Part feeding machine for part machining
By designing a part loading machine that includes feeding, transportation and moving mechanisms, the problems of vertical feeding of parts and small parts transportation are solved, flexible direction transportation and cleaning channels are achieved, and the efficiency and reliability of equipment are improved.
Patent Information
- Application Number
- CN202510619903.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-14
- Publication Date
- 2025-07-04
AI Technical Summary
It is difficult for existing parts processing equipment to realize the loading of parts in the vertical upward direction, and small parts are prone to fall or stuck in the gap during transportation, affecting transportation efficiency.
A part feeding machine including a feeding mechanism, a transportation mechanism and a moving mechanism is designed. By setting up a bend pipe and a magnetic fixing box, the vertical and horizontal transportation of the parts is achieved, and magnetic plates and movable brush heads are used to prevent the parts from falling and getting stuck in the gaps, and dust in the through grooves is cleaned.
It realizes flexible transportation of parts in vertical and horizontal directions, protects small parts, improves transportation efficiency, and maintains the cleanliness of transportation channels.
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Figure CN120246635A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of part feeding, and specifically to a part feeding machine for component processing. Background Art
[0002] Components are an important part of industrial products, and their quality and performance directly affect the quality and function of the entire product. During the process of component processing, part feeding work needs to be completed.
[0003] For example, in the patent named: A part feeding machine for general component processing (patent application number: 202311775719.8), it is disclosed that the part feeding member is combined with an auxiliary member through a flange nut, and the auxiliary member is further combined with a connecting rod. A rolling member is formed by the connecting rod, the auxiliary member, and the flange nut. Through the formed rolling member, multiple groups of nut members can be smoothly rolled and input, and the parts are horizontally transported to the workbench. However, for the workbench above the feeding machine, due to different transportation directions, it is difficult to complete the feeding work of the parts in the vertically upward direction. Summary of the Invention
[0004] To overcome the problem that for the workbench above the feeding machine, due to different transportation directions, it is difficult to complete the feeding work of the parts in the vertically upward direction, the present invention provides a part feeding machine for component processing, including a machine body,
[0005] A feeding mechanism, the feeding mechanism is arranged inside the machine body, the feeding mechanism includes a first square tube and a pushing component, and a bent tube is installed outside the first square tube;
[0006] A transportation mechanism, the transportation mechanism is arranged outside the bent tube, the transportation mechanism includes a second square tube, and the pushing component drives the parts to enter the bent tube through the first square tube, and enter the second square tube through the bent tube, and move in the vertically upward direction.
[0007] Preferably, the first square tube is installed outside the machine body, a first fixing frame is installed at the bottom of the machine body, and a moving mechanism is arranged inside the first fixing frame.
[0008] Preferably, the feeding mechanism further includes:
[0009] Fixed slots, the fixed slots are opened inside the machine body, and two fixed slots are opened;
[0010] Lifting rods, the lifting rods are installed inside the fixed slots, a frame plate is installed at the top of the lifting rods, and the pushing component is installed above the frame plate, and the frame plate and the pushing component are driven by the lifting rods to move up and down.
[0011] Preferably, the pushing component includes:
[0012] The first sliding groove, the first sliding groove is opened inside the shelf board, and two first sliding grooves are opened and symmetrically arranged;
[0013] The first sliding plate, the first sliding plate is slidably connected inside the first sliding groove, and a first push rod is installed outside the first sliding plate;
[0014] The fixed box, the fixed box is arranged on the upper surface of the shelf board, and a protective frame is installed outside the fixed box.
[0015] Preferably, the transportation mechanism further includes:
[0016] The through groove, the through groove is opened inside the second square tube, and two through grooves are opened and symmetrically arranged;
[0017] The second fixed frame, the second fixed frame is installed outside the second square tube, and two second fixed frames are arranged and symmetrically arranged;
[0018] The second sliding plate, the second sliding plate is slidably connected inside the second fixed frame, and a third push rod is installed outside the second sliding plate;
[0019] The second adjusting bent rod, the second adjusting bent rod is installed outside the second sliding plate, a support rod is installed outside the second adjusting bent rod, a second push rod is installed outside the support rod, and a magnetic plate is installed outside the second push rod. The second push rod drives the magnetic plate to pass through the through groove to contact the fixed box. By setting the magnetic plate to drive the fixed box to move, and the fixed box drives the screw parts to move, it can avoid directly pushing the screw parts to move by using rigid structures such as push plates, resulting in the accumulation or jamming of screw parts in the gaps;
[0020] The railing, the railing is installed outside the second square tube, a connecting rod is installed outside the railing, a first adjusting bent rod is installed outside the connecting rod, a corner plate is arranged outside the first adjusting bent rod, and a rubber strip is arranged on the inner wall of the second square tube. When the fixed box moves to the rubber strip, the magnetic plate returns to its original position, and the fixed box stays at the rubber strip under the friction with the rubber strip, which is convenient for workers to manually disassemble the fixed box.
[0021] Preferably, the moving mechanism includes:
[0022] The third sliding plate, the third sliding plate is slidably connected inside the first fixed frame, and a fourth push rod is installed outside the third sliding plate, and the fourth push rod is installed inside the first fixed frame;
[0023] The first lifting frame is installed at the bottom of the third sliding plate. A first telescopic rod is installed at the top of the first lifting frame, and a brush head is installed at the top of the first telescopic rod. The fourth push rod and the first telescopic rod drive the brush head to move, and the brush head rubs against the inside of the through groove. A movable and liftable brush head is provided to clean the through groove in the second square pipe in a horizontal state, so as to reduce dust and impurities in the through groove;
[0024] The fourth sliding plate is slidably connected inside the first fixed frame, and an adjusting rod is installed outside the fourth sliding plate. The adjusting rod is installed outside the third sliding plate;
[0025] The second lifting frame is installed at the bottom of the fourth sliding plate. A second telescopic rod is installed at the top of the second lifting frame, and a support plate is installed at the top of the second telescopic rod. The support plate is set as an arc-shaped plate. The second telescopic rod drives the support plate to rise, and the support plate supports the bottom of the bent pipe.
[0026] The present invention provides a parts loading machine for parts processing. It has the following beneficial effects:
[0027] 1. For this parts loading machine for parts processing, by setting the loading mechanism and the transportation mechanism, the parts can be transported in two different directions. For existing parts loading machines, the loading direction is single, and most parts are transported horizontally. Therefore, the loading mechanism and the transportation mechanism are set. According to the part transportation direction, the corresponding loading mechanism and the corresponding loading direction are selected to complete the transportation of parts in the horizontal direction or in the vertical upward direction to solve the above problems.
[0028] 2. For this parts loading machine for parts processing, by setting the loading mechanism, the parts are placed and transported. When transporting screw parts, due to the small size of the screw parts, it is easy for the screw parts to fall or get stuck in the transportation channel. Therefore, the loading mechanism is set, a fixed box that moves with the screw parts is set, and a protective frame is installed outside the fixed box to protect the screws and prevent the screw parts from falling.
[0029] 3. For this parts loading machine for parts processing, by setting the transportation mechanism, the fixed box and the screw parts are transported. By setting a magnetic plate to drive the fixed box to move, and the fixed box drives the screw parts to move, it can avoid directly pushing the screw parts to move with a rigid push plate or other structures, which may cause the screw parts to accumulate or get stuck in the gap. And after the transportation is completed, the second push rod drives the magnetic plate to disengage from the fixed box, and the fixed box stays at the rubber strip to prevent the parts from continuing to move due to inertia during the transportation of parts, resulting in the parts deviating from the discharge position.
[0030] 4. The parts loader for processing this component is provided with a moving mechanism to remove the dust in the through groove. After the second square pipe is used to transport the fixed box for a long time, dust is likely to accumulate in the second square pipe, resulting in dust impurities in the through groove and affecting the operation of the magnetic plate. Therefore, a movable and liftable brush head is provided to clean the through groove in the second square pipe in a horizontal state, so as to reduce the dust impurities in the through groove.
[0031] 5. The parts loader for processing this component is provided with a loading mechanism, a transporting mechanism and a moving mechanism. According to the part transportation direction, the parts are manually placed into the corresponding loading mechanism. If the parts are transported vertically, the support plate is adjusted to support the bottom of the elbow pipe. The parts enter the elbow pipe through the first square pipe and then enter the second square pipe through the elbow pipe. Then the transporting mechanism is started to transport the parts; if the parts are transported horizontally, the parts enter the second square pipe through the first square pipe, and the transporting mechanism is started to transport the parts. Thus, the transportation work in two directions is completed. Description of the Drawings
[0032] Figure 1 is the schematic diagram of the overall structure of the present invention;
[0033] Figure 2 is the schematic diagram of the bottom structure of the present invention;
[0034] Figure 3 is the schematic diagram of the loading mechanism structure of the present invention;
[0035] Figure 4 is the schematic diagram of the pushing component structure of the present invention;
[0036] Figure 5 is the schematic diagram of the transporting mechanism structure of the present invention;
[0037] Figure 6 is the present invention Figure 5 the schematic diagram of the structure at A in;
[0038] Figure 7 is the present invention Figure 5 the schematic diagram of the structure at B in;
[0039] Figure 8 is the schematic diagram of the moving mechanism structure of the present invention.
[0040] In the figure: 1. Machine body; 2. Loading mechanism; 201. First square pipe; 202. Fixed groove; 203. Lifting rod; 204. Frame plate; 205. Pushing component; 2051. First sliding groove; 2052. First push rod; 2053. First sliding plate; 2054. Fixed box; 2055. Protective frame; 3. Bent pipe; 4. Transportation mechanism; 401. Second square pipe; 402. Through groove; 403. Second fixed frame; 404. Guard board; 405. Connecting rod; 406. First adjusting bent rod; 407. Angle plate; 408. Second sliding plate; 409. Second adjusting bent rod; 410. Support rod; 411. Second push rod; 412. Magnetic plate; 413. Third push rod; 5. First fixed frame; 6. Moving mechanism; 601. Fourth push rod; 602. Third sliding plate; 603. First lifting frame; 604. First telescopic rod; 605. Brush head; 606. Adjusting rod; 607. Fourth sliding plate; 608. Second lifting frame; 609. Second telescopic rod; 610. Support plate. Detailed implementation mode
[0041] The present invention will be further described in detail below in conjunction with the accompanying drawings and specific implementation modes. The embodiments of the present invention are given for the purpose of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations will be obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present invention, and enable those of ordinary skill in the art to understand the present invention and thus design various embodiments with various modifications suitable for specific purposes.
[0042] As Figures 1 - 8 shown, the present invention provides a technical solution:
[0043] It includes a machine body 1:
[0044] A first fixed frame 5 is installed at the bottom of the machine body 1, and a moving mechanism 6 is arranged inside the first fixed frame 5. Both the first fixed frame 5 and the moving mechanism 6 are provided with two.
[0045] A loading mechanism 2, the loading mechanism 2 is arranged inside the machine body 1, the loading mechanism 2 includes a first square pipe 201 and a pushing component 205, and a bent pipe 3 is installed outside the first square pipe 201;
[0046] A transportation mechanism 4, the transportation mechanism 4 is arranged outside the bent pipe 3, the transportation mechanism 4 includes a second square pipe 401, and the pushing component 205 drives the parts to enter the bent pipe 3 through the first square pipe 201 and enter the second square pipe 401 through the bent pipe 3, and move in the vertically upward direction.
[0047] The first square pipe 201 is installed outside the body 1. There are two first square pipes 201, two pushing components 205, and two second square pipes 401. One first square pipe 201 is connected to the second square pipe 401 through the elbow pipe 3, and the other first square pipe 201 is directly connected to the second square pipe 401. Both second square pipes 401 are set in the shape of half square pipes, and the structures arranged outside the two second square pipes 401 are the same. By setting two transportation directions, the parts can be transported horizontally or vertically, and the transportation channels used for the two are different, avoiding adjusting the pipe direction according to the part transportation direction.
[0048] Before using the equipment, manually place the parts in the corresponding feeding mechanism 2 according to the part transportation direction. If the parts are transported vertically, adjust the moving mechanism 6 to support the bottom of the elbow pipe 3, adjust the transportation mechanism 4, turn on the feeding mechanism, send the parts into the transportation mechanism 4, and turn on the transportation mechanism 4 to transport the parts; if the parts are transported horizontally, adjust the transportation mechanism 4, send the parts into the transportation mechanism 4 through the elbow pipe 3, and turn on the transportation mechanism 4 to transport the parts. After the work is completed, adjust the moving mechanism 6 to maintain the two second square pipes 401.
[0049] The feeding mechanism 2 further includes:
[0050] Fixing grooves 202 are opened inside the body 1. There are two fixing grooves 202, and the two fixing grooves 202 are respectively arranged corresponding to the two first square pipes 201;
[0051] Lifting rods 203 are installed inside the fixing grooves 202. A frame plate 204 is installed at the top of the lifting rods 203, and the pushing component 205 is installed above the frame plate 204. The lifting rods 203 drive the frame plate 204 and the pushing component 205 to move up and down.
[0052] The pushing component 205 includes:
[0053] First sliding grooves 2051 are opened inside the frame plate 204. There are two first sliding grooves 2051, and they are symmetrically arranged;
[0054] First sliding plates 2053 are slidably connected inside the sliding grooves. The first sliding plates 2053 are in contact with the frame plate 204, and first push rods 2052 are installed outside the first sliding plates 2053;
[0055] The fixed box 2054 is arranged on the upper surface of the shelf board 204. The fixed box 2054 is made of magnetic material. A protective frame 2055 is installed outside the fixed box 2054. A fixed net is arranged at the contact position between the protective frame 2055 and the fixed box 2054. Manually place the screw parts into the fixed box 2054. The size of the screw parts is small. Protected by the protective frame 2055 and the fixed box 2054, the screw parts can be prevented from falling during transportation.
[0056] Before using the device, turn on the lifting rod 203. The lifting rod 203 drives the shelf board 204 and the pushing assembly 205 to move upward. Manually place a plurality of screw parts into the fixed box 2054 and manually install the protective frame 2055 to protect the screws in the fixed box 2054.
[0057] Subsequently, adjust the lifting rod 203 to its initial state. The lifting rod 203 drives the shelf board 204 back into the fixed slot 202. Turn on the first push rod 2052. The first push rod 2052 drives the first sliding plate 2053 to move. The first sliding plate 2053 pushes the fixed box 2054 until the fixed box 2054 is pushed into the first square pipe 201.
[0058] The transportation mechanism 4 further includes:
[0059] The through slots 402 are opened inside the second square pipe 401. There are two through slots 402, and they are symmetrically arranged;
[0060] The second fixed frames 403 are installed outside the second square pipe 401. There are two second fixed frames 403, and they are symmetrically arranged;
[0061] The second sliding plate 408 is slidably connected inside the second fixed frame 403. A third push rod 413 is installed outside the second sliding plate 408;
[0062] The second adjusting bent rod 409 is installed outside the second sliding plate 408. A support rod 410 is installed outside the second adjusting bent rod 409. A second push rod 411 is installed outside the support rod 410. A magnetic plate 412 is installed outside the second push rod 411. There are two support rods 410, second push rods 411 and magnetic plates 412. The second push rod 411 drives the magnetic plate 412 to pass through the through slot 402 to contact the fixed box 2054, and the fixed box 2054 is attracted and fixed to the magnetic plate 412;
[0063] Before using the device, turn on the second push rod 411. The second push rod 411 drives the magnetic plate 412 to pass through the through slot 402, and the magnetic plate 412 is attracted and fixed to the fixed box 2054 made of magnetic material. Turn on the third push rod 413. The third push rod 413 drives the second sliding plate 408, the second adjusting bent rod 409, the support rod 410, the second push rod 411 and the magnetic plate 412 to move. The magnetic plate 412 drives the fixed box 2054 to move, and then transports the parts to the other end of the second square tube 401.
[0064] By setting the magnetic plate 412 to drive the fixed box 2054 to move, and the fixed box 2054 to drive the screw parts to move, it is possible to avoid directly pushing the screw parts to move with rigid structures such as push plates, resulting in the accumulation or jamming of screw parts in the gaps.
[0065] The railing 404 is installed outside the second square tube 401. A connecting rod 405 is installed outside the railing 404. A first adjusting bent rod 406 is installed outside the connecting rod 405. An angle plate 407 is arranged outside the first adjusting bent rod 406. The angle plate 407 is set as an L-shaped plate. A suction cup is arranged outside the angle plate 407. At the contact position between the second square tube 401 and the railing 404, a rubber strip is arranged on the inner wall of the second square tube 401. When the fixed box 2054 moves to the rubber strip, the magnetic plate 412 returns to its original position, and the fixed box 2054 stays at the rubber strip under the friction with the rubber strip, which is convenient for workers to manually disassemble the fixed box 2054.
[0066] Before using the device, manually adjust the stroke of the first adjusting bent rod 406 to make the L-shaped angle plate 407 fit the workbench. By pressing the angle plate 407, the suction cup outside the angle plate 407 is attracted to the workbench, thereby strengthening the position of the second square tube 401.
[0067] When the next transportation work needs to be carried out, adjust the second push rod 411 to its initial state. The second push rod 411 drives the magnetic plate 412 to disengage from the fixed box 2054, and the fixed box 2054 stays at the rubber strip, avoiding the parts continuing to move due to inertia during the transportation of parts, resulting in the parts falling off the discharge position.
[0068] The moving mechanism 6 includes:
[0069] The third sliding plate 602 is slidably connected inside the first fixed frame 5. A fourth push rod 601 is installed outside the third sliding plate 602, and the fourth push rod 601 is installed inside the first fixed frame 5;
[0070] The first lifting frame 603 is installed at the bottom of the third sliding plate 602. A first telescopic rod 604 is installed at the top of the first lifting frame 603, and a brush head 605 is installed at the top of the first telescopic rod 604. The fourth push rod 601 and the first telescopic rod 604 drive the brush head 605 to move, and the brush head 605 rubs against the inside of the through groove 402;
[0071] When it is necessary to clean the through groove 402, the worker manually adjusts the second square tube 401 so that both second square tubes 401 are installed outside the first square tube 201. Then the fourth push rod 601 is turned on, and the fourth push rod 601 drives the third sliding plate 602, the adjusting rod 606 and the fourth sliding plate 607 to move. When both the third sliding plate 602 and the fourth sliding plate 607 move outside the first fixed frame 5, the first telescopic rod 604 is turned on, and the first telescopic rod 604 drives the brush head 605 to move upward. The brush head 605 gradually enters the through groove 402. Driven by the fourth push rod 601, the brush head 605 cleans the inside of the through groove 402 until the brush head 605 moves to the other end of the second square tube 401.
[0072] After the second square tube 401 is used to transport the fixed box 2054 for a long time, dust is likely to appear in the second square tube 401, resulting in dust impurities in the through groove 402, which affects the operation of the magnetic plate 412. Therefore, a movable and liftable brush head 605 is provided to clean the through groove 402 in the second square tube 401 in a horizontal state to reduce the dust impurities in the through groove 402.
[0073] The fourth sliding plate 607 is slidably connected to the inside of the first fixed frame 5. An adjusting rod 606 is installed outside the fourth sliding plate 607, and the adjusting rod 606 is installed outside the third sliding plate 602;
[0074] The second lifting frame 608 is installed at the bottom of the fourth sliding plate 607. A second telescopic rod 609 is installed at the top of the second lifting frame 608, and a support plate 610 is installed at the top of the second telescopic rod 609. The support plate 610 is set as an arc-shaped plate, and the second telescopic rod 609 drives the support plate 610 to rise, and the support plate 610 supports the bottom of the elbow pipe 3.
[0075] Turn on the fourth push rod 601. The fourth push rod 601 drives the third sliding plate 602, the adjusting rod 606 and the fourth sliding plate 607 to move until the support plate 610 is at the bottom of the elbow pipe 3. Then turn on the second telescopic rod 609, and the second telescopic rod 609 drives the support plate 610 to move upward. The support plate 610 contacts the bottom of the elbow pipe 3 to support the bottom of the elbow pipe 3.
[0076] Working principle: Before using the device, turn on the lifting rod 203. The lifting rod 203 drives the rack plate 204 and the pushing component 205 to move upward. Manually place multiple screw parts in the fixed box 2054 and manually install the protective frame 2055 to protect the screws in the fixed box 2054. Manually adjust the stroke of the first adjusting bent rod 406 so that the L-shaped angle plate 407 fits the workbench. By pressing the angle plate 407, the suction cup outside the angle plate 407 is suctioned to the workbench, thereby strengthening the position of the second square pipe 401.
[0077] Subsequently, adjust the lifting rod 203 to its initial state, and the lifting rod 203 drives the rack plate 204 back into the fixed slot 202.
[0078] If the parts are transported in the vertical direction, turn on the fourth push rod 601. The fourth push rod 601 drives the third slide plate 602, the adjusting rod 606, and the fourth slide plate 607 to move until the support plate 610 is at the bottom of the bent pipe 3. Then turn on the second telescopic rod 609. The second telescopic rod 609 drives the support plate 610 to move upward. The support plate 610 contacts the bottom of the bent pipe 3 to support the bottom of the bent pipe 3. Turn on the first push rod 2052. The first push rod 2052 drives the first slide plate 2053 to move. The first slide plate 2053 pushes the fixed box 2054. The fixed box 2054 enters the bent pipe 3 through the first square pipe 201 and then enters the second square pipe 401 from the bent pipe 3. Turn on the transportation mechanism 4 to perform the transportation work of the parts.
[0079] If the parts are transported in the horizontal direction, turn on the first push rod 2052. The first push rod 2052 drives the first slide plate 2053 to move. The first slide plate 2053 pushes the fixed box 2054. The fixed box 2054 enters the second square pipe 401 through the first square pipe 201. Turn on the transportation mechanism 4 to perform the transportation work of the parts.
[0080] Turn on the second push rod 411. The second push rod 411 drives the magnetic plate 412 to pass through the through slot 402, and the magnetic plate 412 is suctioned and fixed to the fixed box 2054 made of magnetic material. Turn on the third push rod 413. The third push rod 413 drives the second slide plate 408, the second adjusting bent rod 409, the support rod 410, the second push rod 411, and the magnetic plate 412 to move. The magnetic plate 412 drives the fixed box 2054 to move, thereby transporting the parts to the other end of the second square pipe 401. Workers can manually disassemble the fixed box 2054 at the workbench.
[0081] After the work is completed, adjust the moving mechanism 6 to maintain the two second square tubes 401. When it is necessary to clean the through groove 402, the worker manually adjusts the second square tubes 401 so that both second square tubes 401 are installed outside the first square tube 201. Subsequently, turn on the fourth push rod 601, and the fourth push rod 601 drives the third sliding plate 602, the adjusting rod 606 and the fourth sliding plate 607 to move. When both the third sliding plate 602 and the fourth sliding plate 607 move outside the first fixed frame 5, turn on the first telescopic rod 604, and the first telescopic rod 604 drives the brush head 605 to move upward. The brush head 605 gradually enters the through groove 402. Driven by the fourth push rod 601, the brush head 605 cleans the inside of the through groove 402 until the brush head 605 moves to the other end of the second square tube 401.
[0082] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the scope of protection of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented by conventional means in the art without special instructions and limitations.
Claims
1. A parts loading machine for parts processing, comprising a machine body (1), characterized in that: A loading mechanism (2), the loading mechanism (2) is arranged inside the machine body (1), the loading mechanism (2) includes a first square tube (201) and a pushing component (205), and a bent tube (3) is installed outside the first square tube (201); A transportation mechanism (4), the transportation mechanism (4) is arranged outside the bent tube (3), the transportation mechanism (4) includes a second square tube (401), and the pushing component (205) drives the parts to enter the bent tube (3) through the first square tube (201), and enter the second square tube (401) through the bent tube (3), and move in the vertically upward direction.
2. The parts loading machine for parts processing according to claim 1, characterized in that: The first square tube (201) is installed outside the machine body (1), a first fixing frame (5) is installed at the bottom of the machine body (1), and a moving mechanism (6) is arranged inside the first fixing frame (5).
3. The parts loading machine for parts processing according to claim 1, characterized in that: The loading mechanism (2) further includes: Fixing grooves (202), the fixing grooves (202) are opened inside the machine body (1), and two fixing grooves (202) are opened; Lifting rods (203), the lifting rods (203) are installed inside the fixing grooves (202), a shelf plate (204) is installed at the top of the lifting rods (203), and the pushing component (205) is installed above the shelf plate (204), and the shelf plate (204) and the pushing component (205) are driven by the lifting rods (203) to move up and down.
4. The parts loading machine for parts processing according to claim 3, characterized in that: The pushing component (205) includes: First sliding grooves (2051), the first sliding grooves (2051) are opened inside the shelf plate (204), two first sliding grooves (2051) are opened, and are symmetrically arranged; First sliding plates (2053), the first sliding plates (2053) are slidably connected inside the first sliding grooves (2051), and a first push rod (2052) is installed outside the first sliding plates (2053); Fixing boxes (2054), the fixing boxes (2054) are arranged on the upper surface of the shelf plate (204), and a protective frame (2055) is installed outside the fixing boxes (2054).
5. The parts loading machine for parts processing according to claim 1, characterized in that: The transportation mechanism (4) further includes: Through grooves (402), the through grooves (402) are opened inside the second square tube (401), two through grooves (402) are opened, and are symmetrically arranged; Second fixing frames (403), the second fixing frames (403) are installed outside the second square tube (401), two second fixing frames (403) are provided, and are symmetrically arranged; Second sliding plates (408), the second sliding plates (408) are slidably connected inside the second fixing frames (403), and a third push rod (413) is installed outside the second sliding plates (408); The second adjusting bent rod (409), the second adjusting bent rod (409) is installed outside the second sliding plate (408), a support rod (410) is installed outside the second adjusting bent rod (409), a second push rod (411) is installed outside the support rod (410), a magnetic plate (412) is installed outside the second push rod (411), and the second push rod (411) drives the magnetic plate (412) to pass through the through slot (402) to contact the fixed box (2054); The railing (404), the railing (404) is installed outside the second square tube (401), a connecting rod (405) is installed outside the railing (404), a first adjusting bent rod (406) is installed outside the connecting rod (405), an angle plate (407) is arranged outside the first adjusting bent rod (406), and a rubber strip is arranged on the inner wall of the second square tube (401).
6. The parts loading machine for parts processing according to claim 2, characterized in that: The moving mechanism (6) includes: The third sliding plate (602), the third sliding plate (602) is slidably connected inside the first fixed frame (5), a fourth push rod (601) is installed outside the third sliding plate (602), and the fourth push rod (601) is installed inside the first fixed frame (5); The first lifting frame (603), the first lifting frame (603) is installed at the bottom of the third sliding plate (602), a first telescopic rod (604) is installed at the top of the first lifting frame (603), a brush head (605) is installed at the top of the first telescopic rod (604), the fourth push rod (601) and the first telescopic rod (604) drive the brush head (605) to move, and the brush head (605) rubs against the inside of the through slot (402); The fourth sliding plate (607), the fourth sliding plate (607) is slidably connected inside the first fixed frame (5), an adjusting rod (606) is installed outside the fourth sliding plate (607), and the adjusting rod (606) is installed outside the third sliding plate (602); The second lifting frame (608), the second lifting frame (608) is installed at the bottom of the fourth sliding plate (607), a second telescopic rod (609) is installed at the top of the second lifting frame (608), a support plate (610) is installed at the top of the second telescopic rod (609), the support plate (610) is set as an arc-shaped plate, the second telescopic rod (609) drives the support plate (610) to rise, and the support plate (610) supports the bottom of the bent pipe (3).
Citation Information
Patent Citations
Part feeding machine for universal part machining
CN117446423A