CN205631017U - Five bridge -type stonecutter numerical control yaws - Google Patents

Five bridge -type stonecutter numerical control yaws Download PDF

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Publication number
CN205631017U
CN205631017U CN201620460892.8U CN201620460892U CN205631017U CN 205631017 U CN205631017 U CN 205631017U CN 201620460892 U CN201620460892 U CN 201620460892U CN 205631017 U CN205631017 U CN 205631017U
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China
Prior art keywords
axle
cutting
rotary shaft
rotating mechanism
numerical control
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CN201620460892.8U
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Chinese (zh)
Inventor
纵苏闽
许俊枫
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SHENGDA MACHINERY CO Ltd
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SHENGDA MACHINERY CO Ltd
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Abstract

The utility model discloses a five bridge -type stonecutter numerical control yaws, it includes Z axis lifting mechanism, C axle rotary mechanism, a axle rotary mechanism and cutting mechanism, Z axis lifting mechanism installs in a vertical support, vertical support be located the X axle sideslip slide front end installed on the crossbeam and with X axle sideslip slide sliding connection, the below fixed mounting of vertical support has a horizontal support, the perpendicular fixed mounting of C axle rotary mechanism is on horizontal support and relative with the sideslip slide, C axle rotary mechanism's below fixed mounting has C rotation of axes frame, horizontal installation has A axle rotary mechanism in the C rotation of axes frame, cutting mechanism fixed mounting is in A axle rotary mechanism's below, cutting mechanism's cutting rotation axis is perpendicular with A axle rotary mechanism, the cover is equipped with the circular saw piece on the cutting rotation axis.

Description

Five axle bridge type stone cutting machine numerical control swinging heads
Technical field
This utility model relates to stone material cutting equipment field, particularly relates to a kind of five axle bridge type stone cutting machine numerical control swinging heads.
Background technology
The utility model patent of applicant's China Patent No. 201520589376 discloses a kind of numerical control five-axle bridge type stone cutting machine, its stone material cutting track is by three linear axis (X, Y, Z axle) and two rotary shaft (C, A axle) coordinated signals, coordinate turnover workbench simultaneously, make stonecutter have the functions such as five-axle linkage, real-time straight line, circular interpolation, complicated pentahedron curved surface, pentahedron Special-Shaped Surface once mounting machine-shaping can be realized.The rotating shaft fixed mount of its C axle rotating mechanism controlling head rotating is installed on medial saddle angled seat (the most traversing slide) front side of transverse-moving mechanism, and cutting linkage seat is fixedly installed in immediately below rotating shaft fixed mount.This structure arranges and makes the center of gravity of head be positioned on front side of crossbeam, then need the two end carriage partial-lengths extending crossbeam to improve the bearing capacity of crossbeam, make beam force balance, adds somewhat to the weight of equipment, and the stability of equipment still has to be hoisted.
Summary of the invention
The purpose of this utility model is providing a kind of the most rational five axle bridge type stone cutting machine numerical control swinging heads of structure.
The technical scheme realizing this utility model purpose is, a kind of five axle bridge type stone cutting machine numerical control swinging heads, it includes Z-axis lifting mechanism, C axle rotating mechanism, A axle rotating mechanism and cutting mechanism, described Z-axis lifting mechanism is installed in a longitudinal carrier, and described longitudinal carrier is positioned at the X-axis being installed on crossbeam traversing slide front end and slide traversing with X-axis is slidably connected;The lower section of described longitudinal carrier is installed with a horizontal support, described C axle rotating mechanism is vertically fixedly installed on horizontal support and relative with traversing slide, the lower section of described C axle rotating mechanism is installed with C axle swivel mount, it is horizontally installed with A axle rotating mechanism in described C axle swivel mount, described cutting mechanism is fixedly installed in the lower section of A axle rotating mechanism, the cutting rotary shaft of described cutting mechanism is vertical with A axle rotating mechanism, and described cutting rotary shaft is set with circular saw bit.
Further, described horizontal support and longitudinal carrier are one-body molded.
Further, described C axle rotating mechanism includes C axle rotational delay motor, driving gear, driven gear and C axle rotary shaft, described C axle rotational delay motor is fixedly installed in longitudinal carrier, described C axle rotary shaft is vertically arranged on horizontal support, described driving gear is installed on the outfan of C axle rotational delay motor, described driven gear installs the input with C axle rotary shaft, described driving gear and driven gear engaged transmission, described C axle rotating seat is fixing with the outfan of C axle rotary shaft to be connected.
Further, described C axle rotating seat has a upper head plate and is positioned at the side plate of upper head plate both sides, described A axle rotating mechanism includes A axle drive mechanism and A axle rotary shaft, described A axle rotary shaft has two and is respectively arranged on two side plates of C axle swivel mount, being installed with a cutting support between two A axle rotary shafts, described cutting mechanism is fixedly installed in below cutting support.Promote C axle and choose to install mechanism, A axle rotating mechanism and the compactness of cutting mechanism rotation.
Further, the end of described cutting rotary shaft is installed with a milling cutter simultaneously, can need to select to use corresponding cutter according to the processing of stone material.
The bridge type stone cutting machine numerical control swinging head that this utility model realizes integrates elevating mechanism, C axle rotating mechanism, A axle rotating mechanism and cutting mechanism, the structure that wherein C axle rotating mechanism is relative with traversing slide arranges the lower section of the crossbeam at the traversing slide place, center of gravity position making head, and the center that C axle rotates support is consistent with the center of gravity of head.Its compact conformation, not only alleviates weight of equipment and also assures that the stable operation of head.
Accompanying drawing explanation
Fig. 1 is that five axle bridge type stone cutting machine numerical control swinging head masters described in this utility model embodiment are depending on partly cuing open structural representation;
Fig. 2 is that the left view of Fig. 1 partly cuts open structural representation.
Detailed description of the invention
Below in conjunction with accompanying drawing, this utility model preferred embodiment is described in detail.
As depicted in figs. 1 and 2, a kind of five axle bridge type stone cutting machine numerical control swinging heads, it includes Z-axis lifting mechanism 1, C axle rotating mechanism 2, A axle rotating mechanism 3 and cutting mechanism 4, described Z-axis lifting mechanism 1 is installed in a longitudinal carrier 11, and described longitudinal carrier 11 is positioned at the X-axis being installed on crossbeam 10 traversing slide 20 front end and slide traversing with X-axis 20 is slidably connected;The lower section of described longitudinal carrier 11 is installed with a horizontal support 12, described C axle rotating mechanism 2 is installed vertically on horizontal support 12 and relative with traversing slide 20, the lower section of described C axle rotating mechanism 2 is installed with C axle swivel mount 5, it is horizontally installed with A axle rotating mechanism 3 in described C axle swivel mount 5, described cutting mechanism 4 is fixedly installed in the lower section of A axle rotating mechanism 3, the cutting rotary shaft 41 of described cutting mechanism is vertical with A axle rotating mechanism 3, and described cutting rotary shaft 41 is set with circular saw bit 42.
Described C axle rotating mechanism 2 includes C axle rotational delay motor 21, driving gear 22, driven gear 23 and C axle rotary shaft 24, described C axle rotational delay motor 21 is fixedly installed in longitudinal carrier 11, described C axle rotary shaft 24 is vertically arranged on horizontal support 12, described driving gear 22 is installed on the outfan of C axle rotational delay motor 21, described driven gear 23 installs the input with C axle rotary shaft 24, described driving gear 22 and driven gear 23 engaged transmission, described C axle rotating seat 5 is fixing with the outfan of C axle rotary shaft 24 to be connected.
Described C axle rotating seat 5 has a upper head plate 51 and is positioned at the side plate 52 of upper head plate 51 both sides, described A axle rotating mechanism 3 includes A axle drive mechanism 31 and A axle rotary shaft 32, described A axle rotary shaft 32 has two and is respectively arranged on two side plates 52 of C axle swivel mount, being installed with a cutting support 6 between two A axle rotary shafts 32, described cutting mechanism 4 is fixedly installed in below cutting support 6.
This utility model can also install milling cutter 43 additional in the end of described cutting rotary shaft, and cutting rotary shaft 41 installs circular saw bit 42 and milling cutter 43 simultaneously, can need to select to use corresponding cutter according to the processing of stone material.Described A axle rotating mechanism can be fed through C axle rotating seat biside plate and cutting support by a rotary shaft, but this arranges and can affect C axle and choose to install mechanism, A axle rotating mechanism and the compactedness of cutting mechanism.
During work, Z-axis lifting mechanism 1 drives the C axle swivel mount 5 in transverse support 12 along X-axis traversing slide 20 vertical displacement movement, C axle rotational delay motor 21 drives C axle rotary shaft 24 to rotate and then drives the A axle rotating mechanism 3 being installed on C axle rotating seat 5 with C axle rotary shaft 24 for center of rotation axle 0~the rotation of 360 ° of unspecified angles, the circular saw bit 42 rotarily driven in cutting rotary shaft 41 of A axle rotary shaft 32, milling cutter 43 rotates with A axle rotary shaft 41 for center of rotation axle 0~90 ° of unspecified angles, on the one hand machining angle is changed, realize processed stone material complexity pentahedron curved surface, the processing of pentahedron Special-Shaped Surface, on the other hand, cutting support and cutting rotary shaft half-twist, the replacement operation of circular saw bit and milling cutter can be realized.

Claims (5)

1. an axle bridge type stone cutting machine numerical control swinging head, it includes Z-axis lifting mechanism, C axle rotating mechanism, A axle rotating mechanism and cutting mechanism, it is characterized in that: described Z-axis lifting mechanism is installed in a longitudinal carrier, described longitudinal carrier is positioned at the X-axis being installed on crossbeam traversing slide front end and slide traversing with X-axis is slidably connected;The lower section of described longitudinal carrier is installed with a horizontal support, described C axle rotating mechanism is vertically fixedly installed on horizontal support and relative with traversing slide, the lower section of described C axle rotating mechanism is installed with C axle swivel mount, it is horizontally installed with A axle rotating mechanism in described C axle swivel mount, described cutting mechanism is fixedly installed in the lower section of A axle rotating mechanism, the cutting rotary shaft of described cutting mechanism is vertical with A axle rotating mechanism, and described cutting rotary shaft is set with circular saw bit.
Five axle bridge type stone cutting machine numerical control swinging heads the most according to claim 1, it is characterised in that: described horizontal support and longitudinal carrier are one-body molded.
Five axle bridge type stone cutting machine numerical control swinging heads the most according to claim 1, it is characterized in that: described C axle rotating mechanism includes C axle rotational delay motor, driving gear, driven gear and C axle rotary shaft, described C axle rotational delay motor is fixedly installed in longitudinal carrier, described C axle rotary shaft is vertically arranged on horizontal support, described driving gear is installed on the outfan of C axle rotational delay motor, described driven gear installs the input with C axle rotary shaft, described driving gear and driven gear engaged transmission, described C axle rotating seat is fixing with the outfan of C axle rotary shaft to be connected.
Five axle bridge type stone cutting machine numerical control swinging heads the most according to claim 1, it is characterized in that: described C axle rotating seat has a upper head plate and is positioned at the side plate of upper head plate both sides, described A axle rotating mechanism includes A axle drive mechanism and A axle rotary shaft, described A axle rotary shaft has two and is respectively arranged on two side plates of C axle swivel mount, being installed with a cutting support between two A axle rotary shafts, described cutting mechanism is fixedly installed in below cutting support.
Five axle bridge type stone cutting machine numerical control swinging heads the most according to claim 1, it is characterised in that: the end of described cutting rotary shaft is installed with a milling cutter simultaneously.
CN201620460892.8U 2016-05-19 2016-05-19 Five bridge -type stonecutter numerical control yaws Active CN205631017U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620460892.8U CN205631017U (en) 2016-05-19 2016-05-19 Five bridge -type stonecutter numerical control yaws

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620460892.8U CN205631017U (en) 2016-05-19 2016-05-19 Five bridge -type stonecutter numerical control yaws

Publications (1)

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CN205631017U true CN205631017U (en) 2016-10-12

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108393990A (en) * 2017-02-07 2018-08-14 张聪捷 Imitative hand scrapes the XYZ axis floating displacement cutting structures of plank
CN110181283A (en) * 2019-06-25 2019-08-30 东莞市善成精密机械设备有限公司 Multiaxial type rummy promise connector special processing equipment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108393990A (en) * 2017-02-07 2018-08-14 张聪捷 Imitative hand scrapes the XYZ axis floating displacement cutting structures of plank
CN110181283A (en) * 2019-06-25 2019-08-30 东莞市善成精密机械设备有限公司 Multiaxial type rummy promise connector special processing equipment

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