CN211682273U - High-efficiency cutting device for filter element plate of filter - Google Patents

High-efficiency cutting device for filter element plate of filter Download PDF

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Publication number
CN211682273U
CN211682273U CN202020043110.7U CN202020043110U CN211682273U CN 211682273 U CN211682273 U CN 211682273U CN 202020043110 U CN202020043110 U CN 202020043110U CN 211682273 U CN211682273 U CN 211682273U
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cylinder
bearing
cutting
filter
plate
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CN202020043110.7U
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岳希君
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Xinxiang Zhongyue Filter Co ltd
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Xinxiang Zhongyue Filter Co ltd
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Abstract

The utility model relates to the field of filter preparation, in particular to a high-efficiency cutting device for a filter core plate of a filter, which comprises a machine table, a front bearing table, a cutting tool and a rear bearing table; the cutting tool comprises a lower tool, an upper tool and a first air cylinder; the rear bearing platform comprises a bearing plate, a fourth cylinder, a first hinge piece and a second hinge piece; the front bearing table and the rear bearing table are arranged at the top of the machine table side by side along the horizontal direction, the discharge end of the front bearing table is close to the feed end of the bearing plate, and the two sides of the feed end of the bearing plate are hinged with the top of the machine table through first hinge pieces; two sides of the discharge end of the bearing plate are hinged with the push rod end of the fourth cylinder through a second hinge, and the base of the fourth cylinder is fixed at the bottom of the machine table; the top at the board sets up the recess, and the recess sets up the lower tool with preceding plummer intercommunication, at the recess internal fixation, and the cutting edge end of lower tool is vertical upwards, and runs through preceding plummer. Cutter cooperation work about setting to and the back bearing platform, promoted cutting operation efficiency.

Description

High-efficiency cutting device for filter element plate of filter
Technical Field
The utility model relates to a filter preparation field, concretely relates to filter core board high efficiency cutting device's technical field of structure.
Background
The filter element plate framework is an important component of the filter, and is generally formed by cutting a large-size filter element plate into corresponding sizes and then bending the cut filter element plate.
At present when cutting and cutting, because cutting tool is the single cutter, through one-way extrusion cutting panel, can lead to the filter core board to form great bending limit at the cutting edge easily, and when carrying out the equipment of filter skeleton, the bending limit that is located the inboard causes the damage to filter core paper easily, and the bending limit that is located the outside also can influence the whole outward appearance effect of filter, if carry out the flattening back again, if the word of reusing, has wasted process time.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a filter element board high efficiency cutting device, two cutters provide the shearing force cutting filter element board about adopting to reduce the crooked degree that the filter element board edge produced, and carry out convenient transport through the back bearing platform, provide the operating efficiency.
In order to solve the technical problem, the utility model adopts the following technical scheme:
the efficient cutting device for the filter core plate of the filter comprises a machine table, a front bearing table, a cutting tool and a rear bearing table; the cutting tool comprises a lower tool, an upper tool and a first air cylinder; the rear bearing platform comprises a bearing plate, a fourth cylinder, a first hinge piece and a second hinge piece; the front bearing table and the rear bearing table are arranged at the top of the machine table side by side along the horizontal direction, the discharge end of the front bearing table is close to the feed end of the bearing plate, and the two sides of the feed end of the bearing plate are hinged with the top of the machine table through first hinge pieces; two sides of the discharge end of the bearing plate are hinged with the push rod end of the fourth cylinder through a second hinge, and the base of the fourth cylinder is fixed at the bottom of the machine table; a groove is formed in the top of the machine platform and is communicated with the front bearing platform, a lower cutter is fixedly arranged in the groove, and the cutting edge end of the lower cutter is vertically upward and penetrates through the front bearing platform; an upper cutter is arranged above the groove, the cutting edge end of the upper cutter is vertically downward, and the upper part of the upper cutter is fixedly connected with the push rod end of the first air cylinder.
Furthermore, limiting devices are respectively arranged on two sides of the cutting tool along the conveying direction of the materials, each limiting device comprises a first pressing block, a second air cylinder, a second pressing block and a third air cylinder, and the push rod end of the second air cylinder is fixedly connected with the top of the first pressing block; and the push rod end of the third cylinder is fixedly connected with the top of the second pressing block.
Furthermore, a plurality of first pressing blocks or second pressing blocks are arranged side by side along the direction crossing the front bearing table.
Furthermore, a slope is arranged on one side of the machine platform below the bearing plate.
Furthermore, the upper surface of the front bearing platform is higher than the upper surface of the bearing plate.
Furthermore, the bottom of the first pressing block and the bottom of the second pressing block are respectively provided with an anti-slip pad.
Compared with the prior art, the utility model discloses can reach one of following beneficial effect at least:
1. the cutter cooperation work about setting up promotes the cutting effect.
2. The rear bearing platform is arranged, so that the cutting of the rear filter core plate is facilitated.
3. Set up stop device, promoted cutting effect.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of another view angle of the present invention.
In the figure: 1-a machine platform; 11-a groove; 12-a ramp; 2-front bearing platform; 3-cutting the cutter; 31-lower cutter; 32-upper cutter; 33-a first cylinder; 4-a limiting device; 41-a first briquette; 42-a second cylinder; 43-second briquetting; 44-a third cylinder; 5-rear bearing platform; 51-a carrier plate; 52-fourth cylinder; 53-a first articulation; 54-second hinge.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Example 1:
as shown in fig. 1-2, the efficient cutting device for the filter element plate of the filter comprises a machine table 1, a front bearing table 2, a cutting tool 3 and a rear bearing table 5; the cutting tool 3 comprises a lower tool 31, an upper tool 32 and a first air cylinder 33; the rear bearing stage 5 includes a bearing plate 51, a fourth cylinder 52, a first hinge 53, and a second hinge 54; a front bearing table 2 and a rear bearing table 5 are arranged at the top of the machine table 1 side by side along the horizontal direction, the discharge end of the front bearing table 2 is close to the feed end of the bearing plate 51, and two sides of the feed end of the bearing plate 51 are hinged with the top of the machine table 1 through a first hinge member 53; two sides of the discharge end of the bearing plate 51 are hinged with the push rod end of the fourth cylinder 52 through a second hinge 54, and the base of the fourth cylinder 52 is fixed at the bottom of the machine table 1; a groove 11 is formed in the top of the machine table 1, the groove 11 is communicated with the front bearing table 2, a lower cutter 31 is fixedly arranged in the groove 11, and the cutting edge end of the lower cutter 31 is vertically upward and penetrates through the front bearing table 2; an upper cutter 32 is arranged above the groove 11, the edge end of the upper cutter 32 is vertically downward, and the upper part of the upper cutter 32 is fixedly connected with the push rod end of a first air cylinder 33.
The first air cylinder 33 drives and controls the upper cutter 32 to lift, the upper cutter 32 and the lower cutter 31 work in a matched mode, downward shearing force is provided, and the filter core plate is cut; the first hinge 53 and the second hinge 54 are used to connect the bearing plate 51 with the machine 1 and the fourth cylinder 52, respectively, and the bearing plate 51 can rotate around the first hinge 53 and the second hinge 54 to "tilt" the filter element plate on the bearing plate 51 onto the material collecting table.
One embodiment is: the first hinge part 53 comprises a vertical rod and a cross rod, the bottom of the vertical rod is fixedly connected with the machine table 1, one end of the cross rod penetrates through the top of the vertical rod to be rotatably connected, and the other end of the cross rod is fixedly connected with the bearing plate 51; it is achieved that the carrier plate 51 can be rotated to some extent around the transverse rods. The second hinge 54 may also be in this manner.
When the device works, the fourth cylinder 52 works, and the push rod end of the fourth cylinder 52 extends out, so that the discharge end of the bearing plate 51 is in a high position, the bearing plate 51 is in a relatively horizontal state, the filter core plate is convenient to support, and the filter core plate is prevented from being bent greatly during cutting, and the cutting precision and the cutting effect are prevented from being influenced; the filter core plate to be cut is placed on the front bearing table 2, the cutting size of the filter core plate is adjusted, most of the filter core plate to be cut is located on the rear bearing table 5, at the moment, the first air cylinder 33 works to drive the upper cutter 32 to descend, the upper cutter and the lower cutter 31 fixed below the upper cutter cooperate to work, the filter core plate is cut, and the phenomenon that the cutting edge is bent in the cutting process can be effectively reduced by cutting the upper cutter and the lower cutter; after cutting, the push rod end of the first air cylinder 33 retracts, the upper cutter 32 ascends, then the fourth air cylinder 52 works, the push rod end retracts, the bearing plate 51 inclines, and the filter core plate on the bearing plate 51 is 'dumped' onto the material collecting platform, so that the cutting machine is fast and convenient; the fourth cylinder 52 and the first cylinder 33 are matched and linked to work, so that the working efficiency of cutting and discharging can be greatly improved.
Example 2:
as shown in fig. 1 to 2, for the above embodiment, the present embodiment optimizes the limit structure.
In the high-efficiency cutting device for the filter core plate of the filter, the two sides of the cutting tool 3 are respectively provided with the limiting devices 4 along the conveying direction of materials, each limiting device 4 comprises a first pressing block 41, a second air cylinder 42, a second pressing block 43 and a third air cylinder 44, and the push rod end of the second air cylinder 42 is fixedly connected with the top of the first pressing block 41; the push rod end of the third air cylinder 44 is fixedly connected with the top of the second pressing block 43. The limiting device 4 is arranged, when the filter element plate is cut, the second air cylinder 42 and the third air cylinder 44 work firstly to push the first pressing block 41 and the second pressing block 43 to move downwards to extrude the filter element plate, then the first air cylinder 33 works to push the upper cutter 32 to descend to cut, and the cutting effect can be improved by the extrusion effect of the limiting device 4 on the filter element plate; after the cutting is completed, the upper cutter 32 is raised first, and then the first pressing piece 41 and the second pressing piece 43 are raised again, so as to facilitate the "dumping" operation of the cut filter element plate.
Preferably, the first pressing block 41 and the second pressing block 43 are both located above the front bearing platform 2, and the second air cylinder 42 and the third air cylinder 44 both use the same air path, so as to improve the use effect of the limiting device 4.
Example 3:
as shown in fig. 1 to 2, for the above embodiment, the present embodiment optimizes the limit structure.
In the high-efficiency cutting device for the filter core plate of the filter, a plurality of first pressing blocks 41 or second pressing blocks 43 are arranged side by side along the direction crossing the front bearing platform 2. As shown in fig. 2, the plurality of pressing blocks are arranged side by side, so that the pressing effect on the filter element plate can be improved, and the cutting effect can be improved.
Example 4:
as shown in fig. 1-2, for the above embodiments, the present embodiment optimizes the structure of the machine.
In the high-efficiency cutting device for the filter element plate of the filter, the slope 12 is arranged on one side of the machine table 1 below the bearing plate 51. The ramp 12 is used to cooperate with the "dumping" operation of the carrier plate 51.
Example 5:
as shown in fig. 1-2, for the above embodiments, the present embodiment optimizes the structure of the carrier table.
The upper surface of the front bearing platform 2 in the high-efficiency cutting device of the filter core plate of the filter is higher than the upper surface of the bearing plate 51. To facilitate feeding of the filter element plates.
Example 6:
as shown in fig. 1 to 2, for the above embodiment, the present embodiment optimizes the limit structure.
In the high-efficiency cutting device for the filter core plate of the filter, the bottom of the first pressing block 41 and the bottom of the second pressing block 43 are respectively provided with an anti-slip pad. The non-slip mat can be wear-resisting rubber pad, when playing the buffering effect, can prevent that the cutting in-process filter core plate from receiving the extrusion after and producing lateral sliding, and influence cutting accuracy.
The use of a pneumatic cylinder as a drive member as described in the present document may be replaced by a conventional drive system such as a chain wheel drive, a hydraulic cylinder drive, or the like.
Although the invention has been described herein with reference to a number of illustrative embodiments thereof, it should be understood that numerous other modifications and embodiments can be devised by those skilled in the art that will fall within the spirit and scope of the principles of this invention. More specifically, various variations and modifications are possible in the component parts and/or arrangements of the subject combination arrangement within the scope of the disclosure, the drawings and the appended claims. In addition to variations and modifications in the component parts and/or arrangements, other uses will also be apparent to those skilled in the art.

Claims (6)

1. Filter filter core board high efficiency cutting device, its characterized in that: comprises a machine table (1), a front bearing table (2), a cutting tool (3) and a rear bearing table (5); the cutting tool (3) comprises a lower tool (31), an upper tool (32) and a first cylinder (33); the rear bearing platform (5) comprises a bearing plate (51), a fourth cylinder (52), a first hinge piece (53) and a second hinge piece (54); the method comprises the following steps that a front bearing table (2) and a rear bearing table (5) are arranged on the top of a machine table (1) side by side along the horizontal direction, the discharge end of the front bearing table (2) is close to the feed end of a bearing plate (51), and two sides of the feed end of the bearing plate (51) are hinged with the top of the machine table (1) through a first hinge piece (53); two sides of the discharge end of the bearing plate (51) are hinged with the push rod end of the fourth cylinder (52) through a second hinge (54), and the base of the fourth cylinder (52) is fixed at the bottom of the machine table (1); a groove (11) is formed in the top of the machine table (1), the groove (11) is communicated with the front bearing table (2), a lower cutter (31) is fixedly arranged in the groove (11), and the cutting edge end of the lower cutter (31) is vertically upward and penetrates through the front bearing table (2); an upper cutter (32) is arranged above the groove (11), the edge end of the upper cutter (32) is vertically downward, and the upper part of the upper cutter (32) is fixedly connected with the push rod end of the first cylinder (33).
2. The filter element plate high efficiency cutting apparatus of claim 1, wherein: the cutting tool is characterized in that limiting devices (4) are respectively arranged on two sides of the cutting tool (3) along the conveying direction of materials, each limiting device (4) comprises a first pressing block (41), a second air cylinder (42), a second pressing block (43) and a third air cylinder (44), and the push rod end of each second air cylinder (42) is fixedly connected with the top of the corresponding first pressing block (41); the push rod end of the third air cylinder (44) is fixedly connected with the top of the second pressing block (43).
3. The filter element plate high efficiency cutting apparatus of claim 2, wherein: a plurality of first pressing blocks (41) or second pressing blocks (43) are arranged side by side along the direction crossing the front bearing table (2).
4. The filter element plate high efficiency cutting apparatus of claim 2, wherein: a slope (12) is arranged on one side of the machine platform (1) below the bearing plate (51).
5. The filter element plate high efficiency cutting apparatus of claim 2, wherein: the upper surface of the front bearing platform (2) is higher than the upper surface of the bearing plate (51).
6. The filter element plate high efficiency cutting apparatus of claim 2, wherein: and anti-slip pads are respectively arranged at the bottom of the first pressing block (41) and the bottom of the second pressing block (43).
CN202020043110.7U 2020-01-09 2020-01-09 High-efficiency cutting device for filter element plate of filter Active CN211682273U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020043110.7U CN211682273U (en) 2020-01-09 2020-01-09 High-efficiency cutting device for filter element plate of filter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020043110.7U CN211682273U (en) 2020-01-09 2020-01-09 High-efficiency cutting device for filter element plate of filter

Publications (1)

Publication Number Publication Date
CN211682273U true CN211682273U (en) 2020-10-16

Family

ID=72800048

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020043110.7U Active CN211682273U (en) 2020-01-09 2020-01-09 High-efficiency cutting device for filter element plate of filter

Country Status (1)

Country Link
CN (1) CN211682273U (en)

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