Intelligent welding material drying and dispensing all-in-one machine, dispensing bin mechanism and dispensing bin control method
By designing a rotating rod-driven placement plate and an inclined lifting plate in the welding equipment, the problem of electrode residue clogging the vent holes was solved, achieving smooth electrode dispensing and stable heat preservation effect, reducing the need for manual cleaning of residue, and improving the convenience and efficiency of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHINA PETROLEUM FIRST CONSTR CORP
- Filing Date
- 2026-04-02
- Publication Date
- 2026-05-01
AI Technical Summary
In existing welding equipment, the slag on the outside of the welding rod easily clogs the vent holes, affecting the heat preservation effect, and requires manual cleaning at regular intervals, which is time-consuming and labor-intensive.
An intelligent welding material drying and dispensing integrated machine was designed. The placement plate driven by the rotating rod is reciprocated with a small amplitude. Combined with the inclined lifting plate and slag plate, the welding rod and slag are separated and automatically discharged. The slag is removed by wind pulse and vibration, and the ventilation holes are kept open.
It achieves smooth electrode dispensing and stable heat preservation effect, reduces the need for manual cleaning of slag, and improves the convenience and efficiency of the equipment.
Smart Images

Figure CN121948005A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of electromechanical applications, and in particular to an intelligent welding material drying and dispensing integrated machine, a dispensing chamber mechanism, and a dispensing chamber control method. Background Technology
[0002] In the field of welding technology, before using welding rods for welding, welders must first dry and keep the welding rods at the required temperature to ensure welding quality.
[0003] Existing technology typically involves preheating a batch of welding rods to a certain temperature, then temporarily storing these heated welding rods in an insulated box. The welding rods are then taken out of the insulated box for welding, and the process of obtaining them requires manual application, review, and registration.
[0004] A fully integrated intelligent welding material storage system, Chinese patent application number CN202510270431.8, includes a storage area and an equipment area. The storage area is equipped with multi-layer shelves, and the equipment area includes an oven, a material picking mechanism, a transfer mechanism, a dispensing mechanism, a feeding mechanism, and a recycling mechanism. The oven is used to heat the welding rods inside. The material picking mechanism is used to reach into the oven to remove a pallet containing materials and place it on the transfer mechanism platform, and then retrieve an empty pallet from the transfer mechanism platform and place it back into the oven. The transfer mechanism is used to grab and move the welding rods to a designated dispensing bin for feeding. The dispensing bin mechanism is used to push the welding rods out of the bin and slide them into the hopper of the feeding mechanism. The recycling mechanism is used to collect the remaining welding rods into the recycling bin.
[0005] During use, the coating on the outside of the welding rod inevitably sheds slag. When the slag blocks the vent, it obstructs the airflow circulation in the dispensing box, thereby affecting the heat preservation effect inside the dispensing box. Furthermore, the slag on the top of the plate cannot be discharged automatically and needs to be cleaned manually at regular intervals, which is time-consuming and labor-intensive. Summary of the Invention
[0006] To solve the above-mentioned technical problems, the present invention provides an intelligent welding material drying and dispensing integrated machine, a dispensing chamber mechanism, and a dispensing chamber control method.
[0007] The present invention provides an intelligent welding material drying and dispensing integrated machine, comprising a container cabinet, wherein a working area and an operation area are provided inside the container cabinet, wherein a drying oven mechanism, a first transfer mechanism, a second transfer mechanism and a dispensing bin mechanism are provided in the operation area, and a control cabinet is also provided in the operation area, wherein the control cabinet controls the operation of the drying oven mechanism, the first transfer mechanism, the second transfer mechanism and the dispensing bin mechanism;
[0008] The work area is equipped with desks and bookshelves.
[0009] Preferably, both ends of the first transfer mechanism are provided with pallet supports, and pallets are provided on the pallet supports.
[0010] The present invention also discloses a dispensing chamber mechanism of an intelligent welding material drying and dispensing integrated machine. The dispensing chamber mechanism includes multiple dispensing boxes, and a placement rack is provided at the lower end of the multiple dispensing boxes. A waste collection frame is also provided at the lower end of the placement rack. The upper end of the dispensing box is equipped with a sealing component, the inside of the dispensing box is equipped with a placement plate, the lower end of the placement plate is equipped with a rotating rod, the rotating rod is rotatably mounted on the inner wall of the dispensing box, the inside of the dispensing box is equipped with a heat insulation component at the lower end of the placement plate, and the side end of the dispensing box is equipped with a dispensing component.
[0011] Preferably, the sealing assembly includes a sealing cover, which is disposed at the opening at the upper end of the dispensing box. A round rod is disposed on the side end of the sealing cover, and a bracket is disposed at the upper end of the dispensing box. The round rod is rotatably disposed on the bracket, and a first motor is disposed on the side end of the dispensing box. The output end of the first motor is connected to the round rod.
[0012] Preferably, the heat preservation component includes a heating rod disposed at the bottom of the dispensing box and located below the placement plate. A second motor is disposed at the bottom of the dispensing box, and the output end of the second motor rotates through the dispensing box. A fan blade disk is disposed at the output end of the second motor, and fan blades are disposed outside the fan blade disk. The heating rod is located below the fan blade disk.
[0013] Preferably, the feeding assembly includes a first lifting plate, which is inclinedly disposed on the inner wall of the feeding box. The side end of the feeding box is provided with a discharge port at a corresponding position of the first lifting plate. The first lifting plate is provided with a sliding groove, and a sliding rod is provided in the sliding groove. A second lifting plate is provided on the side end of the sliding rod. Both the first and second lifting plates are provided with lifting teeth on their side ends.
[0014] Preferably, there are two of each of the first and second lifting plates, and a connecting plate is provided between the two second lifting plates. A hydraulic cylinder is provided at the lower end of the connecting plate on the outside of the dispensing box. A drive rod is hinged to the output end of the hydraulic cylinder. A rectangular through hole is provided on the side wall of the dispensing box at the lower end of the connecting plate. The drive rod passes through the rectangular through hole, and the end of the drive rod is hinged to the connecting plate.
[0015] Preferably, a material residue plate is provided inside the dispensing box at the lower side of the placement plate, the placement plate and the material residue plate are connected by an elastic cloth, the upper end of the placement plate is also connected to the inner wall of the dispensing box by an elastic cloth, and ventilation holes are provided on both the inclined and vertical surfaces of the placement plate.
[0016] The present invention also discloses a method for controlling the dispensing warehouse of a dispensing warehouse mechanism, comprising the following steps: Step 1: When the equipment is running, the system controls the operation of the insulation components according to the welding material storage requirements to keep the temperature inside the dispensing box constant. Step 2: When the system detects that the welding material in the dispensing mechanism needs to be replenished, the system controls the second transfer mechanism to move the welding material to the upper end of the dispensing mechanism. Step 3: The system control activates the sealing component, opening the top of the dispensing box and allowing the welding material from the second transfer mechanism to be placed into the dispensing box. Then, the sealing component activates again, closing the top of the dispensing box. Step 4: When the external welding worker collects the welding materials, the welding worker presses the external control button, and the system controls the material dispensing component to operate, causing the welding rods in the dispensing box to be dispensed outwards.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows: By setting up a rotating rod, a placement plate, and an inclined second lifting plate, the equipment operates by having the second lifting plate reciprocate to press against the placement plate. This causes the placement plate to rotate slightly around the rotating rod. During this rotation, the welding rods and slag on the placement plate slide smoothly downwards. The rotation also changes the distance between the placement plate and the fan blade, affecting the vents with pulsed airflow. With the vibration of the placement plate, the slag at the upper end of the vents is discharged upwards, reducing vent blockage. Simultaneously, the rotation of the placement plate collides with the slag plate, causing it to vibrate. The uneven pressure on the slag plate, with one end higher than the other, allows the slag on the slag plate to be discharged smoothly. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the dispensing mechanism of the present invention; Figure 3 This is the invention Figure 2 A magnified schematic diagram of the local structure at point A; Figure 4 This is a schematic diagram of the dispensing box of the present invention; Figure 5 This is a schematic diagram of the internal structure of the dispensing box of the present invention; Figure 6 This is the invention Figure 5 A magnified schematic diagram of the structure at point B in the middle.
[0019] Reference numerals: 1. Container; 2. Working area; 3. Operation area; 4. Drying oven mechanism; 5. First transfer mechanism; 6. Dispensing bin mechanism; 7. Second transfer mechanism; 8. Control cabinet; 9. Bookshelf; 10. Pallet support; 11. Pallet; 12. Desk; 601. Dispensing box; 602. Placement rack; 603. Waste residue collection box; 604. Sealing assembly; 605. Placement plate; 606. Rotating rod; 607. Sealing cover; 608. Round rod; 609. Support; 610. First motor; 611. Second motor; 612. Fan blade; 613. First lifting plate; 614. Discharge port; 615. Slide chute; 616. Slide rod; 617. Second lifting plate; 618. Connecting plate; 619. Hydraulic cylinder; 620. Drive rod; 621. Waste residue plate. Detailed Implementation
[0020] To facilitate understanding of the present invention, it will now be described more fully 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 so that this disclosure will be thorough and complete.
[0021] Example 1 like Figures 1 to 2 As shown, this invention discloses an intelligent welding material drying and dispensing integrated machine, including a container 1. The container 1 is equipped with a work area 2 and an operation area 3. The operation area 3 is equipped with a drying oven mechanism 4, a first transfer mechanism 5, a second transfer mechanism 7, and a dispensing bin mechanism 6. The operation area 3 is also equipped with a control cabinet 8, which controls the operation of the drying oven mechanism 4, the first transfer mechanism 5, the second transfer mechanism 7, and the dispensing bin mechanism 6. Workers work in the work area 2. The first transfer mechanism 5 can move the welding material into the drying oven mechanism 4, and then the drying oven mechanism 4 dries the welding material inside. After the welding material is dried, it is taken out by the first transfer mechanism 5, and then the second transfer mechanism 7 puts the welding material into the dispensing bin mechanism 6. When the welding worker receives the welding material outside the container 1, the dispensing bin mechanism 6 distributes the welding material to the welding worker, which improves the convenience of using the equipment.
[0022] Work area 2 is equipped with desks 12 and bookshelves 9, which enable office staff to work conveniently. Incoming and outgoing documents are stored together through bookshelves 9, which facilitates more detailed management of welding materials.
[0023] Both ends of the first transfer mechanism 5 are equipped with pallet supports 10, and pallets 11 are placed on the pallet supports 10. When the welding materials are put into storage, the pallets 11 are first moved to the work area 2 for registration, and then the pallets 11 are placed on the pallet supports 10 near the work area 2. After that, the various machines in the work area 3 operate to dry the welding materials on the pallets 11 and put them into the distribution warehouse mechanism 6 for temporary heat preservation storage.
[0024] In the process of using this invention, the worker puts the newly produced welding materials into the tray 11, and then moves the tray 11 to the work area 2 to register the welding materials for warehousing. After the warehousing registration is completed, the tray 11 is placed on the tray support 10 near the work area 2.
[0025] The first transfer mechanism 5 is activated, and with the assistance of the first transfer mechanism 5, the tray 11 is placed into the drying oven mechanism 4. Then, the drying oven mechanism 4 is activated to dry the welding materials on the tray 11. After drying, with the assistance of the first transfer mechanism 5, the tray 11 is taken out of the drying oven mechanism 4 and placed on the tray support 10 away from the work area 2. Then, the second transfer mechanism 7 is activated, and the second transfer mechanism 7 clamps the welding materials on the tray 11 and places them into the dispensing warehouse mechanism 6. Then, when the welding worker retrieves the welding materials outside the container 1, the dispensing warehouse mechanism 6 distributes the internally insulated welding materials to the welding worker.
[0026] like Figures 1 to 6 As shown, the present invention also discloses a dispensing chamber mechanism of an intelligent welding material drying and dispensing integrated machine. The dispensing chamber mechanism 6 includes multiple dispensing boxes 601, and a placement rack 602 is provided at the lower end of the multiple dispensing boxes 601. A waste collection frame 603 is also provided at the lower end of the placement rack 602. Through the multiple dispensing boxes 601, welding materials can be dispensed to multiple welding workers at the same time, reducing the phenomenon of welding workers queuing to collect welding materials. At the same time, during the storage and dispensing process of welding materials through the dispensing chamber mechanism 6, the flux coating on the surface of the welding materials will inevitably fall off. The fallen residue will fall into the waste collection frame 603 for collection, making the use of the equipment more convenient.
[0027] The upper end of the dispensing box 601 is equipped with a sealing component 604, and a placement plate 605 is provided inside the dispensing box 601. Ventilation holes are provided on both the inclined and vertical surfaces of the placement plate 605. A heat insulation component is provided at the lower end of the placement plate 605 inside the dispensing box 601, and a feeding component is provided on the side of the dispensing box 601. After the upper sealing component 604 is opened, the welding material can be placed into the upper end of the placement plate 605 inside the dispensing box 601. Then, when welding material needs to be dispensed, the welding material on the placement plate 605 is raised and dispensed one by one with the assistance of the feeding component. At the same time, when storing welding material, the storage effect of welding material in the dispensing box 601 is better with the assistance of the heat insulation component.
[0028] The sealing assembly 604 includes a sealing cover 607, which is disposed at the opening at the upper end of the dispensing box 601. A round rod 608 is disposed on the side of the sealing cover 607. A bracket 609 is disposed at the upper end of the dispensing box 601. The round rod 608 is rotatably disposed on the bracket 609. A first motor 610 is disposed on the side of the dispensing box 601. The output end of the first motor 610 is connected to the round rod 608. When the first motor 610 is started, the output end of the first motor 610 drives the round rod 608 to rotate. The rotation of the round rod 608 causes the sealing cover 607 to rotate, thereby opening or closing the upper end of the dispensing box 601.
[0029] The heat preservation component includes a heating rod, which is located at the bottom of the dispensing box 601 and below the placement plate 605. A second motor 611 is located at the bottom of the dispensing box 601. The output end of the second motor 611 rotates through the dispensing box 601. A fan blade disk 612 is located at the output end of the second motor 611, and fan blades are located on the outside of the fan blade disk 612. The heating rod is located below the fan blade disk 612. After the welding material is transferred from the oven mechanism 4 to the dispensing chamber mechanism 6, in order to avoid excessive temperature changes that could cause thermal expansion and contraction deformation of the welding material coating, the heating rod is always in the starting state. At the same time, the second motor 611 is started, and the output end of the second motor 611 drives the fan blade disk 612 to rotate, thereby generating wind power. Under the action of wind power, the heat of the heating rod can be evenly distributed in the dispensing box 601, ensuring that each piece of welding material can be stored in the constant temperature dispensing box 601.
[0030] The material dispensing assembly includes a first lifting plate 613, which is inclinedly disposed on the inner wall of the dispensing box 601. A discharge port 614 is provided on the side of the dispensing box 601 at a corresponding position of the first lifting plate 613. A sliding groove 615 is provided on the first lifting plate 613, and a sliding rod 616 is provided in the sliding groove 615. A second lifting plate 617 is provided on the side of the sliding rod 616. Both the first lifting plate 613 and the second lifting plate 617 are provided with lifting teeth on their sides. The welding material on the placement plate 605 naturally rolls onto the lifting teeth of the first lifting plate 613. Then, the second lifting plate 617 moves up and down reciprocally, so that the lifting teeth of the second lifting plate 617 can gradually lift the welding rod. When the welding rod is lifted to the discharge port 614, the welding material is naturally discharged, completing the dispensing of the welding material.
[0031] Two lifting plates 613 and two lifting plates 617 are provided. A connecting plate 618 is provided between the two lifting plates 617. A hydraulic cylinder 619 is provided on the outside of the dispensing box 601 at the lower end of the connecting plate 618. A drive rod 620 is hinged to the output end of the hydraulic cylinder 619. A rectangular through hole is provided on the side wall of the dispensing box 601 at the lower end of the connecting plate 618. The drive rod 620 passes through the rectangular through hole and the end of the drive rod 620 is hinged to the connecting plate 618. When the hydraulic cylinder 619 is activated, the output end of the hydraulic cylinder 619 drives the drive rod 620 to rise and fall, thereby causing the connecting plate 618 to rise and fall, and thus causing the second lifting plates 617 to rise and fall. During the lifting and lowering process, the sliding groove 615 and the sliding rod 616 are used for limiting cooperation. The lifting and lowering of the second lifting plate 617 cooperates with the first lifting plate 613 to lift the welding rod. Then the welding rod slides out from the discharge port 614 for dispensing.
[0032] In the process of using this invention, the worker puts the newly produced welding materials into the tray 11, and then moves the tray 11 to the work area 2 to register the welding materials for warehousing. After the warehousing registration is completed, the tray 11 is placed on the tray support 10 near the work area 2.
[0033] The first transfer mechanism 5 is activated, and with the assistance of the first transfer mechanism 5, the tray 11 is placed into the drying oven mechanism 4. Then, the drying oven mechanism 4 is activated to dry the welding material on the tray 11. After the drying process is completed, with the assistance of the first transfer mechanism 5, the tray 11 is taken out of the drying oven mechanism 4 and placed on the tray support 10 away from the work area 2. Then, the second transfer mechanism 7 is activated, and the second transfer mechanism 7 clamps the welding material on the tray 11 and places it into the dispensing chamber mechanism 6.
[0034] During the process of placing welding materials into the dispensing mechanism 6, the first motor 610 is started. The output end of the first motor 610 drives the round rod 608 to rotate. The rotation of the round rod 608 causes the sealing cover 607 to rotate, thereby opening the upper end of the dispensing box 601 and placing the welding materials onto the placement plate 605 of the dispensing box 601. Then, under the control of the first motor 610, the sealing cover 607 is rotated to close the upper end of the dispensing box 601.
[0035] When the dispensing mechanism 6 dispenses materials, the hydraulic cylinder 619 is activated. The output end of the hydraulic cylinder 619 drives the drive rod 620 to rise and fall, thereby causing the connecting plate 618 to rise and fall, and thus causing the second lifting plate 617 to rise and fall. During the lifting process, the sliding groove 615 and the sliding rod 616 cooperate to limit the movement. The lifting of the second lifting plate 617 cooperates with the first lifting plate 613, so that the welding rod can be lifted. Then the welding rod slides out from the discharge port 614 for dispensing.
[0036] Furthermore, during the use of the dispensing mechanism 6, in order to avoid excessive temperature changes causing thermal expansion and contraction deformation of the welding material coating, the heating rod is always in the start state. At the same time, the second motor 611 is started, and the output end of the second motor 611 drives the fan blade disk 612 to rotate, thereby generating wind power. Under the action of wind power, the heat of the heating rod can be evenly distributed in the dispensing box 601, ensuring that each piece of welding material can be stored in the constant temperature dispensing box 601.
[0037] Example 2 Based on the dispensing chamber mechanism of the intelligent welding material drying and dispensing integrated machine of Embodiment 1 above, during use, the coating on the outside of the welding rod inevitably sheds slag. When the slag blocks the vent, it obstructs the airflow circulation in the dispensing box 601, thereby affecting the heat preservation effect inside the dispensing box 601. Furthermore, the slag on the upper end of the placement plate 605 cannot be discharged automatically and requires manual cleaning at regular intervals, which is time-consuming and labor-intensive. Therefore, the following technical solution is proposed: like Figures 1 to 6 As shown, a rotating rod 606 is provided at the lower end of the placement plate 605. The rotating rod 606 is rotatably mounted on the inner wall of the dispensing box 601. The placement plate 605 can reciprocate slightly around the rotating rod 606 as the center. On the one hand, it can make the welding rod on the placement plate 605 slide down smoothly. On the other hand, it can also make the residual slag on the placement plate 605 discharge downward.
[0038] Inside the dispensing box 601, a slag plate 621 is provided on the lower side of the placement plate 605. The placement plate 605 and the slag plate 621 are connected by an elastic cloth. The upper end of the placement plate 605 is also connected to the inner wall of the dispensing box 601 by an elastic cloth. The slag plate 621 is higher at one end and lower at the other. The side wall of the dispensing box 601 is provided with a slag outlet at the lower end of the slag plate 621. When the placement plate 605 reciprocates around the rotating rod 606, the placement plate 605 contacts the slag plate 621 and vibrates, so that the slag on the slag plate 621 can be smoothly discharged from the slag outlet and fall into the waste slag collection frame 603.
[0039] During use, when the hydraulic cylinder 619 is activated to lower the second lifting plate 617, the second lifting plate 617 is tilted, so its descent will press against the lower end of the placement plate 605, causing the portion above the rotating rod 606 of the placement plate 605 to deflect upwards. Then, when the hydraulic cylinder 619 is activated to raise the second lifting plate 617, the pressure between the second lifting plate 617 and the placement plate 605 disappears. Under the influence of the gravity of the welding rod at the upper end of the placement plate 605, the portion above the rotating rod 606 of the placement plate 605 will deflect downwards, causing the placement plate 605 to produce a small-amplitude reciprocating deflection effect.
[0040] During the small-amplitude reciprocating deflection of the placement plate 605, the welding rod on the placement plate 605 can slide smoothly downward through this action, making the feeding process of the dispensing chamber mechanism 6 smoother and improving the ease of use of the equipment.
[0041] During the small-amplitude reciprocating deflection of the placement plate 605, the residual dregs on the placement plate 605 will also slide smoothly downwards through this action, causing the dregs to fall onto the dregs plate 621. When the placement plate 605 reciprocates slightly, the placement plate 605 and the dregs plate 621 will come into contact and collide, generating vibration. With the assistance of the vibration and the fact that one end of the dregs plate 621 is higher than the other, the dregs on the dregs plate 621 can be smoothly discharged from the dregs outlet. Furthermore, the elastic cloth can prevent the dregs from entering the bottom of the dispensing box 601 through the gaps, thus preventing the situation from becoming difficult to clean.
[0042] During the small-amplitude reciprocating deflection of the placement plate 605, the distance between the placement plate 605 and the fan blade disk 612 changes. When the distance between the placement plate 605 and the fan blade disk 612 increases, the wind force acting on the lower end of the placement plate 605 weakens. Conversely, when the distance between the placement plate 605 and the fan blade disk 612 decreases, the wind force acting on the lower end of the placement plate 605 strengthens. This causes the wind force at the vent to change pulsatingly. In conjunction with the vibration of the placement plate 605, the residue of medicine remaining at the vent opening can be discharged upwards, reducing the phenomenon of vent blockage and ensuring the overall circulation and heat preservation of the gas in the dispensing box 601.
[0043] Example 3 This invention also discloses a method for controlling the dispensing chamber of an intelligent welding material drying and dispensing integrated machine, comprising the following steps: Step 1: When the equipment is running, the system controls the operation of the insulation components according to the welding material storage requirements to keep the temperature inside the dispensing box 601 constant. Step 2: When the system detects that the welding material in the dispensing mechanism 6 needs to be replenished, the system controls the second transfer mechanism 7 to move the welding material to the upper end of the dispensing mechanism 6. Step 3: The system controls the operation of the sealing component 604, which opens the upper end of the dispensing box 601, allowing the welding material of the second transfer mechanism 7 to be placed into the dispensing box 601. Then, the sealing component 604 operates to close the upper end of the dispensing box 601. Step 4: When the external welding worker receives the welding materials, the welding worker presses the external control button, and the system controls the material dispensing component to operate, causing the welding rods in the dispensing box 601 to be dispensed outwards.
[0044] The main function achieved by this invention is as follows: By setting up a rotating rod 606, a placement plate 605, and an inclined second lifting plate 617, during the use of the equipment, the reciprocating lifting of the second lifting plate 617 causes the placement plate 605 to reciprocate and compress, thereby allowing the placement plate 605 to reciprocate and deflect slightly around the rotating rod 606. During the reciprocating and deflecting process of the placement plate 605, the welding rod and slag on the placement plate 605 can smoothly slide downwards. Furthermore, the reciprocating deflection of the placement plate 605 can change the distance between the placement plate 605 and the fan blade disk 612, thereby causing the ventilation hole to be affected by the pulse wind force. With the cooperation of the vibration of the placement plate 605, the dregs at the upper end of the ventilation hole can be discharged upward, reducing the blockage of the ventilation hole. At the same time, the reciprocating deflection of the placement plate 605 can collide with the dregs plate 621, causing the dregs plate 621 to vibrate. With one end of the dregs plate 621 being higher and the other end being lower, the dregs on the dregs plate 621 can be discharged smoothly.
[0045] The intelligent welding material drying and dispensing integrated machine and dispensing bin mechanism of the present invention can be installed, connected or set up in a common mechanical way, and can be implemented as long as it can achieve its beneficial effect.
[0046] All technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the specification of this invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0047] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. An intelligent welding material drying and dispensing integrated machine, comprising a container (1), characterized in that, The container (1) is provided with a working area (2) and an operation area (3). The operation area (3) is provided with an oven mechanism (4), a first transfer mechanism (5), a second transfer mechanism (7) and a dispensing warehouse mechanism (6). The operation area (3) is also provided with a control cabinet (8). The control cabinet (8) controls the operation of the oven mechanism (4), the first transfer mechanism (5), the second transfer mechanism (7) and the dispensing warehouse mechanism (6). The work area (2) is equipped with a desk (12) and a bookshelf (9).
2. The intelligent welding material drying and dispensing integrated machine as described in claim 1, characterized in that, The first transfer mechanism (5) is provided with pallet supports (10) at both ends, and pallets (11) are provided on the pallet supports (10).
3. A dispensing chamber mechanism of the intelligent welding material drying and dispensing integrated machine as described in claim 1, characterized in that, The dispensing mechanism (6) includes multiple dispensing boxes (601), and a placement rack (602) is provided at the lower end of the multiple dispensing boxes (601). A waste collection frame (603) is also provided at the lower end of the interior of the placement rack (602). The upper end of the dispensing box (601) is provided with a sealing component (604), the dispensing box (601) is provided with a placement plate (605), the lower end of the placement plate (605) is provided with a rotating rod (606), the rotating rod (606) is rotatably mounted on the inner wall of the dispensing box (601), the dispensing box (601) is provided with a heat insulation component at the lower end of the placement plate (605), and the side end of the dispensing box (601) is provided with a material dispensing component.
4. The dispensing mechanism as described in claim 3, characterized in that, The sealing assembly (604) includes a sealing cover (607), which is located at the opening at the upper end of the dispensing box (601). A round rod (608) is provided on the side of the sealing cover (607). A bracket (609) is provided at the upper end of the dispensing box (601). The round rod (608) is rotatably mounted on the bracket (609). A first motor (610) is provided on the side of the dispensing box (601). The output end of the first motor (610) is connected to the round rod (608).
5. The dispensing mechanism as described in claim 3, characterized in that, The heat preservation component includes a heating rod, which is disposed at the bottom of the dispensing box (601). The heating rod is located at the lower end of the placement plate (605). A second motor (611) is disposed at the bottom of the dispensing box (601). The output end of the second motor (611) rotates through the dispensing box (601). A fan blade disk (612) is disposed at the output end of the second motor (611). Fan blades are disposed on the outside of the fan blade disk (612). The heating rod is located at the lower end of the fan blade disk (612).
6. The dispensing mechanism as described in claim 3, characterized in that, The feeding assembly includes a first lifting plate (613), which is inclinedly disposed on the inner wall of the feeding box (601). The feeding box (601) has a discharge port (614) at a corresponding position on the first lifting plate (613) on its side. The first lifting plate (613) is provided with a sliding groove (615), and a sliding rod (616) is provided in the sliding groove (615). The sliding rod (616) is provided with a second lifting plate (617) on its side. Both the first lifting plate (613) and the second lifting plate (617) are provided with lifting teeth on their side ends.
7. The dispensing mechanism as described in claim 6, characterized in that, Two of each of the first lifting plate (613) and the second lifting plate (617) are provided. A connecting plate (618) is provided between the two second lifting plates (617). A hydraulic cylinder (619) is provided on the outside of the dispensing box (601) at the corresponding position of the lower end of the connecting plate (618). A drive rod (620) is hinged to the output end of the hydraulic cylinder (619). A rectangular through hole is provided on the side wall of the dispensing box (601) at the corresponding lower end of the connecting plate (618). The drive rod (620) passes through the rectangular through hole. The end of the drive rod (620) is hinged to the connecting plate (618).
8. The dispensing warehouse mechanism as described in claim 3, characterized in that, Inside the dispensing box (601), a slag plate (621) is provided on the lower side of the placement plate (605). The placement plate (605) and the slag plate (621) are connected by an elastic cloth. The upper end of the placement plate (605) is also connected to the inner wall of the dispensing box (601) by an elastic cloth. Ventilation holes are provided on both the inclined and vertical surfaces of the placement plate (605).
9. A method for controlling the dispensing warehouse of the dispensing warehouse mechanism as described in claim 3, characterized in that, Includes the following steps: Step 1: When the equipment is running, the system controls the operation of the insulation components according to the welding material storage requirements to keep the temperature inside the dispensing box (601) constant. Step 2: When the system detects that the welding material in the dispensing mechanism (6) needs to be replenished, the system controls the second transfer mechanism (7) to move the welding material to the upper end of the dispensing mechanism (6); Step 3: The system controls the operation of the sealing component (604) to open the upper end of the dispensing box (601), allowing the welding material of the second transfer mechanism (7) to be placed into the dispensing box (601). Then, the sealing component (604) operates to close the upper end of the dispensing box (601). Step 4: When the external welding worker receives the welding materials, the welding worker presses the external control button, and the system controls the material dispensing component to operate, so that the welding rods in the dispensing box (601) are dispensed outward.
Citation Information
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