CN219650200U - Lancing device of intelligent multi-specification rotary tool magazine - Google Patents

Lancing device of intelligent multi-specification rotary tool magazine Download PDF

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Publication number
CN219650200U
CN219650200U CN202320858578.5U CN202320858578U CN219650200U CN 219650200 U CN219650200 U CN 219650200U CN 202320858578 U CN202320858578 U CN 202320858578U CN 219650200 U CN219650200 U CN 219650200U
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China
Prior art keywords
lancing
rotary tool
rotary
tool changing
intelligent multi
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CN202320858578.5U
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Chinese (zh)
Inventor
滕元祥
霍文全
王文昌
齐国良
付强明
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Anhui Keda Electromechanical Co Ltd
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Anhui Keda Electromechanical Co Ltd
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Priority to CN202320858578.5U priority Critical patent/CN219650200U/en
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Abstract

The utility model discloses a lancing device of an intelligent multi-specification rotary tool magazine, and belongs to the technical field of anti-cracking lancing in an aerated sheet material production line. The utility model comprises the following steps: the rotary tool magazine is a pair and is symmetrically distributed, the rotary tool magazine comprises rotary tool changing spindles which are vertically arranged, a plurality of lancing tool assemblies are arranged at intervals in the circumferential direction of the rotary tool changing spindles, and the lancing tool assemblies are driven by the rotary tool changing spindles to conduct rotary tool changing operation. Aiming at the problems in the prior art, the utility model aims to provide the slitting device of the intelligent multi-specification rotary tool magazine, which can effectively shorten the cutting path, save the installation space and improve the cutting speed on the premise of simultaneously meeting the cutting of multi-specification plates.

Description

Lancing device of intelligent multi-specification rotary tool magazine
Technical Field
The utility model belongs to the technical field of anti-crack slot slitting in an aerated sheet material production line, and particularly relates to a slitting device of an intelligent multi-specification rotary tool magazine.
Background
At present, a group or a plurality of groups of lancing cutters are generally arranged in parallel in most of domestic aerated concrete panel production lines, wherein the lancing cutters are difficult to meet the cutting requirements of multi-specification panels at one time, frequent cutter replacement is needed, and time and labor are wasted; the parallel arrangement structure of the plurality of groups of slitting cutters (shown in figure 3) can meet the cutting requirements of various sheet specifications at one time, but occupies a large amount of space in the length direction, so that the overall length of the air entrainment production line cutting unit is prolonged, the occupied area is large, and the cutting speed is influenced. In order to solve the problems, the air-entrained sheet material slitting device is required to be designed, and the cutting path can be effectively shortened and the cutting speed can be improved on the premise of simultaneously cutting a plurality of specifications of sheet materials.
Some patents have been searched for related applications of air-entrained sheet slitting devices, such as chinese patent application No.: 2016213227094 discloses an aerated concrete panel lancing device, comprising: the device comprises a base, a frame and a lancing mechanism, wherein the frame is in sliding connection with the base, and the lancing mechanism is rotatably connected between the upper end and the lower end of the frame. When the machine is in operation, the cylinder is started to enable the frame to move to be close to the plate blank, the variable frequency motor is started to drive the rotary slitting cutters to rotate to cut the plate blank, and meanwhile, the cylinder drives the frame to continuously and slowly approach the plate blank to a determined position, and then a plurality of slits are cut at the end of the plate blank. In the actual operation process, the two lancing devices are respectively arranged at the two ends of the sheet blank for simultaneous lancing. The device is difficult to satisfy the demand of many specifications panel cutting simultaneously, needs frequent tool changing, wastes time and energy.
Disclosure of Invention
1. Technical problem to be solved by the utility model
Aiming at the problems, the utility model aims to provide the intelligent multi-specification rotary tool magazine slitting device which can effectively shorten the cutting path, save the installation space and improve the cutting speed on the premise of simultaneously meeting the cutting of multi-specification plates.
2. Technical proposal
In order to solve the problems, the utility model adopts the following technical scheme.
The utility model relates to an intelligent multi-specification rotary tool magazine slitting device, which comprises: the rotary tool magazine is a pair and is symmetrically distributed, the rotary tool magazine comprises rotary tool changing spindles which are vertically arranged, a plurality of lancing tool assemblies are arranged at intervals in the circumferential direction of the rotary tool changing spindles, and the lancing tool assemblies are driven by the rotary tool changing spindles to conduct rotary tool changing operation.
As a further improvement of the utility model, the lancing cutter assembly comprises a lancing rotating shaft which is vertically arranged, a plurality of lancing blades are uniformly arranged on the lancing rotating shaft at intervals along the height direction, and the lancing blades are sleeved on the periphery of the lancing rotating shaft.
As a further improvement of the present utility model, the pitch between adjacent lancing blades on the lancing shaft of the plurality of lancing blade assemblies is different.
As a further improvement of the utility model, the rotary cutter changing main shaft is driven to rotate by a rotary cutter changing motor; the kerf rotating shaft is driven to rotate by a kerf motor.
As a further improvement of the utility model, the upper and lower ends of the rotary conversion knife main shaft are respectively provided with an upper connecting frame and a lower connecting frame, the upper connecting frame and the lower connecting frame have the same structure, and the upper and lower ends of the plurality of kerf rotating shafts are respectively connected with the upper connecting frame and the lower connecting frame in a rotating way.
As a further improvement of the utility model, a main shaft mounting hole for the rotary tool changing main shaft to pass through is arranged at the center of the upper connecting frame, and a rotating bearing which is in rotating fit with the rotary tool changing main shaft is arranged in the main shaft mounting hole.
As a further improvement of the utility model, a kerf mounting hole is arranged on the upper connecting frame at a position corresponding to the kerf rotating shaft, and a rotating bearing which is in rotating fit with the kerf rotating shaft is arranged in the kerf mounting hole.
As a further improvement of the utility model, the slitting motor is mounted on the upper connecting frame.
As a further improvement of the present utility model, there is also provided: the machine frame is symmetrically arranged on two sides of the width direction of the machine frame, and the upper end and the lower end of the rotary tool changing spindle are fixed on the machine frame.
As a further improvement of the utility model, the stand comprises a pair of upright posts which are vertically arranged, the tops of the upright posts on two sides are connected with a cross beam which is horizontally arranged, the top of the rotary tool changing main shaft is fixed on the cross beam through a bearing seat, and the bottom of the rotary tool changing main shaft is fixed on the bottom of the upright posts through the bearing seat.
3. Advantageous effects
Compared with the prior art, the utility model has the beneficial effects that:
(1) The utility model relates to an intelligent multi-specification rotary tool magazine lancing device, wherein the specifications of each lancing tool component in the rotary tool magazine are different, and the lancing device has an independent rotary cutting function. In the process of rotating the rotary tool changing spindle, the slitting knife assembly can be driven to adjust the position, so that the slitting knife assembly with the specification required by cutting the green body is rotated to the position corresponding to the two sides of the green body, and is contacted with the two sides of the green body for cutting, and the slitting treatment of the green body is realized.
(2) According to the intelligent multi-specification rotary cutter magazine lancing device, multiple groups of independent high-speed rotary lancing cutter assemblies are simultaneously arranged on the periphery of the rotary cutter main shaft, and the switching of different specifications of the lancing cutter assemblies is realized through the rotation of the rotary cutter main shaft, so that the frequency of replacing cutters by personnel is reduced, the automation is improved, and meanwhile, the installation space is greatly shortened.
(3) According to the intelligent multi-specification rotary tool magazine lancing device, when the intelligent multi-specification rotary tool magazine lancing device is used, the lancing blades are driven by the lancing rotating shaft to perform high-speed rotary cutting, the lancing blades on two sides can synchronously perform lancing treatment on two sides of a blank body, the consistent lancing size can be effectively ensured, and the production efficiency and the product quality are effectively improved.
(4) According to the lancing device of the intelligent multi-specification rotary tool magazine, the lancing rotating shaft of each lancing cutter assembly is connected with the lancing motor corresponding to the lancing rotating shaft, and the lancing motor drives the lancing rotating shaft to rotate, so that the high-speed rotary lancing action of a single lancing cutter assembly is realized.
Drawings
FIG. 1 is a schematic perspective view of a blank in the present utility model;
FIG. 2 is a schematic side view of the blank of the present utility model;
FIG. 3 is a schematic structural view of a lancing device of a multi-format garage according to the prior art;
FIG. 4 is a schematic side view of a lancing device for an intelligent multi-specification rotary tool magazine according to the present utility model;
FIG. 5 is a schematic perspective view of a rotary magazine according to the present utility model;
FIG. 6 is a schematic top view of a rotary magazine according to the present utility model;
FIG. 7 is a schematic top view of the rotary magazine according to the present utility model in a green state without cutting;
FIG. 8 is a schematic top view of a rotary magazine cutting blank according to the present utility model;
FIG. 9 is a schematic top view of a rotary magazine cutting blank according to the present utility model;
the reference numerals in the figures are:
100. a blank body; 110. a steel wire seam; 120. an anti-crack groove;
200. rotating the tool magazine; 210. a kerf rotating shaft; 211. a slitting blade; 220. rotating a cutter conversion main shaft; 230. a rotary cutter motor; 231. a bearing seat; 240. a slit motor; 250. an upper connecting frame; 260. a lower connecting frame;
300. a frame; 310. a cross beam; 320. and (5) a column.
Detailed Description
For a further understanding of the present utility model, the present utility model will be described in detail with reference to the drawings.
In the description of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
The utility model is further described below with reference to examples.
Examples
As shown in fig. 1 and 2, before cutting, the slit 110 of the blank 100 is free of the crack-resistant groove 120 in the present embodiment, and the slit 110 of the blank 100 needs to be slit by a slitting device to form the crack-resistant groove 120. With reference to fig. 3-9, the lancing device of the intelligent multi-specification rotary tool magazine according to the present embodiment can effectively shorten the cutting path, save the installation space and increase the cutting speed on the premise of simultaneously satisfying the cutting of multi-specification boards. Specifically, the lancing device of the present embodiment includes a pair of rotary tool magazines 200, the rotary tool magazines 200 are symmetrically distributed on two sides of the blank 100 in the width direction, the rotary tool magazines 200 include rotary tool changing spindles 220 vertically arranged, a plurality of lancing tool assemblies are circumferentially spaced apart from the rotary tool changing spindles 220, and the lancing tools are driven by the rotary tool changing spindles 220 to perform rotary tool changing operations.
In this embodiment, the specifications of each lancing cutter assembly are different, and the lancing cutter assembly has an independent rotary cutting function. In the process of rotating the rotary tool changing spindle 220, the slitting cutter assembly can be driven to adjust the position, so that the slitting cutter assembly with the specification required by cutting the blank 100 is rotated to the position corresponding to the two sides of the blank 100, and contacts and cuts the two sides of the blank 100, and the slitting treatment of the blank 100 is realized. The multiple groups of independent high-speed rotary slitting knife assemblies are simultaneously arranged on the periphery of the rotary slitting knife main shaft 220, and the switching of different specifications of the slitting knife assemblies is realized through the rotation of the rotary slitting knife main shaft 220, so that the frequency of changing the knives by personnel is reduced, the automation is improved, and meanwhile, the installation space is greatly shortened.
The lancing tool in this embodiment includes a lancing shaft 210 arranged vertically, and the lancing shaft 210 is parallel to a rotary tool changing spindle 220. Wherein, a plurality of lancing blades 211 are uniformly spaced along the height direction on the lancing shaft 210, and the lancing blades 211 are sleeved on the outer periphery of the lancing shaft 210. When the cutter is used, the slitting blades 211 are driven by the slitting rotating shaft 210 to perform high-speed rotary cutting, the slitting blades 211 on two sides can synchronously perform slitting treatment on two sides of the blank 100, the uniformity of the slit size can be effectively ensured, and the production efficiency and the product quality are effectively improved.
In practice, as one of the preferred designs, in this embodiment, the distances between the adjacent lancing blades 211 on the lancing rotating shaft 210 of the lancing blade assemblies are different, the distances between the two adjacent lancing blades 211 on the lancing rotating shaft 210 are selected according to the use requirement, and the different distances correspondingly meet the cutting requirement of the sheet materials with different specifications. The same rotary cutter changing main shaft 220 is provided with a plurality of lancing cutter assemblies with different specifications in a rotary mode, rotary cutter changing can be achieved, installation space is saved greatly, and cutting paths are shortened.
In this embodiment, the rotary cutter spindle 220 is connected to the rotary cutter changing motor 230, and is driven to rotate by the rotary cutter changing motor 230, and can drive the lancing cutter assembly to adjust the position. The lancing shaft 210 of each lancing cutter assembly is connected to its corresponding lancing motor 240 and is driven to rotate by the lancing motor 240 to achieve high-speed rotary lancing action of the individual lancing cutter assemblies.
In order to realize stable installation of the lancing cutter assemblies, it is preferable that the upper and lower ends of the rotary cutter main shaft 220 in the present embodiment are respectively provided with an upper connecting frame 250 and a lower connecting frame 260, the upper connecting frame 250 and the lower connecting frame 260 have the same structure, and the upper and lower ends of the lancing rotating shaft 210 are respectively rotatably connected with the upper connecting frame 250 and the lower connecting frame 260. As one of the preferred realizations, in this embodiment, a spindle mounting hole 251 through which the rotary tool changing spindle 220 passes is provided at the center of the upper connecting frame 250, and a rotation bearing that is in rotation fit with the rotary tool changing spindle 220 is installed in the spindle mounting hole 251. A lancing installation hole is formed on the upper connection frame 250 at a position corresponding to the lancing rotation shaft 210, a rotation bearing which is in rotation fit with the lancing rotation shaft 210 is installed in the lancing installation hole, and a lancing motor 240 is installed on the upper connection frame 250.
The embodiment further includes a frame 300, the pair of rotary tool magazines 200 are symmetrically disposed on two sides of the frame 300 in the width direction, and the upper and lower ends of the rotary tool changing spindle 220 are fixed on the frame 300. Specifically, in this embodiment, the frame 300 includes a pair of vertical columns 320, the tops of the two side columns 320 are connected to form a horizontal beam 310, and the whole frame 300 is in a portal frame form, so that the blank 100 can pass through conveniently. Wherein the top of the rotary cutter spindle 220 is provided with a rotary cutter motor 230, and the rotary cutter motor 230 is fixed on the cross beam 310 through a bearing seat 231, and the bottom of the rotary cutter spindle 220 is fixed on the bottom of the column 320 through the bearing seat 231.
The specific use flow of the lancing device in this embodiment is as follows:
1. selecting lancing cutter assemblies with different specifications according to the specifications of the blank 100 to perform lancing treatment, and rotating the lancing cutter assemblies corresponding to the blank 100 to a working position in a state shown in fig. 8;
2. the blank 100 is cut by a cutting conveying vehicle along the central line direction of a lancing device, lancing blades 211 in lancing cutter assemblies at two sides of the blank 100 are contacted with the blank 100, and a required anti-cracking groove 120 is formed after high-speed rotation cutting;
3. when the specification needs to be replaced, the cutting motor 240 is turned off to control the cutting rotating shaft 210 to stop rotating during working, the rotary cutter motor 230 is started again to rotate to a certain angle and then stops, and the cutting cutter assembly of the other specification which needs to be replaced is rotated to a working position to complete cutter replacement operation, so that a plate material meeting a certain cutting depth is cut;
4. when the blank is cut, the cutting motor 240 is stopped, the cutting rotating shaft 210 in operation stops rotating, the rotary cutter motor 230 is started again, and all the cutting cutter assemblies are stopped after rotating to a certain angle, and all the cutting cutter assemblies are not in working positions, at the moment, the distance between the cutting blades 211 on two sides of the cutting device is the largest and is wider than the width of the blank 100, the blank 100 can be effectively avoided, and the blank 100 can smoothly pass through the cutting device in a non-cutting state. The lancing device of the embodiment can effectively solve the problem of space utilization and reduce the frequency of replacing the cutter.
The examples of the present utility model are merely for describing the preferred embodiments of the present utility model, and are not intended to limit the spirit and scope of the present utility model, and those skilled in the art should make various changes and modifications to the technical solution of the present utility model without departing from the spirit of the present utility model.

Claims (10)

1. The utility model provides a joint-cutting device of intelligent many specifications rotary tool magazine which characterized in that includes:
the rotary tool magazine (200) is a pair, the rotary tool magazines (200) are symmetrically distributed, the rotary tool magazine (200) comprises rotary tool changing spindles (220) which are vertically arranged, a plurality of lancing tool assemblies are arranged at intervals in the circumferential direction of the rotary tool changing spindles (220), and the lancing tool assemblies are driven by the rotary tool changing spindles (220) to perform rotary tool changing operation.
2. The lancing device of the intelligent multi-specification rotary tool magazine according to claim 1, wherein the lancing cutter assembly comprises a lancing rotating shaft (210) which is vertically arranged, a plurality of lancing blades (211) are uniformly arranged on the lancing rotating shaft (210) at intervals along the height direction, and the lancing blades (211) are sleeved on the periphery of the lancing rotating shaft (210).
3. The lancing device for an intelligent multi-format rotary magazine according to claim 2, wherein spacing between adjacent lancing blades (211) on lancing spindles (210) of a plurality of lancing blade assemblies is different.
4. The slitting device of an intelligent multi-specification rotary magazine according to claim 2, wherein the rotary tool changing spindle (220) is driven to rotate by a rotary tool changing motor (230); the lancing rotating shaft (210) is driven to rotate by a lancing motor (240).
5. The lancing device of an intelligent multi-specification rotary tool magazine according to claim 2, wherein an upper connecting frame (250) and a lower connecting frame (260) are respectively arranged at the upper end and the lower end of the rotary tool changing spindle (220), the upper connecting frame (250) and the lower connecting frame (260) have the same structure, and the upper end and the lower end of the lancing rotating shaft (210) are respectively connected with the upper connecting frame (250) and the lower connecting frame (260) in a rotating way.
6. The lancing device of an intelligent multi-specification rotary tool magazine according to claim 5, wherein a spindle mounting hole (251) for the rotary tool changing spindle (220) to pass through is formed in the center of the upper connecting frame (250), and a rotating bearing in running fit with the rotary tool changing spindle (220) is mounted in the spindle mounting hole (251).
7. The lancing device of the intelligent multi-specification rotary tool magazine according to claim 6, wherein a lancing installation hole is formed on the upper connecting frame (250) at a position corresponding to the lancing rotating shaft (210), and a rotating bearing in rotation fit with the lancing rotating shaft (210) is installed in the lancing installation hole.
8. The lancing device of claim 4, wherein the lancing motor (240) is mounted to the upper connector (250).
9. The lancing device for an intelligent multi-format rotary magazine according to any one of claims 1-8, further comprising:
the rotary tool magazine (200) is symmetrically arranged on two sides of the machine frame (300) in the width direction, and the upper end and the lower end of the rotary tool changing spindle (220) are fixed on the machine frame (300).
10. The intelligent multi-specification rotary tool magazine joint cutting device according to claim 9, wherein the frame (300) comprises a pair of vertical columns (320), the tops of the two side columns (320) are connected with a horizontally arranged cross beam (310), the top of the rotary tool changing spindle (220) is fixed on the cross beam (310) through a bearing seat (231), and the bottom of the rotary tool changing spindle (220) is fixed on the bottom of the column (320) through the bearing seat (231).
CN202320858578.5U 2023-04-12 2023-04-12 Lancing device of intelligent multi-specification rotary tool magazine Active CN219650200U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320858578.5U CN219650200U (en) 2023-04-12 2023-04-12 Lancing device of intelligent multi-specification rotary tool magazine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320858578.5U CN219650200U (en) 2023-04-12 2023-04-12 Lancing device of intelligent multi-specification rotary tool magazine

Publications (1)

Publication Number Publication Date
CN219650200U true CN219650200U (en) 2023-09-08

Family

ID=87880687

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320858578.5U Active CN219650200U (en) 2023-04-12 2023-04-12 Lancing device of intelligent multi-specification rotary tool magazine

Country Status (1)

Country Link
CN (1) CN219650200U (en)

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