convenient for carrying out the pulling to fixing clip post 32.
The upper and lower terminal surface of push away driving disk 31 all extends there is direction lug 30, square groove 37 has all been seted up in the last lower terminal surface of bearing frame body 36, direction lug 30 laminates in the inside of square groove 37, cooperation between direction lug 30 and the square groove 37 plays the effect of leading to push away driving disk 31, the outside winding of fixing clip post 32 has fixed spring 33, fixed spring 33 is located between push away driving disk 31 and the uide bushing 34, fixed spring 33 plays the effect of fixing clip post 32, in order to restrict fixing clip post 32 in fixed orifices 39.
Two groups of guide bars 7 are symmetrically and fixedly installed at the front edge and the rear edge of the upper end face of the base 1, two groups of sliding sleeves 3 are respectively installed on the outer surfaces of the two groups of guide bars 7 in a laminating mode, a fixing block 10 is embedded at the upper end of each sliding sleeve 3, the sliding sleeves 3 and the guide bars 7 play a role in ensuring that the base frame 11 moves left and right in a straight line mode, the end portions of the fixing blocks 10 are fixedly connected with the base frame 11, the fixing block 10 plays a role in fixing the sliding sleeves 3 and the base frame 11 together, a wheel carrier 8 extends from the lower end face of each sliding sleeve 3, a bearing wheel 9 is arranged inside the wheel carrier 8, the wheel carrier 8 plays a role in limiting the bearing wheel 9, the bearing wheel 9 is attached to the edge of the upper end face of the base 1, and the bearing wheel 9 plays a supporting role so as to reduce the stress of the guide bars 7.
Adjust the mounting and run through the guide post 24 of elastic mounting at the up end corner of chassis 11 including the laminating, the lower extreme of guide post 24 is inlayed and is had footstock 26, guide post 24 plays the effect of leading to footstock 26, the lower terminal surface of footstock 26 extends and has fixed rack 27 on the multiunit, footstock 26 plays and carries out the effect of fixing to fixed rack 27 on the multiunit, the up end middle part of base 1 extends has multiunit fixed rack 28 down, it cooperatees with fixed rack 28 down to go up fixed rack 27, it plays the effect of fixing to chassis 11 with fixed rack 28 looks block down to go up fixed rack 27, inlay the upper end of guide post 24 has plummer 13, inlay the up end corner of plummer 13 has guide cylinder 40, guide cylinder 40's inside laminating is installed guide core 41, guide core 41's upper end fixed mounting has footboard 4, cooperation between guide core 41 and the guide cylinder 40 plays the effect of guaranteeing footboard 4 vertical reciprocating.
The upper end face of the chassis 11 is provided with a guide through hole 29 in a penetrating manner, the guide column 24 is attached to the inside of the guide through hole 29, the guide through hole 29 plays a role in limiting the guide column 24, the outer side of the guide column 24 is wound with a return spring 25, the return spring 25 is positioned between the upper end of the chassis 11 and the lower end of the bearing platform 13, the return spring 25 plays a role in driving the top seat 26 and the multiple groups of upper fixed racks 27 to reset, the return spring 25 between the bearing platform 13 and the chassis 11 can contract and deform under the action of gravity, so as to drive the top seat 26 at the end part of the guide column 24 to move downwards, so that the upper fixed racks 27 on the top seat 26 are clamped with the lower fixed racks 28 on the base 1 to limit the pedal 4, cushion blocks 12 extend from the front edge and the rear edge of the upper end of the chassis 11, the cushion blocks 12 play a role in supporting the downward-moving bearing platform 13, so as to protect the return spring 25, the up end mid-rotation of plummer 13 installs threaded rod 17, the outside of threaded rod 17 is screwed respectively and is had two sets of screw thread section of thick bamboo 18, threaded rod 17 plays the effect that drives screw thread section of thick bamboo 18 and removes, the surface mosaic of screw thread section of thick bamboo 18 has propelling movement frame 16, the tip fixed mounting of threaded rod 17 has control ring 19, control ring 19 and play and be convenient for carry out the pivoted effect to threaded rod 17, propelling movement frame 16 plays the effect that promotes adjustment frame 21, two sets of loading boards 15 are installed respectively to the front and back of the up end threaded rod 17 of plummer 13, the tip in propelling movement frame 16 is run through in the laminating of loading board 15, loading board 15 plays the effect of leading to propelling movement frame 16.
Fixed flange 14 is installed to the tip fixed mounting of loading board 15, fixed flange 14 plays the effect of fixing loading board 15, fixed flange 14 and plummer 13 fixed connection, spout 20 has been seted up to the tip of promotion frame 16, loading board 15 laminates in the inside of spout 20, spout 20 plays the effect of restricting loading board 15, two sets of spread grooves 23 have been seted up to the up end symmetry of promotion frame 16, spread groove 23 plays the effect of being connected with the one end of adjustment frame 21, two sets of spread grooves 23's inside is rotated respectively and is installed two sets of adjustment frames 21, two sets of adjustment frames 21 are the slope setting, the lower terminal surface of footboard 4 extends there is connection frame 22, the tip of adjustment frame 21 and the inboard rotation of connection frame 22 are connected, connection frame 22 plays the effect of being connected with the other end of adjustment frame 21, adjustment frame 21 plays the effect of propping up footboard 4.
When the lathe is used, the threaded rod 17 is directly rotated to drive the threaded cylinder 18 to move, so as to drive the pushing frame 16 to move, at the moment, the sliding groove 20 on the pushing frame 16 is attached to the bearing plate 15 to slide, so as to assist the pushing frame 16 to move, so as to utilize the pushing frame 16 to push the inclined adjusting frame 21 to change the inclination angle of the adjusting frame 21, so that the pedal 4 moves up and down under the pushing of the adjusting frame 21 and the guiding of the guide cylinder 40 and the guide core 41 to adjust the pedal 4 to the required height, then the pedal 4 is directly pushed, at the moment, the sliding sleeve 3 connected to the underframe 11 slides on the guide rod 7 to guide the moving pedal 4, so that the pedal 4 can move left and right in a straight line to move the pedal 4 to the required position, and then an operator can step on the pedal 4 to insert a body into the lathe body 38 to clamp a workpiece, when stepping on, the return spring 25 between the bearing platform 13 and the bottom frame 11 will contract and deform under the action of gravity, so as to drive the top seat 26 at the end of the guide post 24 to move downwards, so that the upper fixed rack 27 on the top seat 26 is engaged with the lower fixed rack 28 on the base 1, so as to limit the pedal 4, so that the pedal 4 will not move during stepping on, after use, the pull ring 35 can be directly pulled to drive the fixed clamp post 32 to move outwards, at this time, the guide lug 30 slides in the square groove 37 for guiding, the fixed spring 33 contracts to deform, so that the fixed clamp post 32 can be separated from one set of fixed holes 39 on the fixed frame 5, then the base 1 is turned upwards, at this time, the fixed frame 5 slides in the fixed shell 6, then the pull ring 35 is released, so that the contracted fixed spring 33 can recover and deform to drive the fixed clamp post 32 to reset, the fixing clamping columns 32 can enter into another group of fixing holes 39 on the fixing frame 5 to fix the turned-up base 1, thereby reducing the space occupation area when not in use.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are merely illustrative of the principles of the invention, but that various changes and modifications may be made without departing from the spirit and scope of the invention, which fall within the scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. A numerical control lathe machining center, includes lathe body (38), its characterized in that: the lathe is characterized in that an L-shaped frame (2) is rotatably mounted on the lower portion of the front end face of the lathe body (38), a base (1) extends from the front end face of the L-shaped frame (2), an arc-shaped fixing piece is mounted between the side face of the base (1) and the side face of the lathe body (38), an underframe (11) is slidably mounted on the upper end face of the base (1), and an adjusting fixing piece is mounted at the upper end of the underframe (11).
2. The numerically controlled lathe machining center according to claim 1, wherein: the arc-shaped fixing piece comprises a fixing frame (5) extending to the side face of the base (1), the fixing frame (5) is arc-shaped, a fixing shell (6) is inlaid at the front edge of the side face of the lathe body (38), the fixing frame (5) is attached to the inside of the fixing shell (6), a bearing frame body (36) is extended to the side face of the fixing shell (6), a fixing clamping column (32) is attached to the side face of the bearing frame body (36) in a penetrating mode and is installed in an elastic mode, and the fixing clamping column (32) is attached to the side face of the fixing shell (6) in a penetrating mode and the side face of the fixing frame (5) in sequence.
3. A numerically controlled lathe machining center according to claim 2, wherein: two sets of fixed orificess (39) have been seted up to the side symmetry of mount (5), open at the edge of fixed orificess (39) and establish to the inclined plane, fixing clip post (32) are laminated in the inside of one of them a set of fixed orificess (39), the coaxial inlaying of surface of fixing clip post (32) has propelling movement dish (31), fixing clip post (32) and propelling movement dish (31) integrated into one piece, the side of bearing frame body (36) runs through to inlay and has uide bushing (34), fixing clip post (32) are laminated in the inside of uide bushing (34), the tip of fixing clip post (32) is inlayed and is had pull ring (35).
4. A numerically controlled lathe machining center according to claim 3, wherein: the upper and lower terminal surface of push disk (31) all extends there is direction lug (30), the upper and lower terminal surface that bears framework (36) all runs through and has seted up square groove (37), direction lug (30) are laminated in the inside in square groove (37), the outside winding of fixing clip post (32) has fixed spring (33), fixed spring (33) are located between push disk (31) and uide bushing (34).
5. The numerically controlled lathe machining center according to claim 1, wherein: the utility model discloses a bearing device, including base (1), the front and back edge of the up end of base (1) symmetry fixed mounting have two sets of guide bars (7), and are two sets of the surface laminating of guide bar (7) is respectively installed two sets of sliding sleeve (3), the upper end of sliding sleeve (3) is inlayed and is had solid piece (10), the tip and chassis (11) fixed connection of solid piece (10) link, the lower terminal surface of sliding sleeve (3) extends there is wheel carrier (8), the inside of wheel carrier (8) is provided with bearing wheel (9), bearing wheel (9) are laminated in the up end edge of base (1).
6. A numerically controlled lathe machining center according to claim 1, wherein: adjust mounting including the laminating run through guide post (24) of elastic mounting at the up end corner of chassis (11), the lower extreme of guide post (24) is inlayed and is had footstock (26), the lower terminal surface of footstock (26) extends and has fixed rack (27) on the multiunit, the up end middle part of base (1) extends and has fixed rack (28) under the multiunit, it cooperatees with fixed rack (28) down to go up fixed rack (27), the upper end of guide post (24) is inlayed and is had plummer (13), the up end corner of plummer (13) is inlayed and is had guide cylinder (40), guide core (41) are installed in the inside laminating of guide cylinder (40), the upper end fixed mounting of guide core (41) has footboard (4).
7. The numerically controlled lathe machining center according to claim 6, wherein: a guide through hole (29) is formed in the upper end face of the bottom frame (11) in a penetrating mode, the guide column (24) is attached to the inner portion of the guide through hole (29), a return spring (25) is wound on the outer side of the guide post (24), the return spring (25) is positioned between the upper end of the bottom frame (11) and the lower end of the bearing platform (13), cushion blocks (12) extend from the front edge and the rear edge of the upper end of the bottom frame (11), a threaded rod (17) is rotatably installed in the middle of the upper end face of the bearing table (13), two groups of thread cylinders (18) are respectively screwed on the outer side of the threaded rod (17), a pushing frame (16) is embedded on the outer surface of the threaded cylinder (18), a holding ring (19) is fixedly installed at the end part of the threaded rod (17), two sets of loading boards (15) are installed respectively to the front and back of up end threaded rod (17) of plummer (13), loading board (15) laminating is run through in the tip of promoting frame (16).
8. The numerically controlled lathe machining center according to claim 7, wherein: the tip fixed mounting of loading board (15) has fixed flange (14), fixed flange (14) and plummer (13) fixed connection, spout (20) have been seted up to the tip of propelling movement frame (16), loading board (15) are laminated in the inside of spout (20), two sets of spread groove (23) have been seted up to the up end symmetry of propelling movement frame (16) two sets of the inside of spread groove (23) is rotated respectively and is installed two sets of adjustment frame (21), and is two sets of adjustment frame (21) are the slope setting, the lower terminal surface of footboard (4) extends there is connection frame (22), the tip of adjustment frame (21) is rotated with the inboard of connection frame (22) and is connected.
CN202210829011.5A 2022-07-14 2022-07-14 Numerical control lathe machining center Withdrawn CN114986204A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202210829011.5A CN114986204A (en) 2022-07-14 2022-07-14 Numerical control lathe machining center

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202210829011.5A CN114986204A (en) 2022-07-14 2022-07-14 Numerical control lathe machining center

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Publication Number Publication Date
CN114986204A true CN114986204A (en) 2022-09-02

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117628194A (en) * 2024-01-23 2024-03-01 河北凯盛流体设备制造有限公司 Mud valve with good sealing performance and capable of automatically cleaning

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117628194A (en) * 2024-01-23 2024-03-01 河北凯盛流体设备制造有限公司 Mud valve with good sealing performance and capable of automatically cleaning
CN117628194B (en) * 2024-01-23 2024-05-03 河北凯盛流体设备制造有限公司 Mud valve with good sealing performance and capable of automatically cleaning

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