CN220810703U - Blanking device of sleeve baking machine - Google Patents

Blanking device of sleeve baking machine Download PDF

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Publication number
CN220810703U
CN220810703U CN202322758237.3U CN202322758237U CN220810703U CN 220810703 U CN220810703 U CN 220810703U CN 202322758237 U CN202322758237 U CN 202322758237U CN 220810703 U CN220810703 U CN 220810703U
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China
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plate
bakelite
adjusting
bakelite plate
holes
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CN202322758237.3U
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Chinese (zh)
Inventor
曹已珊
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Dongguan Mingrun Electronic Co ltd
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Dongguan Mingrun Electronic Co ltd
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Priority to CN202322758237.3U priority Critical patent/CN220810703U/en
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Abstract

The utility model discloses a blanking device of a sleeve baking machine, which comprises: the first support and the second support are connected to one end of the sleeve baking machine, the first support and the second support are respectively fixed with a first bakelite plate and a second bakelite plate, a bottom plate with adjustable inclination and height is connected between the first bakelite plate and the second bakelite plate and used for receiving blanking of the sleeve baking machine, a plurality of first screw holes are formed in the side face of the bottom plate, a plurality of first adjusting holes matched with the first screw holes are formed in the lower end parts of the first bakelite plate and the lower end part of the second bakelite plate, adjusting screws penetrate through the first adjusting holes and are fixed in a spiral mode with the first screw holes, and the adjusting screws which are loosened relative to the first screw holes can move up and down along the first adjusting holes, so that the bottom plate is clamped and fixed between the first bakelite plate and the second bakelite plate in an inclination-adjustable and height mode. The utility model can adjust the inclination and height of the bottom plate structurally, can effectively reduce the damage rate and enhance the compatibility.

Description

Blanking device of sleeve baking machine
Technical field:
The utility model relates to the technical field of casing baking machines, in particular to a blanking device of a casing baking machine.
The background technology is as follows:
The materials required by the processing and separated from the plate base material by the jacketing machine are generally called blanking. The separation of the material from the base material is known as blanking by means of, for example, presses, plate shears, sawing machines, flame baking and the like. The material is placed on a female die and is pressed downward with a male die. Because the convex edges of the female die and the male die are provided with cutting edges, a shearing action is performed while pressurizing, and blanks with required shapes and sizes are cut from the plate materials so as to carry out the next process. Therefore, the blanking device arranged on the jacketing machine is indispensable, and the blanking machine visible in the market at present generally adopts a two-stage structure of a small turnover box and a large turnover box in the structural implementation mode, so that the structure still has a fall in the vertical direction, the falling blanking is easy to damage, and the damage rate is relatively high; and, can not realize the lift of little turnover case, the structural flexibility is relatively poor.
The Chinese patent publication No. CN201508775U discloses a blanking device of a jacketing machine, which comprises: the capacitor device comprises a large turnover box, wherein a small turnover box is arranged on a box opening of the large turnover box, and the lower end of a capacitor channel is connected into the small turnover box; a bracket is arranged on the box opening of the turnover box, and the small turnover box is arranged on the bracket, so that the puncturing effect of the self gravity of the capacitor on the plastic sleeve during sliding can be reduced.
However, the existing blanking device has the following problems due to the design characteristics: 1. the drop in the vertical direction is relatively large, the capacitor needs to slide down twice from the capacitor channel to the large turnover box, the falling blanking is easy to damage, and the damage rate is relatively high.
2. The inertia of blanking of different sizes is different, and different inclinations and heights are needed to enable blanking to keep flowing, and the existing blanking device cannot adjust the inclination and the height of a small turnover box, so that the flowing of blanking can be influenced when the blanking is smaller or larger.
In view of this, the present inventors have proposed the following means.
The utility model comprises the following steps:
the utility model aims to overcome the defects of the prior art and provides a blanking device of a sleeve baking machine.
In order to solve the technical problems, the utility model adopts the following technical scheme: a sleeve baking machine blanking device, comprising: the automatic baking and sleeving machine is characterized in that a first bracket and a second bracket are respectively fixed on the first bracket and the second bracket, a bottom plate with adjustable inclination and height and used for taking out the blanking of the baking and sleeving machine is connected between the first bracket and the second bracket, a plurality of first screw holes are formed in the side face of the bottom plate, a plurality of first adjusting holes matched with the first screw holes are formed in the lower end parts of the first bakelite plate and the second bakelite plate, an adjusting screw penetrates through the first adjusting holes and is fixed in a spiral mode with the first screw holes, and the adjusting screw loosened relative to the first screw holes can move up and down along the first adjusting holes, so that the bottom plate is clamped and fixed between the first bakelite plate and the second bakelite plate in an inclination and height adjustable mode.
Furthermore, in the above technical scheme, the first adjusting holes are bar-shaped counter bores extending along the vertical direction, and the plurality of first adjusting holes are distributed at horizontal intervals.
In the above technical solution, the first adjusting hole includes a bar-shaped hole penetrating through the board surface of the first bakelite board or the second bakelite board and extending along the vertical direction, and a stepped slot communicating with the bar-shaped hole; the adjusting screw is provided with a nut matched with the stepped groove.
Furthermore, in the above technical scheme, the first bracket and the second bracket are distributed transversely, and the first bakelite plate and the second bakelite plate are located between the first bracket and the second bracket.
Furthermore, in the above technical solution, the upper end portions of the first bakelite plate and the second bakelite plate are provided with a plurality of second through holes.
Furthermore, in the above technical solution, the second screw passes through the second through hole of the first bakelite plate and is fixed with the first bracket in a screw manner, so as to fix the first bakelite plate on the first bracket, and the third screw passes through the second through hole of the second bakelite plate and is fixed with the second bracket in a screw manner, so as to fix the second bakelite plate on the second bracket.
Furthermore, in the above technical solution, the first bakelite plate and the second bakelite plate are both in an inverted T shape.
By adopting the technical scheme, compared with the prior art, the utility model has the following beneficial effects: in the structural implementation mode, a plurality of first adjusting holes which are longitudinally distributed are respectively arranged at the lower end parts of two bakelite plates, the bottom plate is fixed between the two bakelite plates through the first adjusting holes by adjusting screws, and the bottom plate can be lifted and inclined along the longitudinal first adjusting holes; the structure has small fall in the vertical direction, and the sleeve drying machine only needs to slide down to the bottom plate once, so that the damage rate can be effectively reduced, and the qualification rate of blanking is ensured. Meanwhile, lifting of the bottom plate can be achieved, and the inclination of the bottom plate can be adjusted according to requirements, so that the structure is high in compatibility and good in flexibility.
Description of the drawings:
FIG. 1 is a perspective view of the present utility model;
FIG. 2 is a schematic diagram of the structure of the present utility model;
FIG. 3 is an enlarged view at A in FIG. 2;
FIG. 4 is an exploded view of the present utility model;
Fig. 5 is a perspective view of a second bakelite plate according to the present utility model.
The specific embodiment is as follows:
the utility model will be further described with reference to specific examples and figures.
Referring to fig. 1 to 5, a blanking device of a sleeve baking machine includes: the first bracket 1 and the second bracket 2 connected to one end of the sleeve baking machine are characterized in that a first bakelite plate 41 and a second bakelite plate 42 are respectively fixed on the first bracket 1 and the second bracket 2, a bottom plate 3 with adjustable inclination and height and used for receiving blanking of the sleeve baking machine is connected between the first bakelite plate 41 and the second bakelite plate 42, a plurality of first screw holes 6 are formed on the side face of the bottom plate 3, a plurality of first adjusting holes 7 matched with the first screw holes 6 are formed at the lower end parts of the first bakelite plate 41 and the second bakelite plate 42, adjusting screws 5 penetrate through the first adjusting holes 7 and are screwed and fixed with the first screw holes 6, and the adjusting screws 5 loosened relative to the first screw holes 6 can move up and down along the first adjusting holes 7, so that the bottom plate 3 is clamped and fixed between the first bakelite plate 41 and the second bakelite plate 42 in an inclination and height adjustable mode.
In the structural implementation mode, a plurality of first adjusting holes 7 which are longitudinally distributed are respectively arranged at the lower end parts of two bakelite plates 4, the bottom plate 3 is fixed between the two bakelite plates 4 through the first adjusting holes 7 by adjusting screws 5, and the bottom plate 3 can be lifted and adjusted in inclination along the longitudinal first adjusting holes 7; the vertical drop of the structure is small, and the structure only needs to slide once from the sleeve baking machine to the bottom plate, so that the damage rate can be effectively reduced, and the qualification rate of blanking is ensured. Meanwhile, lifting of the bottom plate 3 can be achieved, and the inclination of the bottom plate 3 can be adjusted according to requirements, so that the structure is high in compatibility and good in flexibility.
The adjusting screw 5 penetrates through the first adjusting hole 7 to be connected with any of the plurality of first screw holes 6, so that the front and rear positions of the bottom plate 3 can be adjusted.
The first adjusting holes 7 are strip-shaped counter bores extending in the vertical direction, and the plurality of first adjusting holes 7 are horizontally distributed at intervals. The first adjusting holes 7 are distributed at intervals and correspond to the first screw holes 6. Such a construction, after assembly, allows the operator to quickly adjust the height or tilt, reducing the complexity of the operation.
The first adjusting hole 7 comprises a strip-shaped hole 71 which penetrates through the plate surface of the first bakelite plate 41 or the second bakelite plate 42 and extends along the vertical direction, and a step groove 72 communicated with the strip-shaped hole 71; the adjusting screw 5 is formed with a nut 51 which is matched with the stepped groove 72. This is because a space for adjusting the position of the base plate 3 is required, so that the base plate 3 can be conveniently adjusted in inclination and lifting operation can be performed.
The first and second bakelite plates 41 and 42 are located between the first and second brackets 1 and 2. The first bakelite plate 41 and the second bakelite plate 42 can better support the bottom plate 3, so that the structure is more stable and the service life is longer; if the device is arranged on the outer sides of the first bracket 1 and the second bracket 2, the width of the bottom plate 3 can be increased, the position adjustment is inconvenient, and the acting force of the bottom plate 3 on the first bakelite plate 41 and the second bakelite plate 42 can pull the bakelite plate to shake relative to the first bracket 1 and the second bracket 2, so that the device is easy to lose.
The second screws 91 are screwed through the second through holes 9 of the first bakelite plate 41 to the first bracket 1 to fix the first bakelite plate 41 on the first bracket 1, and the third screws 92 are screwed through the second through holes 9 of the second bakelite plate 42 to the second bracket 2 to fix the second bakelite plate 42 on the second bracket 2.
The number of the first screw holes 6 is more than that of the first adjusting holes 7. The design is to conveniently adjust the transverse position of the bottom plate 3, and further increase the adjustability of the bottom plate 3 and enhance the compatibility by combining the characteristic that the bottom plate can be lifted and adjusted in inclination.
The upper end parts of the first and second bakelite plates 41 and 42 are not beyond the upper end surfaces of the first and second brackets 1 and 2. The bakelite plate is in an inverted T shape.
In one embodiment of the utility model, the bottom plate 3 is clamped by a first bakelite plate 41 and a second bakelite plate 42, and four first adjusting holes 7 are respectively formed in the first bakelite plate 41 and the second bakelite plate 42; in another embodiment, four bakelite plates 4 are provided, and one first adjusting hole 7 is provided on each bakelite plate 4.
In summary, in the structural implementation manner, the plurality of first adjusting holes 7 are respectively arranged at the lower ends of the two bakelite plates 4, the bottom plate 3 is fixed between the two bakelite plates 4 through the first adjusting holes 7 by the adjusting screws 5, and the bottom plate 3 can be lifted and adjusted in inclination along the longitudinal first adjusting holes 7; the structure has small fall in the vertical direction, and the sleeve drying machine only needs to slide down to the bottom plate once, so that the damage rate can be effectively reduced, and the qualification rate of blanking is ensured. Meanwhile, lifting of the bottom plate 3 can be achieved, and the inclination of the bottom plate 3 can be adjusted according to requirements, so that the structure is high in compatibility and good in flexibility.
It is understood that the foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, but rather is to be accorded the full scope of all such modifications and equivalent structures, features and principles as set forth herein.

Claims (7)

1. A blanking device of a sleeve baking machine, comprising: a first bracket (1) and a second bracket (2) which are connected with one end of a sleeve baking machine, and is characterized in that,
The novel electric wood plate baking machine is characterized in that a first electric wood plate (41) and a second electric wood plate (42) are respectively fixed on the first support (1) and the second support (2), a bottom plate (3) capable of adjusting inclination and height and used for taking out a baking sleeve machine blanking is connected between the first electric wood plate (41) and the second electric wood plate (42), a plurality of first screw holes (6) are formed in the side face of the bottom plate (3), a plurality of first adjusting holes (7) matched with the first screw holes (6) are formed in the lower end portions of the first electric wood plate (41) and the lower end portion of the second electric wood plate (42), adjusting screws (5) penetrate through the first adjusting holes (7) and are fixed in a spiral mode with the first screw holes (6), and the adjusting screws (5) loosened relative to the first screw holes (6) can move up and down along the first adjusting holes (7), so that the bottom plate (3) can be clamped and fixed between the first electric wood plate (41) and the second electric wood plate (42) in an inclination-adjustable mode.
2. A blanking device of a bushing drier according to claim 1, wherein: the first adjusting holes (7) are strip-shaped counter bores extending in the vertical direction, and the plurality of first adjusting holes (7) are horizontally distributed at intervals.
3. A bushing drier blanking device according to claim 2, wherein: the first adjusting hole (7) comprises a strip-shaped hole (71) which penetrates through the plate surface of the first bakelite plate (41) or the second bakelite plate (42) and extends along the vertical direction, and a stepped groove (72) communicated with the strip-shaped hole (71); the adjusting screw (5) is provided with a nut (51) matched with the stepped groove (72).
4. A blanking device of a bushing drier according to claim 1, wherein: the first brackets (1) and the second brackets (2) are transversely distributed, and the first bakelite plate (41) and the second bakelite plate (42) are positioned between the first brackets (1) and the second brackets (2).
5. The blanking device of a bushing drier as defined in claim 4, wherein: the upper end parts of the first bakelite plate (41) and the second bakelite plate (42) are respectively provided with a plurality of second through holes (9).
6. The blanking device of a bushing drier as defined in claim 5, wherein: the second screw (91) passes through the second through hole (9) of the first bakelite plate (41) to be fixed with the first bracket (1) in a screw way, so that the first bakelite plate (41) is fixed on the first bracket (1), and the third screw (92) passes through the second through hole (9) of the second bakelite plate (42) to be fixed with the second bracket (2) in a screw way, so that the second bakelite plate (42) is fixed on the second bracket (2).
7. A blanking device of a sleeve baking machine according to any one of claims 1-6, characterized in that: the first bakelite plate (41) and the second bakelite plate (42) are both in an inverted T shape.
CN202322758237.3U 2023-10-13 2023-10-13 Blanking device of sleeve baking machine Active CN220810703U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322758237.3U CN220810703U (en) 2023-10-13 2023-10-13 Blanking device of sleeve baking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322758237.3U CN220810703U (en) 2023-10-13 2023-10-13 Blanking device of sleeve baking machine

Publications (1)

Publication Number Publication Date
CN220810703U true CN220810703U (en) 2024-04-19

Family

ID=90711421

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322758237.3U Active CN220810703U (en) 2023-10-13 2023-10-13 Blanking device of sleeve baking machine

Country Status (1)

Country Link
CN (1) CN220810703U (en)

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