CN201211610Y - Double column vertical lathe - Google Patents

Double column vertical lathe Download PDF

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Publication number
CN201211610Y
CN201211610Y CNU2008200397232U CN200820039723U CN201211610Y CN 201211610 Y CN201211610 Y CN 201211610Y CN U2008200397232 U CNU2008200397232 U CN U2008200397232U CN 200820039723 U CN200820039723 U CN 200820039723U CN 201211610 Y CN201211610 Y CN 201211610Y
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CN
China
Prior art keywords
oil
crossbeam
load
cylinder
column vertical
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CNU2008200397232U
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Chinese (zh)
Inventor
吴代柏
马文惠
朱熙福
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
WUHU HONGQI HEAVY-DUTY MACHINE TOOL CO LTD
Original Assignee
WUHU HONGQI HEAVY-DUTY MACHINE TOOL CO LTD
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Application filed by WUHU HONGQI HEAVY-DUTY MACHINE TOOL CO LTD filed Critical WUHU HONGQI HEAVY-DUTY MACHINE TOOL CO LTD
Priority to CNU2008200397232U priority Critical patent/CN201211610Y/en
Application granted granted Critical
Publication of CN201211610Y publication Critical patent/CN201211610Y/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a double-column vertical lathe comprising a rotary worktable, two upright columns, a cross beam reciprocating up and down along an upright column guide track, and an upright tool post reciprocating along a cross beam guide track, wherein the side of the upright columns is provided with a cross beam hydraulically balanced cylinder device comprising cross beam hydraulically balanced cylinders respectively arranged in the middle parts of the two upright columns, each cross beam hydraulically balanced cylinder comprises a balanced cylinder base fixed on the ground, a cylinder sleeve, and a piston inside the cylinder sleeve, and the upper end of the cylinder sleeve is fixedly connected with the cross beam through a fastener. By adopting the structure, the utility model reduces the load contrast in the process that the cross beam ascends and descends, thereby ensuring that the performance of the lathe is more stable, prolonging the service life of the lathe and reducing the maintenance cost; in addition, the processing cost is lowered, and the worktable has fine motion precision and larger load resistant power.

Description

Double column vertical lathes
Technical field
The utility model relates to lathe, relates in particular to a kind of double column vertical lathes.
Background technology
Double column vertical lathes can be at disk, cylinder class part in large-size machine, large-scale pump valve, communications and transportation, shipbuilding and the construction machinery industry, as big part such as motor casing, pump valve housing, wheel hub, carry out the processing that turning processing, upright knife rest degree of pulling such as plane, inside and outside circle cylinder, grooving carry out the turning of interior male cone (strobilus masculinus).The crossbeam that existing vertical lathe comprises left and right pillar, pump along the left and right pillar guide rail, along upright knife rest, table device and the control system of the reciprocal horizontal movement of beam guideway, because of the weight of crossbeam and upright knife rest bigger, crossbeam rise, in the decline process because weight factor, cause rising, descend the load down contrast big, having relatively high expectations of column screw mandrel, be affected the service life of lathe.
The utility model content
Technical problem to be solved in the utility model is: provide a kind of reduce crossbeam rise, the contrast of loading in the decline process, thereby prolong lathe service life, reduce the double column vertical lathes of maintenance cost.
Solve this technical problem, the technical solution of the utility model is: a kind of double column vertical lathes, comprise rotary table device, two root posts, the crossbeam that pumps along the column guide rail and along the reciprocating upright knife rest of beam guideway, the side of described column is provided with a crossbeam hydro-cushion cylinder assembly, this crossbeam hydro-cushion cylinder assembly comprises the crossbeam hydro-cushion cylinder that lays respectively at described two root posts middle part, described each crossbeam hydro-cushion cylinder comprises the compensating cylinder base that is fixed in ground, piston in cylinder sleeve and the cylinder sleeve, the upper end of cylinder sleeve and crossbeam are affixed by fixture.
Described rotary table device comprises the workbench rotating disk on table base and table base top, described table base upper surface is provided with a plurality of uniform in the form of a ring rail units that cooperate with the workbench rotating disk that have, each rail unit has the oil pocket in guide pass and the guide pass zone, the workbench rotating disk is provided with a constant current hydrostatic slideway system outward, and this constant current static pressure hydraulic system comprises the hydraulic pressure cycling mechanism and is passed into the oil spout mechanism of the oil pocket of each rail unit.
The oil pipe of each rail unit of feeding that described oil spout mechanism comprises multi-head pump, link to each other with multi-head pump, the oil duct that communicates with the oil pocket of each rail unit on the table base, described multi-head pump and table base are affixed.
Described hydraulic pressure cycling mechanism comprises the ring-type oil-recovery tank that has spill port on the pumping plant of workbench rotating disk side, the oil sump of containing oil and the table base, and the oil of the ring-type oil-recovery tank of table base flow back into oil sump during duty.
Described upright knife rest is provided with knife rest off-load micromatic setting, this knife rest off-load micromatic setting comprises fixed cover, load governor motion and the off-load idler wheel mechanism that is positioned at described crossbeam upper rail face top, described fixed cover has cavity, the upper saddle arm of the tool-slide of described fixed cover and upright knife rest is affixed, the off-load idler wheel mechanism is positioned at the fixed cover cavity, and the load governor motion is positioned at the top of off-load idler wheel mechanism.
But described off-load idler wheel mechanism comprises bearing, bearing locating snap ring and the bearing holder (housing, cover) at the movable sleeve of the upper and lower displacement that is positioned at the fixed cover cavity, the outstanding axle that passes movable sleeve, outstanding axle middle part, and described bearing holder (housing, cover) is fixed in the outer ring of bearing.
But described load governor motion comprises the step axle of adjustment screw, nut, disk spring and upper and lower displacement, adjustment screw contacts with the upper surface of step axle, the top of disk spring contacts with the lower surface of the big portion of diameter of step axle, and the bottom of disk spring contacts with the upper surface of movable sleeve.
Described two root post height are 7 meters, and two root post rail lengths are 5.6 meters, and beam guideway length is 9.4 meters, and the cylinder sleeve length of crossbeam hydro-cushion cylinder is 3.5 meters.
The utility model double column vertical lathes adopts such structure, reduced crossbeam rise, the contrast of loading in the decline process, thereby make machine tool capability more stable, prolong lathe service life, reduce maintenance cost; Reduced processing cost, workbench has good kinematic accuracy and bigger load resistant power.
Description of drawings
Below in conjunction with accompanying drawing a kind of double column vertical lathes of the utility model is done explanation in further detail:
Fig. 1 is the utility model double column vertical lathes profile schematic diagram;
Fig. 2 looks schematic diagram for the right side shown in Figure 1;
Fig. 3 analyses and observe enlarged diagram for column shown in Figure 1;
Fig. 4 is that Fig. 1, table base shown in Figure 2 are overlooked enlarged diagram;
Fig. 5 analyses and observe enlarged diagram for A-A shown in Figure 4;
Fig. 6 is that upright knife rest shown in Figure 1 cooperates schematic diagram with crossbeam;
Fig. 7 is the structure for amplifying schematic diagram of knife rest off-load micromatic setting shown in Figure 6;
In Fig. 1 to Fig. 7,1, table base; 2, pumping plant; 3, workbench rotating disk; 4, left column; 5, left feed box; 6, crossbeam hydro-cushion cylinder; 8, the upright knife rest in a left side; 9, right upright knife rest; 10, crossbeam; 11, right feed box; 12, right column; 13, multi-head pump; 14, oil pipe; 15, fixture; 16, cylinder sleeve; 17, piston; 18, compensating cylinder base; 19, foundation bolt; 20, guide pass; 21, oil pocket; 22, oil-recovery tank; 23, spill port; 24, rail unit; 25, oil duct; 26, oil connection; 27, tool-slide; 28, knife rest off-load micro-adjusting mechanism; 29, upper saddle arm; 30, crossbeam upper rail face; 31, lower slider arm; 32, crossbeam lower guideway face; 33, adjustment screw; 34, nut; 35, step axle; 36, disk spring; 37, bearing; 38, bearing locating snap ring; 39, bearing holder (housing, cover); 40, outstanding axle; 41, movable sleeve; 42, fixed cover.
The specific embodiment
As Fig. 1, Fig. 2, shown in Figure 3, a kind of double column vertical lathes, comprise left column 4, right column 12, crossbeam 10, the upright knife rest 8 in a left side, left side feed box 5, right upright knife rest 9, right feed box 11, rotary table device, crossbeam hydro-cushion cylinder assembly and control system, upright knife rest 8 in a left side and right upright knife rest 9 grams are made horizontal reciprocating movement along beam guideway, crossbeam 10 can pump along left column 4 guide rails and right column 12 guide rails, crossbeam hydro-cushion cylinder assembly comprises the crossbeam hydro-cushion cylinder 6 that lays respectively at left column 4 and right column 12 middle parts, each crossbeam hydro-cushion cylinder 6 comprises the compensating cylinder base 18 that is fixed in ground by foundation bolt 19, piston 17 in cylinder sleeve 16 and the cylinder sleeve 16, the upper end of cylinder sleeve 16 and crossbeam 10 are affixed by fixture 15.Left column 4 and right column 12 highly are 7 meters, and left column 4 guide rails and right column 12 rail lengths are 5.6 meters, and beam guideway length is 9.4 meters, and the cylinder sleeve length of crossbeam hydro-cushion cylinder is 3.5 meters.Because of crossbeam portion conducts oneself with dignity heavier, about 25 tons, when lathe is worked, the rotation of column screw mandrel drives in crossbeam rising, the decline process, and crossbeam hydro-cushion cylinder assembly along with crossbeam moves up and down together, plays the effect of counterpoise under predetermined pressure, solved the big technical problem of crossbeam rise and fall load contrast of prior art, can make machine tool capability more stable, lathe prolongs service life, has reduced maintenance cost.
As Fig. 1, Fig. 2, Fig. 4, shown in Figure 5, rotary table device comprises table base 1, workbench rotating disk 3 and constant current hydrostatic slideway system, constant current hydrostatic slideway system comprise the hydraulic pressure cycling mechanism and oil spout mechanism, table base 1 upper surface has the oil-recovery tank 22 of 12 uniform in the form of a ring rail units 24 and rail unit 24 inboards, have spill port 23 on the oil-recovery tank 22, each rail unit 24 has the oil pocket 21 in guide pass 20 and guide pass 20 zones, the bottom of oil pocket 21 has the oil duct 25 that communicates with oil pocket 21, oil pipe 14 is tightly connected by oil connection 26 and oil duct 25, the oil pipe 14 that is passed into each rail unit 24 is connected into multi-head pump 13, multi-head pump 13 links to each other with the pumping plant 2 of hydraulic pressure cycling mechanism by oil pipe 14 again, the hydraulic pressure cycling mechanism comprises the pumping plant 2 of workbench rotating disk 3 sides, the oil sump (not shown), the ring-type oil-recovery tank 22 that has spill port 23 on the table base, the oil of the ring-type oil-recovery tank 22 of table base 1 flow back into oil sump during duty.The oil pipe 14 of each rail unit 24 of feeding that oil spout mechanism comprises multi-head pump 13, link to each other with multi-head pump 13, the oil duct 25 that communicates with each rail unit 24 oil pocket 21 on the table base 1, multi-head pump 13 is affixed with table base 1.
On the base rail face, be evenly distributed with 12 oil pockets, by 12 multi-head pumps to the quantitative fuel feeding of each oil pocket, after feeding in the guide rail oil pocket has the lubricating oil of certain pressure intensity, workbench is lifted slightly, and between guide pass, be full of fluid formation oil film, make guide rail be in the neat liquid Frotteurism.When lathe starts and process the weight part, owing to directly do not contact all the time between workbench rotating disk and the base rail, and under the good fluid pressure of adjusted, evenly float, have good kinematic accuracy and bigger load resistant power so can guarantee workbench, prolonged the service life of base rail.
As Fig. 1, Fig. 2, Fig. 6, shown in Figure 7, the crossbeam 10 of vertical lathe has crossbeam upper rail face 30 and crossbeam lower guideway face 32, the tool-slide 27 of upright knife rest 8 in a left side and right upright knife rest 9 has upper saddle arm 29 and lower slider arm 31, the lower slider arm 31 of tool-slide 27 contacts with crossbeam lower guideway face 32, upper saddle arm 29 places of tool-slide 27 are equipped with knife rest off-load micro-adjusting mechanism 28, and knife rest off-load micro-adjusting mechanism 28 contacts with crossbeam upper rail face 30.
Knife rest off-load micro-adjusting mechanism 28 comprises fixed cover 42, load governor motion and off-load idler wheel mechanism, fixed cover 42 is affixed by the upper saddle arm 29 of bolt and tool-slide 27, fixed cover 42 has cavity, but the off-load idler wheel mechanism comprises bearing 37, bearing locating snap ring 38 and the bearing holder (housing, cover) 39 of the load at the movable sleeve 41 of the upper and lower displacement that is positioned at the fixed cover cavity, the outstanding axle 40 that passes movable sleeve 41, outstanding axle 40 middle parts, and described bearing holder (housing, cover) 39 is fixed in the outer ring of bearing 12.
But the load governor motion comprises the step axle 35 of adjustment screw 33, nut 34, disk spring 36 and upper and lower displacement, adjustment screw 33 contacts with the upper surface of step axle 35, the top of disk spring 36 contacts with the lower surface of the big portion of diameter of step axle 35, and the bottom of disk spring 36 contacts with the upper surface of movable sleeve 41.
Knife rest off-load micromatic setting is positioned at crossbeam upper rail face top, the bearing holder (housing, cover) of off-load idler wheel mechanism contacts with crossbeam upper rail face, the adjustment screw of carrying its upper end just can be adjusted the bearing capacity of off-load idler wheel mechanism, when upright knife rest moved horizontally, knife rest off-load micromatic setting can be regulated automatically, and therefore the requirement on machining accuracy to crossbeam upper rail face reduces, reduced the fine finishining workload, reduce processing cost, can alleviate the power that upright knife rest level moves back and forth that drives, the service life of the upright knife rest of prolongation.

Claims (8)

1, a kind of double column vertical lathes, comprise rotary table device, two root posts, the crossbeam (10) that pumps along the column guide rail and along the reciprocating upright knife rest of beam guideway, it is characterized in that: the side of described column is provided with a crossbeam hydro-cushion cylinder assembly, this crossbeam hydro-cushion cylinder assembly comprises the crossbeam hydro-cushion cylinder (6) that lays respectively at described two root posts middle part, described each crossbeam hydro-cushion cylinder (6) comprises the compensating cylinder base (18) that is fixed in ground, piston (17) in cylinder sleeve (16) and the cylinder sleeve (16), the upper end of cylinder sleeve (16) and crossbeam (10) are affixed by fixture (15).
2, double column vertical lathes according to claim 1, it is characterized in that: described rotary table device comprises the workbench rotating disk (3) on table base (1) and table base (1) top, described table base (1) upper surface is provided with a plurality of uniform in the form of a ring rail units (24) that cooperate with workbench rotating disk (3) that have, each rail unit (24) has the oil pocket (21) in guide pass (20) and guide pass (20) zone, the outer constant current hydrostatic slideway system that is provided with of workbench rotating disk (3), this constant current static pressure hydraulic system comprises the hydraulic pressure cycling mechanism and is passed into the oil spout mechanism of the oil pocket (21) of each rail unit (24).
3, double column vertical lathes according to claim 2, it is characterized in that: the oil pipe (14) of each rail unit of feeding (24) that described oil spout mechanism comprises multi-head pump (13), link to each other with multi-head pump (13), the oil duct (25) that communicates with the oil pocket (21) of each rail unit (24) on the table base (1), described multi-head pump (13) is affixed with table base (1).
4, double column vertical lathes according to claim 2, it is characterized in that: described hydraulic pressure cycling mechanism comprises the ring-type oil-recovery tank (22) that has spill port (23) on the pumping plant (2) of workbench rotating disk (3) side, the oil sump of containing oil and the table base (1), and the oil of the ring-type oil-recovery tank (22) of table base during duty (1) flow back into oil sump.
5, double column vertical lathes according to claim 1, it is characterized in that: described upright knife rest is provided with knife rest off-load micromatic setting, this knife rest off-load micromatic setting comprises fixed cover (42), load governor motion and the off-load idler wheel mechanism that is positioned at described crossbeam (10) upper rail face top, described fixed cover (42) has cavity, described fixed cover (42) is affixed with the upper saddle arm (29) of the tool-slide (27) of upright knife rest, the off-load idler wheel mechanism is positioned at the fixed cover cavity, and the load governor motion is positioned at the top of off-load idler wheel mechanism.
6, double column vertical lathes according to claim 5, it is characterized in that: but described off-load idler wheel mechanism comprises bearing (37), bearing locating snap ring (38) and the bearing holder (housing, cover) (39) at the movable sleeve (41) of the upper and lower displacement that is positioned at the fixed cover cavity, the outstanding axle (40) that passes movable sleeve (41), outstanding axle (40) middle part, and described bearing holder (housing, cover) (39) is fixed in the outer ring of bearing (37).
7, double column vertical lathes according to claim 6, it is characterized in that: described load governor motion comprise adjustment screw (33), nut (34), disk spring (36) but and the step axle (35) of upper and lower displacement, adjustment screw (33) contacts with the upper surface of step axle (35), the top of disk spring (36) contacts with the lower surface of the big portion of diameter of step axle (35), and the bottom of disk spring (36) contacts with the upper surface of movable sleeve (41).
8, according to arbitrary described double column vertical lathes in the claim 1 to 7, it is characterized in that: described two root post height are 7 meters, and two root post rail lengths are 5.6 meters, and beam guideway length is 9.4 meters, and the cylinder sleeve length of crossbeam hydro-cushion cylinder is 3.5 meters.
CNU2008200397232U 2008-06-24 2008-06-24 Double column vertical lathe Expired - Fee Related CN201211610Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2008200397232U CN201211610Y (en) 2008-06-24 2008-06-24 Double column vertical lathe

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Application Number Priority Date Filing Date Title
CNU2008200397232U CN201211610Y (en) 2008-06-24 2008-06-24 Double column vertical lathe

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CNU2008200397232U Expired - Fee Related CN201211610Y (en) 2008-06-24 2008-06-24 Double column vertical lathe

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101367168B (en) * 2008-06-24 2010-06-02 芜湖红旗重型机床有限公司 Double column vertical lathe
CN102717307A (en) * 2012-06-14 2012-10-10 青岛青机重型数控机床有限公司 Numerical control double-column vertical turning and milling lathe
CN103008351A (en) * 2012-12-31 2013-04-03 太原重工股份有限公司 Ejector rod pushing equipment for perforating machine
CN110576195A (en) * 2019-09-18 2019-12-17 江苏美控机床有限公司 Numerical control double-end vertical lathe

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101367168B (en) * 2008-06-24 2010-06-02 芜湖红旗重型机床有限公司 Double column vertical lathe
CN102717307A (en) * 2012-06-14 2012-10-10 青岛青机重型数控机床有限公司 Numerical control double-column vertical turning and milling lathe
CN103008351A (en) * 2012-12-31 2013-04-03 太原重工股份有限公司 Ejector rod pushing equipment for perforating machine
CN103008351B (en) * 2012-12-31 2015-06-24 太原重工股份有限公司 Ejector rod pushing equipment for perforating machine
CN110576195A (en) * 2019-09-18 2019-12-17 江苏美控机床有限公司 Numerical control double-end vertical lathe
CN110576195B (en) * 2019-09-18 2020-10-23 江苏美控机床有限公司 Numerical control double-end vertical lathe

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20090325

Termination date: 20120624