CN113245600A - Automatic feed type tenon milling machine for aluminum curtain wall - Google Patents

Automatic feed type tenon milling machine for aluminum curtain wall Download PDF

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Publication number
CN113245600A
CN113245600A CN202110625254.2A CN202110625254A CN113245600A CN 113245600 A CN113245600 A CN 113245600A CN 202110625254 A CN202110625254 A CN 202110625254A CN 113245600 A CN113245600 A CN 113245600A
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CN
China
Prior art keywords
rod
dust
pipe
fixing
automatic feed
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Granted
Application number
CN202110625254.2A
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Chinese (zh)
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CN113245600B (en
Inventor
谭宁
温仕强
范绪泉
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Sichuan Qingchuan Construction Engineering Co ltd
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Sichuan Qingchuan Construction Engineering Co ltd
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Priority to CN202110625254.2A priority Critical patent/CN113245600B/en
Publication of CN113245600A publication Critical patent/CN113245600A/en
Application granted granted Critical
Publication of CN113245600B publication Critical patent/CN113245600B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23CMILLING
    • B23C3/00Milling particular work; Special milling operations; Machines therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, 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
    • B23Q11/00Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling work; Safety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
    • B23Q11/0042Devices for removing chips
    • B23Q11/0046Devices for removing chips by sucking
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls

Abstract

The application relates to an automatic feed type tenon milling machine for an aluminum curtain wall, which comprises a table body, wherein a portal frame is arranged on the table body, a processing mechanism is arranged on the portal frame, the processing mechanism comprises a box body, a motor positioned in the box body, a rod body fixedly arranged on a motor driving end and a milling cutter positioned at the end part of the rod body, the processing mechanism also comprises a driving mechanism, a plurality of dust suction pipes are arranged on the box body, an adjusting device is arranged on the rod body, a dust outlet pipe is arranged on each dust suction pipe, the tenon milling machine also comprises a dust collection box, a dust inlet pipe and a dust exhaust pipe are communicated with the dust collection box on two opposite side walls of the dust collection box, a fan is arranged on the dust exhaust pipe, a connecting pipe is arranged on the dust inlet pipe, an organ pipe is arranged on each dust outlet pipe, each organ pipe is communicated to the connecting pipe, and a filtering; this application has the advantage that prevents that the dust from causing health injury to operating personnel.

Description

Automatic feed type tenon milling machine for aluminum curtain wall
Technical Field
The application relates to the field of aluminum curtain wall processing equipment, in particular to an automatic feed type tenon milling machine for an aluminum curtain wall.
Background
The milling tenon machine is special equipment for milling the end face of the aluminum-plastic door and window profile, is used for milling the special shape of the end face of the mullion profile in the threaded connection of the aluminum-plastic door and window, and can also be used for milling the end face in the assembly process of the aluminum-plastic door and window.
Chinese patent with grant publication number CN209273646U discloses a numerical control gantry tenon milling machine, which comprises a gantry frame, sliding grooves are arranged on two sides of the upper portion of the gantry frame, convex grooves are arranged on the sliding grooves, the convex grooves are arranged on two sides of the bottom end of a transverse plate, a sliding rod is arranged on the front surface of the transverse plate, a first milling cutter is arranged on the top end of a first motor, a wiring board is arranged on the top end of a sliding clamping plate, a shaft sleeve is arranged at the bottom end of a second motor, a second milling cutter is arranged at the bottom end of the shaft sleeve, a base is arranged at the bottom end of the gantry frame, a base plate is arranged at the top end of the base, a processing table is arranged at the top end of the.
With respect to the related art among the above, the inventors consider that the following technical drawbacks exist: a large amount of dust can be generated when the aluminum curtain wall is processed, and the dust can bring great harm to nearby operators.
Disclosure of Invention
In order to reduce the healthy injury of dust to operating personnel, this application provides an automatic feed formula of aluminium curtain wall mills tenon machine.
The application provides a pair of automatic feed formula of aluminum curtain wall mills tenon machine adopts following technical scheme:
an automatic feed type tenon milling machine for aluminum curtain walls comprises a table body, wherein a portal frame is arranged on the table body, a processing mechanism for processing plates on the table body is arranged on the portal frame, the processing mechanism comprises a box body, a motor positioned in the box body, a rod body fixedly arranged on a motor driving end and a milling cutter positioned at the end part of the rod body, the processing mechanism further comprises a driving mechanism for driving the box body to drive the milling cutter to move to any position on the table body, a plurality of dust suction pipes for arranging towards a milling cutter processing end are arranged on the box body along the circumferential position of the rod body, an adjusting device for adjusting the dust suction position of the dust suction pipes is arranged on the rod body, a dust outlet pipe is arranged on the side wall of each dust suction pipe and communicated with the dust suction pipe, the tenon milling machine further comprises a dust collection box, a dust inlet pipe and a dust discharge pipe are arranged on two side walls of the dust collection box and communicated with the dust collection box, the dust exhaust pipe is provided with a fan, the dust inlet pipe is communicated with the dust inlet pipe to form a connecting pipe, each dust outlet pipe is communicated with the dust outlet pipe to form an organ pipe, the end part, away from the dust outlet pipe, of each organ pipe is communicated to the connecting pipe, a filtering piece for filtering dust is arranged in the dust collection box in a sealing mode in the vertical direction, and the dust inlet pipe and the dust exhaust pipe are located on two sides of the filtering piece respectively.
By adopting the technical scheme, the dust exhaust pipe is driven to suck air through the fan, and the dust exhaust pipe can be driven by the plurality of organ pipes to suck dust, so that dust generated during the processing of the milling cutter enters the box body along the organ pipes and the connecting pipe, and metal powder generated during the processing is removed; the filtering piece can filter dust in the air, so that the influence of the dust on the fan is prevented, and the dust is convenient to collect; the dust absorption pipes are arranged on the box body, so that the milling cutter can move synchronously along with the milling cutter when moving, and the effect of dust absorption while processing is achieved.
Optionally, the adjusting device comprises a plurality of adjusting rods hinged on the box body along the circumferential position of the rod body, the adjusting rod comprises a first connecting rod hinged on the box body and a second connecting rod hinged on the first connecting rod, the dust collection pipe is fixedly arranged at the end part of the second connecting rod far away from the first connecting rod, the first connecting rod and the second connecting rod are provided with first fixing parts for fixing the first connecting rod and the second connecting rod to any included angle, a driving ring sleeved on the rod body is fixedly arranged on the box body, a plurality of mounting rods are arranged on the driving ring along the circumferential direction of the driving ring, the mounting rods and the adjusting rods are arranged in one-to-one correspondence, the end part of the mounting rod far away from the rod body is hinged with a connecting ring which is sleeved and connected with the first connecting rod in a sliding way, and the box body is provided with a moving device for driving the driving ring to move along the length direction of the rod body.
By adopting the technical scheme, the moving device drives the driving ring to move, the driving ring can drive the mounting rods to move simultaneously, and the mounting rods can drive the connecting ring to move on the first connecting rod, so that the connecting ring drives the first connecting rod to rotate at the hinge point on the box body, and the second connecting rod drives the dust suction pipe to move to the machining position close to or far away from the milling cutter, thereby adjusting the dust suction effect of the dust suction pipe and further improving the dust suction effect of the dust suction pipe; and can make a plurality of dust absorption tubes suitable for the parts with different shapes and specifications; can be fixed to arbitrary contained angle with head rod and second connecting rod through first mounting to adjust the initial position of dust absorption pipe, make the dust absorption pipe can further be applicable to the part processing of different shapes and specification.
Optionally, first mounting wears to establish and rotates the axis of rotation of connection on head rod and second connecting rod including the while, the both ends of axis of rotation are all overlapped and are established and threaded connection has the fixation nut who is used for the face butt that deviates from mutually with head rod and second connecting rod.
Through adopting above-mentioned technical scheme, twist through the fixation nut who drives the axis of rotation both ends and move for both sides fixation nut connects to on the face that head rod and second connecting rod deviate from mutually, thereby increased the frictional force between head rod and the second connecting rod, make head rod and second connecting rod fixed to the state after adjusting, adopt fixation nut's its simple structure that sets up, be convenient for to head rod and second connecting rod fix.
Optionally, the moving device includes moving electric cylinders fixedly disposed on an outer wall of the box body and located on two sides of the rod body, and driving ends of the moving rods on two sides are fixedly connected to the driving ring.
Through adopting above-mentioned technical scheme, drive the drive ring through removing the electric jar and remove for the drive ring drives dust absorption pipe and adjusts its position, adopts the setting of removing the electric jar its simple structure, has improved the drive effect to the drive ring.
Optionally, the second connecting rod sets up to extending structure, and extending structure includes the sleeve and pegs graft and the peg graft pole of sliding connection in the sleeve, the axis of rotation is worn to establish and is rotated and connect on the sleeve, the fixed tip that sets up at the peg graft pole of dust absorption pipe, be provided with on the sleeve and be used for fixing the peg graft pole to the second mounting of the interior optional position of sleeve.
Through adopting above-mentioned technical scheme, be located the sleeve through driving the peg graft pole and remove for the second mounting can be fixed the peg graft pole to the sleeve in, thereby carries out further regulation to the position of dust absorption pipe, thereby adjusts the interval between dust absorption pipe and the dust absorption position, thereby further improved the dust absorption effect to different shapes and specification section bar.
Optionally, the second fixing part includes a fixing bolt penetrating through and screwed on the sleeve, and a rod portion of the fixing bolt is used for abutting against the insertion rod.
Through adopting above-mentioned technical scheme, fix to the sleeve in through fastening bolt inserted bar for the second connecting rod is fixed to appointed length, and the setting that adopts fastening bolt is convenient for fix the second connecting rod, has improved the fixed effect to the second connecting rod.
Optionally, the mounting rod is of a telescopic structure, the telescopic structure comprises a fixing rod and a moving rod which is connected in the fixing rod in an inserting mode and in a sliding mode, the fixing rod is arranged on the driving ring, the connecting ring is hinged to the moving rod, and a third fixing piece used for fixing the moving rod to any position in the fixing rod is arranged on the fixing rod.
By adopting the technical scheme, the mounting rod is of a telescopic structure, so that the mounting rod further adjusts the distance between the adjusting rod and the rod body, the distance between the dust collection pipe and the processing position of the milling cutter is further adjusted, and the dust collection effect of the dust collection pipes on parts with different specifications and different shapes is further improved; the third fixing member may fix the mounting bar to an arbitrary length, so that the adjusting bar is fixed to an adjusted position.
Optionally, the third fixing part includes a fastening bolt inserted into and screwed to the fixing rod, and a rod portion of the fastening bolt is used for abutting against the moving rod.
Through adopting above-mentioned technical scheme, can be with carriage release lever butt to the dead lever in through fastening bolt to make the installation pole fixed to the length after adjusting, adopt fastening bolt's setting up its fixed mode convenient simple, improved the fixed effect to the installation pole.
Optionally, a groove used for allowing the end portion of each mounting rod to move in is formed in the position, where the end portion of each mounting rod is located, of the driving ring, a hinge shaft used for being rotatably connected to the surface, opposite to the groove, of the mounting rod is arranged in a penetrating mode and is fixedly arranged on the mounting rod, and a fourth fixing piece used for fixing the hinge shaft to the position, behind the hinge shaft, of any rotation is arranged on the hinge shaft.
Through adopting above-mentioned technical scheme, can be fixed the articulated shaft to the position after the rotation through the fourth mounting for the articulated shaft drives the installation pole and fixes to the position after the rotation, thereby further adjusts the actuating position of installation pole, makes a plurality of regulation poles can further realize different dust absorption effects to the part of different specifications and shape.
Optionally, the fourth fixing piece includes that the cover is established and threaded connection is on the articulated shaft and is located the adjusting nut of installation pole both sides, both sides adjusting nut is used for the face butt relative with the recess.
Through adopting above-mentioned technical scheme, through driving both sides adjusting nut butt joint to on the recess inner wall, increase the frictional force between adjustable nut and the recess inner wall to make the articulated shaft rely on the frictional force between nut and the recess inner wall to fix, improved the fixed effect to the articulated shaft.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the dust exhaust pipe is driven by the fan to suck air, and the dust suction pipe can be driven by the organ pipes to suck dust at the moment, so that dust generated during the processing of the milling cutter enters the box body along the organ pipes and the connecting pipe, and metal powder generated during the processing is removed; the filtering piece can filter dust in the air, so that the influence of the dust on the fan is prevented, and the dust is convenient to collect; the dust collection pipes are arranged on the box body, so that the plurality of dust collection pipes can synchronously move along with the milling cutter when the milling cutter moves, and the effect of dust collection while machining is achieved;
2. the driving ring is driven to move by the moving device, the driving ring can drive the mounting rods to move simultaneously, and the mounting rods can drive the connecting ring to move on the first connecting rod, so that the connecting ring drives the hinge point of the first connecting rod on the box body to rotate, and the second connecting rod drives the dust suction pipe to move to a machining position close to or far away from the milling cutter, so that the dust suction effect of the dust suction pipe is adjusted, and the dust suction effect of the dust suction pipe is further improved; and can make a plurality of dust absorption tubes suitable for the parts with different shapes and specifications; can be fixed to arbitrary contained angle with head rod and second connecting rod through first mounting to adjust the initial position of dust absorption pipe, make the dust absorption pipe can further be applicable to the part processing of different shapes and specification.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an embodiment of the present application;
FIG. 2 is a schematic structural diagram for showing a processing mechanism according to an embodiment of the present application;
fig. 3 is a half sectional view schematically showing a dust box according to an embodiment of the present application.
Description of reference numerals: 11. a table body; 111. a gantry; 12. a box body; 121. a motor; 122. a rod body; 123. milling cutters; 13. a dust collection pipe; 131. adjusting a rod; 132. a first connecting rod; 133. a second connecting rod; 134. a rotating shaft; 135. fixing a nut; 136. a sleeve; 137. a plug rod; 138. fixing the bolt; 14. a drive ring; 141. mounting a rod; 142. a connecting ring; 143. moving the electric cylinder; 144. fixing the rod; 145. a travel bar; 146. fastening a bolt; 15. a groove; 151. hinging a shaft; 152. adjusting the nut; 16. a dust outlet pipe; 161. a connecting plate; 162. a dust collection box; 163. a dust inlet pipe; 164. a dust exhaust pipe; 165. a fan; 166. a connecting pipe; 167. an organ tube; 168. and (4) a filter element.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses an automatic feed type tenon milling machine for an aluminum curtain wall. Referring to fig. 1 and 2, an automatic feed type tenon milling machine for an aluminum curtain wall includes a table 11, a gantry 111 is disposed on the table 11, a processing mechanism for processing a plate on the table 11 is disposed on the gantry 111, the processing mechanism includes a box 12, a motor 121 disposed in the box 12, a rod 122 fixedly disposed at a driving end of the motor 121, and a milling cutter 123 disposed at an end of the rod 122, and the processing mechanism further includes a driving mechanism for driving the box 12 to drive the milling cutter 123 to move to any position on the table 11.
Referring to fig. 1 and 2, a plurality of dust suction pipes 13 for facing the processing end of the milling cutter 123 are arranged on the case 12 along the circumferential direction of the rod 122, and in this embodiment, three dust suction pipes 13 are arranged; the rod 122 is provided with an adjusting device for adjusting the dust suction position of the dust suction pipe 13, the adjusting device comprises a plurality of adjusting rods 131 which are hinged on the box 12 along the circumferential position of the rod 122, the adjusting rods 131 comprise first connecting rods 132 which are hinged on the box 12 and second connecting rods 133 which are hinged on the first connecting rods 132, and the dust suction pipe 13 is fixedly arranged at the end part of the second connecting rods 133 far away from the first connecting rods 132.
With reference to fig. 1 and 2, in order to fix the first connecting rod 132 and the second connecting rod 133 at any included angle, a first fixing member for fixing the first connecting rod 132 and the second connecting rod 133 at any included angle is disposed on the first connecting rod 132 and the second connecting rod 133, the first fixing member includes a rotating shaft 134 penetrating through and rotatably connected to the first connecting rod 132 and the second connecting rod 133, and two ends of the rotating shaft 134 are both sleeved with and threadedly connected to fixing nuts 135 for abutting against surfaces deviating from the first connecting rod 132 and the second connecting rod 133; the fixing nuts 135 at both sides are driven to be screwed at both ends of the rotating shaft 134, so that the fixing nuts 135 at both sides are abutted to the surfaces of the first connecting rod 132 and the second connecting rod 133 which are deviated from each other, and the first connecting rod 132 and the second connecting rod 133 are fixed to the arbitrarily adjusted angles.
With reference to fig. 1 and fig. 2, in order to further adjust the position of the dust collection pipe 13, the second connection rod 133 is set to be a telescopic structure, the telescopic structure includes a sleeve 136 and an insertion rod 137 inserted and slidably connected in the sleeve 136, the rotation shaft 134 penetrates and is rotatably connected to the sleeve 136, the dust collection pipe 13 is fixedly disposed at the end of the insertion rod 137, and the sleeve 136 is provided with a second fixing member for fixing the insertion rod 137 to any position in the sleeve 136; the second fixing piece comprises a fixing bolt 138 which is arranged in a penetrating way and is in threaded connection with the sleeve 136, and the rod part of the fixing bolt 138 is used for being abutted against the insertion rod 137; by driving the insertion rod 137 to move in the sleeve 136, the length of the second connecting rod 133 can be adjusted, and the fixing bolt 138 can fix the second connecting rod 133 to any length, so that the insertion rod 137 drives the dust collection pipe 13 to adjust the position of the dust collection pipe.
Referring to fig. 1 and fig. 2, in order to drive the hinge points of the plurality of adjusting rods 131 on the box 12 to rotate, a driving ring 14 sleeved on the rod body 122 is fixedly disposed on the box 12, a plurality of mounting rods 141 are disposed on the driving ring 14 along the circumferential position of the driving ring 14, the plurality of mounting rods 141 and the plurality of adjusting rods 131 are disposed in a one-to-one correspondence manner, and the end of the mounting rod 141 away from the rod body 122 is hinged to a connecting ring 142 sleeved on and slidably connected to the first connecting rod 132; in order to drive the driving ring 14 to move on the rods 122, a moving device for driving the driving ring 14 to move along the length direction of the rods 122 is arranged on the box 12; the moving device comprises a moving electric cylinder 143 which is fixedly arranged on the outer wall of the box body 12 and is positioned at two sides of the rod body 122, and the driving ends of the two-side moving rods 145 are fixedly connected to the driving ring 14; the driving ring 14 is driven to move by moving the electric cylinder 143, so that the driving ring 14 drives the mounting rod 141 to move, the mounting rod 141 can drive the connecting ring 142 to move on the first connecting rod 132, so that the mounting rod 141 pushes the first connecting rod 132 to move, and at this time, the first connecting rod 132 can drive the dust suction pipe 13 on the second connecting rod 133 to approach or depart from the machining position of the milling cutter 123; in other embodiments, the moving means may be replaced by an air cylinder, with which the driving of the drive ring 14 is also achieved.
Referring to fig. 1 and 2, in order to adjust the length of the mounting rod 141, the mounting rod 141 is provided with a telescopic structure, the telescopic structure comprises a fixed rod 144 and a movable rod 145 inserted and slidably connected in the fixed rod 144, the fixed rod 144 is provided on the driving ring 14, the connecting ring 142 is hinged on the movable rod 145, and the fixed rod 144 is provided with a third fixing member for fixing the movable rod 145 to any position in the fixed rod 144; the third fixing member includes a fastening bolt 146 threaded on the fixing rod 144, and a rod portion of the fastening bolt 146 is used for abutting against the moving rod 145. The movable rod 145 is moved in the fixed rod 144 to adjust the length of the mounting rod 141, so that the mounting rod 141 drives the adjusting rod 131 to adjust the initial position thereof, and the plurality of dust pipes 13 can suck dust on parts of different specifications and shapes.
With reference to fig. 1 and 2, in order to adjust the angle between the mounting rods 141 and the rod body 122, a groove 15 for the end of each mounting rod 141 to move into is formed in the driving ring 14 at a position where the end of each mounting rod 141 is located, a hinge shaft 151 for rotatably connecting to a surface opposite to the groove 15 is penetratingly and fixedly disposed on the mounting rod 141, and a fourth fixing member for fixing the hinge shaft 151 to an arbitrary rotated position is disposed on the hinge shaft 151; the fourth fixing member includes adjusting nuts 152 that are sleeved on the hinge shaft 151 and are screwed to the hinge shaft and located at both sides of the mounting rod 141, and the adjusting nuts 152 at both sides are used for abutting against the surfaces opposite to the grooves 15; the adjusting nut 152 is brought into abutment with the inner wall of the groove 15, so that the hinge shaft 151 is fixed to a rotated state, thereby further adjusting the interval between the adjusting lever 131 and the rod body 122.
With reference to fig. 1 and 3, in order to drive the dust suction pipes 13 to suck dust, the side wall of each dust suction pipe 13 is provided with a dust outlet pipe 16 communicated with the dust suction pipe 13, the tenon milling machine further includes a dust collection box 162, two side walls of the dust collection box 162, which are opposite to each other, are provided with a dust inlet pipe 163 and a dust exhaust pipe 164 communicated with the dust collection box 162, the dust exhaust pipe 164 is provided with a fan 165, the dust inlet pipe 163 is provided with a connecting pipe 166 communicated with the dust inlet pipe 163, each dust outlet pipe 16 is provided with an organ pipe 167 communicated with the dust outlet pipe 16, an end of each organ pipe 167, which is far away from the dust outlet pipe 16, is communicated with the connecting pipe 166, the dust collection box 162 is internally sealed with a filter member 168 for filtering dust in a vertical direction, and in this embodiment, the filter member 168 is provided as a filter net; the dust inlet pipe 163 and the dust exhaust pipe 164 are respectively located at both sides of the filter member 168.
The embodiment of the application provides an implementation principle of automatic feed type tenoning machine of aluminum curtain wall does: the driving ring 14 is driven to move by moving the electric cylinder 143, so that the driving ring 14 drives the plurality of mounting rods 141 with the adjusted lengths and included angles with the rod bodies 122 to move, the mounting rods 141 can drive the connecting ring 142 to move on the first connecting rod 132, so that the hinge point of the first connecting rod 132 on the box 12 rotates, the first connecting rod 132 can drive the second connecting rod 133 with the angle between the second connecting rod 132 and the first connecting rod 132 to move, so that the second connecting rod 133 can drive the dust collecting pipe 13 to adjust the position thereof, so that the dust absorption pipe 13 can absorb dust of section bars with different specifications and shapes, meanwhile, the fan 165 can drive the dust absorption pipe 13 to suck air through the organ pipe 167, so that the dust enters into the dust box 162 along the organ pipe 167 and the connection pipe 166, the dust is filtered and collected through the filter screen in the dust collection box 162, so that the influence of the dust on the health of the operator is prevented.
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 (10)

1. The utility model provides an automatic feed formula of aluminum curtain wall mills tenon machine, includes stage body (11), be provided with portal frame (111) on stage body (11), be provided with the processing agency that is used for carrying out processing to the panel on stage body (11) on portal frame (111), processing agency includes box (12), is located motor (121) of box (12), the fixed body of rod (122) that sets up on motor (121) drive end and is located milling cutter (123) of the body of rod (122) tip, processing agency is still including being used for driving box (12) to drive milling cutter (123) and remove the actuating mechanism to stage body (11) upper arbitrary position, its characterized in that: the tenon milling machine comprises a box body (12), a plurality of dust suction pipes (13) arranged towards the processing end of a milling cutter (123) are arranged on the box body (12) along the circumferential position of a rod body (122), an adjusting device used for adjusting the dust suction position of the dust suction pipes (13) is arranged on the rod body (122), a dust outlet pipe (16) is arranged on the side wall of each dust suction pipe (13) and communicated with the dust suction pipe (13), a dust collection box (162) is further arranged on the two opposite side walls of the dust collection box (162), a dust inlet pipe (163) and a dust exhaust pipe (164) are arranged on the two opposite side walls of the dust collection box (162) and communicated with the dust collection box (162), a fan (165) is arranged on the dust exhaust pipe (164), a connecting pipe (166) is arranged on the dust inlet pipe (163) and communicated with the dust inlet pipe (163), an organ pipe (167) is arranged on each dust outlet pipe (16) and communicated with the dust outlet pipe (16), and the end part of each organ pipe (167) far away from the dust outlet pipe (16) is communicated with the connecting pipe (166), the dust collection box (162) is internally provided with a filtering piece (168) used for filtering dust in a sealing mode along the vertical direction, and the dust inlet pipe (163) and the dust exhaust pipe (164) are respectively positioned on two sides of the filtering piece (168).
2. The automatic feed type tenoning machine for aluminum curtain walls according to claim 1, wherein: the adjusting device comprises a plurality of adjusting rods (131) which are hinged on the box body (12) along the circumferential position of the rod body (122), the adjusting rods (131) comprise first connecting rods (132) which are hinged on the box body (12) and second connecting rods (133) which are hinged on the first connecting rods (132), the dust suction pipes (13) are fixedly arranged at the ends, far away from the first connecting rods (132), of the second connecting rods (133), first fixing pieces used for fixing the first connecting rods (132) and the second connecting rods (133) to any included angle are arranged on the first connecting rods (132) and the second connecting rods (133), a driving ring (14) which is sleeved on the rod body (122) is fixedly arranged on the box body (12), a plurality of mounting rods (141) are arranged on the driving ring (14) along the circumferential position of the driving ring (14), and the mounting rods (141) and the adjusting rods (131) are arranged in a one-to-one correspondence manner, the end part of the mounting rod (141) far away from the rod body (122) is hinged with a connecting ring (142) which is sleeved and connected to the first connecting rod (132) in a sliding mode, and a moving device used for driving the driving ring (14) to move along the length direction of the rod body (122) is arranged on the box body (12).
3. The automatic feed type tenoning machine for aluminum curtain walls according to claim 2, wherein: first mounting wears to establish and rotates rotation axis (134) of connection on head rod (132) and second connecting rod (133) including the while, the both ends of rotation axis (134) are all overlapped and are established and threaded connection has fixation nut (135) that are used for the face butt that deviates from mutually with head rod (132) and second connecting rod (133).
4. The automatic feed type tenoning machine for aluminum curtain walls according to claim 3, wherein: the moving device comprises moving electric cylinders (143) which are fixedly arranged on the outer wall of the box body (12) and located on two sides of the rod body (122), and driving ends of the moving rods (145) on the two sides are fixedly connected to the driving ring (14).
5. The automatic feed type tenoning machine for aluminum curtain walls according to claim 4, wherein: second connecting rod (133) set up to extending structure, and extending structure includes sleeve (136) and grafting and the peg graft pole (137) of sliding connection in sleeve (136), axis of rotation (134) are worn to establish and are rotated and connect on sleeve (136), the fixed tip that sets up at peg graft pole (137) in dust absorption pipe (13), be provided with on sleeve (136) and be used for fixing the second mounting to arbitrary position in sleeve (136) with peg graft pole (137).
6. The automatic feed type tenoning machine for aluminum curtain walls according to claim 5, wherein: the second fixing piece comprises a fixing bolt (138) which penetrates through and is in threaded connection with the sleeve (136), and the rod part of the fixing bolt (138) is used for being abutted to the insertion rod (137).
7. The automatic feed type tenoning machine for aluminum curtain walls according to claim 6, wherein: the mounting rod (141) is of a telescopic structure, the telescopic structure comprises a fixing rod (144) and a moving rod (145) which is connected in the fixing rod (144) in an inserting mode and in a sliding mode, the fixing rod (144) is arranged on the driving ring (14), the connecting ring (142) is arranged on the moving rod (145) in a hinged mode, and a third fixing piece used for fixing the moving rod (145) to any position in the fixing rod (144) is arranged on the fixing rod (144).
8. The automatic feed type tenoning machine for aluminum curtain walls according to claim 7, wherein: the third fixing piece comprises a fastening bolt (146) which penetrates through and is in threaded connection with the fixing rod (144), and the rod part of the fastening bolt (146) is used for being abutted to the moving rod (145).
9. The automatic feed type tenoning machine for aluminum curtain walls according to claim 8, wherein: the driving ring (14) is provided with a groove (15) for allowing the end of each mounting rod (141) to move in, the end of each mounting rod (141) is located at the position of the end of each mounting rod (141), a hinge shaft (151) which is used for being rotatably connected to the opposite surface of the groove (15) is arranged on each mounting rod (141) in a penetrating and fixed mode, and a fourth fixing piece which is used for fixing the hinge shaft (151) to any position after rotation is arranged on the hinge shaft (151).
10. The automatic feed type tenoning machine for aluminum curtain walls according to claim 9, wherein: the fourth fixing piece comprises adjusting nuts (152) which are sleeved and in threaded connection with the hinge shaft (151) and located on two sides of the installation rod (141), and the adjusting nuts (152) on two sides are used for being abutted to the face opposite to the groove (15).
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