CN104400539B - The driven slide carriage of numerical control cutting machine - Google Patents

The driven slide carriage of numerical control cutting machine Download PDF

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Publication number
CN104400539B
CN104400539B CN201410659905.XA CN201410659905A CN104400539B CN 104400539 B CN104400539 B CN 104400539B CN 201410659905 A CN201410659905 A CN 201410659905A CN 104400539 B CN104400539 B CN 104400539B
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CN
China
Prior art keywords
bearing
axle
support
header board
row
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
CN201410659905.XA
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Chinese (zh)
Other versions
CN104400539A (en
Inventor
周琦琪
徐峰
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.)
Wuxi Hengfu Technology Co Ltd
Original Assignee
Wuxi Hengfu Technology Co Ltd
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Filing date
Publication date
Application filed by Wuxi Hengfu Technology Co Ltd filed Critical Wuxi Hengfu Technology Co Ltd
Priority to CN201410659905.XA priority Critical patent/CN104400539B/en
Publication of CN104400539A publication Critical patent/CN104400539A/en
Application granted granted Critical
Publication of CN104400539B publication Critical patent/CN104400539B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K7/00Cutting, scarfing, or desurfacing by applying flames
    • B23K7/10Auxiliary devices, e.g. for guiding or supporting the torch

Abstract

The present invention relates to the driven slide carriage of numerical control cutting machine, including header board and be arranged on the lower support mechanism on header board and upper supporting mechanism;In upper supporting mechanism, upper bracket is fixedly mounted on header board sidewall, upper bracket is provided with the upper supporting axle of row's lateral arrangement, upper support axle is provided with block bearing;Being provided with on a row in upper block bearing side and fix axle, opposite side is provided with the upper eccentric shaft of a row, and the upper end of upper fixing axle and upper eccentric shaft is separately installed with upper bearing (metal);In lower support mechanism, lower carriage is fixedly mounted on header board sidewall, and lower carriage is provided with the lower accentric support axle of row's lateral arrangement, and lower accentric support axle is provided with the lower support bearing for support skid;Lower support bearing side is provided with under a row fixing axle, and opposite side is provided with eccentric shaft under a row, and the upper end of lower fixing axle and lower eccentric shaft is separately installed with lower bearing.Present configuration is reasonable in design, safe and reliable, convenient to install and maintain, it can be ensured that cutting stability.

Description

The driven slide carriage of numerical control cutting machine
Technical field
The present invention relates to a kind of driven slide carriage being applied on numerical control cutting machine, belong to welding and cutting device technical field.
Background technology
Numerical control cutting machine is a kind of wide variety of cutting equipment in machinery industry, and along with expanding economy, the automaticity producing equipment is more and more higher, simultaneously that the prescription of cutting products is also more and more higher.Driven slide carriage is the device on numerical control cutting machine for conveying workpieces, and cut quality is had material impact by accuracy and the stability of its conveying.But the traditional driven slide carriage structure being applied on numerical control cutting machine design is less reasonable, less stable, thus causing that the cutting accuracy of numerical control cutting machine is not high yet, the inadaptable requirement produced gradually.
Summary of the invention
It is an object of the invention to overcome the deficiencies in the prior art, it is provided that a kind of driven slide carriage of numerical control cutting machine, its reasonable in design, safe and reliable, convenient to install and maintain, it can be ensured that the cutting stability of numerical control cutting machine.
According to technical scheme provided by the invention: the driven slide carriage of numerical control cutting machine, it is for being arranged on the crossbeam of numerical control cutting machine, and the upper of described crossbeam side is respectively equipped with upper slide and lower skateboard below;It is characterized in that: described driven slide carriage includes header board and the lower support mechanism being arranged on header board and upper supporting mechanism;
Described upper supporting mechanism includes upper bracket, upper supporting axle, upper block bearing, upper fixing axle, upper eccentric shaft and upper bearing (metal), described upper bracket is fixedly mounted on header board sidewall, upper bracket is provided with the upper supporting axle of row's lateral arrangement, upper support axle is provided with block bearing;Block bearing side is provided with the upper fixing axle parallel with front board plane that a row is vertically arranged on described, block bearing opposite side is provided with the upper eccentric shaft parallel with front board plane that a row is vertically arranged on described, the upper end of upper fixing axle and upper eccentric shaft is separately installed with upper bearing (metal), leaves the gap for housing upper slide between upper bearing (metal) and the upper bearing (metal) of upper eccentric shaft lower end of upper fixing axle lower end;
Described lower support mechanism includes lower carriage, lower accentric support axle, lower support bearing, lower fixing axle, lower eccentric shaft and lower bearing, described lower carriage is fixedly mounted on header board sidewall, lower carriage is provided with the lower accentric support axle of row's lateral arrangement, lower accentric support axle is provided with the lower support bearing for support skid;Described lower support bearing side is provided with the lower fixing axle parallel with front board plane that a row is vertically arranged, described lower support bearing opposite side is provided with the lower eccentric shaft parallel with front board plane that a row is vertically arranged, the upper end of fixing axle and lower eccentric shaft is separately installed with lower bearing down, leaves the gap for housing lower skateboard between lower bearing and the lower bearing of lower eccentric shaft upper end of lower fixing axle upper end.
As a further improvement on the present invention, described lower support mechanism also includes lower lock shaft, and lower lock shaft is threaded on lower carriage, and lower lock shaft is rectified lower skateboard lower side;Described upper supporting mechanism also includes lock shaft, and upper lock shaft is threaded on upper bracket, and upper lock shaft lower end is just to upper slide upper side edge.
As a further improvement on the present invention, described driven slide carriage also includes slide carriage retaining mechanism, and described slide carriage retaining mechanism includes fixing plate, clamping plate, compact heap, locking nut, pull bar, locking nut and handle;Described fixing plate is connected to the middle part of crossbeam side, and fixing plate is connected with fixing seat, and fixing seat is fixedly connected on header board medial surface;The both sides of described fixing plate respectively arrange a clamping plate, between clamping plate and fixing plate side, compact heap is set, the clamping plate on both sides is installed the locking nut that two hand of spirals are contrary, described pull rod screw is connected in two locking nuts, back end of tie rod connects handle, drive when pull bar rotates the clamping plate on both sides in opposite directions near or reversely away from, two clamping plates in opposite directions near time be fixedly clamped plate.
As a further improvement on the present invention, described fixing plate is arranged below the rolling supporting part for supporting fixing plate, described rolling supporting part includes accentric support axle and pivoted housing, accentric support axle is horizontally disposed with, it is fixedly mounted on header board, pivoted housing is installed in the inner of accentric support axle, and described pivoted housing is supported on fixing plate lower side.
As a further improvement on the present invention, described upper supporting mechanism, lower support mechanism is separately installed with upper encloser, lower encioser.
Compared with prior art, advantage is in that the present invention:Present configuration is reasonable in design, safe and reliable, convenient to install and maintain, it can be ensured that the cutting stability of numerical control cutting machine.
Accompanying drawing explanation
Fig. 1 is the structural representation of the embodiment of the present invention.
Fig. 2 is the left view of Fig. 1.
Fig. 3 is the A-A face sectional view in Fig. 2.
Detailed description of the invention
Below in conjunction with concrete drawings and Examples, the invention will be further described.
As it can be seen, the driven slide carriage in embodiment is arranged on the crossbeam 27 of numerical control cutting machine, the upper of described crossbeam 27 side is respectively equipped with upper slide 9 and lower skateboard 14 below;Described driven slide carriage is mainly by header board 10 and install lower support mechanism on the front plate 10, upper supporting mechanism, slide carriage retaining mechanism and auxiliary retaining mechanism etc. and form.
The structure of described upper supporting mechanism is as shown in Figure 1 and Figure 2, it is mainly made up of upper bracket 1, upper support axle 28, upper block bearing 29, upper fixing axle 7, upper eccentric shaft 6 and upper bearing (metal) 8, described upper bracket 1 is fixedly mounted on header board 10 sidewall, upper bracket 1 is provided with the upper support axle 28 of row's lateral arrangement, upper support axle is provided with block bearing 29;Block bearing 29 side is provided with the upper fixing axle 7 parallel with header board 10 plane that a row is vertically arranged on described, block bearing 29 opposite side is provided with the upper eccentric shaft 6 parallel with header board 10 plane that a row is vertically arranged on described, the upper end of upper fixing axle 7 and upper eccentric shaft 6 is separately installed with upper bearing (metal) 8, leaves the gap for housing upper slide 9 between upper bearing (metal) 8 and the upper bearing (metal) 8 of upper eccentric shaft 6 lower end of upper fixing axle 7 lower end;The upper bearing (metal) 8 of both sides helps upper slide 9 from the two sides of upper slide 9 upper side edge.
The structure of described lower support mechanism is as shown in Figure 1 and Figure 2, it is mainly made up of lower carriage 21, lower accentric support axle 18, lower support bearing 19, lower fixing axle 17, lower eccentric shaft 16 and lower bearing 15, described lower carriage 21 is fixedly mounted on header board 10 sidewall, lower carriage 21 is provided with the lower accentric support axle 18 of row's lateral arrangement, lower accentric support axle 18 is provided with the lower support bearing 19 for support skid;The lower fixing axle 17 parallel with header board 10 plane that a row is vertically arranged it is provided with in described lower support bearing 19 side, described lower support bearing 19 opposite side is provided with the lower eccentric shaft 16 parallel with header board 10 plane that a row is vertically arranged, the upper end of fixing axle 17 and lower eccentric shaft 16 is separately installed with lower bearing 15 down, leaves the gap for housing lower skateboard 14 between lower bearing 15 and the lower bearing 15 of lower eccentric shaft 16 upper end of lower fixing axle 17 upper end;The lower bearing 15 of both sides helps lower skateboard 14 from the two sides of lower skateboard 14 lower side.
As it is shown in figure 1, in the embodiment of the present invention, described lower support mechanism also includes lower lock shaft 20, and lower lock shaft 20 is threaded on lower carriage 21, lower lock shaft 20 is rectified lower skateboard 14 lower side;Described upper supporting mechanism also includes lock shaft 5, and upper lock shaft 5 is threaded on upper bracket 1, and upper lock shaft is rectified upper slide 9 upper side edge for 5 times.
The structure of described slide carriage retaining mechanism is such as shown in Fig. 1 ~ Fig. 3, and it is mainly made up of fixing plate 11, clamping plate 12, compact heap 13, locking nut 24, pull bar 25, locking nut 24 and handle;Described fixing plate 11 is connected to the middle part of crossbeam 27 side, and fixing plate 11 is connected with fixing seat 26 by screw, and fixing seat 26 is fixedly connected on header board 10 medial surface by screw;The both sides of described fixing plate 11 respectively arrange a clamping plate 12, between clamping plate 12 and fixing plate 11 side, compact heap 13 is set, the clamping plate 12 on both sides is installed the locking nut 24 that two hand of spirals are contrary, described pull bar 25 is threaded in two locking nuts 24, pull bar 25 rear end connects handle, drive when pull bar 25 rotates the clamping plate 12 on both sides in opposite directions near or reversely away from, two clamping plates 12 in opposite directions near time be fixedly clamped plate 11.Additionally, described fixing plate 11 is arranged below the rolling supporting part for supporting fixing plate 11, described rolling supporting part includes accentric support axle 23 and pivoted housing 22, accentric support axle 23 is horizontally disposed with, fixed installation is on the front plate 10, pivoted housing 22 is installed in the inner of accentric support axle 23, and described pivoted housing 22 is supported on fixing plate 11 lower side.
As it is shown in figure 1, described upper supporting mechanism, lower support mechanism are separately installed with upper encloser 2, lower encioser 3.To prevent dust from entering, improve the barrier propterty of equipment further.

Claims (1)

1. the driven slide carriage of numerical control cutting machine, it is for being arranged on the crossbeam (27) of numerical control cutting machine, and the upper of described crossbeam (27) side is respectively equipped with upper slide (9) and lower skateboard (14) below;It is characterized in that: described driven slide carriage includes header board (10) and is arranged on the lower support mechanism on header board (10) and upper supporting mechanism;
Described upper supporting mechanism includes upper bracket (1), upper support axle (28), upper block bearing (29), upper fixing axle (7), upper eccentric shaft (6) and upper bearing (metal) (8), described upper bracket (1) is fixedly mounted on header board (10) sidewall, upper bracket (1) is provided with the upper support axle (28) of row's lateral arrangement, upper support axle is provided with block bearing (29);Block bearing (29) side is provided with the upper fixing axle (7) parallel with header board (10) plane that a row is vertically arranged on described, block bearing (29) opposite side is provided with the upper eccentric shaft (6) parallel with header board (10) plane that a row is vertically arranged on described, the lower end of upper fixing axle (7) and upper eccentric shaft (6) is separately installed with upper bearing (metal) (8), leaves the gap for housing upper slide (9) between upper bearing (metal) (8) and the upper bearing (metal) (8) of upper eccentric shaft (6) lower end of upper fixing axle (7) lower end;
Described lower support mechanism includes lower carriage (21), lower accentric support axle (18), lower support bearing (19), lower fixing axle (17), lower eccentric shaft (16) and lower bearing (15), described lower carriage (21) is fixedly mounted on header board (10) sidewall, lower carriage (21) is provided with the lower accentric support axle (18) of row's lateral arrangement, lower accentric support axle (18) is provided with the lower support bearing (19) for support skid;Described lower support bearing (19) side is provided with the lower fixing axle (17) parallel with header board (10) plane that a row is vertically arranged, described lower support bearing (19) opposite side is provided with the lower eccentric shaft (16) parallel with header board (10) plane that a row is vertically arranged, the upper end of fixing axle (17) and lower eccentric shaft (16) is separately installed with lower bearing (15) down, leaves the gap for housing lower skateboard (14) between lower bearing (15) and the lower bearing (15) of lower eccentric shaft (16) upper end of lower fixing axle (17) upper end;
Described lower support mechanism also includes lower lock shaft (20), and lower lock shaft (20) is threaded on lower carriage (21), and lower lock shaft (20) is upper rectifies lower skateboard (14) lower side;Described upper supporting mechanism also includes lock shaft (5), and upper lock shaft (5) is threaded on upper bracket (1), rectifies upper slide (9) upper side edge under upper lock shaft (5);
Described driven slide carriage also includes slide carriage retaining mechanism, and described slide carriage retaining mechanism includes fixing plate (11), clamping plate (12), compact heap (13), two locking nuts (24), pull bar (25) and handle;Described fixing plate (11) is connected to the middle part of crossbeam (27) side, and fixing plate (11) is connected with fixing seat (26), and fixing seat (26) is fixedly connected on header board (10) medial surface;The both sides of described fixing plate (11) respectively arrange a clamping plate (12), compact heap (13) is set between clamping plate (12) and fixing plate (11) side, the clamping plate (12) on both sides is upper installs the locking nut (24) that two hand of spirals are contrary, described pull bar (25) is threaded in two locking nuts (24), pull bar (25) rear end connects handle, drive when pull bar (25) rotates the clamping plate (12) on both sides in opposite directions near or reversely away from, two clamping plates (12) in opposite directions near time be fixedly clamped plate (11);
Described fixing plate (11) is arranged below the rolling supporting part for supporting fixing plate (11), described rolling supporting part includes accentric support axle (23) and pivoted housing (22), accentric support axle (23) is horizontally disposed with, it is fixedly mounted on header board (10), pivoted housing (22) is installed in the inner of accentric support axle (23), and described pivoted housing (22) is supported on fixing plate (11) lower side;
Described upper supporting mechanism, lower support mechanism are separately installed with upper encloser (2), lower encioser (3).
CN201410659905.XA 2014-11-18 2014-11-18 The driven slide carriage of numerical control cutting machine Expired - Fee Related CN104400539B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410659905.XA CN104400539B (en) 2014-11-18 2014-11-18 The driven slide carriage of numerical control cutting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410659905.XA CN104400539B (en) 2014-11-18 2014-11-18 The driven slide carriage of numerical control cutting machine

Publications (2)

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CN104400539A CN104400539A (en) 2015-03-11
CN104400539B true CN104400539B (en) 2016-07-06

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201552392U (en) * 2009-11-12 2010-08-18 无锡恒富科技有限公司 Numerical control moving body
CN102009293A (en) * 2010-05-31 2011-04-13 无锡恒富科技有限公司 Vertically running gear for numerical control cutting machine
DE102011054360A1 (en) * 2011-10-10 2013-04-11 Trumpf Werkzeugmaschinen Gmbh + Co. Kg Machine tool and method for the production of workpieces
CN103551702A (en) * 2013-10-31 2014-02-05 无锡汉神电气有限公司 Pipe supporting device of numerical control pipe intersecting line cutting machine
CN204277252U (en) * 2014-11-18 2015-04-22 无锡恒富科技有限公司 The driven slide carriage of numerical control cutting machine

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201552392U (en) * 2009-11-12 2010-08-18 无锡恒富科技有限公司 Numerical control moving body
CN102009293A (en) * 2010-05-31 2011-04-13 无锡恒富科技有限公司 Vertically running gear for numerical control cutting machine
DE102011054360A1 (en) * 2011-10-10 2013-04-11 Trumpf Werkzeugmaschinen Gmbh + Co. Kg Machine tool and method for the production of workpieces
CN103551702A (en) * 2013-10-31 2014-02-05 无锡汉神电气有限公司 Pipe supporting device of numerical control pipe intersecting line cutting machine
CN204277252U (en) * 2014-11-18 2015-04-22 无锡恒富科技有限公司 The driven slide carriage of numerical control cutting machine

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Granted publication date: 20160706

Termination date: 20161118

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