CN113370320B - Equipment for punching threads on round timber - Google Patents

Equipment for punching threads on round timber Download PDF

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Publication number
CN113370320B
CN113370320B CN202110654462.5A CN202110654462A CN113370320B CN 113370320 B CN113370320 B CN 113370320B CN 202110654462 A CN202110654462 A CN 202110654462A CN 113370320 B CN113370320 B CN 113370320B
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CN
China
Prior art keywords
plate
rotating shaft
plates
supporting plate
bottom plate
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CN202110654462.5A
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CN113370320A (en
Inventor
宋秋妹
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Hunan Jiayun Packaging Co ltd
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Hunan Jiayun Packaging Co ltd
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Priority to CN202110654462.5A priority Critical patent/CN113370320B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27CPLANING, DRILLING, MILLING, TURNING OR UNIVERSAL MACHINES FOR WOOD OR SIMILAR MATERIAL
    • B27C3/00Drilling machines or drilling devices; Equipment therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27CPLANING, DRILLING, MILLING, TURNING OR UNIVERSAL MACHINES FOR WOOD OR SIMILAR MATERIAL
    • B27C3/00Drilling machines or drilling devices; Equipment therefor
    • B27C3/02Stationary drilling machines with a single working spindle

Abstract

The invention relates to a device for thread punching, in particular to a device for thread punching of round timber. The device for punching the threads of the circular timber can automatically feed without manually punching, and can fix the circular timber. The invention provides an apparatus for thread punching of round timber, comprising: the bottom plate is used for installing the whole equipment; the fixed block is arranged on one side of the top of the bottom plate; the servo motor is arranged at the top of the fixed block; the storage mechanism is arranged on one side of the top of the bottom plate; and the blanking mechanism is arranged below the storage mechanism. Adopt cooperation between tooth sprocket assembly, guide bar and the sixth connecting block, the guide bar passes through the sixth connecting block and drives the electric drill and move along tooth sprocket rotation direction, and when the guide bar moved to tooth sprocket assembly right-hand member, the guide bar moved in the spout of sixth connecting block, and the electric drill does not remove this moment, and then guarantees the quality of punching.

Description

Equipment for punching threads on round timber
Technical Field
The invention relates to a device for thread punching, in particular to a device for thread punching of round timber.
Background
Wood plays a great supporting role for human life. Depending on the different nature of wood, people use it in different ways. Most among the prior art can be to timber processing circular timber in order to play corresponding effect in furniture manufacturing or handicraft production, but current circular timber punches mostly needs manual operation, wastes time and energy, and is difficult to be pressed from both sides tightly fixed to the circular timber, causes the position of punching to be different easily, and current perforating device mostly can not realize automatic unloading, and structural function is single fixed, has reduced work efficiency, is unfavorable for extensive popularization and popularization.
Therefore, it is necessary to design an apparatus for screw-punching a circular timber which can automatically feed without manually punching and fix the circular timber.
Disclosure of Invention
In order to overcome the defects that manual operation is needed, clamping and fixing are difficult, and automatic blanking cannot be achieved, the device for punching threads of circular timber is provided, wherein the device can automatically perform blanking, does not need to punch holes manually, and can fix the circular timber.
An apparatus for thread punching round timber, comprising:
the bottom plate is used for installing the whole equipment;
the fixed block is arranged on one side of the top of the bottom plate;
the servo motor is arranged at the top of the fixed block;
the storage mechanism is arranged on one side of the top of the bottom plate;
the blanking mechanism is arranged below the storage mechanism;
the material receiving mechanism is arranged below the blanking mechanism;
and one side of the top of the bottom plate is provided with a punching mechanism.
Further described, the storage mechanism comprises:
four first support plates are uniformly arranged on one side of the top of the bottom plate;
the placing plates are arranged between the tops of the four first supporting plates;
the first connecting plate is arranged between the upper parts of the two first supporting plates at one side;
the top of the placing plate is uniformly provided with four first connecting blocks;
the inner sides of the first connecting blocks are provided with the first connecting rods in a sliding mode;
the clamping plates are arranged on the first connecting rods;
the first connecting rod is provided with a fixed ring in a threaded manner;
limiting plates are arranged between clamping plates on the same side in a sliding mode.
Further described, the blanking mechanism comprises:
the cylinder is arranged on one side of the top of the bottom plate;
the first support plate on one side is symmetrically provided with the second connecting rod;
the second connecting plates are arranged between the second connecting rods;
the front side of the second connecting plate is provided with a second connecting block;
the rotating rod is rotationally connected between the second connecting block and the first connecting plate;
the clamping blocks are symmetrically arranged on the rotating rod;
the top of the telescopic rod of the air cylinder is provided with a third connecting block;
the third connecting plate is rotationally arranged on the third connecting block and is connected with the rotating rod.
Further described, the receiving mechanism comprises:
the middle part of the inner side of the first supporting plate is provided with a fourth connecting block;
the material receiving plate is arranged between the fourth connecting blocks;
the clamping groove is formed in one side of the receiving plate, and two clamping grooves are formed in one side of the receiving plate.
Further described, the punching mechanism comprises:
the sliding rail is symmetrically arranged on one side of the top of the bottom plate;
the guide plates are arranged in the slide rails in a sliding manner;
the guide plates are arranged in the sliding rails in a sliding mode, a sixth connecting block is arranged between the guide plates, and a sliding groove is formed in the bottom of the sixth connecting block;
an electric drill is arranged on the right side of the sixth connecting block;
the output end of the servo motor is provided with a second rotating shaft;
the first rotating shaft is rotatably arranged on one side of the top of the bottom plate;
the tooth chain wheel assembly is arranged between the first rotating shaft and the second rotating shaft;
the guide rod is arranged on the toothed chain wheel assembly and is matched with the chute at the bottom of the sixth connecting block.
Further, the device also comprises a clamping mechanism, and the pushing mechanism comprises:
a second supporting plate is arranged on one side of the top of the bottom plate;
a third supporting plate is arranged on one side of the top of the bottom plate;
the fourth connecting plate is arranged between the second supporting plate and the third supporting plate in a sliding mode;
springs are respectively arranged between the fourth connecting plate and the second and third supporting plates;
the fifth connecting block is arranged at one side of the bottom of the fourth connecting plate;
the clamping block is arranged at the bottom of the fifth connecting block.
Further, the device also comprises a pressing mechanism, wherein the pressing mechanism comprises:
the fifth connecting plate is symmetrically arranged on one side of the upper part of the third supporting plate;
a fourth supporting plate is arranged on one side of the top of the bottom plate;
a fourth rotating shaft is rotatably arranged between the two fifth connecting plates and the fourth supporting plate;
the third rotating shaft is rotatably arranged on one side of the top of the bottom plate;
bevel gears are arranged on the third rotating shaft and the fourth rotating shaft, and the two bevel gears are meshed;
the cam is arranged on the fourth rotating shaft and is positioned between the two fifth connecting plates;
and the belt pulley assembly is arranged between the third rotating shaft and the second rotating shaft.
The beneficial effects are that: 1. adopt the cooperation between bull stick, fixture block and the third connecting block, the telescopic link of cylinder drives the third connecting block and upwards moves, drives the bull stick through the third connecting plate and rotates to drive the fixture block and all rotate to the front side, make the circular timber drop on receiving the flitch, the bulge of fixture block supports the circular timber on upper portion simultaneously, when the telescopic link of cylinder drives the third connecting block and moves down, drives the fixture block and all rotate to the rear side, the fixture block no longer supports the circular timber on upper portion, has realized intermittent type unloading.
2. Adopt the cooperation between tooth sprocket assembly, guide bar and the sixth connecting block, the guide bar drives the sixth connecting block and removes, and the sixth connecting block drives the electric drill and removes along tooth sprocket direction of rotation, punches the circular timber, and when the guide bar moved to tooth sprocket assembly right-hand member, the guide bar moved in the spout of sixth connecting block, and the electric drill did not remove this moment, then the guide bar continued to drive the electric drill and removed, and the separation of circular timber, and then guaranteed the quality of punching.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of a first part of the present invention.
Fig. 3 is a schematic perspective view of a second part of the present invention.
Fig. 4 is a schematic perspective view of a third portion of the present invention.
Part names and serial numbers in the figure: the device comprises a 1-bottom plate, a 2-fixed block, a 3-servo motor, a 4-storage mechanism, a 40-first supporting plate, a 41-placing plate, a 42-first connecting plate, a 43-limiting plate, a 44-clamping plate, a 45-first connecting block, a 46-first connecting rod, a 47-fixed ring, a 5-blanking mechanism, a 50-cylinder, a 51-second connecting plate, a 52-second connecting rod, a 53-second connecting block, a 54-rotating rod, a 55-clamping block, a 56-third connecting plate, a 57-third connecting plate, a 6-receiving mechanism, a 60-fourth connecting plate, a 61-receiving plate, a 62-clamping groove, a 7-clamping mechanism, a 70-second supporting plate, a 71-spring, a 72-fourth connecting plate, a 73-fifth connecting plate, a 74-clamping block, a 75-third supporting plate, an 8-punching mechanism, an 80-sliding rail, a 81-guiding plate, a 82-sixth connecting block, a 83-electric drill, a 84-guiding rod, a 85-first rotating shaft, a 86-toothed sprocket assembly, a 87-second rotating shaft, a 9-pressing mechanism, a 90-fifth connecting plate, a 92-fourth supporting plate, a 92-third supporting plate, a 95-rotating shaft and a bevel gear assembly.
Detailed Description
It should be noted that in the various embodiments described, identical components are provided with identical reference numerals or identical component names, wherein the disclosure contained throughout the description can be transferred in a meaning to identical components having identical reference numerals or identical component names. The position specification, the upper, lower, lateral, etc. selected in the description are also referred to directly in the description and the figures shown and are transferred in the sense of a new position when the position is changed.
Example 1
The utility model provides a be used for giving round timber screw thread equipment of punching, as shown in FIG. 1, including bottom plate 1, fixed block 2, servo motor 3, feed mechanism 4, feed mechanism 5, receiving mechanism 6 and punching mechanism 8, bottom plate 1 top left side is equipped with fixed block 2, and the fixed block 2 top is equipped with servo motor 3, and bottom plate 1 top right rear side is equipped with feed mechanism 4, and feed mechanism 4 below is equipped with feed mechanism 5, and feed mechanism 5 below is equipped with receiving mechanism 6, and bottom plate 1 top left front side is equipped with punching mechanism 8.
The staff can adjust the width of feed mechanism 4 according to the width of circular timber, adjust the fixed feed mechanism 4 of back, then place the circular timber in feed mechanism 4, then start unloading mechanism 5 work, unloading mechanism 5 makes the circular timber carry out the piece by piece unloading, a circular timber drops to receiving mechanism 6 in, then start servo motor 3 and the work of mechanism 8 that punches, servo motor 3 drives mechanism 8 that punches to punch to the circular timber, after the completion of punching, the staff takes out the circular timber, unloading mechanism 5 is with a new circular timber transmission to receiving mechanism 6 again in this, after whole circular timber unloading and the completion of punching, close servo motor 3 and unloading mechanism 5.
Example 2
On the basis of embodiment 1, as shown in fig. 2-4, the material storing mechanism 4 comprises a first supporting plate 40, a placing plate 41, a first connecting plate 42, a limiting plate 43, a clamping plate 44, a first connecting block 45, a first connecting rod 46 and a fixing ring 47, wherein four first supporting plates 40 are uniformly arranged on the right rear side of the top of the bottom plate 1, the placing plate 41 is arranged between the tops of the four first supporting plates 40, the first connecting plate 42 is arranged between the upper parts of the two first supporting plates 40 on the left side, the four first connecting blocks 45 are uniformly arranged on the top of the placing plate 41, the first connecting rods 46 are uniformly arranged on the inner side of the first connecting blocks 45 in a sliding mode, the clamping plates 44 are uniformly arranged on the first connecting rods 46, the fixing ring 47 is arranged on the first connecting rods 46 in a threaded mode, and the limiting plates 43 are uniformly arranged between the clamping plates 44 on the same side.
The blanking mechanism 5 comprises an air cylinder 50, a second connecting plate 51, a second connecting rod 52, a second connecting block 53, a rotating rod 54, a clamping block 55, a third connecting plate 56 and a third connecting block 57, wherein the air cylinder 50 is arranged on the right rear side of the top of the bottom plate 1, the second connecting rod 52 is symmetrically arranged on the first supporting plate 40 on the right rear side, the second connecting plate 51 is arranged between the second connecting rods 52, the second connecting block 53 is arranged on the front side of the second connecting plate 51, the rotating rod 54 is rotatably connected between the second connecting block 53 and the first connecting plate 42, the clamping block 55 is symmetrically arranged on the rotating rod 54 left and right, the third connecting block 57 is arranged on the top of a telescopic rod of the air cylinder 50, the third connecting plate 56 is rotatably arranged on the third connecting block 57, and the third connecting plate 56 is connected with the rotating rod 54.
The material receiving mechanism 6 comprises a fourth connecting block 60, a material receiving plate 61 and clamping grooves 62, wherein the fourth connecting block 60 is arranged in the middle of the inner side of the first supporting plate 40, the material receiving plate 61 is arranged between the fourth connecting blocks 60, and two clamping grooves 62 are arranged on the front side of the material receiving plate 61.
The staff can rotate and take down the solid fixed ring 47, then slide the cardboard 44 about, adjust the distance between two cardboard 44, after adjusting, rotate solid fixed ring 47 once more, gu fixed cardboard 44, then place the circular timber between cardboard 44, the circular timber of lower extreme is located the concave part of two fixture blocks 55, then start cylinder 50 work, the telescopic link of cylinder 50 drives the third connecting block 57 and upwards move, drive the bull stick 54 through the third connecting plate 56 and rotate, thereby drive the fixture block 55 all forward side rotation, make the circular timber fall on receiving plate 61, the circular timber slides along receiving plate 61 to draw-in groove 62 in, the bulge of fixture block 55 supports the circular timber on upper portion, punch mechanism 8 punches the circular timber this moment, punch and the staff takes out the circular timber after finishing, the telescopic link of cylinder 50 drives the bull stick 54 through the third connecting plate 56 and rotates, thereby drive fixture block 55 all backward side rotation, fixture block 55 no longer supports the circular timber on upper portion, thereby make next circular timber be located the concave part of two fixture blocks 55.
The punching mechanism 8 comprises a sliding rail 80, a guide plate 81, a sixth connecting block 82, an electric drill 83, a guide rod 84, a first rotating shaft 85, a toothed chain wheel assembly 86 and a second rotating shaft 87, wherein the sliding rail 80 is symmetrically arranged on the left side of the top of the bottom plate 1, the guide plate 81 is arranged in the sliding rail 80 in a sliding mode, the sixth connecting block 82 is arranged between the guide plates 81, a sliding groove is formed in the bottom of the sixth connecting block 82, the electric drill 83 is arranged on the right side of the sixth connecting block 82, the second rotating shaft 87 is arranged at the output end of the servo motor 3, the first rotating shaft 85 is rotatably arranged on the left side of the top of the bottom plate 1, the toothed chain wheel assembly 86 is arranged between the first rotating shaft 85 and the second rotating shaft 87, the toothed chain wheel assembly 86 consists of chain wheels and chains, the chain wheels are respectively arranged on the first rotating shaft 85 and the second rotating shaft 87, the chains are wound between the chain wheels, the guide rod 84 is arranged on the toothed chain wheel assembly 86, and the sliding groove in the bottom of the sixth connecting block 82 is matched with the guide rod 84.
The servo motor 3 drives the second rotating shaft 87 to rotate, the second rotating shaft 87 drives the toothed chain wheel assembly 86 and the first rotating shaft 85 to rotate, the toothed chain wheel assembly 86 drives the guide rod 84 to move, the guide rod 84 drives the sixth connecting block 82 to move through the guide plate 81, the sixth connecting block 82 drives the electric drill 83 to move rightwards, the electric drill 83 punches round timber, when the guide rod 84 moves to the right end of the toothed chain wheel assembly 86, the guide rod 84 moves in a chute of the sixth connecting block 82, the electric drill 83 does not move at the moment, then the guide rod 84 continues to drive the electric drill 83 to move leftwards and separate from the round timber, at the moment, workers can collect the round timber after punching, and at the moment, the clamping plate 44 conveys the next round timber into the clamping groove 62.
Example 3
On the basis of embodiment 2, as shown in fig. 4, the clamping mechanism 7 further comprises a second supporting plate 70, a spring 71, a fourth connecting plate 72, a fifth connecting block 73, a clamping block 74 and a third supporting plate 75, wherein the second supporting plate 70 is arranged on the left side of the top of the bottom plate 1, the third supporting plate 75 is arranged on the front side of the top of the bottom plate 1, the fourth connecting plate 72 is slidably arranged between the second supporting plate 70 and the third supporting plate 75, the spring 71 is respectively arranged between the fourth connecting plate 72 and the second supporting plate 70 and between the fourth connecting plate 72 and the third supporting plate 75, the fifth connecting block 73 is arranged on the right side of the bottom of the fourth connecting plate 72, and the clamping block 74 is arranged at the bottom of the fifth connecting block 73.
When the electric drill 83 moves to be close to the circular timber, the fourth connecting plate 72 is manually pressed downwards by a worker, so that the fifth connecting block 73 and the clamping block 74 are driven to move downwards, the spring 71 is stretched, the circular timber in the punching process is clamped, punching is convenient, after the electric drill 83 is punched and far away from the circular timber, the fourth connecting plate 72 is not pressed any more by the worker, the spring 71 is reset, the fifth connecting block 73 and the clamping block 74 are driven to move upwards for reset, and then the punched circular timber can be taken out by the worker.
The pressing mechanism 9 comprises a fifth connecting plate 90, a fourth supporting plate 91, a third rotating shaft 92, a belt pulley assembly 93, bevel gears 94, a fourth rotating shaft 95 and cams 96, wherein the fifth connecting plate 90 is symmetrically arranged on the rear side of the upper portion of the third supporting plate 75, the fourth supporting plate 91 is arranged on the right front side of the top of the bottom plate 1, the fourth rotating shaft 95 is rotatably arranged between the two fifth connecting plates 90 and the fourth supporting plate 91, the third rotating shaft 92 is rotatably arranged on the right front side of the top of the bottom plate 1, bevel gears 94 are respectively arranged on the third rotating shaft 92 and the fourth rotating shaft 95, the two bevel gears 94 are meshed, the cams 96 are arranged on the fourth rotating shaft 95 and are positioned between the two fifth connecting plates 90, the belt pulley assembly 93 is arranged between the third rotating shaft 92 and the second rotating shaft 87, the belt pulley assembly 93 consists of belt pulleys and belts, the two belt pulleys are respectively arranged on the third rotating shaft 92 and the second rotating shaft 87, and the belts are wound between the belt pulleys.
The second rotating shaft 87 drives the third rotating shaft 92 to rotate through the belt pulley assembly 93, the third rotating shaft 92 is meshed through the two bevel gears 94 to drive the fourth rotating shaft 95 to rotate, the fourth rotating shaft 95 drives the cam 96 to rotate, when the cam 96 rotates to downwards press the fourth connecting plate 72, the springs 71 are stretched to drive the fifth connecting block 73 and the clamping blocks 74 to downwards move, so that round timber in the punching process is clamped, when the cam 96 rotates to no longer press the fourth connecting plate 72, the punching is completed at this time, the electric drill 83 is separated from the round timber, the springs 71 are reset to drive the fifth connecting block 73 and the clamping blocks 74 to upwards move, and at this time, workers can take out the round timber after the punching is completed.
While the present disclosure has been shown and described with reference to certain exemplary embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. The scope of the disclosure should, therefore, not be limited to the above-described embodiments, but should be determined not only by the following claims, but also by the equivalents of the following claims.

Claims (1)

1. An apparatus for thread punching a round timber, comprising:
a base plate (1), the base plate (1) being used for mounting the whole device;
a fixed block (2), one side of the top of the bottom plate (1) is provided with the fixed block (2);
a servo motor (3), wherein the servo motor (3) is arranged at the top of the fixed block (2);
the storage mechanism (4) is arranged on one side of the top of the bottom plate (1);
the blanking mechanism (5) is arranged below the storage mechanism (4);
the material receiving mechanism (6) is arranged below the material discharging mechanism (5);
the punching mechanism (8) is arranged on one side of the top of the bottom plate (1);
the storage mechanism (4) comprises:
the first support plates (40) are uniformly arranged on one side of the top of the bottom plate (1);
a placing plate (41), wherein the placing plate (41) is arranged between the tops of the four first supporting plates (40);
a first connecting plate (42), wherein a first connecting plate (42) is arranged between the upper parts of the two first supporting plates (40) on one side;
the top of the placing plate (41) is uniformly provided with four first connecting blocks (45);
the first connecting rods (46) are arranged on the inner sides of the first connecting blocks (45) in a sliding mode, and the first connecting rods (46) are arranged on the inner sides of the first connecting blocks;
the clamping plates (44) are arranged on the first connecting rods (46);
a fixing ring (47), wherein the first connecting rod (46) is provided with the fixing ring (47) in a threaded manner;
the limiting plates (43) are arranged between clamping plates (44) on the same side in a sliding mode, and the limiting plates (43) are arranged between the clamping plates (44) on the same side in a sliding mode;
the blanking mechanism (5) comprises:
the cylinder (50) is arranged on one side of the top of the bottom plate (1);
the second connecting rod (52) is symmetrically arranged on the first supporting plate (40) at one side;
the second connecting plates (51) are arranged between the second connecting rods (52);
the second connecting block (53), the second connecting block (53) is arranged on the front side of the second connecting plate (51);
the rotating rod (54) is rotatably connected between the second connecting block (53) and the first connecting plate (42);
the clamping blocks (55) are symmetrically arranged on the rotating rod (54);
the top of the telescopic rod of the air cylinder (50) is provided with the third connecting block (57);
the third connecting plate (56), the third connecting block (57) is rotatably provided with the third connecting plate (56), and the third connecting plate (56) is connected with the rotating rod (54);
the receiving mechanism (6) comprises:
the fourth connecting blocks (60) are arranged in the middle of the inner side of the first supporting plate (40);
the material receiving plate (61) is arranged between the fourth connecting blocks (60);
the clamping grooves (62) are formed in one side of the receiving plate (61);
the punching mechanism (8) comprises:
the sliding rail (80) is symmetrically arranged on one side of the top of the bottom plate (1);
the guide plates (81) are arranged in the slide rails (80) in a sliding mode;
the guide plates (81) are arranged in the sliding rails (80) in a sliding mode, the sixth connecting blocks (82) are arranged between the guide plates (81), and sliding grooves are formed in the bottoms of the sixth connecting blocks (82);
an electric drill (83), wherein the electric drill (83) is arranged on the right side of the sixth connecting block (82);
the output end of the servo motor (3) is provided with a second rotating shaft (87);
a first rotating shaft (85), wherein one side of the top of the bottom plate (1) is rotatably provided with the first rotating shaft (85);
a toothed sprocket assembly (86), wherein the toothed sprocket assembly (86) is arranged between the first rotating shaft (85) and the second rotating shaft (87);
the guide rod (84) is arranged on the toothed chain wheel assembly (86), and the guide rod (84) is matched with a chute at the bottom of the sixth connecting block (82);
still including chucking mechanism (7), chucking mechanism (7) are including:
a second supporting plate (70), one side of the top of the bottom plate (1) is provided with the second supporting plate (70);
a third supporting plate (75), wherein one side of the top of the bottom plate (1) is provided with the third supporting plate (75);
a fourth connecting plate (72), wherein the fourth connecting plate (72) is arranged between the second supporting plate (70) and the third supporting plate (75) in a sliding manner;
a spring (71), wherein the spring (71) is respectively arranged between the fourth connecting plate (72) and the second supporting plate (70) and the third supporting plate (75);
a fifth connecting block (73), wherein one side of the bottom of the fourth connecting plate (72) is provided with the fifth connecting block (73);
the bottom of the fifth connecting block (73) is provided with a clamping block (74);
the device also comprises a pressing mechanism (9), wherein the pressing mechanism (9) comprises:
a fifth connecting plate (90), wherein the fifth connecting plate (90) is symmetrically arranged on one side of the upper part of the third supporting plate (75);
a fourth supporting plate (91), wherein one side of the top of the bottom plate (1) is provided with the fourth supporting plate (91);
a fourth rotating shaft (95), wherein the fourth rotating shaft (95) is rotatably arranged between the two fifth connecting plates (90) and the fourth supporting plate (91);
a third rotating shaft (92), wherein one side of the top of the bottom plate (1) is rotatably provided with the third rotating shaft (92);
bevel gears (94), wherein the bevel gears (94) are arranged on the third rotating shaft (92) and the fourth rotating shaft (95), and the two bevel gears (94) are meshed;
the cam (96) is arranged on the fourth rotating shaft (95), the cam (96) is arranged between the two fifth connecting plates (90);
and a belt pulley assembly (93), wherein the belt pulley assembly (93) is arranged between the third rotating shaft (92) and the second rotating shaft (87).
CN202110654462.5A 2021-06-11 2021-06-11 Equipment for punching threads on round timber Active CN113370320B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110654462.5A CN113370320B (en) 2021-06-11 2021-06-11 Equipment for punching threads on round timber

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110654462.5A CN113370320B (en) 2021-06-11 2021-06-11 Equipment for punching threads on round timber

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CN113370320B true CN113370320B (en) 2023-09-22

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