CN210477260U - Step lagging fluting device - Google Patents

Step lagging fluting device Download PDF

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Publication number
CN210477260U
CN210477260U CN201920786071.7U CN201920786071U CN210477260U CN 210477260 U CN210477260 U CN 210477260U CN 201920786071 U CN201920786071 U CN 201920786071U CN 210477260 U CN210477260 U CN 210477260U
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CN
China
Prior art keywords
cutting knife
counter
grooving
lifting
pressing beam
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Expired - Fee Related
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CN201920786071.7U
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Chinese (zh)
Inventor
尤金乐
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Individual
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Individual
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Priority to CN201920786071.7U priority Critical patent/CN210477260U/en
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Publication of CN210477260U publication Critical patent/CN210477260U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a step lagging fluting device, including base and last mudsill. Two ends of the base are respectively fixed with a lifting upright post, the rear side of the upper end of the lifting upright post is provided with a support frame, and the upper pressing beam is fixed on the lifting upright post through the support frame; a first grooving machine, a second grooving machine and a third grooving machine are arranged between the two lifting upright columns. The utility model combines the grooving machines used in grooving, and the sleeve plate can finish the cutting of all grooves by one-time conveying on the conveying belt; in addition, by arranging the pressing wheel and the auxiliary wheel, the sleeve plate is compressed, the position change in the grooving process is prevented, the grooving precision is ensured, the operation is simple and convenient, and the application field is wider.

Description

Step lagging fluting device
Technical Field
The utility model belongs to the technical field of the groover, specifically speaking relates to a step lagging fluting device.
Background
At present, the grooving process of the step sleeve plate adopts a step-by-step mode, after one groove is cut, the sleeve plate is taken down from equipment and then placed on next grooving equipment to cut a second groove, the sleeve plate needs to be carried manually, parameters of the grooving equipment are set respectively, and the grooving equipment is low in efficiency, time-consuming and labor-consuming.
SUMMERY OF THE UTILITY MODEL
To all sorts of deficiencies of the prior art, the utility model discloses the people researches and designs a step lagging fluting device in long-term practice.
In order to achieve the above object, the utility model provides a following technical scheme:
a slotting device for a step sleeve plate comprises a base and an upper pressing beam. The lifting upright columns are respectively fixed at the two ends of the base, a support frame is arranged on the rear side of the upper ends of the lifting upright columns, and the upper pressing beam is fixed on the lifting upright columns through the support frame; and a first grooving machine, a second grooving machine and a third grooving machine are arranged between the two lifting stand columns.
The first grooving machine comprises two first racks which are symmetrically arranged, a first cutting knife rest is arranged on the rear side of the upper end of each first rack, and a first cutting knife and a second cutting knife are respectively arranged on the two first cutting knife rests; two first light bars are arranged on the first frame.
The second grooving machine comprises second racks which are symmetrically arranged, a second cutting knife rest is arranged on the rear side of the upper end of each second rack, and a third cutting knife and a fourth cutting knife are respectively arranged on the two second cutting knife rests; and two second light bars are arranged on the second rack.
The third grooving machine comprises two third racks which are symmetrically arranged, a third cutting knife rest is arranged on the rear side of the upper end of each third rack, and a fifth cutting knife and a sixth cutting knife are respectively arranged on the two third cutting knife rests; and two third light bars are arranged on the third rack.
The lower end of the upper pressing beam is provided with a lower pressing beam, one end of the lower pressing beam is provided with an upper material plate, the other end of the lower pressing beam is provided with a motor base, and the motor base is provided with a conveying motor. The upper surface of the lower pressing beam is a conveying platform, a conveying belt is arranged on the conveying platform, and a plurality of chain blocks are arranged on the conveying belt.
And a plurality of pinch rollers are arranged at the bottom of the upper pressing beam, and a plurality of auxiliary wheels are arranged on one section of the lower pressing beam between the third cutting knife and the motor base.
Further, the first cutting knife and the second cutting knife are both arranged in parallel to the horizontal plane, the center height of the first cutting knife and the center height of the second cutting knife are both 340mm, and the center distance between the first cutting knife and the second cutting knife is 420 mm.
The third cutting knife is perpendicular to the horizontal plane, the fourth cutting knife is parallel to the horizontal plane, the center height of the third cutting knife is 210mm, the center height of the fourth cutting knife is 340mm, and the center distance between the third cutting knife and the fourth cutting knife is 420 mm.
The fifth cutting knife and the sixth cutting knife are both arranged in parallel to the horizontal plane, the center height of the fifth cutting knife and the center height of the sixth cutting knife are both 340mm, and the center distance between the fifth cutting knife and the sixth cutting knife is 420 mm.
Furthermore, a first counter seat is arranged at the top end of the first optical rod, and a first counter and a second counter are arranged on the first counter seat; the top end of the second optical rod is provided with a second counter seat, and the second counter seat is provided with a third counter and a fourth counter; and a third counter seat is arranged at the top end of the third optical rod, and a fifth counter and a sixth counter are arranged on the third counter seat.
Furthermore, first dust hood is all equipped with to first cutting knife and second cutting knife rear side, first dust absorption cover connects first dust absorption pipe, and first dust absorption cover both ends all are equipped with first brush.
And a second dust collection cover is arranged on the rear side of the fourth cutting knife and connected with a second dust collection pipe, and second brushes are arranged at two ends of the second dust collection cover.
And the rear sides of the fifth cutting knife and the sixth cutting knife are respectively provided with a third dust hood, the third dust hood is connected with a third dust absorption pipe, and both ends of the third dust hood are respectively provided with a third brush.
Furthermore, the top end of the upper pressure beam is provided with a lifting rotating rod, and one end of the lifting rotating rod is provided with a lifting motor.
Furthermore, every all be equipped with two lift optical wand on the lift stand, the lift optical wand with in the lift bull stick all inserts the lift assembly.
Furthermore, one side of the lifting assembly is provided with an upper pressing beam counter.
Furthermore, two ends of the upper pressing beam are respectively provided with a baffle.
Furthermore, a control panel is arranged on one side of the base.
The utility model has the advantages that:
the grooving machines used in the grooving are combined, and the sleeve plate can finish the cutting of all grooves by one-time conveying on the conveying belt; in addition, by arranging the pressing wheel and the auxiliary wheel, the sleeve plate is compressed, the position change in the grooving process is prevented, the grooving precision is ensured, the operation is simple and convenient, and the application field is wider.
Drawings
Fig. 1 is a schematic structural diagram of a slotting device according to the present invention;
fig. 2 is a partially enlarged view of the grooving apparatus of the present invention at a position a;
fig. 3 is a partial enlarged view of the grooving apparatus of the present invention at the position B;
fig. 4 is a front view of a first groover of the present invention;
fig. 5 is a top view of the first groover of the present invention;
fig. 6 is a front view of a second groover of the present invention;
fig. 7 is a top view of a second groover of the present invention;
fig. 8 is a front view of a third grooving machine of the present invention;
fig. 9 is a top view of the third grooving machine of the present invention.
In the drawings: 10-base, 20-upper pressing beam, 11-first grooving machine, 111-first smooth rod, 112-first counter, 113-first frame, 114-first cutting knife, 115-second cutting knife, 1141-first dust hood, 1142-first dust hood, 116-first brush, 117-second counter, 12-second grooving machine, 121-second frame, 122-third cutting knife, 123-fourth cutting knife, 1231-second dust hood, 1232-second dust hood, 124-second smooth rod, 125-third counter, 126-fourth counter, 127-second dust hood, 13-third grooving machine, 131-third frame, 132-fifth cutting knife, 1321-third dust hood, 1322-third dust hood, 133-sixth dust hood, 127-second brush, 114-second dust hood, and 13-third dust hood, 134-a third optical rod, 135-a fifth counter, 136-a sixth counter, 137-a third brush, 14-a control panel, 21-a lifting upright post, 22-a lifting optical rod, 23-a lifting rotating rod, 231-a lifting motor, 24-a lifting assembly, 241-an upper beam pressing counter, 25-a lower beam pressing, 251-a feeding plate, 252-a conveying motor, 253-a chain block, 254-an auxiliary wheel, 26-a pressing wheel and 27-a baffle plate.
Detailed Description
In order to make the technical solution of the present invention better understood by those skilled in the art, the following description is given with reference to the accompanying drawings of the present invention for clear and complete description of the technical solution of the present invention. Based on the embodiments in the present application, other similar embodiments obtained by persons of ordinary skill in the art without any creative effort shall fall within the protection scope of the present application. In addition, directional terms such as "upper", "lower", "left", "right", etc. in the following embodiments are directions with reference to the drawings only, and thus, the directional terms are used for the purpose of illustrating the present invention and not for the purpose of limiting the same. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
The present invention will be further described with reference to the accompanying drawings and preferred embodiments.
Referring to fig. 1 to 9, the step sleeve plate grooving apparatus of the present invention includes a base 10 and an upper pressing beam 20. The base 10 provides a supporting device for all components of the slotting device, the base 10 is hollow inside, and wires, control wires and wires used by a PLC control system of the slotting device are placed in the hollow base 10. The two ends of the upper surface of the base 10 are respectively fixed with a lifting upright post 21, the rear side of the upper end of the lifting upright post 21 is provided with a support frame, and the upper pressure beam 20 is fixed on the lifting upright post 21 through the support frame.
A first grooving machine 11, a second grooving machine 12 and a third grooving machine 13 are arranged between the two lifting upright posts 21, and the bottoms of the first grooving machine, the second grooving machine and the third grooving machine are all fixed on the base 10.
The first slotter 11 includes two first frames 113 symmetrically disposed. A slotting motor is arranged beside each first frame 113, a first cutting knife rest is arranged on the rear side of the upper end of each first frame 113, and a first cutting knife 114 and a second cutting knife 115 are arranged on the two first cutting knife rests respectively. The first cutting knife 114 and the second cutting knife 115 are both arranged in parallel to the horizontal plane, the center height of the first cutting knife 114 and the center height of the second cutting knife 115 are both 340mm, and the center distance between the first cutting knife 114 and the second cutting knife 115 is 420 mm. Each first rack 113 is provided with two first light bars 111, the top ends of the four first light bars 111 are provided with a first counter holder, the first counter holder is provided with a first counter 112 and a second counter 117, the first counter 112 is used for recording the height of the first cutting knife 114, and the second counter 117 is used for recording the height of the second cutting knife 115. All be equipped with first dust cage 1141 in the rear side of first cutting knife 114 and second cutting knife 115, first dust cage 1141 is connected first dust absorption pipe 1142, and two first dust absorption pipe 1142 lower extremes pass through the dust collection box of three way connection UNICOM setting in base 10 inside, can collect and concentrated the processing with the saw-dust that produces in the time of the fluting operation in unison. The first brushes 116 are disposed at both ends of each first dust suction hood 1141, so that the wood chips on the sheathing 30 can be brushed off in time during the grooving operation, thereby keeping the sheathing 30 clean.
The second slotter 12 includes a second frame 121 disposed symmetrically. A slotting motor is arranged beside each second rack 121, a second cutting knife rest is arranged on the rear side of the upper end of each second rack 121, and a third cutting knife 122 and a fourth cutting knife 123 are arranged on the two second cutting knife rests respectively. The third cutter 122 is arranged perpendicular to the horizontal plane and the fourth cutter 123 is arranged parallel to the horizontal plane. The center height of the third cutter 122 is 210mm, the center height of the fourth cutter 123 is 340mm, and the center distance between the third cutter 122 and the fourth cutter 123 is 420 mm. Each second rack 121 is provided with two second optical rods 124, the top ends of the four second optical rods 124 are provided with a second counter holder, the second counter holder is provided with a third counter 125 and a fourth counter 126, the third counter 125 is used for recording the height of the third cutting knife 122, and the fourth counter 126 is used for recording the height of the fourth cutting knife 123. The rear side of the fourth cutting knife 123 is provided with a second dust suction hood 1231, the second dust suction hood 1231 is connected with a second dust suction pipe 1232, the second dust suction pipe 1232 is communicated with the dust collection box arranged inside the base 10, and sawdust generated during grooving operation can be collected and processed in a centralized manner. The second brushes 127 are arranged at the two ends of the second dust hood 1231, so that the wood chips on the sleeve plate 30 can be brushed off in time during the grooving operation, and the cleanness of the sleeve plate 30 is kept.
The third grooving machine 13 includes two third frames 131 symmetrically disposed. A slotting motor is arranged beside each third rack 131, a third cutting knife rest is arranged on the rear side of the upper end of each third rack 131, and a fifth cutting knife 132 and a sixth cutting knife 133 are arranged on the two third cutting knife rests respectively. The fifth cutting knife 132 and the sixth cutting knife 133 are both arranged in parallel to the horizontal plane, the center heights of the fifth cutting knife 132 and the sixth cutting knife 133 are both 340mm, and the center distance between the fifth cutting knife 132 and the sixth cutting knife 133 is 420 mm. Each third rack 131 is provided with two third optical rods 134, the top ends of the four third optical rods 134 are provided with a third counter holder, and the third counter holder is provided with a fifth counter 135 and a sixth counter 136, wherein the fifth counter 135 is used for recording the height of the fifth cutting knife 132, and the sixth counter 136 is used for recording the height of the sixth cutting knife 133. The rear sides of the fifth cutting knife 132 and the sixth cutting knife 133 are respectively provided with a third dust hood 1321, the third dust hood 1321 is connected with third dust suction pipes 1322, the lower ends of the two third dust suction pipes 1322 are communicated with a dust collection box arranged in the base 10 through a three-way joint, and sawdust generated during grooving operation can be uniformly collected and intensively treated. The third brushes 137 are disposed at both ends of each third dust hood 1321, so that the wood chips on the sheathing board 30 can be brushed off in time during the grooving operation, and the sheathing board 30 can be kept clean.
A lifting rotating rod 23 is arranged at the top end of the upper pressure beam 20, and a lifting motor 231 is arranged at one end of the lifting rotating rod 23. Two lifting optical rods 22 are arranged on each lifting upright post 21, and the lifting optical rods 22 and the lifting rotating rods 23 are inserted into a lifting assembly 24. During the grooving operation, the lifting motor 231 is started, the lifting rotating rod 23 rotates, the bevel gear in the lifting assembly 24 transmits the rotation to the lifting optical rod 22, and the rotation of the lifting optical rod 22 drives the upper pressing beam 20 to move up and down along the lifting upright post 21. An upper press beam counter 241 is provided on one side of one of the lift assemblies 24 for recording the height of the upper press beam 20.
The lower end of the upper pressing beam 20 is provided with a lower pressing beam 25, one end of the lower pressing beam 25 is provided with an upper material plate 251, the other end of the lower pressing beam is provided with a motor base, and the motor base is provided with a conveying motor 252. The upper surface of the lower pressing beam 25 is a conveying platform, a conveying belt is arranged on the conveying platform, the conveying belt can reciprocate on the conveying platform, a plurality of chain blocks 253 are arranged on the conveying belt, and after the conveying motor 252 is started, the conveying belt moves to drive all the chain blocks 253 to move along the same direction.
A plurality of pressing wheels 26 are arranged at the bottom of the upper pressing beam 20, when grooving operation is carried out, the sleeve plate 30 is placed into the grooving device from the upper material plate 251 and moves under the driving of the chain block 253, the middle pressing wheels 26 are moved to apply pressure to the sleeve plate 30, the sleeve plate 30 can be prevented from vibrating up and down during grooving operation, and the grooving precision of the sleeve plate 30 is guaranteed. A plurality of auxiliary wheels 254 are arranged on the lower press beam 25 between the third cutter 122 and the motor base of the conveying motor 252, and are used for dragging the broken lower plate 32 of the sleeve plate 30 after the lower plate 32 of the sleeve plate 30 is cut off in the grooving operation, so that the broken material is prevented from falling off, and the broken material moves to a blanking area along with the sleeve plate 30.
The two ends of the upper pressing beam 20 are respectively provided with a baffle 27, and the top end of the sleeve plate is blocked when the auxiliary sleeve plate 30 is used for feeding and discharging, so that the top end of the sleeve plate is prevented from upwarping. A control panel 14 is further arranged on one side of the base 10, the control panel 14 is connected with a slotting device PLC control system, a plurality of buttons are arranged on the control panel 14, and the slotting device is controlled to start, stop and lift during slotting operation.
The step sleeve plate slotting device of the utility model combines the slotting machines used in slotting, and the sleeve plate can complete one-time slotting by one-time passing on the conveyor belt; in addition, by arranging the pressing wheel and the auxiliary wheel, the sleeve plate is compressed, the position change in the grooving process is prevented, the grooving precision is ensured, the operation is simple and convenient, and the application field is wider.
The above detailed description of the present invention is only a preferred embodiment of the present invention, and the scope of the present invention should not be limited thereto, and all the equivalent changes and modifications made according to the scope of the present invention should be covered by the present invention.

Claims (9)

1. A slotting device for a step sleeve plate comprises a base (10) and an upper pressing beam (20), and is characterized in that lifting columns (21) are respectively fixed at two ends of the base (10), a support frame is arranged on the rear side of the upper ends of the lifting columns (21), and the upper pressing beam (20) is fixed on the lifting columns (21) through the support frame;
a first grooving machine (11), a second grooving machine (12) and a third grooving machine (13) are arranged between the two lifting upright columns (21);
the first grooving machine (11) comprises two first racks (113) which are symmetrically arranged, a first cutting knife rest is arranged on the rear side of the upper end of each first rack (113), and a first cutting knife (114) and a second cutting knife (115) are respectively arranged on the two first cutting knife rests; two first light bars (111) are arranged on the first frame (113);
the second grooving machine (12) comprises second machine frames (121) which are symmetrically arranged, a second cutting knife rest is arranged on the rear side of the upper end of each second machine frame (121), and a third cutting knife (122) and a fourth cutting knife (123) are respectively arranged on the two second cutting knife rests; two second light bars (124) are arranged on the second rack (121);
the third grooving machine (13) comprises two third machine frames (131) which are symmetrically arranged, a third cutting knife rest is arranged on the rear side of the upper end of each third machine frame (131), and a fifth cutting knife (132) and a sixth cutting knife (133) are respectively arranged on the two third cutting knife rests; two third light bars (134) are arranged on the third rack (131);
a lower pressing beam (25) is arranged at the lower end of the upper pressing beam (20), an upper material plate (251) is arranged at one end of the lower pressing beam (25), a motor base is arranged at the other end of the lower pressing beam, and a conveying motor (252) is arranged on the motor base;
the upper surface of the lower pressing beam (25) is provided with a conveying platform, a conveying belt is arranged on the conveying platform, and a plurality of chain blocks (253) are arranged on the conveying belt;
a plurality of pinch rollers (26) are arranged at the bottom of the upper pressing beam (20), and a plurality of auxiliary wheels (254) are arranged on the lower pressing beam (25) between the third cutting knife (122) and the motor base.
2. The step deck grooving apparatus of claim 1, wherein the first cutter (114) and the second cutter (115) are both disposed parallel to a horizontal plane and have a center height of 340mm, and wherein the center-to-center distance between the first cutter (114) and the second cutter (115) is 420 mm;
the third cutting knife (122) is arranged vertical to the horizontal plane, the fourth cutting knife (123) is arranged parallel to the horizontal plane, the center height of the third cutting knife (122) is 210mm, the center height of the fourth cutting knife (123) is 340mm, and the center distance between the third cutting knife (122) and the fourth cutting knife (123) is 420 mm;
the fifth cutting knife (132) and the sixth cutting knife (133) are both arranged in parallel to the horizontal plane, the center height of the fifth cutting knife (132) and the center height of the sixth cutting knife (133) are both 340mm, and the center distance between the fifth cutting knife (132) and the sixth cutting knife (133) is 420 mm.
3. The step sleeve plate grooving device according to claim 2, wherein a first counter seat is arranged at the top end of the first light bar (111), and a first counter (112) and a second counter (117) are arranged on the first counter seat;
a second counter seat is arranged at the top end of the second optical rod (124), and a third counter (125) and a fourth counter (126) are arranged on the second counter seat;
and a third counter seat is arranged at the top end of the third optical rod (134), and a fifth counter (135) and a sixth counter (136) are arranged on the third counter seat.
4. The step sleeve plate grooving device according to claim 3, wherein a first dust hood (1141) is arranged at the rear side of each of the first cutting knife (114) and the second cutting knife (115), the first dust hood (1141) is connected with a first dust suction pipe (1142), and first brushes (116) are arranged at two ends of the first dust hood (1141);
a second dust hood (1231) is arranged on the rear side of the fourth cutting knife (123), the second dust hood (1231) is connected with a second dust collection pipe (1232), and second brushes (127) are arranged at two ends of the second dust hood (1231);
fifth cutting knife (132) and sixth cutting knife (133) rear side all are equipped with third suction hood (1321), and third suction hood (1321) is connected third dust absorption pipe (1322), and third suction hood (1321) both ends all are equipped with third brush (137).
5. The slotting device for the step sleeve plate as claimed in claim 1, wherein the top end of the upper pressing beam (20) is provided with a lifting rotating rod (23), and one end of the lifting rotating rod (23) is provided with a lifting motor (231).
6. A slotting device for step straps as claimed in claim 5, wherein each lifting upright (21) is provided with two lifting optical rods (22), and the lifting optical rods (22) and the lifting rotating rods (23) are inserted into a lifting assembly (24).
7. A step strap slotting device according to claim 6, wherein one side of the lifting assembly (24) is provided with a top beam counter (241).
8. A step deck grooving apparatus as claimed in claim 1 wherein the upper press beam (20) is provided with a stop (27) at each end.
9. A step deck grooving apparatus as claimed in claim 1 wherein the base (10) is further provided with a control panel (14) on one side.
CN201920786071.7U 2019-05-29 2019-05-29 Step lagging fluting device Expired - Fee Related CN210477260U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920786071.7U CN210477260U (en) 2019-05-29 2019-05-29 Step lagging fluting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920786071.7U CN210477260U (en) 2019-05-29 2019-05-29 Step lagging fluting device

Publications (1)

Publication Number Publication Date
CN210477260U true CN210477260U (en) 2020-05-08

Family

ID=70512348

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920786071.7U Expired - Fee Related CN210477260U (en) 2019-05-29 2019-05-29 Step lagging fluting device

Country Status (1)

Country Link
CN (1) CN210477260U (en)

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GR01 Patent grant
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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200508

Termination date: 20210529