Steel structure building material batch processing equipment
By designing batch processing equipment for steel structure building materials, the problem of cutting deviation was solved by utilizing the synchronous movement of the cutting mechanism and the material and the stable clamping of the clamping end. This enabled efficient continuous cutting and grinding, adapting to the processing needs of steel sections of different specifications.
Patent Information
- Application Number
- CN202511634259.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-10
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2045-11-10
AI Technical Summary
The cutting accuracy of existing steel structure building materials is affected by the fact that the cut point is offset due to the suspended state during cutting.
Design a batch processing equipment for steel structure building materials, including a bottom frame, a position adjustment mechanism and a clamping mechanism. The cutting mechanism moves synchronously with the material, and combined with the clamping end and elastic components, it achieves stable clamping and cutting. It is equipped with a cutting blade and sandpaper for synchronous cutting and polishing.
It enables continuous cutting and grinding of steel structure materials, ensuring cutting accuracy and efficiency, adapting to the clamping of steel of different specifications, and realizing efficient batch processing.
Smart Images

Figure CN121061250B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of steel structure processing, in particular to a steel structure building material batch processing equipment. BACKGROUND
[0002] Steel structure building material is a structure mainly made of steel, and is one of the main building structure types. Steel structure (such as H-shaped steel, I-beam, square tube, angle steel) is one of the common structure forms in modern building engineering. Steel has the characteristics of high strength, light weight, good overall rigidity, and strong deformation capacity, so it is particularly suitable for building large-span and super-high, super-heavy buildings. Steel structure building material needs to be cut into appropriate length during production and processing.
[0003] The existing Chinese invention patent document with the publication number "CN111659942B" specifically discloses a steel structure building material batch processing equipment. The extension cylinder drives the flat rod to move, so that the T-shaped round rod can drive the power rod and the sector gear to rotate, so that the power rod can drive the sliding plate to slide at equal intervals. The sliding plate drives the cutting device to move at equal intervals, which can simultaneously cut multiple sections of the same steel structure building material, improving the cutting efficiency of the steel structure building material. However, since the position of the steel structure material for multi-section cutting is in a suspended state, under the action of gravity, the cutting position of the steel structure material will be offset downward, which seriously affects the precision of the steel structure material.
[0004] Therefore, we propose a steel structure building material batch processing equipment to solve the above problems. SUMMARY
[0005] The purpose of the present application is to provide a steel structure building material batch processing equipment to solve the problems raised in the background art.
[0006] To achieve the above purpose, the present application provides the following technical scheme: a steel structure building material batch processing equipment, comprising a bottom frame, a plurality of position adjusting mechanisms are installed on the top of the bottom frame, a plurality of clamping mechanisms are distributed on both sides of the plurality of position adjusting mechanisms, and the clamping mechanisms are installed on the top of the bottom frame.
[0007] The position adjusting mechanism comprises an adjusting main frame and an adjusting inner ring.
[0008] The adjusting main frame is installed on the top of the bottom frame, the adjusting inner ring is rotationally connected to the inner side of the adjusting main frame, the inner side of the adjusting inner ring is installed with a linear slide bar, and the linear slide bar is slidably connected with a cutting mechanism that can move synchronously with the steel structure material.
[0009] The clamping mechanism comprises a clamping main frame installed on the top of the bottom frame, a telescopic arm slidingly connected to the clamping main frame, and a centering clamping jaw installed at the end of the telescopic arm and capable of clamping the steel structure material;
[0010] The centering clamping jaw comprises a clamping jaw seat and a clamping end head;
[0011] The clamping end head is slidingly connected to the clamping jaw seat and capable of abutting against the steel structure, and the clamping end head is capable of rotating relative to the clamping jaw seat;
[0012] One end of the clamping end head extends into the clamping jaw seat and is capable of pushing the clamping end head into the clamping jaw seat by being filled with pressure.
[0013] As a preferred scheme of the present application, the top of the bottom frame is detachably installed with a position-adjustable adjusting seat, a limiting rod is slidingly connected through the adjusting seat, an abutting plate is installed at the end of the limiting rod close to the cutting mechanism, a linkage ring is rotatably connected to the outer side of the abutting plate, an assembled connecting rod is installed on the outer side of the linkage ring, and the end of the assembled connecting rod is detachably connected with the cutting mechanism.
[0014] An elastic assembly is arranged between the abutting plate and the adjusting seat.
[0015] As a preferred scheme of the present application, the cutting mechanism comprises a cutting seat, a cutting cover, a cutting assembly, an adjusting base, and a connecting foot support.
[0016] The cutting seat is slidingly connected to a linear slide bar, and the connecting foot support is installed on both sides of the bottom of the cutting seat.
[0017] The adjusting base is rotatably connected between the connecting foot supports, a rod cylinder is installed on the top of the adjusting base, and the cutting cover is connected to the output end of the rod cylinder through the adjusting base.
[0018] The inner side of the cutting cover is rotatably connected with the cutting assembly.
[0019] As a preferred scheme of the present application, the cutting assembly comprises a cutting blade and a polishing sandpaper.
[0020] The polishing sandpaper is detachably installed on both sides of the cutting blade, and the outer diameter of the polishing sandpaper is smaller than that of the cutting blade.
[0021] The outer side of the cutting cover is installed with a motor three, and the output shaft of the motor three is connected to the center of the cutting blade through the cutting cover.
[0022] As a preferred scheme of the present application, the cutting cover comprises a splash-proof cover body and a connecting block.
[0023] The cutting blade is rotationally connected to the inner side of the splash-proof cover, the connecting block is installed on the outer side of the splash-proof cover, guide rods are installed on both sides of the top of the connecting block, and the guide rods are slidingly connected to the adjusting base;
[0024] The output end of the rod-cylinder is installed on the top of the connecting block through the adjusting base;
[0025] The outer side of the connecting foot support is provided with a fourth motor, and the output shaft of the fourth motor is connected to the adjusting base through the connecting foot support.
[0026] As a preferred scheme of the present application, the bottom of the bottom frame is provided with a material collecting frame, and the material collecting frame is directly below the clamping mechanism and the adjusting seat;
[0027] The elastic assembly comprises a spring;
[0028] Both ends of the spring are respectively installed on the abutting plate and the adjusting seat.
[0029] As a preferred scheme of the present application, the clamping mechanism further comprises a telescopic arm, a transmission pin and a second external gear;
[0030] The telescopic arm is slidingly connected to the inner side of the clamping main frame, and the transmission pin is installed at the end of the telescopic arm extending into the clamping main frame;
[0031] The second external gear is rotationally connected to the inside of the clamping main frame, an arc-shaped groove gradually approaching the center of the second external gear is formed through the second external gear, and the transmission pin is slidingly connected to the arc-shaped groove.
[0032] As a preferred scheme of the present application, the outer side of the clamping main frame is provided with a second motor, the output shaft of the second motor extends into the inside of the clamping main frame and is connected with a second transmission gear, and the second transmission gear is engaged with the outer side of the second external gear.
[0033] As a preferred scheme of the present application, the position adjusting mechanism further comprises a first motor, a transmission shaft, a first external gear ring and a first transmission gear;
[0034] The first external gear ring is installed on the outer side of the adjusting inner ring and is located in the adjusting main frame;
[0035] The outer side of the adjusting main frame is provided with the first motor, the output shaft of the first motor extends into the inside of the adjusting main frame and is connected with the first transmission gear, and the first transmission gear is engaged with the outer side of the first external gear ring;
[0036] The transmission shaft is installed at the center of the first transmission gear.
[0037] As a preferred scheme of the present application, wherein: the inside of the clamping jaw base is provided with an air cavity, and the end of the clamping end head in the clamping jaw base is connected with the air cavity in communication.
[0038] The end of the clamping end head outside the clamping jaw base is rollingly connected with ball bearings two, and the side wall of the clamping end head outside the clamping jaw base is rollingly connected with ball bearings one.
[0039] Compared with the prior art, the present application has the following beneficial effects:
[0040] 1. The steel structure building material batch processing equipment realizes cutting under the condition of continuous conveying of the steel structure through synchronous movement of the cutting mechanism and the steel structure material, ensures the efficiency of batch processing of the steel structure material, and can stably clamp the steel structure material under the action of the clamping end head, ensuring the cutting precision of the steel structure.
[0041] 2. The steel structure building material batch processing equipment realizes synchronous cutting and grinding of the steel structure material through synchronous rotation of the cutting blade and the grinding sandpaper, further speeding up the processing efficiency of the steel structure material. BRIEF DESCRIPTION OF DRAWINGS
[0042] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0043] Figure 1 is a structural schematic diagram of the present application;
[0044] Figure 2 is a structural schematic diagram of the present application in cross section;
[0045] Figure 3 is a structural schematic diagram of the clamping mechanism in the present application;
[0046] Figure 4 is a structural schematic diagram of the present application in which the outer gear two is connected;
[0047] Figure 5 is a structural schematic diagram of the present application in which the assembled connecting rod is connected;
[0048] Figure 6 is a structural schematic diagram of the present application in which the position adjusting mechanism is connected;
[0049] Figure 7 is a structural schematic diagram of the present application in which the cutting mechanism is connected with the linear slide;
[0050] Figure 8 Structure diagram of the bottom of the cutting mechanism in the application;
[0051] Figure 9 Structure diagram of the connection of the centering clamping jaw in the application;
[0052] Figure 10 Structure diagram of the connection of the centering clamping jaw in the application.
[0053] In the figure: 1, bottom frame;
[0054] 2, position adjusting mechanism; 21, adjusting main frame; 22, adjusting inner ring; 23, motor one; 24, transmission shaft; 25, outer gear ring one; 26, transmission gear one;
[0055] 3, clamping mechanism; 31, clamping main frame; 32, centering clamping jaw; 33, telescopic arm; 34, transmission pin column; 35, motor two; 36, outer gear two; 36a, arc-shaped groove; 37, transmission gear two;
[0056] 321, clamping jaw seat; 321a, air cavity; 322, clamping end head; 323, ball one; 324, ball two;
[0057] 4, linear slide bar;
[0058] 5, cutting mechanism; 51, cutting seat; 52, cutting cover; 53, motor three; 54, guide rod; 55, rod cylinder; 56, cutting assembly; 57, adjusting base; 58, connecting foot prop; 59, motor four;
[0059] 521, splash-proof cover body; 522, connecting block;
[0060] 561, cutting blade; 562, polishing sandpaper;
[0061] 61, adjusting seat; 62, limiting rod; 63, abutting plate; 64, linkage ring; 65, spring; 66, assembled connecting rod;
[0062] 7, material collecting frame. DETAILED DESCRIPTION
[0063] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.
[0064] Embodiment: as Figures 1-10As shown, the present application provides a steel structure building material batch processing equipment, including a bottom frame 1, a plurality of position adjusting mechanisms 2 are installed on the top of the bottom frame 1, a plurality of clamping mechanisms 3 are distributed on both sides of the plurality of position adjusting mechanisms 2, and the clamping mechanism 3 is installed on the top of the bottom frame 1;
[0065] The position adjusting mechanism 2 comprises an adjusting main frame 21 and an adjusting inner ring 22;
[0066] The adjusting main frame 21 is installed on the top of the bottom frame 1, the adjusting inner ring 22 is rotationally connected to the inner side of the adjusting main frame 21, the inner side of the adjusting inner ring 22 is provided with a linear slide bar 4, and the linear slide bar 4 is slidably connected with a cutting mechanism 5 which can synchronously move with the steel structure material;
[0067] The clamping mechanism 3 comprises a clamping main frame 31 installed on the top of the bottom frame 1, a telescopic arm 33 slidably connected on the clamping main frame 31, and a centering clamping jaw 32 installed on the end of the telescopic arm 33 and capable of clamping the steel structure material;
[0068] The centering clamping jaw 32 comprises a clamping jaw seat 321 and a clamping end head 322;
[0069] The clamping end head 322 is slidably connected on the clamping jaw seat 321 and can abut against the steel structure, and the clamping end head 322 can rotate relative to the clamping jaw seat 321;
[0070] One end of the clamping end head 322 extends into the clamping jaw seat 321, and the clamping end head 322 can be pushed into the clamping jaw seat 321.
[0071] It should be noted that, in the present embodiment, through the synchronous movement of the cutting mechanism 5 and the steel structure material, the cutting mechanism 5 can be relatively stationary to cut the steel structure material, so as to realize continuous and zero-stop batch processing, achieve batch rapid processing of steel structure building materials, and ensure the production efficiency of steel structure building materials;
[0072] And through the rotation of the adjusting inner ring 22, the linear slide bar 4 and the cutting mechanism 5 can be rotated, so that the cutting mechanism 5 can adjust the position around the steel structure material to adapt to the cutting of the steel structure material;
[0073] The steel structure material is clamped by the centering of the centering clamp jaw 32 through the relative movement of the telescopic arm 33, the clamp jaw base 321 is circumscribed by the air pump, and the clamping end head 322 can be in contact with the surface of the steel structure material through the pressure in the clamp jaw base 321, and the clamping end head 322 can be in contact with the steel structure material through the driving of the air pressure, so that the clamping end head 322 can be in contact with the steel structure material, so that the clamping of different specifications of steel such as H-shaped steel, I-shaped steel, square tube and angle steel can be adapted, and the clamping end head 322 on the outside can limit the steel structure material, realize the precision difference of the cutting, and realize the precise clamping of the steel structure material while ensuring the continuity of the steel structure material through the relative rotation of the clamping end head 322 and the clamp jaw base 321, so that the cutting of the steel structure material is continuous, and the continuity of the cutting is ensured.
[0074] As Figures 1-10 shown, it is another embodiment of the application, which is based on the previous embodiment;
[0075] The top position of the bottom frame 1 is detachably mounted with a position-adjustable adjusting seat 61, a limiting rod 62 is slidably connected through the adjusting seat 61, an abutting plate 63 is mounted at the end of the limiting rod 62 close to the cutting mechanism 5, a linkage ring 64 is rotatably connected to the outer side of the abutting plate 63, an assembled connecting rod 66 is mounted on the outer side of the linkage ring 64, and the end of the assembled connecting rod 66 is detachably connected with the cutting mechanism 5.
[0076] An elastic component is arranged between the abutting plate 63 and the adjusting seat 61.
[0077] It should be noted that in this embodiment, the adjusting seat 61 can be adjusted to adapt to different lengths of cutting, and the abutting plate 63 can be synchronously pushed by the steel structure material through the contact between the end of the steel structure material and the abutting plate 63, so that the transmission of the linkage ring 64 and the assembled connecting rod 66 is realized, the cutting mechanism 5 moves synchronously with the conveying of the steel structure material, and the abutting plate 63 can be automatically returned to the original position and contacted with the end of the steel structure material through the return of the elastic component for subsequent cutting.
[0078] Under the rotation of the linkage ring 64, the cutting mechanism 5 can be adjusted to rotate together, and the assembled connecting rod 66 can be adjusted according to the position of the adjusting seat 61 to assemble the assembled connecting rod 66 of different lengths.
[0079] As Figures 1-10 shown, it is another embodiment of the application, which is based on the previous embodiment;
[0080] The cutting mechanism 5 comprises a cutting seat 51, a cutting cover 52, a cutting assembly 56, an adjusting base 57 and a connecting foot support 58.
[0081] The cutting base 51 is slidably connected to the linear slide bar 4, and the connecting feet 58 are installed on both sides of the bottom of the cutting base 51;
[0082] The adjusting base 57 is rotatably connected between the connecting feet 58. A rod cylinder 55 is installed on the top of the adjusting base 57. The output end of the rod cylinder 55 passes through the adjusting base 57 and is connected to the cutting cover 52.
[0083] The inner side of the cutting cover 52 is rotatably connected to the cutting assembly 56.
[0084] It should be noted that in this embodiment, by adjusting the rotation of the base 57, the angle of the cutting cover 52 can be adjusted, thus enabling the angle of the cutting component 56 to be adjusted, achieving the cutting of the steel structure material at an angle, and enabling the steel structure material to be cut under the action of the rotation of the cutting component 56.
[0085] Driven by the rod cylinder 55, the cutting assembly 56 is able to move toward the steel structure material, thereby gradually cutting the steel structure material.
[0086] like Figures 1-10 The illustration shows another embodiment of the present invention, which is based on the previous embodiment;
[0087] The cutting assembly 56 includes a cutting blade 561 and a sandpaper 562;
[0088] The sandpaper 562 is detachably mounted on both sides of the cutting blade 561, and the outer diameter of the sandpaper 562 is smaller than the outer diameter of the cutting blade 561.
[0089] A motor 53 is mounted on the outside of the cutting cover 52. The output shaft of the motor 53 passes through the cutting cover 52 and is connected to the center of the cutting blade 561.
[0090] It should be noted that in this embodiment, under the drive of the output shaft of motor 3 53, the cutting blade 561 is rotated. The rotation of the cutting blade 561 can first perform rotational cutting on the steel structure material. After the cutting of the steel structure material is completed, the sandpaper 562 rotates, so that the sandpaper 562 can rotate to grind the cut end face of the steel structure material. This realizes that the cutting and grinding of the steel structure material are carried out simultaneously, which speeds up the efficiency of cutting the steel structure material.
[0091] like Figures 1-10 The illustration shows another embodiment of the present invention, which is based on the previous embodiment;
[0092] The cutting cover 52 includes a splash guard 521 and a connecting block 522;
[0093] The cutting blade 561 is rotationally connected to the inner side of the splash-proof cover body 521, the connecting block 522 is installed on the outer side of the splash-proof cover body 521, two sides of the top of the connecting block 522 are provided with guide rods 54, and the guide rods 54 are slidingly connected to the adjusting base 57;
[0094] The output end of the rod cylinder 55 is installed on the top of the connecting block 522 through the adjusting base 57;
[0095] The outer side of the connecting foot support 58 is provided with a fourth motor 59, and the output shaft of the fourth motor 59 is connected to the adjusting base 57 through the connecting foot support 58.
[0096] It should be noted that, in the embodiment, the connecting block 522 can be stably moved through the limitation of the guide rods 54, so as to ensure the accuracy of the movement cutting of the cutting assembly 56, the connecting block 522 can be moved under the driving of the rod cylinder 55, so as to make the cutting assembly 56 move, and the adjusting base 57 can be rotated under the driving of the output shaft of the fourth motor 59, so as to realize the angle adjustment of the angle cutting.
[0097] As shown in Figures 1-10 , it is another embodiment of the present application, which is based on the previous embodiment;
[0098] The bottom of the bottom frame 1 is provided with a material collecting frame 7, and the material collecting frame 7 is directly below the clamping mechanism 3 and the adjusting seat 61;
[0099] The elastic assembly includes a spring 65;
[0100] The two ends of the spring 65 are respectively installed on the abutting plate 63 and the adjusting seat 61.
[0101] It should be noted that, in the embodiment, the steel structure material after cutting is removed from the clamping mechanism 3 under the pushing of the subsequent steel structure material, and falls into the material collecting frame 7, so as to complete the discharging, and realize the one-stop cutting-polishing-discharging of the steel structure material.
[0102] As shown in Figures 1-10 , it is another embodiment of the present application, which is based on the previous embodiment;
[0103] The clamping mechanism 3 further includes a telescopic arm 33, a transmission pin column 34 and a second external gear 36;
[0104] The telescopic arm 33 is slidingly connected to the inner side of the clamping main frame 31, and the transmission pin column 34 is installed on the end of the telescopic arm 33 extending into the clamping main frame 31;
[0105] The outer gear two 36 is rotatably connected inside the clamping main frame 31, and an arc-shaped slot 36a gradually approaching the center of the outer gear two 36 is formed through the outer gear two 36. The transmission pin column 34 is slidably connected in the arc-shaped slot 36a.
[0106] It should be noted that in this embodiment, under the action of the rotation of the outer gear two 36, the transmission pin column 34 can be relatively moved in the arc-shaped slot 36a, and under the action of the structure of the arc-shaped slot 36a, the transmission pin column 34 can drive the telescopic arm 33 to move to the center of the clamping mechanism 3, thereby realizing the clamping movement of the center clamping jaw 32.
[0107] As shown in Figures 1-10 , it is another embodiment of the application, which is based on the previous embodiment;
[0108] The motor two 35 is installed outside the clamping main frame 31, the output shaft of the motor two 35 extends into the inside of the clamping main frame 31 and is connected with the transmission gear two 37, and the transmission gear two 37 is engaged with the outside of the outer gear two 36.
[0109] It should be noted that in this embodiment, under the action of the output shaft of the motor two 35, the transmission gear two 37 can rotate, and then the outer gear two 36 can rotate.
[0110] As shown in Figures 1-10 , it is another embodiment of the application, which is based on the previous embodiment;
[0111] The position adjusting mechanism 2 further comprises a motor one 23, a transmission shaft 24, an outer gear ring one 25, a transmission gear one 26;
[0112] The outer gear ring one 25 is installed outside the adjusting inner ring 22 and is in the adjusting main frame 21;
[0113] The motor one 23 is installed outside the adjusting main frame 21, the output shaft of the motor one 23 extends into the inside of the adjusting main frame 21 and is connected with the transmission gear one 26, and the transmission gear one 26 is engaged with the outside of the outer gear ring one 25.
[0114] The transmission shaft 24 is installed through the center of the transmission gear one 26.
[0115] It should be noted that in this embodiment, under the action of the output shaft of the motor one 23, the transmission gear one 26 can rotate, and then the outer gear ring one 25 can rotate to drive the adjusting inner ring 22 to rotate, and under the transmission of the transmission shaft 24, the transmission gear one 26 can rotate synchronously.
[0116] As shown in Figures 1-10 , it is another embodiment of the application, which is based on the previous embodiment;
[0117] The inside of the clamping jaw base 321 is provided with an air cavity 321a, and the end of the clamping end head 322 in the clamping jaw base 321 is in communication with the air cavity 321a;
[0118] The end of the clamping end head 322 outside the clamping jaw base 321 is rollingly connected with the second rolling ball 324, and the side wall of the clamping end head 322 outside the clamping jaw base 321 is rollingly connected with the first rolling ball 323.
[0119] It should be noted that in this embodiment, a pressure sensor is arranged in the air cavity 321a to monitor the air pressure in the air cavity 321a, and the clamping pressure can be adapted according to the stress condition of the steel material structure, and the steel structure is conveyed more smoothly through the first rolling ball 323 and the second rolling ball 324.
[0120] In summary, the steel structure building material batch processing equipment is used, the adjusting seat 61 is installed on the top of the bottom frame 1 according to the cutting length of the steel structure material in advance, and then the end of the steel structure material is fed from the clamping mechanism 3 and the middle of the position adjusting mechanism 2 through the steel structure material feeding system;
[0121] Then the output shaft of the second motor 35 is driven to drive the second transmission gear 37 to rotate, so that the second external gear 36 rotates, and the telescopic arm 33 moves through the transmission between the arc-shaped groove 36a and the transmission pin column 34, so that the centering clamping jaw 32 moves to make the clamping end head 322 contact the steel structure material, and the air cavity 321a is pressurized by pumping, and the air pressure in the air cavity 321a is monitored by the pressure sensor, and the multiple clamping end heads 322 adaptively contact the surface of the steel structure material to limit the position of the steel structure material, and the relative rotation of the clamping end head 322, the first rolling ball 323 and the second rolling ball 324 enables the steel structure material to be linearly fed;
[0122] The end of the steel structure material abuts against the abutting plate 63, the abutting plate 63 is pushed by the steel structure material, and the cutting seat 51 slides on the linear slide 4 through the transmission of the assembled connecting rod 66, so that the cutting seat 51 and the steel structure material move synchronously to enable the cutting assembly 56 to cut the steel structure material relatively stationary;
[0123] Under the drive of the output shaft of the fourth motor 59, the adjusting base 57 rotates and drives the guide rod 54 to adaptively rotate to drive the cutting cover 52 to adaptively adjust the cutting angle;
[0124] Under the drive of the rod cylinder 55, the cutting cover 52 and the cutting assembly 56 move together to cut the steel structure material;
[0125] Under the driving of the motor three 53 output shaft, the cutting blade 561 and the polishing sandpaper 562 rotate together, the cutting blade 561 rotates first to cut the steel structure material, and after cutting, the polishing sandpaper 562 rotates to polish the cutting port of the steel structure material;
[0126] Under the driving of the motor one 23 output shaft, the transmission gear one 26 can rotate, then the adjusting inner ring 22 can rotate, and the linear slide bar 4 can drive the cutting mechanism 5 to rotate, realizing the switching of the cutting position of the cutting mechanism 5;
[0127] When the steel structure material cutting is completed, continue to push the steel structure material after cutting to separate from the clamping mechanism 3, at this time, under the action of the gravity of the steel structure material, fall into the material collecting frame 7 to complete the collection.
[0128] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A steel construction material batch processing plant comprising a base frame (1), characterised in that: The top of the bottom frame (1) is provided with a plurality of position adjusting mechanisms (2), the two sides of the plurality of position adjusting mechanisms (2) are provided with a plurality of clamping mechanisms (3), and the clamping mechanisms (3) are installed on the top of the bottom frame (1); The position adjusting mechanism (2) comprises an adjusting main frame (21) and an adjusting inner ring (22); The adjusting main frame (21) is installed on the top of the bottom frame (1), the adjusting inner ring (22) is rotationally connected to the inner side of the adjusting main frame (21), the inner side of the adjusting inner ring (22) is provided with a linear sliding strip (4), and the linear sliding strip (4) is slidably connected with a cutting mechanism (5) capable of moving synchronously with the steel structure material; The clamping mechanism (3) comprises a clamping main frame (31) installed on the top of the bottom frame (1), a telescopic arm (33) slidably connected to the clamping main frame (31), and a centering clamping jaw (32) installed at the end of the telescopic arm (33) and capable of clamping the steel structure material; The centering clamping jaw (32) comprises a clamping jaw seat (321) and a clamping end head (322); The clamping end head (322) is slidably connected to the clamping jaw seat (321) and can abut against the steel structure, and the clamping end head (322) can rotate relative to the clamping jaw seat (321); One end of the clamping end head (322) extends into the clamping jaw seat (321), and the clamping end head (322) can be pushed into the clamping jaw seat (321) by being filled with pressure; A position-adjustable adjusting seat (61) is detachably installed on the top of the bottom frame (1), a limiting rod (62) is slidably connected through the adjusting seat (61), an abutting plate (63) is installed at the end of the limiting rod (62) close to the cutting mechanism (5), a linkage ring (64) is rotationally connected to the outer side of the abutting plate (63), an assembled connecting rod (66) is installed on the outer side of the linkage ring (64), and the end of the assembled connecting rod (66) is detachably connected with the cutting mechanism (5); An elastic assembly is arranged between the abutting plate (63) and the adjusting seat (61).
2. The steel structural building material batch processing apparatus according to claim 1, characterized by: The cutting mechanism (5) comprises a cutting seat (51), a cutting cover (52), a cutting assembly (56), an adjusting base (57), and a connecting foot support (58); The cutting seat (51) is slidably connected to the linear sliding strip (4), and the connecting foot support (58) is installed on the two sides of the bottom of the cutting seat (51); The adjusting base (57) is rotationally connected between the connecting foot supports (58), a rod cylinder (55) is installed on the top of the adjusting base (57), and the output end of the rod cylinder (55) is connected with the cutting cover (52) through the adjusting base (57); The inner side of the cutting cover (52) is rotationally connected with the cutting assembly (56).
3. The steel construction material batch processing apparatus according to claim 2, characterized by: The cutting assembly (56) comprises a cutting blade (561) and a grinding sandpaper (562); The grinding sandpaper (562) is detachably installed on the two sides of the cutting blade (561), and the outer diameter of the grinding sandpaper (562) is smaller than that of the cutting blade (561). The outer side of the cutting cover (52) is provided with motor three (53), the output shaft of motor three (53) passes through the cutting cover (52) and is connected with the center of cutting blade (561).
4. The steel construction material batch processing apparatus according to claim 3, characterized by: The cutting cover (52) comprises a splash cover body (521) and a connecting block (522); The cutting blade (561) is rotatably connected to the inner side of the splash cover body (521), and the connecting block (522) is installed on the outer side of the splash cover body (521). The connecting block (522) is provided with guide rods (54) on both sides of the top thereof, and the guide rods (54) are slidably connected to the adjusting base (57); The output end of the rod cylinder (55) is installed on the top of the connecting block (522) through the adjusting base (57); The outer side of the connecting foot support (58) is provided with motor four (59), and the output shaft of motor four (59) passes through the connecting foot support (58) and is connected with the adjusting base (57).
5. The steel construction material batch processing apparatus according to claim 4, characterized by: The bottom of the bottom frame (1) is provided with a material collecting frame (7), and the material collecting frame (7) is directly below the clamping mechanism (3) and the adjusting seat (61); The elastic assembly comprises a spring (65); Both ends of the spring (65) are respectively installed on the abutting plate (63) and the adjusting seat (61).
6. The steel construction material batch processing apparatus according to claim 5, characterized by: The clamping mechanism (3) further comprises a telescopic arm (33), a transmission pin (34) and an outer gear two (36); The telescopic arm (33) is slidably connected to the inner side of the clamping main frame (31), and the transmission pin (34) is installed on the end of the telescopic arm (33) extending into the clamping main frame (31). The outer gear two (36) is rotatably connected to the inside of the clamping main frame (31), and an arc-shaped groove (36a) gradually approaching the center of the outer gear two (36) is formed through the outer gear two (36), and the transmission pin (34) is slidably connected in the arc-shaped groove (36a).
7. The steel construction material batch processing apparatus according to claim 6, characterized by: The outer side of the clamping main frame (31) is provided with motor two (35), the output shaft of motor two (35) extends into the inside of the clamping main frame (31) and is connected with transmission gear two (37), and the transmission gear two (37) is engaged with the outer side of the outer gear two (36).
8. The steel construction material batch processing apparatus according to claim 7, characterized by: The position adjusting mechanism (2) further comprises a motor one (23), a transmission shaft (24), an outer gear ring one (25) and a transmission gear one (26). The outer gear ring one (25) is installed on the outer side of the adjusting inner ring (22) and is located in the adjusting main frame (21); The outer side of the adjusting main frame (21) is provided with motor one (23), the output shaft of motor one (23) extends into the inside of the adjusting main frame (21) and is connected with transmission gear one (26), and the transmission gear one (26) is engaged with the outer side of the outer gear ring one (25); The transmission shaft (24) is installed through the center of the transmission gear one (26).
9. The steel construction material batch processing apparatus according to claim 8, characterized by: The inside of the clamping jaw seat (321) is provided with an air cavity (321a), and the end of the clamping end (322) in the clamping jaw seat (321) is communicated with the air cavity (321a). The clamping end head (322) is connected with the ball two (324) at the end outside the clamping jaw seat (321), and the clamping end head (322) is connected with the ball one (323) at the side wall outside the clamping jaw seat (321).
Citation Information
Patent Citations
A batch processing equipment and processing technology for steel structure building materials
CN111659942B
Novel batch processing equipment and processing technology of steel structure building materials
CN111659942A
Stainless steel cutting device for stainless steel sculpture processing
CN116140727A