CN114714108B - Control box with suspension arm - Google Patents
Control box with suspension arm Download PDFInfo
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- CN114714108B CN114714108B CN202210408214.7A CN202210408214A CN114714108B CN 114714108 B CN114714108 B CN 114714108B CN 202210408214 A CN202210408214 A CN 202210408214A CN 114714108 B CN114714108 B CN 114714108B
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23Q—DETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
- B23Q1/00—Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
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Abstract
The utility model relates to a control box with hang arm, including box and a plurality of support arm, be provided with the connecting seat on the box, be provided with connecting device on the connecting seat, the support arm passes through to rotate between connecting device and the connecting seat to be connected, rotates through connecting device between the support arm to be connected, one of keeping away from a support arm of box serves and is provided with the base that is used for being connected with the lathe, and the base passes through connecting device and support arm rotation connection. This application has when debugging the lathe, because the box passes through the support arm to be connected with the lathe, and mutual rotation is connected between the support arm for box accessible support arm removes the workstation department to the lathe, and then makes the staff can carry out the straight tube ground to the particular case of workstation when the debugging and observe, and the debugging is simultaneously comparatively convenient, the effect of difficult error.
Description
Technical Field
The application relates to the field of machine tool accessories, in particular to a control box with a suspension arm.
Background
The machine tool is an industrial master machine in modern industry, is a foundation stone in modern industry, and with the development of computer technology, the traditional machine tool controlled purely mechanically has been developed to be a modern numerical control machine tool, and can carry out complex cutting processing on blanks through computer programming control.
Generally, a control box is installed on a numerical control machine tool, and a worker inputs the control box into a control center of the numerical control machine tool after programming the control box, so as to operate and control the machine tool to cut. When installing the control box on digit control machine tool, because the export of digit control machine tool is dodged to needs, the control box can be installed on the casing of the door body one side of digit control machine tool or install on the both ends face of the casing of digit control machine tool usually for the control box can not produce the switch of the door body of digit control machine tool and disturb.
However, the distance between the control box of the numerical control machine and the workbench of the numerical control machine is far, an operator needs to go back and forth between the control box and the workbench for many times during program debugging, the numerical control machine is troublesome to debug, and errors may occur during programming because the operator cannot observe a workpiece in a straight pipe during programming.
Disclosure of Invention
In order to solve the problem that the distance is too far between control box and the workstation when operation digit control machine tool troublesome poeration and error easily appears, this application provides a control box with hang arm.
The application provides a control box with hang arm adopts following technical scheme:
the utility model provides a control box with hang arm, includes box and a plurality of support arm, be provided with the connecting seat on the box, be provided with connecting device on the connecting seat, the support arm pass through connecting device with rotate between the connecting seat and be connected, pass through between the support arm connecting device rotates, keeps away from one of box is served and is provided with the base that is used for being connected with the lathe, the base pass through connecting device with the support arm rotates and is connected.
Through adopting above-mentioned technical scheme, when debugging the lathe, because the box passes through the support arm to be connected with the lathe, mutual rotation connects between the support arm for box accessible support arm removes the workstation department to the lathe, and then makes the staff can carry out the straight tube ground to the particular case of workstation when debugging and observe, and the debugging is simultaneously comparatively convenient, is difficult for the error to appear.
Optionally, connecting device includes the connecting pipe, the connecting pipe sets up to the bending form, all be provided with first stopper on the both ends inner wall of connecting pipe, all be provided with a go-between on the both ends of connecting pipe, the go-between deviates from one of connecting pipe serve be provided with one with the support arm complex adapter sleeve that slides, the adapter sleeve be provided with be used for with the support arm carries out fixed establishment, the go-between with coaxial annular bead that is provided with on the terminal surface that the connecting pipe is connected, the bead lateral wall is provided with the second stopper, a terminal surface of go-between with a terminal surface of connecting pipe is coaxial and laminate each other, first stopper with the bead lateral wall is laminated mutually, the second stopper with the inner wall of connecting pipe is laminated mutually, connecting device still includes the connecting piece, the connecting piece is used for rotating the connection the connecting pipe with the go-between.
Through adopting above-mentioned technical scheme, two support arms rotate through the cooperation between connecting pipe and the connecting piece and connect, and because the connecting pipe is crooked form, make two support arms can carry out the level and rotate, also can carry out vertical rotation, the rotational degree of freedom of box has been improved, when the installation simultaneously, fix a position when the installation of connecting pipe and go-between through the cooperation between first stopper and the second stopper, make connecting pipe and go-between can adjust to coaxial comparatively conveniently when the installation, when the go-between carries out the rotation each other at go-between and connecting pipe simultaneously, first stopper and second stopper are used for spacing the rotation of go-between and connecting pipe, make difficult transition rotation between the two.
Optionally, the connecting piece includes a sleeve, telescopic one end is provided with first spacing ring, equal coaxial second spacing ring that is provided with in the both ends of connecting pipe, be provided with the bearing on the inner wall of second spacing ring, telescopic one end is passed the bearing just stretch into to in the connecting ring, the sleeve with go-between threaded connection, the laminating of sleeve lateral wall is supported tightly the bearing inner wall, a terminal surface of first spacing ring with a terminal surface of second spacing ring is laminated mutually, the department of buckling of connecting pipe is offered and is used for the installation telescopic installing port.
By adopting the technical scheme, the sleeve is placed in the connecting pipe through the mounting opening, then one end of the sleeve penetrating through the connecting pipe is positioned in the connecting ring and is in threaded connection with the connecting ring, after the sleeve is screwed down, the first limiting ring supports against the second limiting ring, one end of the smooth surface of the sleeve is matched and inserted in the bearing inner ring, the sleeve is fixedly connected with the connecting ring and is connected with the connecting pipe in a rotating mode through the bearing, and then the connecting ring and the connecting pipe are connected in a rotating mode.
Optionally, a plurality of strip-shaped fixing holes are formed in the side walls of the two ends of the supporting arm, the fixing holes are arranged along the length direction of the supporting arm, an included angle between the length direction of the fixing holes and the length direction of the supporting arm is not less than 0 and less than 90 degrees, a plurality of strip-shaped connecting holes are formed in the side wall of the connecting sleeve in a penetrating manner, the connecting holes correspond to the fixing holes one to one, and the length direction of the connecting holes is perpendicular to the sliding direction of the supporting arm; the fixing mechanism comprises a fixing plate, elastic plates are arranged on two opposite sides of the fixing plate and are respectively attached to and tightly abut against the side wall of the connecting sleeve, a plurality of fixing rods in one-to-one correspondence with the connecting holes are arranged on one opposite side of each elastic plate, when the supporting arm is installed in the connecting sleeve in a sliding mode, the connecting holes correspond to the fixing holes, one ends of the fixing rods penetrate through the connecting holes, the fixing rods are located in the fixing holes, the fixing holes are matched with the connecting holes in a sliding mode, and the elastic plates are used for shielding the connecting holes and the fixing holes.
Through adopting above-mentioned technical scheme, after the support arm slides and installs in the adapter sleeve and connecting hole and fixed orifices are mutually supported, detain fixed plate and elastic plate and establish on the adapter sleeve, pass connecting hole and fixed orifices with the dead lever in proper order, because the length direction of connecting hole is perpendicular with the slip direction of support arm, the dead lever can fix the support arm on the adapter sleeve, and when needs are dismantled, if get into iron fillings in the gap between support arm and the adapter sleeve and lead to both to appear the card phenomenon of dying, perhaps appear the corrosion on the contact surface of support arm and adapter sleeve and lead to both to appear the card phenomenon of dying, through the dead lever that slides, and then the dead lever promotes the support arm through abluent fixed orifices and slides, make the staff can dismantle comparatively conveniently laborsavingly.
Optionally, the bearing adopts self-lubricating bearing, the connecting pipe is provided with the mounting that is used for fixing self-lubricating bearing.
By adopting the technical scheme, because the contact area between the inner ring and the outer ring of the self-lubricating bearing is large, the bearing capacity of the self-lubricating bearing is large, and the self-lubricating bearing is not easy to wear.
Optionally, the mounting includes a tightening rod, a connecting rod and a fixed cylinder, a tightening hole is provided on the connecting pipe side wall, the connecting rod is slidably mounted in the tightening hole, the tightening hole is along the radial direction of the second limiting ring, the second limiting ring runs through, one end of the tightening hole is passed through the tightening hole and tightened against the bearing side wall, the fixed cylinder is mounted on the connecting pipe side wall, one end of the tightening rod is passed through the fixed cylinder and tightened against one end of the connecting rod, the tightening rod is in threaded fit with the fixed cylinder, and a force-applying rod is provided on the other end of the tightening rod.
Through adopting above-mentioned technical scheme, when needs are fixed between two spinal branch vaulting poles, rotate through the stress application pole and support tight pole, and then promote the connecting rod through supporting tight pole and support tight bearing, deformation appears in the bearing inner race for the card is dead between bearing inner race and the bearing outer race, and the completion is to the fixed between two spinal branch vaulting poles.
Optionally, gaskets are respectively disposed between the first limiting ring and the second limiting ring, and between one end face of the connecting pipe and one end face of the connecting ring.
Through adopting above-mentioned technical scheme, after the sleeve was screwed up, make the frictional force of the contact surface between first spacing ring and second spacing ring and connecting pipe and the go-between less through the gasket, can carry out the rotation each other between connecting pipe and the connecting cylinder, and because the resistance that the gasket provided is convenient for two spinal branch vaulting poles and is difficult for taking place the rotation when rotating to suitable angle, and then the operating personnel of being convenient for more debugs the lathe.
Optionally, a fastening bolt is installed on the side wall of the connecting ring in a threaded manner, and one end of the fastening bolt penetrates through the connecting ring and abuts against the side wall of the sleeve.
Through adopting above-mentioned technical scheme, can fix by the sleeve after screwing up tight set bolt for two spinal branch vaulting poles sleeve is difficult for synchronous the rotation when rotation each other, has improved telescopic connection stability.
In summary, the present application includes at least one of the following beneficial technical effects:
1. when the machine tool is debugged, the box body is connected with the machine tool through the support arms, and the support arms are mutually and rotatably connected, so that the box body can be moved to a workbench of the machine tool through the support arms, and further, workers can observe the specific conditions of the workbench in a straight pipe manner while debugging, the debugging is convenient, and errors are not easy to occur;
2. when the supporting arm is installed in the connecting sleeve in a sliding mode, and the connecting hole is matched with the fixing hole, the fixing plate and the elastic plate are buckled on the connecting sleeve, the fixing rod sequentially penetrates through the connecting hole and the fixing hole, the length direction of the connecting hole is perpendicular to the sliding direction of the supporting arm, the supporting arm can be fixed on the connecting sleeve by the fixing rod, and when the supporting arm needs to be disassembled, if scrap iron enters a gap between the supporting arm and the connecting sleeve, the supporting arm and the connecting sleeve are clamped, or the supporting arm and the connecting sleeve are clamped due to corrosion on contact surfaces of the supporting arm and the connecting sleeve, the fixing rod can be slid by sliding the fixing rod, and then the fixing rod pushes the supporting arm to slide through the cleaned fixing hole, so that a worker can disassemble the supporting arm conveniently and laborsavingly;
3. after the sleeve is screwed up, make the frictional force of the contact surface between first spacing ring and second spacing ring and connecting pipe and the go-between less through the gasket, can carry out the rotation each other between connecting pipe and the connecting cylinder, and because the resistance that the gasket provided is convenient for two support arms and is difficult for taking place the rotation when rotating to suitable angle, and then the operating personnel of being convenient for more debugs the lathe.
Drawings
Fig. 1 is a schematic perspective view of the present application.
Fig. 2 is an exploded schematic view of the connection device of the present application, with the connection tube cut away.
Reference numerals are as follows: 1. a box body; 2. a support arm; 21. a fixing hole; 3. a connecting seat; 4. a base; 5. a connecting device; 51. connecting sleeves; 511. connecting holes; 52. a connecting ring; 521. a rib; 522. a second limiting block; 53. a fixing mechanism; 531. a fixing plate; 532. an elastic plate; 533. fixing the rod; 54. a connecting pipe; 541. a second stop collar; 542. a first stopper; 543. an installation port; 55. a connecting member; 551. a sleeve; 552. a first limit ring; 553. a bearing; 6. a gasket; 7. tightening the bolt; 8. a fixing member; 81. a tightening rod; 82. a connecting rod; 83. a fixed cylinder; 84. abutting the hole; 85. a stress application rod.
Detailed Description
The present application is described in further detail below with reference to figures 1-2.
The embodiment of the application discloses control box with hang arm, refer to fig. 1 and 2, including being the rectangle and length direction is vertical box 1, box 1 is used for installing the control panel of digit control machine tool, and box 1 is installed on the digit control machine tool through a plurality of support arms 2 according to actual conditions design quantity. Support arm 2 is managed by steel side and is made, rotate in proper order through connecting device 5 between a plurality of support arms 2 and connect, the one of two support arms 2 that lie in both sides after the mutual rotation connects serves and rotates through connecting device 5 respectively and is connected with connecting seat 3 and base 4, base 4 passes through bolt fixed mounting on the casing of digit control machine tool, connecting seat 3 passes through bolt and 1 roof fixed connection of box, all seted up the through-hole in base 4 and the connecting seat 3 in order to be used for walking the line.
Referring to fig. 1 and 2, the connecting device 5 comprises two square connecting sleeves 51, and the inner holes of the connecting sleeves 51 are in sliding fit with the supporting arms 2. The two connecting sleeves 51 are respectively installed at one end of each of the two adjacent supporting arms 2 in a sliding manner, two long hole-shaped connecting holes 511 are formed in the two opposite side walls of the connecting sleeves 51 in the length direction in a penetrating manner, the two connecting holes 511 are arranged in the length direction of the connecting sleeves 51, and the length direction of the two connecting holes 511 is perpendicular to the length direction of the connecting sleeves 51. Two fixing holes 21 corresponding to the connecting holes 511 are respectively formed in two opposite side walls of the supporting arm 2 in the length direction, the fixing holes 21 are in a long hole shape, an included angle between the length direction of the fixing holes 21 and the length direction of the supporting arm 2 is larger than 0 and smaller than 90 degrees, a connecting ring 52 is coaxially and fixedly mounted on the opposite surface of the connecting sleeve 51, and the connecting sleeve 51 is communicated with the connecting ring 52.
Referring to fig. 1 and 2, when one end of the supporting arm 2 is slidably mounted in the connecting sleeve 51 and abuts against the end surface of the connecting ring 52, the upper end of the fixing hole 21 and the upper end of the connecting hole 511 are overlapped with each other. The connecting sleeve 51 is provided with a fixing mechanism 53, the fixing mechanism 53 comprises a rectangular fixing plate 531 and two rectangular elastic plates 532, the elastic plates 532 are integrally arranged on two sides of the fixing plate 531 in the length direction, and the plate surfaces of the elastic plates 532 are perpendicular to the plate surfaces of the fixing plate 531. Two fixing rods 533 are fixedly mounted on opposite surfaces of the two elastic plates 532, the two fixing rods 533 correspondingly penetrate through the connecting holes 511 to be inserted into the fixing holes 21, the support arm 2 and the connecting sleeve 51 are fixedly connected through the fixing rods 533, and the two elastic plates 532 are respectively attached to and tightly abut against two opposite side walls of the connecting sleeve 51 to shield the connecting holes 511 on two sides.
Referring to fig. 1 and 2, the fixing rod 533 is in sliding fit with the connecting hole 511 and the fixing hole 21, and the fixing plate 531 is attached to and tightly abuts against the side wall of the connecting sleeve 51, when the supporting arm 2 needs to be detached, the fixing plate 531 is pulled to drive the fixing rod 533 to slide in the connecting hole 511, and then the supporting arm 2 is driven to be separated from the connecting sleeve 51 through the inclined fixing hole 21.
Referring to fig. 1 and 2, the connecting device 5 further includes a connecting pipe 54, and the connecting pipe 54 between the two support arms 2 is bent at 90 °, and the connecting pipe 54 bent at different angles can be replaced according to different situations when actually installed. The connecting pipe 54 is located between the two connecting sleeves 51, and the inner walls of the two ends of the connecting pipe 54 are coaxially and integrally provided with a second limiting ring 541, the inner walls of the two ends of the connecting pipe 54 are integrally provided with a first limiting block 542, one side wall of the first limiting block 542 is flush with the end surface of the connecting pipe 54, and the other side wall of the first limiting block 542 is integrally connected with the end surface of the second limiting ring 541.
Referring to fig. 1 and 2, the connecting ring 52 is disposed at both ends of the connecting tube 54, a circular rib 521 is integrally and coaxially disposed on one end surface of the connecting ring 52, a second stopper 522 is integrally disposed on an outer side wall of the rib 521, and a side wall of the second stopper 522 is integrally connected to one end surface of the connecting ring 52. One end of the connecting tube 54 is coaxially sleeved on the protruding rib 521 of the connecting ring 52, and one end surface of the connecting tube 54 is attached to one end surface of the connecting ring 52, at this time, one side wall of the first limiting block 542 is attached to the outer side wall of the protruding rib 521, and one side wall of the second limiting block 522 is attached to the inner wall of the connecting tube 54. The connecting ring 52 and the connecting pipe 54 are positioned by the cooperation between the first limiting block 542 and the second limiting block 522, and the rotation between the connecting ring 52 and the connecting pipe 54 is limited by the cooperation between the first limiting block 542 and the second limiting block 522.
Referring to fig. 1 and 2, a connector 55 is further disposed between the connection ring 52 and the connection tube 54, the connector 55 includes a sleeve 551, a first limiting ring 552 is integrally disposed on an outer side wall of one end of the sleeve 551, an end surface of the first limiting ring 552 is flush with an end surface of the sleeve 551, an external thread is disposed in a middle portion of the sleeve 551, two ends of the sleeve 551 are smooth, and an internal thread matched with the sleeve 551 is disposed on an inner wall of the connection ring 52. The bending part of the connecting pipe 54 is provided with an installation opening 543 for installing the sleeve 551, the sleeve 551 passes through the installation opening 543 and is located in the connecting pipe 54, the inner annular wall of the second limiting ring 541 of the connecting pipe 54 is coaxially and fixedly provided with a self-lubricating bearing 553, and one end of the sleeve 551 passes through the bearing 553 and is in threaded connection with the connecting ring 52.
Referring to fig. 1 and 2, a plastic gasket 6 is coaxially disposed between the first and second retainer rings 552 and 541, and the plastic gasket 6 is also coaxially disposed between the contact surfaces of the connecting ring 52 and the connecting tube 54. After the sleeve 551 is screwed down, the smooth surface of one end of the sleeve 551 close to the second limit ring 541 is attached and abutted with the inner ring of the bearing 553, the sleeve 551 is fixed with the inner ring of the bearing 553, one end surface of the first limit ring 552 is attached and abutted to the gasket 6, and one end surface of the connecting pipe 54 is attached and abutted to the gasket 6. The connection ring 52 and the connection pipe 54 are rotatably engaged with each other through the bearing 553, and the damping is formed by the plastic gasket 6, so that the mutual rotation between the connection ring 52 and the connection pipe 54 is not easily generated after the connection ring 52 rotates to a designated angle.
Referring to fig. 1 and 2, an end surface of the connection ring 52 facing away from the connection pipe 54 is fixedly connected to an end surface of the connection sleeve 51 having a square shape, and the connection sleeve 51 is communicated with the connection ring 52. The fastening bolt 7 is installed on the side wall of the connecting ring 52 in a threaded manner, and one end of the fastening bolt 7 penetrates through the connecting ring 52 and abuts against the smooth surface of one end of the sleeve 551 far away from the first limiting ring 552, so that the sleeve 551 is not easy to loosen. Set up a support hole 84 at the connecting pipe 54 lateral wall, support hole 84 and be located second spacing ring 541 and radially run through second spacing ring 541, support smooth the moving in hole 84 and install a connecting rod 82, still there is a solid fixed cylinder 83 through bolt fixed mounting on the connecting pipe 54 lateral wall, gu fixed cylinder 83 is coaxial with supporting hole 84, gu fixed cylinder 83 internal thread installs support pole 81, the one end that supports pole 81 slides and penetrates to supporting in hole 84, the other end that supports pole 81 is located gu fixed cylinder 83 outer and fixed mounting has the forcing rod 85, rotate support pole 81 through forcing rod 85, and then promote connecting rod 82 to move to the outer lane that supports tight self-lubricating bearing 553 through supporting pole 81, fix self-lubricating bearing 553.
Referring to fig. 1 and 2, the bending angle of the connection pipe 54 of the connection device 5 between the connection seat 3 and the support arm 2 is zero, the connection pipe 54 is in a straight pipe shape, the connection seat 3 is in a rectangular plate shape, the connection seat 3 is coaxially welded on the connection pipe 54, and the connection seat 3 is coaxially provided with a through hole communicated with the connection pipe 54. The base 4 is in a cuboid shape, one end of the base 4 is in a rectangular plate shape, the base 4 is fixedly connected with the numerical control machine tool through bolts, and one end of the base 4 in a cuboid shape is connected with the supporting mechanism in the same mode as the supporting arm 2.
Referring to fig. 1 and 2, the through holes of the base 4 and the connecting seat 3 are both communicated with the connecting tube 54 and the supporting arm 2, and after the control panel of the numerical control machine tool is installed in the box body 1, the wires of the control panel are routed along the inside of the connecting seat 3, the connecting tube 54, the connecting ring 52, the connecting sleeve 51 and the base 4.
The implementation principle of the control box with the suspension arm in the embodiment of the application is as follows: when the supporting arm 2 is installed, the supporting arm 2 is driven by the box body 1 to rotate to the position, where the box body 1 is located on the workbench of the numerical control machine tool, of the box body 1 to program when the numerical control machine tool is required to be programmed.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (6)
1. A control box with hang arm which characterized in that: the machine tool support comprises a box body (1) and a plurality of support arms (2), wherein a connecting seat (3) is arranged on the box body (1), a connecting device (5) is arranged on the connecting seat (3), the support arms (2) are rotatably connected with the connecting seat (3) through the connecting device (5), the support arms (2) are rotatably connected through the connecting device (5), a base (4) used for being connected with a machine tool is arranged at one end of one support arm (2) far away from the box body (1), and the base (4) is rotatably connected with the support arms (2) through the connecting device (5); the connecting device (5) comprises a connecting pipe (54), the connecting pipe (54) is arranged in a bent shape, the inner walls of two ends of the connecting pipe (54) are respectively provided with a first limiting block (542), two ends of the connecting pipe (54) are respectively provided with a connecting ring (52), one end, deviating from the connecting pipe (54), of the connecting ring (52) is provided with a connecting sleeve (51) in sliding fit with the supporting arm (2), the connecting sleeve (51) is provided with a fixing mechanism (53) for fixing with the supporting arm (2), one end face, connected with the connecting pipe (54), of the connecting ring (52) is coaxially provided with an annular convex rib (521), the side wall of the convex rib (521) is provided with a second limiting block (522), one end face of the connecting ring (52) is coaxially and mutually attached to one end face of the connecting pipe (54), the first limiting block (542) is attached to the side wall of the convex rib (521), the second limiting block (522) is attached to the inner wall of the connecting pipe (54), the connecting device (5) further comprises a connecting piece (55), and the connecting ring (55) is used for rotatably connecting the connecting pipe (54) and the connecting pipe (52); the connecting piece (55) comprises a sleeve (551), a first limiting ring (552) is arranged at one end of the sleeve (551), a second limiting ring (541) is coaxially arranged in each of two ends of the connecting pipe (54), a bearing (553) is arranged on the inner wall of each second limiting ring (541), one end of the sleeve (551) penetrates through the bearing (553) and extends into the connecting ring (52), the sleeve (551) is in threaded connection with the connecting ring (52), the side wall of the sleeve (551) is attached and tightly abutted to the inner wall of the bearing (553), one end face of the first limiting ring (552) is attached to one end face of the second limiting ring (541), and an installation opening (543) for installing the sleeve (551) is formed in the bent position of the connecting pipe (54).
2. A control box having a hanger arm according to claim 1, wherein: the side walls at two ends of the supporting arm (2) are respectively provided with a plurality of strip-shaped fixing holes (21), the fixing holes (21) are arranged along the length direction of the supporting arm (2), the included angle between the length direction of the fixing holes (21) and the length direction of the supporting arm (2) is not less than 0 and less than 90 degrees, the side wall of the connecting sleeve (51) is provided with a plurality of strip-shaped connecting holes (511) in a penetrating manner, the connecting holes (511) correspond to the fixing holes (21) one by one, and the length direction of the connecting holes (511) is vertical to the sliding direction of the supporting arm (2); fixed establishment (53) include one fixed plate (531), all be provided with elastic plate (532), two on the relative both sides of fixed plate (531) elastic plate (532) laminate respectively and support tightly the lateral wall of adapter sleeve (51), be provided with on the relative one side of elastic plate (532) a plurality of with dead lever (533) of connecting hole (511) one-to-one, work as support arm (2) slide install in adapter sleeve (51) just connecting hole (511) with when fixed orifices (21) correspond, the one end of dead lever (533) is passed connecting hole (511) are located in fixed orifices (21), dead lever (533) with fixed orifices (21) reach all the cooperation of sliding between connecting hole (511), elastic plate (532) will connecting hole (511) with fixed orifices (21) shelter from.
3. A control box having a hanger arm according to claim 1, wherein: the bearing (553) adopts a self-lubricating bearing (553), and the connecting pipe (54) is provided with a fixing piece (8) for fixing the self-lubricating bearing (553).
4. A control box having a hanger arm according to claim 3, wherein: mounting (8) are including supporting pole (81), connecting rod (82) and a fixed section of thick bamboo (83), have seted up on connecting pipe (54) lateral wall and supported hole (84), and connecting rod (82) slide and install support in hole (84), support hole (84) and follow the radial of second spacing ring (541) will second spacing ring (541) run through, the one end of connecting rod (82) is passed support hole (84) support tightly bearing (553) lateral wall, a fixed section of thick bamboo (83) is installed on connecting pipe (54) lateral wall, the one end of supporting pole (81) is passed a fixed section of thick bamboo (83) support tightly the one end of connecting rod (82), support pole (81) with a fixed section of thick bamboo (83) screw-thread fit, be provided with on the other end of supporting pole (81) with clamping lever (85).
5. A control box with suspension arm according to claim 4, characterized in that: gaskets (6) are arranged between one end face of the first limiting ring (552) and the second limiting ring (541) and one end face of the connecting pipe (54) and one end face of the connecting ring (52).
6. A control box having a suspension arm, according to claim 5, wherein: and a fastening bolt (7) is arranged on the side wall of the connecting ring (52) in a threaded manner, and one end of the fastening bolt (7) penetrates through the connecting ring (52) and abuts against the side wall of the sleeve (551).
Priority Applications (1)
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CN202210408214.7A CN114714108B (en) | 2022-04-19 | 2022-04-19 | Control box with suspension arm |
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CN202210408214.7A CN114714108B (en) | 2022-04-19 | 2022-04-19 | Control box with suspension arm |
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CN114714108B true CN114714108B (en) | 2023-04-11 |
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CN207447866U (en) * | 2017-10-16 | 2018-06-05 | 东莞市公鸡精密金属制品有限公司 | A kind of gantry machining center control cabinet installation L-type arm |
CN207723880U (en) * | 2017-10-16 | 2018-08-14 | 东莞市公鸡精密金属制品有限公司 | A kind of modular vertical arm for installing control cabinet |
CN208811533U (en) * | 2018-09-30 | 2019-05-03 | 成都惠锋智造科技有限公司 | A kind of control panel rotating device of large size workbench |
CN209830875U (en) * | 2019-04-16 | 2019-12-24 | 广东润星科技有限公司 | Cantilever type machine tool control box |
CN211192906U (en) * | 2019-12-17 | 2020-08-07 | 苏州市斯可源自动化科技有限公司 | Rotatable control box cantilever structure |
CN211387674U (en) * | 2019-12-27 | 2020-09-01 | 苏州超尚精密机电有限公司 | Numerical control machine tool control box |
CN215280817U (en) * | 2021-06-30 | 2021-12-24 | 上海辛机实业有限公司 | Portable aluminum alloy control box easy to arrange wires and install |
CN216178403U (en) * | 2021-08-12 | 2022-04-05 | 浙江品上智能科技有限公司 | Rotary suspension arm mechanism of flat bed double-spindle machine tool |
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2022
- 2022-04-19 CN CN202210408214.7A patent/CN114714108B/en active Active
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