CN219899460U - Die processing sweeps processing apparatus - Google Patents

Die processing sweeps processing apparatus Download PDF

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Publication number
CN219899460U
CN219899460U CN202320422233.5U CN202320422233U CN219899460U CN 219899460 U CN219899460 U CN 219899460U CN 202320422233 U CN202320422233 U CN 202320422233U CN 219899460 U CN219899460 U CN 219899460U
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CN
China
Prior art keywords
fixed
negative pressure
plate
driving
liquid crystal
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Active
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CN202320422233.5U
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Chinese (zh)
Inventor
赵洪春
李翠兰
王华东
陆从国
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Wuhu Likai Precision Mold Co ltd
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Wuhu Likai Precision Mold Co ltd
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Priority to CN202320422233.5U priority Critical patent/CN219899460U/en
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Abstract

The utility model discloses a die processing scrap processing device, which comprises: the device comprises a base, a vibrating plate, a storage box and a negative pressure mechanism; the last vibrating plate that is provided with through vibrating mechanism level of box, vibrating plate's upper surface interval and vertical fixed two fixed plates that are provided with, the lateral wall is netted and is used for placing the bin of mould and passes through the pivot level and rotationally sets up between two fixed plates, the upper surface level of the vibrating plate that is located the bin under is fixed to be provided with the inside collection box that can form the negative pressure, and the upper surface of collection box evenly is provided with a plurality of sweeps entry rather than the inner chamber is linked together, in order to collect the sweeps that shake off from the mould, this mould processing sweeps processing apparatus overcomes among the prior art in clear in-process, can only clear up the sweeps on mould surface, can not obtain the clearance to the inside of the complicated mould of structure or the downthehole sweeps thereof, lead to clean dynamics and the poor problem of cleaning effect.

Description

Die processing sweeps processing apparatus
Technical Field
The utility model relates to the field of die processing equipment, in particular to a die processing waste chip treatment device.
Background
MouldThe industrial production is used for injection molding, blow molding, extrusion, die casting or forging, smelting, stamping and other methods to obtain various molds and tools of the required products. In short, a mold is a tool used to make a molded article, which is made up of various parts, with different molds being made up of different parts. The processing of the appearance of the article is realized mainly by changing the physical state of the formed material. The term "industrial mother" is used. After the die part is processed, part of metal powder is attached to the surface of the die part, and once the die part is wet or encounters water, caking is easily generated on the surface of the die part, so that the use of the part is affected.
And (3) searching: the Chinese patent application number is CN202122274102.0, has disclosed a kind of high strength car part mould processes and uses the auxiliary device, including the bottom plate, the top of the bottom plate has fixed frames and movable frames separately, there are cleaning components in the said fixed frame, there are first rotary table and second rotary table in the said movable frame separately, the upper end of the said first rotary table has compacting components, the outside of the said second rotary table has rotating mechanisms, the right side of the top of the said bottom plate has fixed blocks, there are cylinders connected with movable frame on the said fixed block; the pressing assembly comprises a screw rod arranged at the upper end of the movable frame, and a movable plate which is rotationally connected with the first rotating disc is arranged at the bottom of the screw rod; the rotating mechanism comprises an upright post fixed at the bottom of the second turntable and a servo motor arranged at the outer side of the movable frame, a rotating rod is arranged at the output end of the servo motor, a first bevel gear is arranged at the left end of the rotating rod, and a second bevel gear meshed with the first bevel gear is arranged at the outer side of the upright post.
The inventors have found that the following problems exist with the prior art in the practice of the present utility model:
in the prior art, the metal scraps on the surface of the die are scraped off by the cleaning brush of the cleaning assembly, and in the cleaning process, the scraps on the surface of the die can be cleaned only, and the scraps in the die with a complex structure or holes of the die can not be cleaned, so that the cleaning strength and the cleaning effect are poor.
Therefore, the utility model provides a die processing waste disposal device which can overcome the defect that in the prior art, only waste on the surface of a die can be cleaned through a cleaning component, and can not clean waste inside the die with a complex structure or in holes of the die, so that the cleaning strength and the cleaning effect are improved, and on the other hand, cleaned waste can be quickly and intensively collected in a collecting box, and the problem that waste is splashed to the surrounding environment by personnel in the later stage and the waste in the surrounding environment is required to be cleaned is solved.
Disclosure of Invention
Aiming at the technical problems, the utility model aims to overcome the problems that in the prior art, the cleaning brush of the cleaning component is used for scraping and removing the metal scraps on the surface of the die, in the cleaning process, the metal scraps on the surface of the die can only be cleaned, and the inside of the die with a complex structure or scraps in holes of the die cannot be cleaned, so that the cleaning force and the cleaning effect are poor.
In order to achieve the above object, the present utility model provides a die processing scrap processing apparatus including: the device comprises a base, a vibrating plate, a storage box and a negative pressure mechanism;
the upper surface level of box is provided with the vibrating plate through vibrating mechanism level, the upper surface interval of vibrating plate and vertical fixed two fixed plates that are provided with, the lateral wall is netted and is used for placing the mould the bin is through pivot level and rotationally setting up between two fixed plates, is located under the bin the upper surface level of vibrating plate is fixed and is provided with the collection box that inside can form the negative pressure, just the upper surface of collection box evenly is provided with a plurality of sweeps entry that is linked together rather than the inner chamber to collect the sweeps that shake off from the mould.
Preferably, the vibration mechanism includes: the device comprises a movable slide plate, an eccentric wheel, a driving mechanism and a return spring; wherein, the liquid crystal display device comprises a liquid crystal display device,
the upper surface part of base inwards sunken formation assembly recess, and this assembly recess internal space and level are fixed and are provided with two piece at least guide bars, and two the fixed two removal skateboards that are provided with of interval and slidable on the guide bar, and every the tip of guide bar all overlaps and is equipped with a reset spring, and every reset spring's one end is all fixed on this assembly recess, and its other end is all fixed to be set up on corresponding removal skateboard, is located arbitrary this assembly recess internal level and rotationally are provided with can promote the removal skateboard is along the eccentric wheel that the horizontal direction removed, the vibration board level is fixed to be set up two on the removal skateboard.
Preferably, the scrap treatment device further comprises a driving mechanism for driving the eccentric wheel to rotate; the driving mechanism includes: the driving device comprises a driving shaft, a driving motor, a first driving gear and a second driving gear; wherein, the liquid crystal display device comprises a liquid crystal display device,
the assembly groove is horizontally and rotatably provided with a driving shaft, the driving shaft is at least fixedly provided with an eccentric wheel, one end of the driving shaft is fixedly provided with a first driving gear, the driving motor is horizontally and fixedly arranged below the driving shaft, and an output shaft of the driving motor is horizontally arranged and is fixedly provided with a second driving gear which is meshed with the first driving gear.
Preferably, the scrap disposal device further comprises a negative pressure mechanism capable of generating negative pressure inside the collection box,
the negative pressure mechanism includes: a negative pressure pump; wherein, the liquid crystal display device comprises a liquid crystal display device,
the top of any one of the fixing plates is fixedly provided with a negative pressure pump, and the input end of the negative pressure pump extends from the side wall of the collecting box to the inside of the collecting box through a gas pipe.
Preferably, an anti-blocking net parallel to the side wall through which the gas pipe passes is vertically and fixedly arranged in the collecting box.
Preferably, the negative pressure mechanism further comprises: an air outlet box body and an air outlet nozzle; wherein, the liquid crystal display device comprises a liquid crystal display device,
the top level of two the fixed plates is fixedly provided with an air outlet box body, the lower surface of the air outlet box body is uniformly and vertically provided with a plurality of air outlet spray heads communicated with the inside of the air outlet box body, and the output end of the negative pressure pump is communicated with the inside of the air outlet box body.
Preferably, the side wall of the collecting box is provided with an opening communicated with the inner cavity of the collecting box, and the opening is hinged with a sealing door capable of being covered on the opening.
Preferably, the scrap disposal device further includes a rotation mechanism for driving the storage tank to rotate in a horizontal direction, the rotation mechanism including: a rotating gear and a rotating rack plate; wherein, the liquid crystal display device comprises a liquid crystal display device,
any one of the rotating shafts is provided with a rotating gear fixedly arranged outside the fixed plate corresponding to the rotating shaft, a supporting plate is horizontally and fixedly arranged on the side wall of the fixed plate and positioned below the rotating rack plate, the upper surface of the supporting plate is horizontally and movably provided with a rotating rack plate meshed with the rotating gear, and the upper surface of the supporting plate is also horizontally provided with a cylinder used for driving the rotating rack plate to move back and forth along the horizontal direction.
Preferably, the upper surface of the support plate below the rotating rack plate is recessed downward to form a guide chute parallel to the rotating rack plate, at least two guide sliding blocks are arranged in the guide chute at intervals and horizontally in a sliding manner, and the rotating rack plate is horizontally fixed on the two guide sliding blocks.
Preferably, the inside of bin is provided with a plurality of storage cavity, is located the lateral wall of every storage cavity and all offers at least one and put the thing mouth rather than the inner chamber is linked together, and should put the thing mouth detachable be provided with can cover and close the apron of putting the thing mouth.
According to the technical scheme, the die processing scrap processing device provided by the utility model has the beneficial effects that: when the device is used, the mould to be cleaned is placed in the storage box, the storage box is driven to rotate in the horizontal direction so as to drive the mould placed in the storage box to rotate together, meanwhile, the vibrating mechanism drives the vibrating plate to vibrate, the vibrating plate drives the storage box and the mould to vibrate together in the vibrating process, so that scraps in the vibrating mould and in holes of the vibrating mould can shake off and pass through the side wall of the reticular storage box to fall down, and under the action of the collection box with a negative pressure function, scraps shaken off from the mould pass through the storage box to be sucked into the collection box to be collected. On the one hand, the problem that the sweeps on the surface of the die can only be cleaned through the cleaning component in the prior art, and the sweeps in the die with a complex structure or in holes of the die can not be cleaned is solved, so that the cleaning strength and the cleaning effect are improved, and on the other hand, the cleaned sweeps can be quickly and intensively collected in the collecting box, so that the problem that the sweeps are thoroughly splashed to the surrounding environment and the sweeps of the surrounding environment need to be cleaned by later-stage staff is solved, and the workload of the staff is increased.
Additional features and advantages of the utility model will be set forth in the detailed description which follows; and none of the utility models are related to the same or are capable of being practiced in the prior art.
Drawings
The accompanying drawings are included to provide a further understanding of the utility model, and are incorporated in and constitute a part of this specification, illustrate the utility model and together with the description serve to explain, without limitation, the utility model. In the drawings:
fig. 1 is a schematic view of a die processing scrap treatment apparatus provided in a preferred embodiment of the present utility model;
fig. 2 is a structural cross-sectional view of a die processing scrap treatment device provided in a preferred embodiment of the present utility model;
fig. 3 is a schematic view showing a structure of a base of a die processing scrap processing apparatus according to a preferred embodiment of the present utility model
Fig. 4 is a schematic view of a structure of a storage tank of a mold processing scrap treatment apparatus provided in a preferred embodiment of the present utility model;
fig. 5 is a schematic view showing a part of a structure of a storage tank of a die processing scrap processing apparatus provided in a preferred embodiment of the present utility model.
Description of the reference numerals
1. A base; 2. a vibration plate; 3. a fixing plate; 4. a collection box; 5. a storage tank; 6. a negative pressure mechanism; 601. an air outlet box body; 602. an air outlet nozzle; 603. a negative pressure pump; 7. a gas pipe; 801. a moving slide plate; 802. an eccentric wheel; 803. a driving mechanism; 804. a return spring; 9. a rotating mechanism; 901. rotating the gear; 902. rotating the rack plate; 10. a support plate; 11. a cylinder; 12. a cover plate; 13. a guide rod; 14. an anti-blocking net.
Detailed Description
The following describes specific embodiments of the present utility model in detail with reference to the drawings. It should be understood that the detailed description and specific examples, while indicating and illustrating the utility model, are not intended to limit the utility model.
As shown in fig. 1 to 5, the present utility model provides a die processing scrap processing apparatus, comprising: the device comprises a base 1, a vibrating plate 2, a storage box 5 and a negative pressure mechanism 6;
the upper side of box 1 is provided with vibrating plate 2 through vibrating mechanism level, vibrating plate 2's upper surface interval and vertical fixed two fixed plates 3 that are provided with, the lateral wall is netted and is used for placing the mould bin 5 is through pivot level and rotationally setting up between two fixed plates 3, is located below bin 5 vibrating plate 2's upper surface level is fixed to be provided with inside collection box 4 that can form the negative pressure, just collection box 4's upper surface evenly is provided with a plurality of sweeps entry that is linked together rather than the inner chamber to collect the sweeps that shake off from the mould.
In the above-mentioned scheme, during the use, will wait to clear up the mould is put into in the bin 5, drive bin 5 rotates in the horizontal direction to drive the mould of placing in its inside and rotate in the lump, simultaneously, drive through vibrating mechanism vibrating plate 2 produces the vibration, vibrating plate 2 is at the in-process of vibration, drive pivoted bin 5 and mould vibrate in the lump, thereby can make the inside of vibrating mould and its downthehole sweeps shake out and pass netted bin 5's lateral wall drops, and under the effect of bin 4 that has the negative pressure function, make the sweeps that shake out from the mould pass bin 5 is inhaled to collect in the inside of bin 4. On the one hand, the problem that the sweeps on the surface of the die can only be cleaned through the cleaning component in the prior art, and the sweeps in the die with a complex structure or in holes of the die can not be cleaned is solved, so that the cleaning strength and the cleaning effect are improved, and on the other hand, the cleaned sweeps can be quickly and intensively collected in the collecting box 4, so that the problem that the sweeps are thoroughly splashed to the surrounding environment and the sweeps of the surrounding environment need to be cleaned by later-stage staff is solved, and the workload of the staff is increased.
In a preferred embodiment of the present utility model, the scrap processing apparatus further includes: base 1, vibrating plate 2 passes through vibrating mechanism level setting and is in on the base 1, vibrating mechanism includes: a moving sled 801, eccentric 802, drive mechanism 803, and return spring 804; wherein, the liquid crystal display device comprises a liquid crystal display device,
the upper surface part of the base 1 is concaved inwards to form an assembly groove, at least two guide rods 13 are arranged in the assembly groove at intervals and horizontally and fixedly, two movable slide plates 801 are fixedly arranged on the guide rods 13 at intervals and slidably, a reset spring 804 is sleeved at the end part of each guide rod 13, one end of each reset spring 804 is fixedly arranged on the corresponding assembly groove, the other end of each reset spring 804 is fixedly arranged on the corresponding movable slide plate 801, eccentric wheels 802 capable of pushing the movable slide plates 801 to move along the horizontal direction are horizontally and rotatably arranged in the assembly groove beside any movable slide plate 801, and the vibrating plate 2 is horizontally and fixedly arranged on the two movable slide plates 801.
In the above-mentioned scheme, by driving the eccentric wheel 802 to rotate along the horizontal direction, in the rotating process, the opposite moving slide plate 801 is intermittently pushed to move along the horizontal direction to the position where the other moving slide plate 801 is located, in the moving process, the return spring 804 connected with the moving slide plate 802 pushed by the eccentric wheel 802 is in a stretched state, and the return spring 804 connected with the other moving slide plate 801 is in a compressed state, meanwhile, the vibrating plate 2 fixed on the two moving slide plates 801 is driven to move in the horizontal direction, when the eccentric wheel 802 is separated from the corresponding moving slide plate 801 in the rotating process, in the process of being retracted to the initial state, the moving slide plate 801 corresponding to the moving slide plate 801 is driven to reciprocate to the initial position, in the process of being extended to the initial state, the moving slide plate 801 connected with the other moving slide plate is also driven to the initial position, so that the two moving slide plates 801 are driven to reciprocate to the same direction, and the vibrating plate 801 can be driven to reciprocate to the same direction, in the vibrating plate 801 in the horizontal direction, and the vibrating plate 801 is driven to reciprocate to the same direction, and the vibrating plate 801 is driven to reciprocate to the initial position.
In a preferred embodiment of the utility model, the scrap handling device further comprises a driving mechanism 803 for driving the eccentric 802 in rotation; the driving mechanism 803 includes: the driving device comprises a driving shaft, a driving motor, a first driving gear and a second driving gear; wherein, the liquid crystal display device comprises a liquid crystal display device,
the assembly groove is horizontally and rotatably provided with a driving shaft, the driving shaft is at least fixedly provided with an eccentric wheel 802, one end of the driving shaft is fixedly provided with a first driving gear, the driving motor is horizontally and fixedly arranged below the driving shaft, and an output shaft of the driving motor is horizontally arranged and is fixedly provided with a second driving gear which is meshed with the first driving gear.
In the above scheme, the second driving gear of the output shaft of the motor is driven to rotate, and the driving shaft is driven to rotate under the meshing connection of the first driving gear and the second driving gear, so that the eccentric wheel 802 fixed on the shaft body of the motor is rotated.
In a preferred embodiment of the utility model, the scrap treatment device further comprises a negative pressure mechanism 6 capable of generating a negative pressure inside the collection box 4,
the negative pressure mechanism 6 includes: a negative pressure pump 603; wherein, the liquid crystal display device comprises a liquid crystal display device,
the top of any one of the fixing plates 3 is fixedly provided with a negative pressure pump 603, and the input end of the negative pressure pump 603 extends from the side wall of the collecting box 4 to the inside thereof through a gas pipe 7.
In the above-described scheme, the negative pressure pump 603 is activated to pump out the gas inside the collection box 4 so as to generate negative pressure inside the collection box, so that dust shaken off from the mold is introduced into the collection box 4 through a plurality of scrap inlets on the upper surface thereof under the action of the negative pressure and collected.
In a preferred embodiment of the utility model, the inside of the collection box 4 is vertically and fixedly provided with an anti-blocking net 14 parallel to the side wall through which the gas pipe 7 passes.
In the above-mentioned solution, during use, scraps are placed into the gas pipe 7 to block it.
In a preferred embodiment of the present utility model, the negative pressure mechanism 6 further includes: an air outlet box 601 and an air outlet nozzle 602; wherein, the liquid crystal display device comprises a liquid crystal display device,
the top level of two fixed plate 3 is fixed and is provided with air-out box body 601, the lower surface of air-out box body 601 is even vertical to be provided with a plurality of air-out shower nozzle 602 that is linked together with its inside, the output of negative pressure pump 603 with the inside of air-out box body 601 is linked together.
In the above-mentioned scheme, in the use, negative pressure pump 603 will with the gas in the collection box 4 is drawn into in the air-out box body 601 and through a plurality of air-out shower nozzle 602 spouts to the mould in the bin 5 for with the dust on the mould surface blow off to collection box 4, can further improve clean effect and the clean dynamics to the mould.
In a preferred embodiment of the utility model, the side wall of the collecting box 4 is provided with an opening communicated with the inner cavity of the collecting box, and the opening is hinged with a sealing door capable of covering the opening.
In the above-mentioned scheme, in the use, with sealing door lid with the uncovered of collection box 4 is in order to collect the sweeps of mould in collection box 4, when the sweeps in the collection box 4 accumulate to a certain degree, can open sealing door, so that pass through the uncovered sweeps in the collection box 4 clearance.
In a preferred embodiment of the present utility model, the scrap handling apparatus further includes a rotation mechanism 9 for driving the bin 5 to rotate in a horizontal direction, the rotation mechanism 9 including: a rotary gear 901 and a rotary rack plate 902; wherein, the liquid crystal display device comprises a liquid crystal display device,
one end of any one of the rotating shafts passes through the outside of the corresponding fixed plate 3 and is fixedly provided with a rotating gear 901, a supporting plate 10 is horizontally and fixedly arranged on the side wall of the fixed plate 3 below the rotating rack plate 902, the upper surface of the supporting plate 10 is horizontally and movably provided with a rotating rack plate 902 meshed with the rotating gear 901, and the upper surface of the supporting plate 10 is also horizontally provided with a cylinder 11 for driving the rotating rack plate 902 to move back and forth along the horizontal direction.
In the above scheme, when in use, the cylinder 11 is driven to drive the rack plate 902 to move back and forth along the upper surface of the support plate 10 horizontally and linearly, and in the process of back and forth movement, the driving gear 901 in meshed connection with the rack plate drives the rotating shaft to rotate, so that the storage box 5 rotates in the forward and reverse directions in the horizontal direction under the action of the rotating mechanism 9, and the storage box 5 and the die positioned in the storage box rotate in all directions.
In addition, the cylinder 11 is a conventional known technology, and therefore, the specific structure and the use principle thereof will not be described herein.
In a preferred embodiment of the present utility model, the upper surface portion of the support plate 10 below the rotating rack plate 902 is recessed downward to form a guide chute parallel thereto, and at least two guide sliders are provided in the guide chute at intervals and horizontally slidably, and the rotating rack plate 902 is horizontally fixed to the two guide sliders.
In the above-described aspect, under the co-operation of the guide slider and the guide chute, it is ensured that the driving rack plate can move linearly smoothly and reliably along the upper surface of the support plate 10.
In a preferred embodiment of the present utility model, a plurality of storage cavities are disposed in the storage box 5, at least one storage opening communicating with the inner cavity of each storage cavity is disposed on a side wall of each storage cavity, and the storage opening is detachably provided with a cover plate 12 capable of covering the storage opening.
In the above-mentioned scheme, during the use, can put into a plurality of storage cavities with a plurality of moulds respectively one by one in, prevent to bump and produce the damage between the mould at the clearance in-process, can clear up in batches, improved clean effect.
The side wall of the storage box 2 is surrounded by a spring net.
In addition, when in use, the cover plate 12 is opened to put the die into the corresponding storage cavity through the object placing port, and then the cover plate 12 of the object placing port is covered to prevent the die from falling out from the object placing port in the cleaning process.
In summary, the die processing scrap processing device provided by the utility model solves the problems that in the prior art, the metal scraps on the surface of the die are scraped off by the cleaning brush of the cleaning assembly, in the cleaning process, only the scraps on the surface of the die can be cleaned, and the scraps in the die with a complex structure or holes thereof cannot be cleaned, so that the cleaning force and the cleaning effect are poor.
The preferred embodiments of the present utility model have been described in detail above with reference to the accompanying drawings, but the present utility model is not limited to the specific details of the above embodiments, and various simple modifications can be made to the technical solution of the present utility model within the scope of the technical concept of the present utility model, and all the simple modifications belong to the protection scope of the present utility model.
In addition, the specific features described in the above embodiments may be combined in any suitable manner, and in order to avoid unnecessary repetition, various possible combinations are not described further.
Moreover, any combination of the various embodiments of the utility model can be made without departing from the spirit of the utility model, which should also be considered as disclosed herein.

Claims (10)

1. A die processing scrap processing apparatus, characterized in that the die processing scrap processing apparatus comprises: the device comprises a base (1), a vibrating plate (2), a storage box (5) and a negative pressure mechanism (6);
the utility model discloses a vibrating device, including base (1) and bin (5), vibration mechanism level is provided with vibrating plate (2) in the top of base (1), the upper surface interval and the vertical fixed two fixed plates (3) that are provided with of vibrating plate (2), the lateral wall all around is netted and is used for placing the mould bin (5) are through pivot level and rotationally set up between two fixed plates (3), are located under bin (5) the upper surface level of vibrating plate (2) is fixed to be provided with inside collection box (4) that can form the negative pressure, just the upper surface of collection box (4) evenly is provided with a plurality of sweeps entry rather than the inner chamber is linked together to collect the sweeps that shake off from the mould.
2. The die processing scrap processing apparatus in accordance with claim 1, wherein the vibration mechanism includes: a moving slide plate (801), an eccentric wheel (802), a driving mechanism (803) and a return spring (804); wherein, the liquid crystal display device comprises a liquid crystal display device,
the upper surface part of base (1) inwards sunken formation assembly recess, and this assembly recess internal space and level are fixed be provided with two piece at least guide bars (13), and two interval and slidable ground are fixed be provided with two removal slide (801) on guide bar (13), and every the tip of guide bar (13) all overlaps is equipped with a reset spring (804), and every reset spring (804)'s one end is all fixed on this assembly recess, and its other end is all fixed to be set up on corresponding removal slide (801), is located arbitrary this assembly recess of removal slide (801) internal level and rotationally be provided with can promote removal slide (801) follow eccentric wheel (802) of horizontal direction removal, vibration board (2) horizontal fixation sets up on two removal slide (801).
3. A die tooling scrap handling device in accordance with claim 2, further comprising a drive mechanism (803) for driving the eccentric (802) in rotation; the drive mechanism (803) includes: the driving device comprises a driving shaft, a driving motor, a first driving gear and a second driving gear; wherein, the liquid crystal display device comprises a liquid crystal display device,
the assembly groove is horizontally and rotatably provided with a driving shaft, the driving shaft is at least fixedly provided with an eccentric wheel (802), one end of the driving shaft is fixedly provided with a first driving gear, the driving motor is horizontally and fixedly arranged below the driving shaft, and an output shaft of the driving motor is horizontally arranged and is fixedly provided with a second driving gear which is meshed with the first driving gear.
4. The die processing scrap processing apparatus in accordance with claim 1, further comprising a negative pressure mechanism (6) capable of generating a negative pressure inside the collection tank (4), the negative pressure mechanism (6) comprising: a negative pressure pump (603); wherein, the liquid crystal display device comprises a liquid crystal display device,
the top of any fixed plate (3) is fixedly provided with a negative pressure pump (603), and the input end of the negative pressure pump (603) extends to the inside of the collecting box (4) from the side wall of the collecting box through a gas pipe (7).
5. A mould processing scrap handling device in accordance with claim 4, characterized in that the inside of the collection box (4) is vertically fixed with an anti-blocking net (14) parallel to the side wall through which the gas pipe (7) passes.
6. The die processing scrap processing apparatus in accordance with claim 4, wherein the negative pressure mechanism (6) further includes: an air outlet box body (601) and an air outlet nozzle (602); wherein, the liquid crystal display device comprises a liquid crystal display device,
the top level of two fixed plate (3) is fixed and is provided with air-out box body (601), the lower surface of air-out box body (601) is evenly vertical to be provided with a plurality of air-out shower nozzle (602) that are linked together with its inside, the output of negative pressure pump (603) with the inside of air-out box body (601) is linked together.
7. The mold processing scrap treatment device according to claim 1 or 5, characterized in that the side wall of the collection box (4) is provided with an opening communicating with the inner cavity thereof, and the opening is hinged with a sealing door capable of covering the opening.
8. A die processing scrap processing apparatus in accordance with claim 1, further comprising a rotation mechanism (9) for driving the reserve tank (5) to rotate in a horizontal direction, the rotation mechanism (9) comprising: a rotary gear (901) and a rotary rack plate (902); wherein, the liquid crystal display device comprises a liquid crystal display device,
one end of any one pivot pass rather than corresponding fixed plate (3) is outer and fixedly be provided with rotation gear (901), is located rotation rack board (902) below fixed backup pad (10) of being provided with of level on the lateral wall of fixed plate (3), and the upper surface level of backup pad (10) and movably be provided with rotation rack board (902) that rotation gear (901) meshing is connected, the upper surface of backup pad (10) still horizontally is provided with and is used for driving rotation rack board (902) are along cylinder (11) that can reciprocate in the horizontal direction.
9. The die processing scrap treating apparatus in accordance with claim 8, wherein an upper surface portion of the supporting plate (10) located under the rotary rack plate (902) is downwardly recessed to form a guide runner parallel thereto, and at least two guide sliders are provided in the guide runner at intervals and horizontally slidably, the rotary rack plate (902) being horizontally fixed to the two guide sliders.
10. The die processing waste chip treatment device according to claim 1, wherein a plurality of storage cavities are arranged in the storage box (5), at least one storage opening communicated with the inner cavity of the storage cavity is formed in the side wall of each storage cavity, and a cover plate (12) capable of being covered on the storage opening is detachably arranged on the storage opening.
CN202320422233.5U 2023-03-03 2023-03-03 Die processing sweeps processing apparatus Active CN219899460U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320422233.5U CN219899460U (en) 2023-03-03 2023-03-03 Die processing sweeps processing apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320422233.5U CN219899460U (en) 2023-03-03 2023-03-03 Die processing sweeps processing apparatus

Publications (1)

Publication Number Publication Date
CN219899460U true CN219899460U (en) 2023-10-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320422233.5U Active CN219899460U (en) 2023-03-03 2023-03-03 Die processing sweeps processing apparatus

Country Status (1)

Country Link
CN (1) CN219899460U (en)

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