CN215090858U - Numerical control machine tool for machining left bearing seat and right bearing seat - Google Patents

Numerical control machine tool for machining left bearing seat and right bearing seat Download PDF

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Publication number
CN215090858U
CN215090858U CN202120934935.2U CN202120934935U CN215090858U CN 215090858 U CN215090858 U CN 215090858U CN 202120934935 U CN202120934935 U CN 202120934935U CN 215090858 U CN215090858 U CN 215090858U
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fixed mounting
connecting rod
machine tool
control machine
fixed
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CN202120934935.2U
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王寿永
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Shandong Yongsheng Machinery Co ltd
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Shandong Yongsheng Machinery Co ltd
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Abstract

The utility model discloses a control bearing frame processing and use digit control machine tool, comprises a workbench, workstation lateral wall fixed mounting has transmission, fixed surface installs fixing device on the workstation, workstation horizontal both sides fixed mounting respectively has fixed plate and supporting shoe, fixed plate lateral wall fixedly connected with connecting plate, connecting plate lower extreme sliding connection has No. three spliced poles, No. three spliced pole lower extreme fixed mounting has drilling equipment. The utility model discloses, through setting up the fixed of realization bearing frame body that transmission and fixing device can be automatic, powerful thrust makes the position of the fixed bearing frame body that splint and No. two splint can be firmly, guarantees the precision of processing drilling, through setting up drilling equipment, can realize the drilling work to the bearing frame body, can freely height-adjusting and position, and it is very convenient to operate.

Description

Numerical control machine tool for machining left bearing seat and right bearing seat
Technical Field
The utility model relates to the technical field of machine tools, especially, relate to a control bearing frame processing and use digit control machine tool.
Background
The bearing is an important part in the modern mechanical equipment, the main function of the bearing is to support a mechanical rotating body, reduce the friction coefficient in the movement process and ensure the rotation precision of the mechanical rotating body, the bearing can be divided into two categories of a rolling bearing and a sliding bearing, wherein the rolling bearing is standardized and serialized, but compared with the sliding bearing, the radial dimension, vibration and noise of the rolling bearing are larger, the price is higher, and the bearing seat is a structure for placing a fixed bearing on the mechanical equipment and is usually processed by a numerical control machine.
In the bearing frame course of working, guarantee that the bearing frame does not take place the displacement, just can be accurate process, present digit control machine tool is still firm inadequately to the fixed of bearing frame, and the skew takes place for the position easily for the machining effect is not good.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the prior art, and providing a numerical control machine tool for processing left and right bearing blocks.
In order to achieve the above purpose, the utility model adopts the following technical scheme: the utility model provides a control bearing frame processing and use digit control machine tool, includes the workstation, workstation lateral wall fixed mounting has transmission, fixed surface installs fixing device on the workstation, workstation horizontal both sides fixed mounting respectively has fixed plate and supporting shoe, fixed plate lateral wall fixedly connected with connecting plate, connecting plate lower extreme sliding connection has No. three spliced poles, No. three spliced pole lower extreme fixed mounting has drilling equipment.
As a further description of the above technical solution:
the transmission device comprises a motor, a gear is fixedly mounted at the output end of the motor, a toothed plate is connected to the gear in a meshed mode, a connecting rod is fixedly mounted at the end part of the toothed plate, and a buffer assembly is fixedly mounted at one end, away from the toothed plate, of the connecting rod and at the same end, away from the connecting rod, of the toothed plate.
As a further description of the above technical solution:
the buffer assembly comprises a buffer box, a second spring is fixedly mounted on the inner side wall of the buffer box, a sliding plate is fixedly mounted at the end part of the second spring, and a movable column is fixedly mounted at one end, far away from the second spring, of the sliding plate.
As a further description of the above technical solution:
the fixed device comprises a base, a sliding groove is formed in the upper surface of the base, a second clamping plate is fixedly mounted at the upper end of the base, and a bearing seat body is placed at the upper end of the base.
As a further description of the above technical solution:
the movable assembly comprises a clamp plate, a T-shaped connecting rod is fixedly mounted at the bottom of the clamp plate, two wheel shafts are fixedly mounted at the lower end of the T-shaped connecting rod, movable wheels are movably sleeved on the outer surfaces of the wheel shafts, and the movable wheels are located inside the sliding grooves.
As a further description of the above technical solution:
drilling equipment includes the cylinder, cylinder output fixed mounting has a spliced pole, spliced pole lower extreme fixed mounting has No. two motors, No. two fixed covers of motor surface are equipped with the guard box, No. two motor output fixed mounting have No. two spliced poles, No. two spliced pole lower extreme fixedly connected with mount pad, mount pad bottom fixed mounting has the drill bit.
As a further description of the above technical solution:
the utility model discloses a clamp plate, including transmission, connecting rod, movable block, connecting rod, spring, fixed plate lateral wall fixed connection, No. two connecting rods of transmission upper end fixedly connected with, No. two connecting rod upper end fixed mounting has the movable block, No. one spring and a connecting rod of fixedly connected with are distinguished to the horizontal both ends of movable block, the one end and the fixed plate lateral wall fixed connection of movable block are kept away from to a spring, the one end and the splint lateral wall fixed connection of movable block are kept away from to a connecting rod, No. three connecting rods of movable block upper end fixedly connected with, the one end and the connecting plate lower extreme sliding connection of movable block are kept away from to No. three connecting rods.
The utility model discloses following beneficial effect has:
1. compared with the prior art, this control bearing frame is digit control machine tool for processing, through setting up the fixed of realization bearing frame body that transmission and fixing device can be automatic, powerful thrust makes the position of fixed bearing frame body that splint and No. two splint can be firmly, guarantees the precision of processing drilling.
2. Compared with the prior art, this control bearing frame is digit control machine tool for processing through setting up drilling equipment, can realize the drilling work to the bearing frame body, can freely height-adjusting and position, and it is very convenient that the operation is got up.
Drawings
Fig. 1 is a schematic view of the overall structure of a numerical control machine tool for machining left and right bearing blocks according to the present invention;
fig. 2 is a schematic view of a transmission device of a numerical control machine tool for processing left and right bearing seats according to the present invention;
fig. 3 is a schematic view of a fixing device of a numerical control machine tool for processing left and right bearing blocks according to the present invention;
fig. 4 is the utility model provides a control drilling equipment schematic diagram of bearing frame processing numerical control machine tool.
Illustration of the drawings:
1. a work table; 2. a transmission device; 3. a fixing device; 4. a drilling device; 5. a first connecting rod; 6. A support block; 7. a movable block; 8. a first spring; 9. a second connecting rod; 10. a bearing housing body; 11. A connecting plate; 12. a third connecting rod; 13. a third connecting column; 14. a fixing plate; 21. a first motor; 22. a gear; 23. a slide plate; 24. a buffer tank; 25. a toothed plate; 26. a fourth connecting rod; 27. a movable post; 28. a second spring; 31. a base; 32. a movable wheel; 33. a chute; 34. a first clamping plate; 35. A T-shaped connecting rod; 36. a wheel axle; 37. a second splint; 41. a cylinder; 42. a first connecting column; 43. a second connecting column; 44. a mounting seat; 45. a drill bit; 46. a second motor; 47. a protection box.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the utility model provides a pair of control bearing frame processing and use digit control machine tool: including workstation 1, 1 lateral wall fixed mounting of workstation has transmission 2, and fixed surface installs fixing device 3 on 1 workstation, and 1 horizontal both sides of workstation fixed mounting respectively have fixed plate 14 and supporting shoe 6, and fixed plate 14 lateral wall fixedly connected with connecting plate 11, 11 lower extremes of connecting plate sliding connection have No. three spliced poles 13, and No. three spliced poles 13 lower extreme fixed mounting has drilling equipment 4.
Transmission 2 includes a motor 21, and a motor 21 output end fixed mounting has gear 22, and gear 22 upper surface meshing is connected with pinion rack 25, and pinion rack 25 tip fixed mounting has connecting rod 26 No. four, and the equal fixed mounting in one end that pinion rack 25 was kept away from to connecting rod 26 one end and pinion rack 25 kept away from connecting rod 26 No. four has the buffering subassembly, and a motor 21 can drive gear 22 and rotate.
Buffer unit includes buffer box 24, and buffer box 24 inside wall fixed mounting has No. two springs 28, and No. two spring 28 tip fixed mounting has slide 23, and the one end fixed mounting that No. two springs 28 were kept away from to slide 23 has movable post 27, and No. two springs 28 play the cushioning effect.
Fixed device 3 includes base 31, and spout 33 has been seted up to base 31 upper surface, and base 31 upper end fixed mounting has No. two splint 37, and base 31 upper end has been placed bearing frame body 10 spout 33 lateral wall sliding connection and has the removal subassembly, and No. two splint 37 and splint 34 can be spacing to bearing frame body 10.
The movable assembly comprises a clamp plate 34, a T-shaped connecting rod 35 is fixedly mounted at the bottom of the clamp plate 34, two wheel shafts 36 are fixedly mounted at the lower ends of the T-shaped connecting rods 35, movable wheels 32 are movably sleeved on the outer surfaces of the wheel shafts 36, the movable wheels 32 are located inside sliding grooves 33, and the sliding grooves 33 enable the clamp plate 34 to slide on the upper surface of the base 31.
Drilling equipment 4 includes cylinder 41, and cylinder 41 output end fixed mounting has spliced pole 42, and No. two motor 46 of spliced pole 42 lower extreme fixed mounting, No. two motor 46 outer fixed surface cover are equipped with guard box 47, and No. two motor 46 output end fixed mounting has spliced pole 43 No. two, No. two spliced pole 43 lower extreme fixedly connected with mount pad 44, and mount pad 44 bottom fixed mounting has drill bit 45, and drill bit 45 plays the effect of punching.
Connecting rod 9 No. 2 upper end fixedly connected with of transmission, No. two connecting rod 9 upper end fixed mounting has movable block 7, 7 horizontal both ends of movable block difference fixedly connected with spring 8 and connecting rod 5 No. one, the one end and the 14 lateral wall fixed connection of fixed plate of movable block 7 are kept away from to spring 8, the one end and the 34 lateral wall fixed connection of splint of movable block 7 are kept away from to connecting rod 5 No. one, connecting rod 12 No. three of 7 upper end fixedly connected with of movable block, the one end and the 11 lower extreme sliding connection of connecting plate of movable block 7 are kept away from to connecting rod 12 No. three, connecting rod 5 plays the effect of connecting movable block 7 and splint 34 No. one.
The working principle is as follows: make the position of bearing frame body 10 keep unchangeable through setting up fixing device 3, when pressing from both sides tight bearing frame body 10, start a motor 21, drive gear 22 and rotate, because gear 22 is connected with the meshing of pinion rack 25, make pinion rack 25 to the direction horizontal migration who is close to supporting shoe 6, drive movable block 7 to the direction upward movement that is close to fixing device 3, make a connecting rod 5 drive splint 34 and slide on the spout 33 lateral wall to the direction that is close to No. two splint 37, until pressing from both sides tight bearing frame body 10, start cylinder 41 and can adjust the height of mount pad 44 and drill bit 45, make drill bit 45 high-speed rotation through starting No. two motor 46, carry out drilling operation to bearing frame body 10.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications and variations can be made in the embodiments or in part of the technical features of the embodiments without departing from the spirit and the scope of the invention.

Claims (7)

1. The utility model provides a control bearing frame processing and use digit control machine tool, includes workstation (1), its characterized in that: workstation (1) lateral wall fixed mounting has transmission (2), fixed surface installs fixing device (3) on workstation (1), workstation (1) horizontal both sides fixed mounting respectively has fixed plate (14) and supporting shoe (6), fixed plate (14) lateral wall fixed connection connecting plate (11), connecting plate (11) lower extreme sliding connection has No. three spliced poles (13), No. three spliced poles (13) lower extreme fixed mounting has drilling equipment (4).
2. The numerical control machine tool for machining the left bearing seat and the right bearing seat as claimed in claim 1, is characterized in that: transmission (2) include a motor (21), a motor (21) output end fixed mounting has gear (22), gear (22) upper surface meshing is connected with pinion rack (25), pinion rack (25) tip fixed mounting has No. four connecting rods (26), the equal fixed mounting in one end of keeping away from No. four connecting rods (26) of one end and pinion rack (25) of keeping away from No. four connecting rods (26) of pinion rack (25) has the buffering subassembly in No. four connecting rods (26).
3. The numerical control machine tool for machining the left and right bearing blocks as claimed in claim 2, wherein: buffer unit includes baffle-box (24), baffle-box (24) inside wall fixed mounting has No. two springs (28), No. two spring (28) tip fixed mounting has slide (23), the one end fixed mounting that No. two springs (28) were kept away from in slide (23) has movable post (27).
4. The numerical control machine tool for machining the left bearing seat and the right bearing seat as claimed in claim 1, is characterized in that: fixing device (3) include base (31), spout (33) have been seted up to base (31) upper surface, base (31) upper end fixed mounting has No. two splint (37), bearing frame body (10) have been placed to base (31) upper end spout (33) lateral wall sliding connection has the removal subassembly.
5. The numerical control machine tool for machining the left and right bearing blocks as claimed in claim 4, wherein: the movable assembly comprises a clamp plate (34), a T-shaped connecting rod (35) is fixedly mounted at the bottom of the clamp plate (34), two wheel shafts (36) are fixedly mounted at the lower ends of the T-shaped connecting rod (35), movable wheels (32) are movably sleeved on the outer surfaces of the wheel shafts (36), and the movable wheels (32) are located inside sliding grooves (33).
6. The numerical control machine tool for machining the left bearing seat and the right bearing seat as claimed in claim 1, is characterized in that: drilling equipment (4) include cylinder (41), cylinder (41) output end fixed mounting has spliced pole (42) No. one, spliced pole (42) lower extreme fixed mounting has motor (46) No. two, No. two motor (46) outer fixed surface covers are equipped with guard box (47), No. two motor (46) output end fixed mounting has spliced pole (43) No. two, No. two spliced pole (43) lower extreme fixedly connected with mount pad (44), mount pad (44) bottom fixed mounting has drill bit (45).
7. The numerical control machine tool for machining the left and right bearing blocks as claimed in claim 5, wherein: connecting rod (9) No. two of transmission (2) upper end fixedly connected with, connecting rod (9) upper end fixed mounting has movable block (7) No. two, spring (8) and connecting rod (5) of fixedly connected with respectively at the horizontal both ends of movable block (7), the one end and fixed plate (14) lateral wall fixed connection of movable block (7) are kept away from in spring (8), the one end and splint (34) lateral wall fixed connection of movable block (7) are kept away from in connecting rod (5), connecting rod (12) No. three of fixedly connected with in movable block (7) upper end, the one end and connecting plate (11) lower extreme sliding connection of movable block (7) are kept away from in connecting rod (12) No. three.
CN202120934935.2U 2021-05-04 2021-05-04 Numerical control machine tool for machining left bearing seat and right bearing seat Active CN215090858U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120934935.2U CN215090858U (en) 2021-05-04 2021-05-04 Numerical control machine tool for machining left bearing seat and right bearing seat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120934935.2U CN215090858U (en) 2021-05-04 2021-05-04 Numerical control machine tool for machining left bearing seat and right bearing seat

Publications (1)

Publication Number Publication Date
CN215090858U true CN215090858U (en) 2021-12-10

Family

ID=79289682

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120934935.2U Active CN215090858U (en) 2021-05-04 2021-05-04 Numerical control machine tool for machining left bearing seat and right bearing seat

Country Status (1)

Country Link
CN (1) CN215090858U (en)

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