CN111167811B - Equipment for automatically removing slag of inclined strut of aluminum die - Google Patents

Equipment for automatically removing slag of inclined strut of aluminum die Download PDF

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Publication number
CN111167811B
CN111167811B CN201811338280.1A CN201811338280A CN111167811B CN 111167811 B CN111167811 B CN 111167811B CN 201811338280 A CN201811338280 A CN 201811338280A CN 111167811 B CN111167811 B CN 111167811B
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Prior art keywords
sleeve
motor
mounting
piece
wall
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CN201811338280.1A
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CN111167811A (en
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雷志强
汤兆俊
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Hubei Adto Aluminum Alloy Formwork Manufacturing Co ltd
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Hubei Adto Aluminum Alloy Formwork Manufacturing Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto 
    • B08B9/02Cleaning pipes or tubes or systems of pipes or tubes
    • B08B9/027Cleaning the internal surfaces; Removal of blockages
    • B08B9/04Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes
    • B08B9/043Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes moved by externally powered mechanical linkage, e.g. pushed or drawn through the pipes
    • B08B9/047Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes moved by externally powered mechanical linkage, e.g. pushed or drawn through the pipes the cleaning devices having internal motors, e.g. turbines for powering cleaning tools

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Moulds, Cores, Or Mandrels (AREA)

Abstract

The invention provides equipment for automatically removing slag of an inclined strut of an aluminum die, and belongs to the technical field of aluminum alloy templates. It has solved the technical problem who how to realize the automatic slag removal of bracing. The utility model provides an equipment that carries out automatic slag removal to bracing of aluminium mould, which comprises a base, including a motor, an end cap, a controller, and a cover plate, be used for fixing the clamp piece of cover plate outer wall, and be used for leading the guide piece of leading with the location to sheathed tube outer wall, be provided with the anchor clamps that can fix the outer tip of one of them lead screw on the output shaft of motor, the upper surface of frame has a mounting panel, the middle part of mounting panel has one and dodges the groove, the clamp piece rotates to be connected on a support, it has the slide rail on the mounting panel of the both sides in groove to dodge, support and slide rail cooperation and sliding connection are in the top of mounting panel, the output shaft of motor, clamp piece and guide piece three are located same straight. The invention has the advantages of automatic slag removal of the diagonal brace, high slag removal efficiency, no influence on secondary use of the diagonal brace and the like.

Description

Equipment for automatically removing slag of inclined strut of aluminum die
Technical Field
The invention belongs to the technical field of aluminum alloy templates, and relates to equipment for automatically removing slag of an inclined strut of an aluminum mold.
Background
In recent years, along with the national environmental protection construction of green building materials and the continuous improvement of the national demand for high-quality houses, the usage amount of the aluminum alloy template in the building industry is increased by geometric multiples, the aluminum alloy template has the greatest advantage that the aluminum alloy template can be recycled, along with the increasing amount of recycled aluminum molds and auxiliary materials, the problem of an aluminum mold factory is solved by processing some steel grits and concrete slag which are remained in a diagonal brace sleeve pipe in the using and shot blasting processing processes and affect the secondary use of the diagonal brace, the traditional processing mode needs to manually screw out the screw rod of the diagonal brace, the screw rod is screwed back again after the steel grits and the concrete slag are poured out, the efficiency is low, the traditional processing mode cannot keep pace with the fast-paced production steps of the factory, and the problem can only be solved through sea tactics and fatigue tactics.
In addition, the screw rod in the inclined strut is not easy to screw due to the existence of concrete slag, and the secondary use of the inclined strut is influenced by the deformation of the inclined strut, screw rod sliding and the like when the positioning and fastening tool is used for operation.
Disclosure of Invention
The invention aims to provide equipment for automatically removing slag of an inclined strut of an aluminum mould aiming at the problems in the prior art, and the technical problem to be solved by the invention is how to realize the automatic slag removal of the inclined strut.
The purpose of the invention can be realized by the following technical scheme: the equipment for automatically removing the slag of the diagonal brace of the aluminum mold comprises two lead screws and a sleeve, wherein the two lead screws are respectively in threaded connection with two ends of the sleeve;
the upper surface of frame has a mounting panel, the middle part of mounting panel has one and dodges the groove, the lock ring spare rotates to be connected on a support, it has the slide rail on the mounting panel of the both sides in groove to dodge, support and slide rail cooperation and sliding connection are in the top of mounting panel, the output shaft of motor, lock ring spare and guide three are located same straight line, the sleeve pipe can be inserted and is established and dodge the inslot.
The working principle is as follows: insert the bracing piece, the guide, and make the tip of the lead screw that inserts one end pass through anchor clamps to be fixed on the output shaft of motor, the starter motor, it is rotatory to make the lead screw fixed by the anchor clamps, because the sleeve pipe is fixed, the relative cover pipe rotation of lead screw, can make the lead screw fixed by anchor clamps by the cover pipe of unscrewing, the in-process of unscrewing the lead screw, the sleeve pipe is to the one end translation of keeping away from the motor under the cooperation of support and guide rail, treat after the whole cover pipes of unscrewing of the lead screw fixed by anchor clamps, the sleeve pipe breaks away from spacing of guide, make the sleeve pipe be close to the one end of motor lose the holding power, under the hinge effect of support and bracing piece, the groove is dodged in the cooperation, the sleeve pipe one end that loses the holding power hangs down, thereby, the concrete sediment in the sleeve.
In the above device for automatically removing the slag of the diagonal brace of the aluminum mould, the clamping piece comprises a first shaft sleeve, a plurality of threaded holes are radially formed in the first shaft sleeve, a compression bolt is connected to each threaded hole in an internal thread mode, and the inner end of each compression bolt can abut against the outer wall of the sleeve.
The sleeve is inserted in the first shaft sleeve and is fixed through the compression bolt.
In the above device for automatically removing the slag of the diagonal brace of the aluminum mould, the guide piece comprises a second shaft sleeve, a plurality of mounting holes are radially formed in the second shaft sleeve, the mounting holes are uniformly distributed outside the axis of the second shaft sleeve in the circumferential direction, the mounting holes are stepped holes, a pressing sheet is fixedly arranged at an opening of the outer wall of each mounting hole, a T-shaped top column is connected in each mounting hole in a sliding mode, and the top column is connected with the pressing sheet through a compression spring.
Step hole in the sleeve pipe two, the partial aperture that is close to the outer wall is great, and the partial aperture that is close to the inner wall is less, and the fore-set of T type cooperates with it, and compression spring can compress tightly the fore-set to avoid the sleeve pipe lax, keep sheathed tube axiality, simultaneously, also do not influence the sleeve pipe and insert and extract.
In foretell equipment that carries out automatic slag removal to the bracing of aluminium mould, the guide is located between motor and the lock ring spare, the one end of keeping away from the motor on the mounting panel articulates there is a plectrum, be connected with an extension spring between plectrum and the mounting panel, the plectrum can order about the sleeve pipe and wind the pin joint rotation between lock ring spare and the support.
After the sleeve pipe breaks away from the spacing of guide, the extension spring orders about the plectrum and upwards swings to the one end tilt up that makes the sleeve pipe keep away from the motor, and the sleeve pipe that is close to motor one end is around the pin joint decline of support with the clamp piece, and at dodging groove department, the sleeve pipe can fall into and dodge the inslot, discharges the intraductal concrete debris of sleeve.
In the above-mentioned equipment for automatically removing slag of the diagonal brace of the aluminum mould, a return spring is connected between two sides of the bracket and one end part of the mounting plate close to the shifting piece, and the return spring can pull the bracket to move on the guide rail in the direction close to the shifting piece.
In order to avoid the situation that the sleeve is not accurately inserted into the guide piece, the sleeve still does not break away from the limit of the guide piece after the screw rod at one end of the sleeve is completely screwed out, two reset springs are arranged between the support and the mounting plate, and the reset springs can pull the sleeve to move towards one side far away from the motor after the screw rod is separated from the sleeve, so that the sleeve breaks away from the limit of the guide piece, and the end part of the sleeve is inclined at the position far away from the guide piece.
It can be seen that if the sleeve is already separated from the guide when the screw rod is not yet separated from the sleeve, the positioning effect of the sleeve is poor in this state, and the screw rod and the sleeve are easily damaged.
In the above-mentioned equipment for automatically removing slag of the diagonal brace of the aluminum mould, a material containing container is arranged in the machine base, and an opening of the material containing container is positioned below the avoiding groove.
In foretell equipment that carries out automatic slag removal to bracing of aluminium mould, anchor clamps include a U template, the middle part of U template links to each other with the output shaft of motor is fixed, the U template includes the ear of two symmetric distributions, has seted up a locating hole on the inner wall of one of them ear, sets up the locating hole that link up outside in this ear on another ear, locating hole female connection has a locking screw, the outer end of lead screw is fixed to be provided with lead screw vertically connecting rod, the one end of connecting rod can be inserted and is established in the locating hole, the other end of connecting rod can support with locking screw and lean on.
The clamp not only can be conveniently disassembled and assembled, but also can prevent the screw rod from being thrown out when the screw rod is separated from the sleeve, so that potential safety hazards are avoided.
Drawings
Fig. 1 is a schematic perspective view of the automatic slag removal device.
Fig. 2 is a sectional view of the automatic slag removing apparatus.
Fig. 3 is a schematic structural view of the guide member in a state of being fitted to the sleeve.
Figure 4 is a schematic view of the guide after it has been removed from the cannula.
Figure 5 is a perspective view of the fastener member.
In the figure, 1, a machine base, 21, a sleeve, 22, a screw rod, 23, a connecting rod, 13, a motor, 31, a clamp, 32, a U-shaped plate, 33, a positioning opening, 34, a positioning hole, 35, a locking screw rod, 14, a clamping piece, 41, a first shaft sleeve, 42, a threaded hole, 43, a compression bolt, 15, a guide piece, 51, a second shaft sleeve, 52, a mounting hole, 53, a top column, 54, a compression spring, 55, a pressing piece, 16, a mounting plate, 61, an avoiding groove 62, a support, 63, a sliding rail, 64, a shifting piece, 65, a tension spring, 66, a return spring, 17 and a material containing container.
Detailed Description
The following are specific embodiments of the present invention and are further described with reference to the drawings, but the present invention is not limited to these embodiments.
As shown in fig. 1, 2, 3, 4 and 5, an apparatus for automatically removing slag from an inclined strut of an aluminum mold comprises two lead screws 22 and a sleeve 21, wherein the two lead screws 22 are respectively connected to two ends of the sleeve 21 by screw threads, and is characterized in that the apparatus for automatically removing slag from an inclined strut comprises a base 1, a motor 13, a clamping piece 14 for fixing the outer wall of the sleeve 21, and a guide piece 15 for guiding and positioning the outer wall of the sleeve 21, and a clamp 31 capable of fixing the outer end part of one lead screw 22 is arranged on an output shaft of the motor 13;
the upper surface of frame 1 has a mounting panel 16, and the middle part of mounting panel 16 has one and dodges groove 61, and clamp 14 rotates to be connected on a support 62, has slide rail 63 on the mounting panel 16 of dodging the both sides of groove 61, and support 62 cooperates and sliding connection in the top of mounting panel 16 with slide rail 63, and the output shaft of motor 13, clamp 14 and guide 15 three are located same straight line, and sleeve pipe 21 can insert and establish in dodging the groove 61.
The working principle is as follows: the inclined strut is inserted into the clamping piece 14 and the guide piece 15, the end part of the lead screw 22 inserted into one end is fixed on the output shaft of the motor 13 through the clamp 31, the motor 13 is started, the lead screw 22 fixed by the clamp 31 rotates relative to the sleeve 21 because the sleeve 21 is fixed, the lead screw 22 fixed by the clamp 31 can be screwed out of the sleeve 21, in the process of screwing out the lead screw 22, the sleeve 21 translates towards one end far away from the motor 13 under the cooperation of the bracket 62 and the guide rail, after the lead screw 22 fixed by the clamp 31 is completely screwed out of the sleeve 21, the sleeve 21 is separated from the limit of the guide piece 15, one end of the sleeve 21 close to the motor 13 loses the supporting force, under the hinge action of the bracket 62 and the clamping piece 14, the groove 61 is avoided in a matching way, one end of the sleeve 21 losing the supporting force tilts downwards, and accordingly, concrete slag in the sleeve 21 falls into the.
The clamping member 14 includes a first sleeve 41, a plurality of threaded holes 42 are radially formed in the first sleeve 41, a pressing bolt 43 is threadedly connected to each threaded hole 42, and an inner end of the pressing bolt 43 can abut against the outer wall of the sleeve 21. The sleeve 21 is inserted into the first shaft sleeve 41, and the sleeve 21 is fixed through the compression bolt 43.
The guide piece 15 comprises a second shaft sleeve 51, a plurality of mounting holes 52 are radially formed in the second shaft sleeve 51, the mounting holes 52 are circumferentially and uniformly distributed outside the axis of the second shaft sleeve 51, the mounting holes 52 are stepped holes, a pressing piece 55 is fixedly arranged at an opening of the outer wall of each mounting hole 52, a T-shaped top column 53 is slidably connected in each mounting hole 52, and the top columns 53 and the pressing pieces 55 are connected through a compression spring 54. The step hole in the second sleeve 21 has a larger partial hole diameter close to the outer wall and a smaller partial hole diameter close to the inner wall, the T-shaped top pillar 53 is matched with the step hole, and the compression spring 54 can compress the top pillar 53, so that the looseness of the sleeve 21 is avoided, the coaxiality of the sleeve 21 is maintained, and meanwhile, the insertion and the extraction of the sleeve 21 are not influenced.
The guide 15 is located between the motor 13 and the tightening clamp 14, one end of the mounting plate 16 away from the motor 13 is hinged to a shifting piece 64, a tension spring 65 is connected between the shifting piece 64 and the mounting plate 16, and the shifting piece 64 can drive the sleeve 21 to rotate around a hinged point between the tightening clamp 14 and the bracket 62. After the sleeve 21 is separated from the limit of the guide 15, the tension spring 65 drives the shifting piece 64 to swing upwards, so that one end of the sleeve 21, which is far away from the motor 13, inclines upwards, the sleeve 21, which is close to one end of the motor 13, declines around the hinge point of the bracket 62 and the clamping piece 14, and at the avoidance groove 61, the sleeve 21 can fall into the avoidance groove 61, and concrete sundries in the sleeve 21 are discharged.
A return spring 66 is connected between each of two sides of the bracket 62 and an end of the mounting plate 16 close to the pick 64, and the return spring 66 can pull the bracket 62 to move on the guide rail in a direction close to the pick 64. In order to avoid that the sleeve 21 is still not separated from the limit position of the guide 15 after the screw rod 22 at one end of the sleeve 21 is completely screwed out due to inaccurate insertion position of the sleeve 21 into the guide 15, two return springs 66 are arranged between the bracket 62 and the mounting plate 16, and the return springs 66 can pull the sleeve 21 to move towards the side far away from the motor 13 after the screw rod 22 is separated from the sleeve 21, so that the sleeve 21 is separated from the limit position of the guide 15, and the end part of the sleeve 21 is inclined at the position far away from the guide 15.
It can be seen that if the sleeve 21 is already disengaged from the guide 15 when the lead screw 22 is not yet disengaged from the sleeve 21, the positioning effect of the sleeve 21 is deteriorated in this state, and damage to the lead screw 22 and the sleeve 21 is easily caused, with the above-described structure, it is possible to eliminate the above-described problem by already engaging the sleeve 21 with the guide 15 when the lead screw 22 is disengaged from the sleeve 21 by setting the position of the guide 15, and then pulling the sleeve 21 to disengage from the guide 15 by the return spring 66.
A material container 17 is arranged in the machine base 1, and an opening of the material container 17 is positioned below the avoiding groove 61.
Anchor clamps 31 include a U template 32, the middle part of U template 32 links to each other with the output shaft of motor 13 is fixed, U template 32 includes two symmetric distribution's ear, a locating hole 33 has been seted up on the inner wall of one of them ear, set up the locating hole 34 that link up this ear inside and outside on another ear, locating hole 34 internal thread is connected with a locking screw 35, the outer end of lead screw 22 is fixed be provided with lead screw 22 vertically connecting rod 23, the one end of connecting rod 23 can be inserted and establish in locating hole 33, the other end of connecting rod 23 can support with locking screw 35 and lean on. The clamp 31 is convenient to disassemble and assemble, and can prevent the screw rod 22 from being thrown out when the screw rod is separated from the sleeve 21, so that potential safety hazards are avoided.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications or additions may be made to the described embodiments or alternatives may be employed by those skilled in the art without departing from the spirit or ambit of the invention as defined in the appended claims.

Claims (4)

1. The equipment for automatically removing the slag of the diagonal brace of the aluminum mold is characterized by comprising a base (1), a motor (13), a clamping piece (14) for fixing the outer wall of a sleeve (21) and a guide piece (15) for guiding and positioning the outer wall of the sleeve (21), wherein a clamp (31) capable of fixing the outer end part of one screw rod (22) is arranged on an output shaft of the motor (13); the upper surface of the machine base (1) is provided with a mounting plate (16), the middle part of the mounting plate (16) is provided with an avoiding groove (61), the clamp piece (14) is rotatably connected onto a support (62), the mounting plates (16) on two sides of the avoiding groove (61) are provided with slide rails (63), the support (62) is matched with the slide rails (63) and is in sliding connection above the mounting plate (16), the output shaft of the motor (13), the clamp piece (14) and the guide piece (15) are positioned on the same straight line, and the sleeve (21) can be inserted into the avoiding groove (61);
the clamping piece (14) comprises a first shaft sleeve (41), a plurality of threaded holes (42) are formed in the first shaft sleeve (41) in the radial direction, a compression bolt (43) is connected to each threaded hole (42) in an internal thread mode, and the inner end of each compression bolt (43) can abut against the outer wall of the sleeve (21);
the guide piece (15) comprises a second shaft sleeve (51), a plurality of mounting holes (52) are formed in the second shaft sleeve (51) along the radial direction, the mounting holes (52) are circumferentially and uniformly distributed outside the axis of the second shaft sleeve (51), the mounting holes (52) are stepped holes, a pressing sheet (55) is fixedly arranged at an opening of the outer wall of each mounting hole (52), a T-shaped top column (53) is connected in each mounting hole (52) in a sliding mode, and the top columns (53) are connected with the pressing sheet through compression springs (54);
guide (15) are located between motor (13) and lock ring spare (14), the one end of keeping away from motor (13) on mounting panel (16) articulates there is a plectrum (64), be connected with an extension spring (65) between plectrum (64) and mounting panel (16), plectrum (64) can order about sleeve pipe (21) around the pin joint rotation between lock ring spare and support (62).
2. The apparatus for automatically removing the slag of the diagonal brace of the aluminum mold as recited in claim 1, wherein a return spring (66) is connected between each of two sides of the bracket (62) and an end portion of the mounting plate (16) close to the paddle, and the return spring (66) can pull the bracket (62) to move on the guide rail in a direction close to the paddle.
3. The apparatus for automatically removing the slag of the diagonal brace of the aluminum mold according to claim 1, wherein a material container (17) is provided in the machine base (1), and an opening of the material container (17) is located below the avoiding groove (61).
4. The equipment for automatically removing the slag of the diagonal brace of the aluminum mold according to claim 1, wherein the clamp (31) comprises a U-shaped plate (32), the middle part of the U-shaped plate (32) is fixedly connected with an output shaft of the motor (13), the U-shaped plate (32) comprises two ear parts which are symmetrically distributed, a positioning hole (33) is formed in the inner wall of one ear part, a positioning hole (34) penetrating through the inner surface and the outer surface of the ear part is formed in the other ear part, a locking screw rod (35) is connected with the positioning hole (34) in an internal thread mode, a connecting rod (23) perpendicular to the screw rod (22) is fixedly arranged at the outer end of the screw rod (22), one end of the connecting rod (23) can be inserted into the positioning hole (33), and the other end of the connecting rod (23) can abut against the locking screw rod (35.
CN201811338280.1A 2018-11-12 2018-11-12 Equipment for automatically removing slag of inclined strut of aluminum die Active CN111167811B (en)

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CN201811338280.1A CN111167811B (en) 2018-11-12 2018-11-12 Equipment for automatically removing slag of inclined strut of aluminum die

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Application Number Priority Date Filing Date Title
CN201811338280.1A CN111167811B (en) 2018-11-12 2018-11-12 Equipment for automatically removing slag of inclined strut of aluminum die

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CN111167811A CN111167811A (en) 2020-05-19
CN111167811B true CN111167811B (en) 2021-01-15

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Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6443169B1 (en) * 2000-06-10 2002-09-03 Fernando M Ferreira Portable apparatus for rotatably maintaining a pumping conduit on an incline
CN201913241U (en) * 2010-12-07 2011-08-03 山西省高平市泫氏铸业有限公司 Device for removing sundries residually remained in pipe
CN203330072U (en) * 2013-07-02 2013-12-11 山东墨龙石油机械股份有限公司 Device for removing graphite on inner surface of seamless pipe
CN107931262B (en) * 2017-11-20 2019-09-17 鸿霖股份有限公司 Delivery pump pipe cleaning plant
CN208992499U (en) * 2018-11-12 2019-06-18 湖北元拓铝合金模架制造有限公司 A kind of slagging-off tool of aluminum dipping form diagonal brace

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