CN204700612U - Numerical control gantry machining center drives assembly - Google Patents

Numerical control gantry machining center drives assembly Download PDF

Info

Publication number
CN204700612U
CN204700612U CN201520257591.0U CN201520257591U CN204700612U CN 204700612 U CN204700612 U CN 204700612U CN 201520257591 U CN201520257591 U CN 201520257591U CN 204700612 U CN204700612 U CN 204700612U
Authority
CN
China
Prior art keywords
axis
axis slide
brace table
screw mandrel
machining center
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
CN201520257591.0U
Other languages
Chinese (zh)
Inventor
杨勇
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.)
CHONGQING MASITER PRECISION MACHINERY Co Ltd
Original Assignee
CHONGQING MASITER PRECISION MACHINERY Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by CHONGQING MASITER PRECISION MACHINERY Co Ltd filed Critical CHONGQING MASITER PRECISION MACHINERY Co Ltd
Priority to CN201520257591.0U priority Critical patent/CN204700612U/en
Application granted granted Critical
Publication of CN204700612U publication Critical patent/CN204700612U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Machine Tool Units (AREA)

Abstract

The utility model discloses a kind of numerical control gantry machining center and drive assembly, the tail end of brace table (1a) is provided with secondary water tank (1c); The X-axis nut seat (5) that workbench (4) bottom is fixing and X-axis screw mandrel (6) threaded engagement, the rear end of X-axis screw mandrel (6) is connected with X-axis motor by the first shaft coupling; At the front end face of main spindle box (15), spindle motor (19) is installed, the output shaft of spindle motor (19) is connected with the input of gear-box (20), the output shaft of gear-box (20) is set with driving wheel (21), this driving wheel (21) is connected with the driven pulley on main shaft (23) by belt (22).Each axially-movable of the utility model is realized by high pulling torque motor and feed screw nut pair, can realize the processing of complex profile, and can according to different processing needs, can high-speed cutting, also can cut by low-speed big; Secondary water tank is integrated on base, fundamentally solves the Leakage that leaks.

Description

Numerical control gantry machining center drives assembly
Technical field
The utility model belongs to machine tool technology field, specifically, and particularly a kind of driving assembly of numerical control gantry machining center.
Background technology
The high-efficiency automatic lathe being applicable to processed complex part that numerical control machining center is made up of plant equipment and digital control system.Numerical control machining center is current one of the highest, most widely used Digit Control Machine Tool of output in the world.Its comprehensive process ability is stronger, more processing content can be completed after workpiece clamped one time, machining accuracy is higher, with regard to the batch workpiece of medium difficulty of processing, its efficiency is 5 ~ 10 times of conventional equipment, particularly it can complete the processing that many conventional equipments can not complete, more complicated to shape, the single-piece work that required precision is high or small batch multi-item production more applicable.
Crossbeam fixed gantry machining center is the Digit Control Machine Tool of current extensive use.But existing numerical control gantry machining center is bulky, area occupied is large, and structural rigidity is poor, and overall precision is unstable; Meanwhile, vibrate comparatively large in the course of the work, larger noise can be produced, and temperature rise is fast, less reliable.The main shaft of gantry machining center adopts spindle motor Direct driver, can only carry out high-speed cutting, be difficult to meet different processing needs.
Base is the chassis of crossbeam fixed gantry machining center, is positioned at bottommost, for supporting the weight of whole equipment and being convenient to other parts layout.Existing numerical control gantry machining center is generally equipped with secondary water tank on the side of base, for splendid attire cooling fluid, and plays precipitation, filtration cooling fluid.But secondary water tank needs to make guard shield supporting mechanism in addition, adds cost on the one hand, is unfavorable for assembling; On the other hand, the volume of base increases, and transports very inconvenient, can affect the globality of whole machining center.
Utility model content
Technical problem to be solved in the utility model is to provide a kind of compact conformation, can meets the numerical control gantry machining center driving assembly of different processing needs.
The technical solution of the utility model is as follows: a kind of numerical control gantry machining center drives assembly, the brace table (1a) of rectangle is formed with at the top of base (1), the left and right sides of this brace table (1a) postmedian is symmetrical arranged bearing (1b), the upper vertical columns (2) of each bearing (1b), top common support crossbeam (3) of the right and left column (2), its key is: the tail end of described brace table (1a) is provided with secondary water tank (1c), described secondary water tank (1c) and brace table (1a) are by being cast into one, water inlet and the delivery port of secondary water tank (1c) are opened on the breech face of brace table (1a),
In the top of described brace table (1a), workbench (4) is set, this workbench (4) is positioned between two columns (2), the X-axis nut seat (5) that workbench (4) bottom is fixing and X-axis screw mandrel (6) threaded engagement, the rear end of described X-axis screw mandrel (6) is connected with X-axis motor by the first shaft coupling, X-axis motor is arranged on the rear end of brace table (1a), and is positioned at X-axis guard shield (7); Be symmetrical arranged X-axis slide rail (8) in the left and right sides of described X-axis screw mandrel (6), workbench (4) is slidably matched with X-axis slide rail (8) by the X-axis slide block (9) of bottom;
At the front end face of described crossbeam (3), upper and lower two Y-axis slide rails (10) are housed, Y-axis slide (11) is slidably matched by Y-axis slide block and this two Y-axis slide rails (10), Y-axis nut seat is fixed at the back side of Y-axis slide (11), this Y-axis nut seat and Y-axis screw mandrel (12) threaded engagement, described Y-axis screw mandrel (12) is positioned between two Y-axis slide rails (10), and one end of this Y-axis screw mandrel (12) is connected with y-axis motor (13) by the second shaft coupling;
At the front end face of described Y-axis slide (11), about two parallel Z axis slide rails (14) are set, main spindle box (15) is positioned between these two Z axis slide rails (14), and be slidably matched with these two Z axis slide rails (14) by the Z axis slide block (16) of side, Z axis nut seat is fixed at the back side of main spindle box (15), this Z axis nut seat coordinates with Z axis wire rod thread, described Z axis screw mandrel is positioned between two Z axis slide rails (14), and the upper end of this Z axis screw mandrel is connected with Z axis motor (17) by the 3rd shaft coupling;
At the front end face of described main spindle box (15), spindle motor (19) is installed, the output shaft of this spindle motor (19) straight down, and be connected with the input of gear-box (20), the output shaft of gear-box (20) is set with driving wheel (21), this driving wheel (21) is connected with the driven pulley on main shaft (23) by belt (22), and described main shaft (23) is perpendicular to brace table (1a).
Adopt above technical scheme, X-axis motor rotation, drive X-axis screw mandrel original place to rotate, workbench is moved at fore-and-aft direction, to realize the X-axis displacement of institute's clamping workpiece on workbench; Y-axis motor operates, and drives Y-axis screw mandrel original place to rotate, Y-axis slide and main spindle box is moved at left and right directions, to realize the Y-axis displacement of cutter; Z axis motor rotation, drives Z axis screw mandrel original place to rotate, main spindle box is moved at above-below direction, to realize the Z axis displacement of cutter.Multi-shaft interlocked above, can machining large framework and complex profile, can bore, milling, boring, diverse in function, the scope of application is widely.High pulling torque motor all selected by X-axis motor, y-axis motor and Z axis motor, respective outfit adjutant feed screw nut rotary motion converts rectilinear motion to, and adopt line slideway to lead, like this without the need to being equipped with reduction box, in simplification structure, while reducing costs, can effectively reduce the volume of whole machining center on the one hand, structural rigidity is good; On the other hand, the high and stable accuracy of precision, vibrate little in the course of the work, noise is low, and temperature rise is comparatively slow, and reliability is secure.
The utility model casts secondary water tank in base tail end integral type, avoids and makes guard shield supporting mechanism and secondary water tank in addition, simplifies the structure on the one hand, eliminates assembly process, greatly reduce production cost; On the other hand, fundamentally solve secondary water tank because assembling the leakage of oil of leaking caused not in place, and convenient transportation, enhance the globality of machining center.The intake-outlet of secondary water tank is arranged on the breech face of base top brace table, is conducive to pipeline and connects and arrange.
When spindle motor running, the input of its output shaft driven gear case connects, and the moment of torsion of transmission is after gear-box speed change, and drive driving wheel to rotate by the output shaft of gear-box, driving wheel is rotated together by belt drive driven pulley and main shaft again.Main shaft is driven by gear-box and pulley mechanism, improves Tool in Cutting moment of torsion, can high-speed cutting, also can cut by low-speed big, can meet different processing needs.
Conveniently lift, the symmetrical mounting hanger (18) in the two ends, left and right at described crossbeam (3) top.
More smooth and easy in order to make main spindle box move up and down, it is right that described Z axis slide block (16) has upper, middle and lower three, and often pair of Z axis slide block (16) is divided into symmetrical two.
Described bearing (1b) is square frame body, the end face of bearing (1b) and the either flush of brace table (1a), and bearing (1b) and brace table (1a) are cast into one.Above structural bearings moulding is simple, is easy to processing and fabricating, and on bearing, install column convenient, can guarantee the steadiness of support post.
The horizontal stripe (24) that two, front and back are parallel to each other is provided with in the centre position of described brace table (1a) end face middle front part, the top of these two horizontal stripes (24) is provided with two longitudinal blocks (25) in left and right, described longitudinal block (25) is perpendicular with horizontal stripe (24), the rear and front end of longitudinal block (25) supports fixing by the horizontal stripe (24) of correspondence, and longitudinal block (25) has multiple screw from front to back.Above structure horizontal stripe and longitudinal block composition bearing block supporter, for supporting the bearing block of fixing X-axis screw mandrel, while facilitating bearing block to assemble, can make bearing block install firm.
Beneficial effect: each axially-movable of the utility model is realized by high pulling torque motor and feed screw nut pair, the processing of complex profile can be realized, and can according to different processing needs, can high-speed cutting, also can cut by low-speed big, the range of work is extensive, and have structure simple, compact, volume is little, precision is high, vibrate little, the features such as noise is low, good reliability; Secondary water tank is integrated on base, avoids and makes guard shield supporting mechanism and secondary water tank in addition, while reduction production cost, fundamentally solves secondary water tank because assembling the leakage of oil of leaking caused not in place.
Accompanying drawing explanation
Fig. 1 is side view of the present utility model.
Fig. 2 is the right view of Fig. 1.
Fig. 3 is the top view of Fig. 2.
Fig. 4 is the top view of base.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model is described in further detail:
As shown in Figure 1, Figure 2, Figure 3, Figure 4, the brace table 1a of rectangle is formed with at the top of base 1, the tail end of this brace table 1a is provided with secondary water tank 1c, secondary water tank 1c and brace table 1a is by being cast into one, water inlet and the delivery port of secondary water tank 1c are opened on the breech face of brace table 1a, and the water inlet of secondary water tank 1c and delivery port are positioned at sustained height.Be symmetrical arranged bearing 1b in the left and right sides of brace table 1a postmedian, this bearing 1b is square frame body, for supporting vertical columns.The end face of bearing 1b and the either flush of brace table 1a, and bearing 1b and brace table 1a is cast into one.Be provided with the horizontal stripe 24 that two, front and back are parallel to each other in the centre position of brace table 1a end face middle front part, horizontal stripe 24 and brace table 1a are structure as a whole.Two longitudinal blocks 25 in left and right are provided with above two horizontal stripes 24, longitudinal block 25 is perpendicular with horizontal stripe 24, the rear and front end of longitudinal block 25 supports fixing by the horizontal stripe 24 of correspondence, and longitudinal block 25 has multiple screw from front to back, the number of screw is determined according to actual needs, the present embodiment is preferably three, and the screw on the longitudinal block 25 of two, left and right is symmetrical.
As shown in Figure 1, Figure 2, Figure 3 shows, vertical columns 2 on each bearing 1b, the top common support crossbeam 3 of the right and left column 2.Above brace table 1a, arrange workbench 4, workbench 4 is for positioning workpiece to be processed.Workbench 4 between two columns 2, X-axis nut seat 5 fixing bottom workbench 4 and X-axis screw mandrel 6 threaded engagement.X-axis screw mandrel 6 extends along the longitudinal direction, the two ends of this X-axis screw mandrel 6 by bearing and bearing block support on brace table 1a.The rear end of X-axis screw mandrel 6 is connected with the output shaft of X-axis motor by the first shaft coupling, and X-axis motor is arranged on the rear end of brace table 1a, and is positioned at X-axis guard shield 7, and X-axis guard shield 7 is fixed on brace table 1a.Be symmetrical arranged X-axis slide rail 8 in the left and right sides of X-axis screw mandrel 6, X-axis slide rail 8 parallels with X-axis screw mandrel 6, and two X-axis slide rails 8 are equal to the distance of X-axis screw mandrel 6, and workbench 4 is slidably matched with two X-axis slide rails 8 respectively by two groups of X-axis slide blocks 9 of bottom.When X-axis motor rotation time, the output shaft of X-axis motor drives X-axis screw mandrel 6 original place to rotate, and under the guide effect of X-axis slide rail 8, workbench 4 moves at fore-and-aft direction.
As shown in Figure 1, Figure 2, Figure 3 shows, at the symmetrical mounting hanger 18 in the two ends, left and right at crossbeam 3 top, to facilitate lifting.At the front end face of crossbeam 3, upper and lower two Y-axis slide rails 10 be parallel to each other are housed, Y-axis slide rail 10 extends in left-right direction.Y-axis slide 11 is slidably matched with these two Y-axis slide rails 10 respectively by two groups of Y-axis slide blocks.Y-axis nut seat is fixed, this Y-axis nut seat and Y-axis screw mandrel 12 threaded engagement at the back side of Y-axis slide 11.Y-axis screw mandrel 12 is between two Y-axis slide rails 10, and Y-axis screw mandrel 12 is parallel to Y-axis slide rail 10, and the distance of Y-axis screw mandrel 12 to two Y-axis slide rails 10 is equal.Y-axis screw mandrel 12 is by two groups of bearings and bearing block rotatably support on crossbeam 3, and one end of Y-axis screw mandrel 12 is connected with the output shaft of y-axis motor 13 by the second shaft coupling.When y-axis motor 13 operates time, the output shaft of y-axis motor 13 drives Y-axis screw mandrel 12 original place to rotate, and under the guide effect of Y-axis slide rail 10, Y-axis slide 11 moves at left and right directions.
As shown in Figure 1, Figure 2, Figure 3 shows, arrange about two parallel Z axis slide rails 14 at the front end face of Y-axis slide 11, Z axis slide rail 14 extends along the vertical direction.Main spindle box 15 between these two Z axis slide rails 14, and is slidably matched with these two Z axis slide rails 14 by the Z axis slide block 16 of side.As preferably, in the present embodiment, to have upper, middle and lower three right for Z axis slide block 16, and often pair of Z axis slide block 16 is divided into symmetrical two.Fix Z axis nut seat at the back side of main spindle box 15, this Z axis nut seat coordinates with Z axis wire rod thread.Z axis screw mandrel is between two Z axis slide rails 14, and this Z axis screw mandrel parallels with Z axis slide rail 14, and Z axis screw mandrel is equal to the distance of two Z axis slide rails 14.Z axis screw mandrel rotatably support is on Y-axis slide 11, and the upper end of Z axis screw mandrel is connected with the output shaft of Z axis motor 17 by the 3rd shaft coupling.When Z axis motor 17 operates time, the output shaft of Z axis motor 17 drives Z axis screw mandrel original place to rotate, and under the guide effect of Z axis slide rail 14, main spindle box 15 moves at above-below direction.
As shown in Figure 1, Figure 2, Figure 3 shows, install spindle motor 19 at the front end face of main spindle box 15, the output shaft of this spindle motor 19 straight down, and is connected with the input of gear-box 20, and the casing of gear-box 20 is fixed on the front end face of main spindle box 15 by gear box support.The output shaft of gear-box 20 is passed down through gear box support, and driving wheel 21 is set with on the output shaft of gear-box 20, this driving wheel 21 is connected with the driven pulley on main shaft 23 by belt 22, and main shaft 23 is perpendicular to brace table 1a, and this main shaft 23 is supported by bearing and main spindle box 15 phase.

Claims (5)

1. a numerical control gantry machining center drives assembly, the brace table (1a) of rectangle is formed with at the top of base (1), the left and right sides of this brace table (1a) postmedian is symmetrical arranged bearing (1b), the upper vertical columns (2) of each bearing (1b), top common support crossbeam (3) of the right and left column (2), it is characterized in that: the tail end of described brace table (1a) is provided with secondary water tank (1c), described secondary water tank (1c) and brace table (1a) are by being cast into one, water inlet and the delivery port of secondary water tank (1c) are opened on the breech face of brace table (1a),
In the top of described brace table (1a), workbench (4) is set, this workbench (4) is positioned between two columns (2), the X-axis nut seat (5) that workbench (4) bottom is fixing and X-axis screw mandrel (6) threaded engagement, the rear end of described X-axis screw mandrel (6) is connected with X-axis motor by the first shaft coupling, X-axis motor is arranged on the rear end of brace table (1a), and is positioned at X-axis guard shield (7); Be symmetrical arranged X-axis slide rail (8) in the left and right sides of described X-axis screw mandrel (6), workbench (4) is slidably matched with X-axis slide rail (8) by the X-axis slide block (9) of bottom;
At the front end face of described crossbeam (3), upper and lower two Y-axis slide rails (10) are housed, Y-axis slide (11) is slidably matched by Y-axis slide block and this two Y-axis slide rails (10), Y-axis nut seat is fixed at the back side of Y-axis slide (11), this Y-axis nut seat and Y-axis screw mandrel (12) threaded engagement, described Y-axis screw mandrel (12) is positioned between two Y-axis slide rails (10), and one end of this Y-axis screw mandrel (12) is connected with y-axis motor (13) by the second shaft coupling;
At the front end face of described Y-axis slide (11), about two parallel Z axis slide rails (14) are set, main spindle box (15) is positioned between these two Z axis slide rails (14), and be slidably matched with these two Z axis slide rails (14) by the Z axis slide block (16) of side, Z axis nut seat is fixed at the back side of main spindle box (15), this Z axis nut seat coordinates with Z axis wire rod thread, described Z axis screw mandrel is positioned between two Z axis slide rails (14), and the upper end of this Z axis screw mandrel is connected with Z axis motor (17) by the 3rd shaft coupling;
At the front end face of described main spindle box (15), spindle motor (19) is installed, the output shaft of this spindle motor (19) straight down, and be connected with the input of gear-box (20), the output shaft of gear-box (20) is set with driving wheel (21), this driving wheel (21) is connected with the driven pulley on main shaft (23) by belt (22), and described main shaft (23) is perpendicular to brace table (1a).
2. numerical control gantry machining center according to claim 1 drives assembly, it is characterized in that: the symmetrical mounting hanger (18) in the two ends, left and right at described crossbeam (3) top.
3. numerical control gantry machining center according to claim 1 and 2 drives assembly, and it is characterized in that: it is right that described Z axis slide block (16) has upper, middle and lower three, often pair of Z axis slide block (16) is divided into symmetrical two.
4. numerical control gantry machining center according to claim 1 drives assembly, it is characterized in that: described bearing (1b) is square frame body, the end face of bearing (1b) and the either flush of brace table (1a), and bearing (1b) and brace table (1a) are cast into one.
5. numerical control gantry machining center according to claim 1 drives assembly, it is characterized in that: be provided with the horizontal stripe (24) that two, front and back are parallel to each other in the centre position of described brace table (1a) end face middle front part, the top of these two horizontal stripes (24) is provided with two longitudinal blocks (25) in left and right, described longitudinal block (25) is perpendicular with horizontal stripe (24), the rear and front end of longitudinal block (25) supports fixing by the horizontal stripe (24) of correspondence, and longitudinal block (25) has multiple screw from front to back.
CN201520257591.0U 2015-04-24 2015-04-24 Numerical control gantry machining center drives assembly Expired - Fee Related CN204700612U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520257591.0U CN204700612U (en) 2015-04-24 2015-04-24 Numerical control gantry machining center drives assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520257591.0U CN204700612U (en) 2015-04-24 2015-04-24 Numerical control gantry machining center drives assembly

Publications (1)

Publication Number Publication Date
CN204700612U true CN204700612U (en) 2015-10-14

Family

ID=54280249

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520257591.0U Expired - Fee Related CN204700612U (en) 2015-04-24 2015-04-24 Numerical control gantry machining center drives assembly

Country Status (1)

Country Link
CN (1) CN204700612U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109759651A (en) * 2019-03-29 2019-05-17 东莞市中明精密五金电子科技有限公司 A kind of PCB milling cutter cutting mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109759651A (en) * 2019-03-29 2019-05-17 东莞市中明精密五金电子科技有限公司 A kind of PCB milling cutter cutting mechanism

Similar Documents

Publication Publication Date Title
CN104875078A (en) Crossbeam-fixed type high-precision numerical control gantry machining center
CN104842171A (en) High-precision numerical control machining center transmission mechanism
CN204700612U (en) Numerical control gantry machining center drives assembly
CN204700551U (en) Crossbeam fixed gantry machining center main body and main shaft drives assembly
CN104875029A (en) Multifunctional CNC (computer numerical control) gantry machining center
CN104842204A (en) Portal machining center combination for large part machining
CN204700554U (en) High precision numerical control gantry machining center power drive structure
CN104842173A (en) Multi-function numerical control gantry machining center multi-shaft linkage system
CN204700559U (en) Numerical control gantry machining center spindle drive
CN204700555U (en) Multi-shaft interlocked and the main shaft driving device of high precision numerical control gantry machining center
CN204700568U (en) The power transmission of high precision numerical control gantry machining center and burden-alleviating device
CN204700622U (en) Numerical control gantry machining center driving mechanism
CN204700558U (en) High accuracy gantry machining centre machine assembly and spindle drive
CN204700615U (en) The fixed numerical control gantry machining center machine of crossbeam drives assembly
CN204700553U (en) High precision numerical control gantry machining center spindle drive and multi-axes synchronous mechanism
CN204700639U (en) Numerical control gantry machining center power with oil-water separating structure and spindle drive
CN204700619U (en) With the gantry machining centre machine main shaft driving device of Z axis balanced structure
CN204700563U (en) Crossbeam fixed gantry machining center agent structure
CN204700650U (en) With the numerical control gantry machining center machine assembly of Z axis balanced structure
CN204700317U (en) Main shaft of numerical control machine tool transmission mechanism
CN204700567U (en) High precision numerical control gantry machining center multi-axes synchronous mechanism
CN204700624U (en) With the numerical control gantry machining center machine multi-axis linkages of Z axis Reduction of Students' Study Load structure
CN204700647U (en) Numerical control gantry machining center power and burden-alleviating device
CN204700642U (en) The fixed numerical control gantry machining center driving mechanism of high accuracy crossbeam
CN104875024A (en) Crossbeam-fixed type multifunctional numerical control machining center

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151014

Termination date: 20160424

CF01 Termination of patent right due to non-payment of annual fee