CN214489586U - Double-groove equipment - Google Patents

Double-groove equipment Download PDF

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Publication number
CN214489586U
CN214489586U CN202022994944.9U CN202022994944U CN214489586U CN 214489586 U CN214489586 U CN 214489586U CN 202022994944 U CN202022994944 U CN 202022994944U CN 214489586 U CN214489586 U CN 214489586U
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groove
carrier
double
seat
pivot
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CN202022994944.9U
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徐高兵
倪前
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Manifick Machinery Manufacturing Kunshan Co ltd
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Manifick Machinery Manufacturing Kunshan Co ltd
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Abstract

The utility model discloses a double groove equipment, including the operation car main part that possesses the universal wheel, be equipped with the carrier main part that possesses the lift adjustment displacement and the carrier seat main part that possesses the lift displacement on the operation car main part, be equipped with the initiative pinch roller mechanism in the carrier main part and possess the top groove mechanism of pivot adjustment displacement, be equipped with supporting wheel mechanism in the carrier seat main part and possess the bottom groove mechanism of pivot adjustment displacement, the initiative pinch roller mechanism includes the initiative pinch roller portion, pinch roller driving source and spacing plate body, be equipped with on the spacing plate body and push up groove windowing and bottom slope opening windowing, supporting wheel mechanism is including the supporting wheel group that is used for supporting the panel diapire. The utility model discloses can realize automatic walking groove operation, satisfy automatic groove operation demand, reduce the human cost, improve the groove shaping precision. The milling spindle has a pivot angle adjusting function, can be matched and adjusted according to the requirement of the groove, meets the requirements of the milling operation of grooves with various specifications, and has a wide application range.

Description

Double-groove equipment
Technical Field
The utility model relates to a double groove equipment belongs to the technical field of the two-sided automatic groove of steel sheet.
Background
At present, the edges of the plates need to be chamfered after production, for example, iron plates, aluminum alloy plates, plastic plates and the like, burrs exist at the edges, and chamfering treatment is needed.
The traditional chamfering, namely a main shaft, belongs to a fixed mode, when the surface of a steel plate is uneven, the machined chamfering can be different in size, so that secondary rework is needed, the traditional mode comprises a scraper and a handheld chamfering machine, wherein an edge scraper is adopted to fix a plate, and burrs at edges are repeatedly scraped off by an edge hanging cutter to form a fillet; in order to improve the efficiency of chamfering, a handheld chamfering machine tool is also available in the market at present, a plate is firstly fixed, and then an electric blade on the handheld chamfering machine is close to the edge of the plate to perform chamfering operation. However, when the length of the steel plate is too long, the size and the angle of the chamfering are difficult to control by the handheld chamfering machine, the surface after chamfering is rough, the edge and corner consistency is poor, an operator needs to control the force and the angle when using the handheld chamfering machine, the labor intensity is high, the production efficiency is low, and certain potential safety hazards exist.
At present, the traveling groove equipment exists, namely, the linear displacement along the direction of the steel plate can be realized by pushing the groove equipment manually, so that the double-sided groove of the steel plate is realized, the traveling groove equipment needs to be pushed manually for traveling groove operation traditionally, and the groove angle is relatively fixed, so that the requirements of forming grooves of various specifications cannot be met.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the not enough of above-mentioned prior art, there is the human cost height and the problem of groove specification relatively fixed to traditional walking groove equipment, provide a two-sided groove equipment.
In order to achieve the above purpose, the utility model discloses the technical scheme who adopts is:
a double-face beveling device comprises a running vehicle main body with universal wheels, wherein the running vehicle main body is provided with a carrier main body with lifting adjustment displacement and a carrier main body with lifting displacement,
the carrier main body is provided with a driving pinch roller mechanism and a top groove mechanism with a pivot shaft for adjusting displacement, the carrier main body is provided with a supporting wheel mechanism and a bottom groove mechanism with a pivot shaft for adjusting displacement,
the active pressing wheel mechanism comprises an active pressing wheel part, a pressing wheel driving source for driving the active pressing wheel part to rotate and a limiting plate body for limiting the end surface of a plate, wherein a top groove opening window for exposing the milling part of the top groove mechanism and a bottom groove opening window for exposing the milling part of the bottom groove mechanism are arranged on the limiting plate body,
the supporting wheel mechanism comprises a supporting wheel set used for supporting the bottom wall of the plate.
Preferably, the top groove mechanism comprises a top groove carrier seat with a pivot for adjusting displacement and a top groove spindle arranged on the top groove carrier seat, and the top groove carrier seat is provided with a top groove pivot matching part and a top groove locking part for locking the top groove carrier seat at a fixed angle.
Preferably, the carrier main body is provided with a top groove guide lug plate with a guide chute, the top groove carrier seat is provided with a top groove guide end which is in sliding fit with the guide chute, the top groove guide end is provided with a top groove locking bolt, and the top groove guide lug plate is provided with a scale mark.
Preferably, the top groove locking part is a worm locking part matched and connected with the top groove carrier seat.
Preferably, the bottom groove mechanism comprises a bottom groove carrier seat with a pivot for adjusting displacement and a bottom groove main shaft arranged on the bottom groove carrier seat, and the bottom groove carrier seat is provided with a bottom groove pivot matching part and a bottom groove locking part for fixing and locking the bottom groove carrier seat at a fixed angle.
Preferably, be equipped with the end slope mouth direction otic placode that possesses the direction spout in carrying the seat main part, be equipped with the sliding fit on the end slope mouth direction end in the direction spout on the end slope mouth year seat, be equipped with end slope mouth locking bolt on the end slope mouth direction end, be equipped with the scale mark on the end slope mouth direction otic placode.
Preferably, the bottom slope locking part is a worm locking part matched and connected with the bottom slope carrier seat.
The beneficial effects of the utility model are mainly embodied in that:
1. the automatic traveling groove operation can be realized, the requirement of the automatic groove operation is met, the labor cost is reduced, and the groove forming precision is improved.
2. The milling spindle has a pivot angle adjusting function, can be matched and adjusted according to the requirement of the groove, meets the requirements of the milling operation of grooves with various specifications, and has a wide application range.
3. The whole design is ingenious, the matching structure is compact, and the requirements of various groove forming are met.
Drawings
Fig. 1 is a schematic structural diagram of the double-groove equipment of the present invention.
Fig. 2 is a schematic side view of the double-groove equipment of the present invention.
Fig. 3 is another schematic side view of the double-groove apparatus of the present invention.
Fig. 4 is a schematic view of a top view structure of the double-groove apparatus of the present invention.
Fig. 5 is a schematic view of the structure of the double-groove apparatus in the present invention.
Fig. 6 is a schematic view of another view structure of the double-groove apparatus of the present invention in a use state.
Detailed Description
The utility model provides a double-face groove equipment. The technical solution of the present invention will be described in detail below with reference to the accompanying drawings so as to be easier to understand and grasp.
A double-bevel apparatus, as shown in FIGS. 1 to 6, includes a running vehicle main body 1 having universal wheels 10, and the running vehicle main body 1 is provided with a carriage main body 2 having a lifting adjustment displacement and a carriage main body 3 having a lifting displacement.
The carrier main body 2 is provided with a driving pinch roller mechanism 4 and a top bevel mechanism 5 having a pivot adjusting displacement, and the carrier main body 3 is provided with a supporting roller mechanism 6 and a bottom bevel mechanism 7 having a pivot adjusting displacement.
The driving pinch roller mechanism 4 comprises a driving pinch roller portion 41, a pinch roller driving source 42 for driving the driving pinch roller portion 41 to rotate, and a limiting plate body 8 for limiting the end face of the plate 20, wherein a top groove opening window 81 for exposing a milling portion of the top groove mechanism and a bottom groove opening window 82 for exposing a milling portion of the bottom groove mechanism are arranged on the limiting plate body 8.
The supporting wheel mechanism 6 comprises a supporting wheel set 61 for supporting the bottom wall of the sheet material.
The specific implementation process and principle description are as follows:
when groove operation is carried out, firstly, the plate 20 is placed on the rack, then the operation vehicle main body 1 is operated to the position matched with the plate 20, and the end face of the plate 20 is abutted to the limiting plate body 8.
The lifting displacement of the carrier main body 2 is adjusted, so that the active pressing wheel part 41 is in press fit with the top surface of the plate 20, and then the lifting displacement of the carrier main body 3 is adjusted, so that the supporting wheel set 61 and the active pressing wheel part 41 clamp the plate 20.
Finally, the angle of a specific slope is adjusted and locked through the pivot displacement adjustment of the top bevel mechanism 5 and the bottom bevel mechanism 7, and then the pressing wheel driving source 42 drives the main pressing wheel 41 to rotate and displace to drive, so that the self-walking bevel forming is realized. The manual operation is not needed, and the processing requirements of various bevel surfaces are met.
It should be noted that the supporting wheel set 61 is composed of a plurality of supporting wheels, the supporting wheels are flexible wheels and have a certain inclination angle, and in the clamping operation process, the end face of the plate 20 can be kept attached to the limiting plate 8. The primary pressure wheel portion 41 further includes an extension auxiliary wheel 411 that is fitted to face the support wheel group 61. The support wheel set 61 includes a driving wheel portion engaged with the auxiliary extension wheel 411, and the driving wheel portion includes a wheel driving source 611, that is, the driving wheel portion is driven in synchronization with the driving wheel portion.
In a specific embodiment, the carrier body 3 and the carrier body 2 are both provided with a lifting rocking wheel mechanism 9, and respective lifting adjustment is performed through the lifting rocking wheel mechanism 9, and the lifting rocking wheel mechanism 9 belongs to the prior art and is not described herein again.
In one embodiment, as shown in fig. 2, the top bevel mechanism 5 includes a top bevel carrier 51 with a pivot adjusting displacement and a top bevel spindle 52 disposed on the top bevel carrier 51, and the top bevel carrier 51 is provided with a top bevel pivot mating portion and a top bevel locking portion 53 for locking the top bevel carrier at a fixed angle.
Specifically, the top-groove spindle 52 can be mounted on the top-groove carrier base 51, and the top-groove spindle 52 includes a milling portion, which is a groove milling cutter. The pivot displacement adjustment of the top groove carrier seat 51 on the carrier main body 2 can be realized through the top groove pivot matching part, the requirement of groove gradient adjustment is met, and the relative locking of the top groove carrier seat 51 and the carrier main body 2 can be realized through the top groove locking part 53, so that the requirement of angle adjustment locking is met.
In one embodiment, the carrier body 2 is provided with a top groove guide ear plate 21 having a guide chute, the top groove carrier seat 51 is provided with a top groove guide end 511 slidably fitted in the guide chute, the top groove guide end is provided with a top groove locking bolt, and the top groove guide ear plate is provided with scale marks.
Specifically, the top groove guide lug plate 21 is in sliding fit with the top groove guide end 511, and the top groove locking bolt has the locking and limiting functions, so that pivot displacement guide can be realized, accurate pivot displacement adjustment can be realized through scale identification, and the requirement for high-precision adjustment is met.
In one embodiment, as shown in fig. 4, the top bevel lock 53 is a worm lock mating with the top bevel carrier 51.
Specifically, the worm locking portion includes a pivot seat and a locking worm, that is, the ratchet seat on the pivot seat and the worm wheel on the locking worm realize the releasing or locking cooperation, so as to satisfy the locking and releasing operation of the pivot displacement.
In one embodiment, as shown in fig. 3, the bottom bevel mechanism 7 includes a bottom bevel carrier 71 having a pivot for adjusting the displacement and a bottom bevel spindle 72 disposed on the bottom bevel carrier 71, wherein the bottom bevel carrier 71 has a bottom bevel pivot mating portion and a bottom bevel locking portion 73 for locking the bottom bevel carrier at a fixed angle.
The carrier seat body 3 is provided with a bottom slope guiding ear plate 31 with a guiding chute, the bottom slope carrier seat 71 is provided with a bottom slope guiding end 711 which is matched and connected in the guiding chute in a sliding manner, the bottom slope guiding end is provided with a bottom slope locking bolt, and the bottom slope guiding ear plate is provided with scale marks. The bottom bevel locking portion 73 is a worm locking portion that mates with the bottom bevel carrier.
The bottom groove mechanism 7 is similar to the top groove mechanism 5 in design structure, and the operation principle is consistent, so that the pivot displacement adjustment and locking of the milling spindle can be realized.
Can discover through the above description, the utility model relates to a two-sided groove equipment can realize automatic walking groove operation, satisfies automatic groove operation demand, has reduced the human cost, improves groove shaping precision. The milling spindle has a pivot angle adjusting function, can be matched and adjusted according to the requirement of the groove, meets the requirements of the milling operation of grooves with various specifications, and has a wide application range. The whole design is ingenious, the matching structure is compact, and the requirements of various groove forming are met.
The above technical solutions of the present invention have been fully described, and it should be noted that the present invention is not limited by the above description, and all technical solutions formed by equivalent transformation or equivalent transformation adopted by the spirit of the present invention in the aspects of structure, method or function by those of ordinary skill in the art all fall within the protection scope of the present invention.

Claims (7)

1. A double-sided groove equipment is characterized in that:
comprises a running vehicle main body with universal wheels, a carrier main body with lifting adjustment displacement and a carrier main body with lifting displacement are arranged on the running vehicle main body,
the carrier main body is provided with a driving pinch roller mechanism and a top groove mechanism with a pivot shaft for adjusting displacement, the carrier main body is provided with a supporting wheel mechanism and a bottom groove mechanism with a pivot shaft for adjusting displacement,
the active pressing wheel mechanism comprises an active pressing wheel part, a pressing wheel driving source for driving the active pressing wheel part to rotate and a limiting plate body for limiting the end surface of a plate, wherein a top groove opening window for exposing the milling part of the top groove mechanism and a bottom groove opening window for exposing the milling part of the bottom groove mechanism are arranged on the limiting plate body,
the supporting wheel mechanism comprises a supporting wheel set used for supporting the bottom wall of the plate.
2. The double-sided beveling apparatus of claim 1 wherein:
the top groove mechanism comprises a top groove carrier seat with a pivot for adjusting displacement and a top groove main shaft arranged on the top groove carrier seat, and the top groove carrier seat is provided with a top groove pivot matching part and a top groove locking part for fixing the top groove carrier seat in a fixed angle locking manner.
3. The double-sided beveling apparatus of claim 2 wherein:
the groove-pushing device is characterized in that a groove-pushing guide lug plate with a guide chute is arranged on the carrier main body, a groove-pushing guide end which is in sliding fit with the guide chute is arranged on the groove-pushing carrier seat, a groove-pushing locking bolt is arranged on the groove-pushing guide end, and a scale mark is arranged on the groove-pushing guide lug plate.
4. The double-sided beveling apparatus of claim 2 wherein:
the top groove locking part is a worm locking part matched and connected with the top groove carrier seat.
5. The double-sided beveling apparatus of claim 1 wherein:
the bottom groove mechanism comprises a bottom groove carrying seat with a pivot for adjusting displacement and a bottom groove main shaft arranged on the bottom groove carrying seat, and the bottom groove carrying seat is provided with a bottom groove pivot matching part and a bottom groove locking part for fixing the bottom groove carrying seat at a fixed angle.
6. The double-sided beveling apparatus of claim 5 wherein:
the carrier seat is provided with a bottom slope guiding lug plate with a guiding sliding groove, the bottom slope carrier seat is provided with a bottom slope guiding end in the guiding sliding groove in a sliding fit mode, a bottom slope locking bolt is arranged on the bottom slope guiding end, and the bottom slope guiding lug plate is provided with scale marks.
7. The double-sided beveling apparatus of claim 5 wherein:
the bottom slope opening locking part is a worm locking part matched and connected with the bottom slope opening carrying seat.
CN202022994944.9U 2020-12-14 2020-12-14 Double-groove equipment Active CN214489586U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022994944.9U CN214489586U (en) 2020-12-14 2020-12-14 Double-groove equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022994944.9U CN214489586U (en) 2020-12-14 2020-12-14 Double-groove equipment

Publications (1)

Publication Number Publication Date
CN214489586U true CN214489586U (en) 2021-10-26

Family

ID=78208329

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022994944.9U Active CN214489586U (en) 2020-12-14 2020-12-14 Double-groove equipment

Country Status (1)

Country Link
CN (1) CN214489586U (en)

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