Steel cutting excess material collecting equipment for construction site
By designing a steel cutting waste collection device with storage, movement and collection devices, and using permanent magnet rollers and vibration motors to sort steel waste, the problems of existing equipment requiring manual collection and being difficult to move are solved, and the use of equipment with low labor intensity and high ease of use is achieved.
Patent Information
- Application Number
- CN202422470946.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-10-12
AI Technical Summary
In the prior art, the steel cutting waste material collection equipment requires manual collection of steel, which has high labor intensity for workers, and the equipment is not easy to move and is inconvenient to use.
A steel cutting waste collection device is designed, which includes a storage device, a moving device and a collecting device. The steel waste is attracted by a permanent magnet roller and the large pieces and debris are sorted by a vibration motor. The roller is combined to facilitate the movement of the equipment.
It reduces the labor intensity of workers, improves the usability of the equipment, and enables the equipment to easily collect residual materials and be easy to move.
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Figure CN223367028U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of steel material waste recycling, in particular to a device for collecting steel material waste from cutting at a construction site. Background Art
[0002] Steel is a general term for a variety of steel materials. Before use, it needs to be cut according to usage requirements, and the cutting waste generated during cutting needs to be collected.
[0003] For example, in a type of prior art represented by a Chinese utility model patent with authorization announcement number CN220716612U, a device for collecting steel cutting waste for construction projects, its main structure includes a vibrating screen plate, a large waste collection box and a debris collection box. The vibrating screen plate separates large waste and debris, the large waste collection box stores large waste, and the debris collection box stores debris.
[0004] However, the existing technical equipment still has the following problems when in use: the steel needs to be collected manually and put into the machine for sorting and storage, which has a high labor intensity for workers; and the existing machines are not convenient to move and use, and the machine usability is poor. Utility Model Content
[0005] In order to solve the above technical problems, the utility model provides a construction site steel cutting waste material collection device which collects waste materials by setting a collection device to reduce the labor intensity of workers, and facilitates the mobile use of the machine by setting a mobile device to improve the usability of the machine.
[0006] The utility model provides a construction site steel cutting waste collection device, which includes a machine body; also includes a storage device, a moving device and a collecting device, and the storage device, the moving device and the collecting device are all installed on the machine body; the machine body provides support, the storage device stores the waste, the moving device facilitates the movement of the machine, and the collecting device collects the waste.
[0007] Preferably, the fuselage includes bracket one, two brackets two and bracket three, bracket one is provided with a through hole two, two brackets two are respectively installed at the left and right ends of bracket one, and the two brackets two are provided with the same through hole two, and bracket three is installed on the two brackets two; providing support.
[0008] Preferably, the storage device includes a storage box and a handle, the storage box is slidably mounted on the bracket, and the handle is mounted at the rear end of the storage box; the storage box stores the remaining materials, and the handle facilitates pulling the storage box to take out the remaining materials.
[0009] Preferably, the storage device includes two brackets four, a sorting plate, a vibration motor, a storage box two, a handle two, a storage box three and a handle three. The two brackets four are respectively installed on the two brackets two, and the two brackets four are located between the two brackets two. The sorting plate is slidably installed on the two brackets four. The sorting plate is provided with multiple holes. The vibration motor is installed at the front end of the sorting plate. The storage box two is slidably installed on the bracket one. The handle two is installed at the rear end of the storage box two. The storage box three is slidably installed on the two brackets four, and the handle three is installed at the rear end of the storage box three. The vibration motor provides power to drive the sorting plate to vibrate. The vibration of the sorting plate causes the debris mixed in the residual material to fall into the storage box two through the holes, and the remaining large pieces of residual material fall into the storage box three. The storage box two stores the debris, and the storage box three stores the large pieces of residual material. The handle two facilitates pulling the storage box two to take out the debris, and the handle three facilitates pulling the storage box three to take out the large pieces of residual material.
[0010] Preferably, the moving device includes two rotating shafts, four rollers 1, two brackets 5 and a handle 4. The two rotating shafts are rotatably installed in the through hole 1 and the through hole 2 of the bracket 1 respectively. The four rollers 1 are fixedly installed at the left and right ends of the two rotating shafts respectively. The two brackets 5 are both installed at the top of the bracket 3. The handle 4 is installed on the two brackets 5; the roller 1 facilitates the movement of the machine, and the handle 4 facilitates the pushing of the machine.
[0011] Preferably, the moving device includes two rotating shafts, four roller ones, a bracket six, two brackets seven, a handle five, a bracket eight and multiple roller twos, the two rotating shafts are rotatably installed in the through hole one and the through hole two of the bracket one, the four roller ones are fixedly installed at the left and right ends of the two rotating shafts, the bracket six is installed at the top of the bracket three, the two brackets seven are both installed at the top of the bracket six, the handle five is installed on the two brackets seven, the bracket eight is installed at the bottom of the storage box three, and the bottom of the bracket eight is provided with multiple mounting grooves, and the multiple rollers two are rotatably installed in the multiple mounting grooves; the rollers one and the rollers two facilitate the movement of the machine, and the handle five facilitates the pushing of the machine.
[0012] Preferably, the collecting device includes a collecting block, multiple sleeves, a permanent magnet roller, multiple sleeves, two gears 1 and two gears 2, the collecting block is on two brackets 2, a multiple top block is provided at the front end of the collecting block, the multiple sleeves are fixedly installed at the front end of the collecting block, the permanent magnet roller is rotatably installed in the multiple sleeves, the multiple sleeves are fixedly installed on the permanent magnet roller, and the multiple sleeves and the multiple sleeves are matched on the surface of the permanent magnet roller to construct a multiple grooves that match the sizes of the multiple top blocks of the collecting block, the two gears 1 are respectively fixedly installed at the left and right ends of the permanent magnet roller, the two gears 2 are respectively installed on the two rollers 1 in front, and the two gears 1 are respectively engaged with the two gears 2; the permanent magnet roller attracts the residual steel, and when the machine moves, the roller 1 rotates, the rotation of the roller 1 drives the gear 2 to rotate, the rotation of the gear 2 drives the permanent magnet roller to rotate, the rotation of the permanent magnet roller drives the residual steel on the surface to rotate, and the collecting block scrapes the residual steel on the surface of the permanent magnet roller for collection.
[0013] Compared with the prior art, the beneficial effects of the present invention are: the residual materials can be collected more easily, the labor intensity of the workers is relatively low; and the machine can be used movably, and the machine is easy to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is an axonometric structural diagram of a storage box 1 and a handle 1;
[0015] Figure 2 It is an axonometric structural diagram of bracket four and sorting plate;
[0016] Figure 3 It is a schematic diagram of the axonometric structure of the fuselage;
[0017] Figure 4 It is an axonometric structural diagram of a storage box 1 and a handle 1;
[0018] Figure 5 It is an axonometric structural diagram of bracket 4 and sorting plate;
[0019] Figure 6 It is an axonometric structural diagram of bracket four and sorting plate;
[0020] Figure 7 It is an axonometric structural diagram of the rotating shaft, roller one and bracket five;
[0021] Figure 8 It is an axonometric structural diagram of the rotating shaft, the first roller and the sixth bracket;
[0022] Figure 9 It is a schematic diagram of the axonometric structure of the collection device.
[0023] Markings in the accompanying drawings: 01, fuselage; 11, bracket one; 12, bracket two; 13, bracket three; 02, storage device; 21, storage box one; 22, handle one; 23, bracket four; 24, sorting plate; 25, vibration motor; 26, storage box two; 27, handle two; 28, storage box three; 29, handle three; 03, moving device; 31, rotating shaft; 32, roller one; 33, bracket five; 34, handle four; 35, bracket six; 36, bracket seven; 37, handle five; 38, bracket eight; 39, roller two; 04, collecting device; 41, collecting block; 42, sliding sleeve; 43, permanent magnet roller; 44, sheath; 45, gear one; 46, gear two. DETAILED DESCRIPTION
[0024] To facilitate understanding of the present invention, a more comprehensive description of the present invention will be provided below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.
[0025] Example 1
[0026] like Figure 1 As shown, it includes a body 01; it also includes a storage device 02, a moving device 03 and a collecting device 04, and the storage device 02, the moving device 03 and the collecting device 04 are all installed on the body 01; the body 01 provides support, the storage device 02 stores the residual material, the moving device 03 facilitates the movement of the machine, and the collecting device 04 collects the residual material;
[0027] like Figure 3 As shown, the fuselage 01 includes a bracket 11, two brackets 2 12 and a bracket 3 13. The bracket 1 11 is provided with a through hole 1 and a through hole 2. The two brackets 2 12 are respectively installed at the left and right ends of the bracket 1 11, and the two brackets 2 12 are both provided with the same through hole 2. The bracket 3 13 is installed on the two brackets 2 12.
[0028] like Figure 4 As shown, the storage device 02 includes a storage box 21 and a handle 22. The storage box 21 is slidably mounted on the bracket 11, and the handle 22 is mounted on the rear end of the storage box 21.
[0029] like Figure 7 As shown, the mobile device 03 includes two rotating shafts 31, four rollers 1 32, two brackets 5 33 and a handle 4 34. The two rotating shafts 31 are rotatably mounted in the through hole 1 and the through hole 2 of the bracket 1 11 respectively. The four rollers 1 32 are fixedly mounted on the left and right ends of the two rotating shafts 31 respectively. The two brackets 5 33 are both mounted on the top of the bracket 3 13. The handle 4 34 is mounted on the two brackets 5 33.
[0030] like Figure 9 As shown, the collecting device 04 includes a collecting block 41, a plurality of sleeves 42, a permanent magnet roller 43, a plurality of sleeves 44, two gears 1 45 and two gears 2 46. The collecting block 41 is on two brackets 2 12. A plurality of top blocks are provided at the front end of the collecting block 41. The plurality of sleeves 42 are fixedly mounted at the front end of the collecting block 41. The permanent magnet roller 43 is rotatably mounted in the plurality of sleeves 42. The plurality of sleeves 44 are fixedly mounted on the permanent magnet roller 43. The plurality of sleeves 42 and the plurality of sleeves 44 are matched on the surface of the permanent magnet roller 43 to form a plurality of grooves that match the sizes of the plurality of top blocks of the collecting block 41. The two gears 1 45 are fixedly mounted on the left and right ends of the permanent magnet roller 43, respectively. The two gears 2 46 are respectively mounted on the two rollers 1 32 in the front, and the two gears 1 45 are respectively engaged with the two gears 2 46.
[0031] The machine is pushed to pass over the steel residue, roller 1 32 facilitates the movement of the machine, and handle 4 34 facilitates the pushing of the machine. When the permanent magnet roller 43 approaches the residue, the permanent magnet roller 43 attracts the steel residue. When the machine moves, roller 1 32 rotates, and the rotation of roller 1 32 drives gear 2 46 to rotate. The rotation of gear 2 46 drives the permanent magnet roller 43 to rotate. The rotation of permanent magnet roller 43 drives the steel residue on the surface to rotate. The collecting block 41 scrapes the steel residue on the surface of the permanent magnet roller 43 for collection. The collected residue falls to the storage box 1 21 under the action of gravity. The storage box 1 21 stores the residue. Handle 1 22 facilitates pulling the storage box 1 21 to take out the residue.
[0032] Example 2
[0033] like Figure 2 As shown, it includes a body 01; it also includes a storage device 02, a moving device 03 and a collecting device 04, and the storage device 02, the moving device 03 and the collecting device 04 are all installed on the body 01; the body 01 provides support, the storage device 02 stores the residual material, the moving device 03 facilitates the movement of the machine, and the collecting device 04 collects the residual material;
[0034] like Figure 3 As shown, the fuselage 01 includes a bracket 11, two brackets 2 12 and a bracket 3 13. The bracket 1 11 is provided with a through hole 1 and a through hole 2. The two brackets 2 12 are respectively installed at the left and right ends of the bracket 1 11, and the two brackets 2 12 are both provided with the same through hole 2. The bracket 3 13 is installed on the two brackets 2 12.
[0035] like Figure 5 and Figure 6As shown, the storage device 02 includes two brackets 23, a sorting plate 24, a vibration motor 25, a storage box 26, a handle 27, a storage box 3 28 and a handle 3 29. The two brackets 23 are respectively mounted on the two brackets 12, and the two brackets 23 are located between the two brackets 12. The sorting plate 24 is slidably mounted on the two brackets 23. The sorting plate 24 is provided with a plurality of holes. The vibration motor 25 is mounted on the front end of the sorting plate 24. The storage box 26 is slidably mounted on the bracket 1 11. The handle 27 is mounted on the rear end of the storage box 26. The storage box 3 28 is slidably mounted on the two brackets 23. The handle 3 29 is mounted on the rear end of the storage box 3 28.
[0036] like Figure 8 As shown, the mobile device 03 includes two rotating shafts 31, four rollers 1 32, a bracket 6 35, two brackets 7 36, a handle 5 37, a bracket 8 38 and a plurality of rollers 2 39. The two rotating shafts 31 are rotatably mounted in the through hole 1 and the through hole 2 of the bracket 1 11 respectively. The four rollers 1 32 are fixedly mounted on the left and right ends of the two rotating shafts 31 respectively. The bracket 6 35 is mounted on the top of the bracket 3 13. The two brackets 7 36 are both mounted on the top of the bracket 6 35. The handle 5 37 is mounted on the two brackets 7 36. The bracket 8 38 is mounted on the bottom of the storage box 3 28. The bottom of the bracket 8 38 is provided with a plurality of mounting slots. The plurality of rollers 2 39 are rotatably mounted in the plurality of mounting slots respectively.
[0037] like Figure 9 As shown, the collecting device 04 includes a collecting block 41, a plurality of sleeves 42, a permanent magnet roller 43, a plurality of sleeves 44, two gears 1 45 and two gears 2 46. The collecting block 41 is on two brackets 2 12. A plurality of top blocks are provided at the front end of the collecting block 41. The plurality of sleeves 42 are fixedly mounted at the front end of the collecting block 41. The permanent magnet roller 43 is rotatably mounted in the plurality of sleeves 42. The plurality of sleeves 44 are fixedly mounted on the permanent magnet roller 43. The plurality of sleeves 42 and the plurality of sleeves 44 are matched on the surface of the permanent magnet roller 43 to form a plurality of grooves that match the sizes of the plurality of top blocks of the collecting block 41. The two gears 1 45 are fixedly mounted on the left and right ends of the permanent magnet roller 43, respectively. The two gears 2 46 are respectively mounted on the two rollers 1 32 in the front, and the two gears 1 45 are respectively engaged with the two gears 2 46.
[0038] The machine is pushed to pass over the steel residue. Roller 1 32 and roller 2 39 facilitate the movement of the machine. Handle 5 37 facilitates the pushing of the machine. When the permanent magnet roller 43 approaches the residue, the permanent magnet roller 43 attracts the steel residue. When the machine moves, roller 1 32 rotates, and the rotation of roller 1 32 drives gear 2 46 to rotate. The rotation of gear 2 46 drives permanent magnet roller 43 to rotate. The rotation of permanent magnet roller 43 drives the steel residue on the surface to rotate. The collecting block 41 scrapes the steel residue on the surface of the permanent magnet roller 43 for The collected residue falls to the sorting plate 24 under the action of gravity, and then the vibration motor 25 is turned on. The vibration motor 25 provides power to drive the sorting plate 24 to vibrate. The vibration of the sorting plate 24 causes the debris mixed in the residue to fall through the holes to the storage box 2 26, and the remaining large pieces of residue fall to the storage box 3 28. The storage box 2 26 stores the debris, and the storage box 3 28 stores the large pieces of residue. The handle 2 27 facilitates pulling the storage box 2 26 to take out the debris, and the handle 3 29 facilitates pulling the storage box 3 28 to take out the large pieces of residue.
[0039] like Figures 1 to 9 As shown, the utility model is a construction site steel cutting waste material collection device. When it is working, the machine is pushed to pass over the steel waste material. The roller 1 32 and the roller 2 39 facilitate the movement of the machine. The handle 5 37 facilitates the pushing of the machine. When the permanent magnet roller 43 approaches the waste material, the permanent magnet roller 43 attracts the steel waste material. When the machine moves, the roller 1 32 rotates, and the rotation of the roller 1 32 drives the gear 2 46 to rotate. The rotation of the gear 2 46 drives the permanent magnet roller 43 to rotate. The rotation of the permanent magnet roller 43 drives the steel waste material on the surface to rotate. The collection block 41 will The steel residue on the surface of the body roller 43 is scraped off and collected. The collected residue falls to the sorting plate 24 under the action of gravity, and then the vibration motor 25 is turned on. The vibration motor 25 provides power to drive the sorting plate 24 to vibrate. The vibration of the sorting plate 24 causes the debris mixed in the residue to fall to the storage box 2 26 through the holes, and the remaining large pieces of residue fall to the storage box 3 28. The storage box 2 26 stores the debris, and the storage box 3 28 stores the large pieces of residue. The handle 2 27 facilitates pulling the storage box 2 26 to take out the debris, and the handle 3 29 facilitates pulling the storage box 3 28 to take out the large pieces of residue.
[0040] The vibration motor 25, permanent magnet roller 43, two gears 1 45 and two gears 2 46 of the utility model are purchased on the market. Technicians in this industry only need to install and operate them according to the accompanying instruction manual without the need for creative work by technicians in this field.
[0041] The main functions achieved by the present invention are: by setting up a collecting device 04 to collect the residual materials, the labor intensity of the workers is reduced, and by setting up a moving device 03, the machine is convenient to move and use, thereby improving the usability of the machine; it solves the existing technical problems that the steel needs to be collected manually and put into the machine for sorting and storage, the labor intensity of the workers is high, and the existing machines are inconvenient to move and use, and the usability of the machine is poor.
[0042] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A device for collecting steel cutting residues at a construction site, comprising a body (01); characterized in that: The machine further comprises a storage device (02), a moving device (03) and a collecting device (04), wherein the storage device (02), the moving device (03) and the collecting device (04) are all mounted on the machine body (01); the machine body (01) provides support, the storage device (02) stores the residual materials, the moving device (03) facilitates the movement of the machine, and the collecting device (04) collects the residual materials.
2. The equipment for collecting steel cutting residues at a construction site according to claim 1, characterized in that: The fuselage (01) includes a bracket one (11), two bracket twos (12) and a bracket three (13), wherein the bracket one (11) is provided with a through hole one and a through hole two, and the two bracket twos (12) are respectively installed at the left and right ends of the bracket one (11), and the two bracket twos (12) are both provided with the same through hole two, and the bracket three (13) is installed on the two bracket twos (12).
3. The equipment for collecting steel cutting residues at a construction site according to claim 2, characterized in that: The storage device (02) comprises a storage box (21) and a handle (22). The storage box (21) is slidably mounted on a bracket (11), and the handle (22) is mounted at the rear end of the storage box (21).
4. The equipment for collecting steel cutting residues at a construction site according to claim 2, characterized in that: The storage device (02) comprises two brackets (23), a sorting plate (24), a vibration motor (25), a storage box (26), a handle (27), a storage box (28) and a handle (29). The two brackets (23) are respectively mounted on the two brackets (12), and the two brackets (23) are located between the two brackets (12). The sorting plate (24) is slidably mounted on the two brackets (23). The sorting plate (24) is provided with a plurality of holes. The vibration motor (25) is mounted at the front end of the sorting plate (24). The storage box (26) is slidably mounted on the bracket (11). The handle (27) is mounted at the rear end of the storage box (26). The storage box (3) (28) is slidably mounted on the two brackets (23). The handle (3) (29) is mounted at the rear end of the storage box (28).
5. The equipment for collecting steel cutting residues at a construction site according to claim 2, characterized in that: The mobile device (03) includes two rotating shafts (31), four rollers (32), two brackets (33) and a handle (34). The two rotating shafts (31) are rotatably mounted in the through hole (1) and the through hole (2) of the bracket (11). The four rollers (32) are fixedly mounted on the left and right ends of the two rotating shafts (31). The two brackets (33) are both mounted on the top of the bracket (13). The handle (34) is mounted on the two brackets (33).
6. The equipment for collecting steel cutting residues at a construction site according to claim 4, characterized in that: The mobile device (03) includes two rotating shafts (31), four rollers (32), a bracket (35), two brackets (36), a handle (37), a bracket (38) and a plurality of rollers (39). The two rotating shafts (31) are rotatably mounted in the through hole (1) and the through hole (2) of the bracket (11). The four rollers (32) are fixedly mounted on the left and right ends of the two rotating shafts (31). The bracket (35) is mounted on the top of the bracket (3) (13). The two brackets (36) are both mounted on the top of the bracket (35). The handle (37) is mounted on the two brackets (36). The bracket (38) is mounted on the bottom of the storage box (38). The bottom of the bracket (38) is provided with a plurality of mounting grooves. The plurality of rollers (39) are rotatably mounted in the plurality of mounting grooves.
7. The equipment for collecting steel cutting residues at a construction site according to claim 6, characterized in that: The collecting device (04) comprises a collecting block (41), a plurality of sliding sleeves (42), a permanent magnet roller (43), a plurality of protective sleeves (44), two gears 1 (45) and two gears 2 (46); the collecting block (41) is on two brackets 2 (12); a plurality of top blocks are provided at the front end of the collecting block (41); the plurality of sliding sleeves (42) are fixedly installed at the front end of the collecting block (41); the permanent magnet roller (43) is rotatably installed in the plurality of sliding sleeves (42); the plurality of protective sleeves (44) are fixedly installed at the front end of the collecting block (41); the permanent magnet roller (43) is rotatably installed in the plurality of sliding sleeves (42); the plurality of protective sleeves (44) are fixedly installed at the front end of the collecting block (41); the plurality of They are all fixedly mounted on the permanent magnet roller (43), and a plurality of sliding sleeves (42) and a plurality of protective sleeves (44) are matched on the surface of the permanent magnet roller (43) to form a plurality of grooves matched with the sizes of the plurality of top blocks of the collecting block (41), two gears 1 (45) are respectively fixedly mounted on the left and right ends of the permanent magnet roller (43), two gears 2 (46) are respectively mounted on the two rollers 1 (32) in front, and the two gears 1 (45) are respectively engaged with the two gears 2 (46).
Citation Information
Patent Citations
Steel cutting excess material collecting device for constructional engineering
CN220716612U