CN223700146U - Automatic feeding device for precision part machining - Google Patents
Automatic feeding device for precision part machiningInfo
- Publication number
- CN223700146U CN223700146U CN202423323813.2U CN202423323813U CN223700146U CN 223700146 U CN223700146 U CN 223700146U CN 202423323813 U CN202423323813 U CN 202423323813U CN 223700146 U CN223700146 U CN 223700146U
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- CN
- China
- Prior art keywords
- sliding
- feeding device
- sliding block
- automatic feeding
- side wall
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Abstract
The utility model relates to an automatic feeding device for precision part processing, which comprises a machine body, wherein the top of the machine body is fixedly connected with a supporting column, the supporting column is symmetrically arranged at the top of the machine body, the top of the supporting column is fixedly connected with a sliding frame, the side wall of the sliding frame is provided with a driving motor, the output end of the driving motor is connected with a threaded rod, the threaded rod is arranged in the sliding frame in a rotating way, the threaded rod in the sliding frame is provided with a sliding block in a sliding way, the top of the sliding block is provided with a telescopic pump, the output end of the telescopic pump is connected with a telescopic rod, the telescopic rod is arranged at the bottom of the sliding frame, the end part of the telescopic rod is welded with an equipment frame, through the structure, the actual position of a part can be effectively processed with a preset ideal position through automatic processing, and then the feeding mechanism is controlled to accurately position the part can be accurately conveyed to a processing position.
Description
Technical Field
The utility model relates to the technical field of automatic feeding, in particular to an automatic feeding device for precision part processing.
Background
In modern manufacturing industry, the processing of precision parts plays a vital role in the quality and performance of products, and with the continuous improvement of industrial automation degree, the traditional manual feeding method gradually exposes a plurality of limitations in the precision part processing process.
The manual feeding is often dependent on the proficiency and concentration of operators, fatigue and misoperation are easy to generate, so that the feeding efficiency is low, precision parts are possibly damaged in the feeding process, the precision and the surface quality of the parts are further affected, and finally the qualification rate of products is reduced.
Disclosure of utility model
In order to overcome the defects in the prior art and solve at least one problem in the background art, the multipurpose portable game console is provided.
According to the technical scheme, the automatic feeding device for precision part machining comprises a machine body, a support column is fixedly connected to the top of the machine body, the support column is symmetrically arranged on the top of the machine body, a sliding frame is fixedly connected to the top of the support column, a driving motor is mounted on the side wall of the sliding frame, the output end of the driving motor is connected with a threaded rod, the threaded rod is rotatably arranged in the sliding frame, a sliding block is slidably arranged on the threaded rod in the sliding frame, a telescopic pump is mounted on the top of the sliding block, the output end of the telescopic pump is connected with a telescopic rod, the telescopic rod is arranged at the bottom of the sliding frame, an equipment frame is welded at the end of the telescopic rod, a grapple is rotatably arranged on the side wall of the equipment frame, the grapple is symmetrically arranged on the side wall of the equipment frame, a small pushing pump is mounted on the top of the equipment frame, the output end of the small pushing pump is rotatably arranged on the side wall of the grapple, automatic processing can be effectively performed, the actual position and the parts can be accurately positioned and accurately processed by the preset position of the feeding mechanism.
In further technical scheme, the inside rigid coupling of carriage has the spacing post, the spacing post is established in the inside of sliding block and is the slip setting, and establishes in the symmetry plane position department of threaded rod, the top rigid coupling of equipment rack has the gag lever post, the gag lever post is established in the inside of sliding block and is the slip setting, can effectually ensure that the part is along predetermined straight line orbit forward all the time, prevents that the part from appearing skew, crooked condition in the feeding in-process, guarantees that the part can be accurately carried to processing station or follow-up processing link.
In further technical scheme, the top rigid coupling of sliding block has the deflector, the deflector is established at the top of sliding block and is the symmetry setting, the guide way has been seted up at the top of carriage, the guide way is established at the top of carriage and is the symmetry setting, the deflector is established and is the slip setting in the inside of guide way, can effectually provide stable and accurate travel path for accurate part, guarantees that it gets into the processing region with the exact gesture to improve the precision and the uniformity of processing.
In further technical scheme, the inside rotation of organism is equipped with the transfer wheel, the transfer wheel is established in the inside of organism and is linear array setting, be connected with the conveyer belt between the transfer wheel, install servo motor on the lateral wall of organism, servo motor's output is connected in the tip position department of transfer wheel, and is the rotation setting, can effectually follow the conveyer belt motion for carrying the in-process, can not cause the fish tail to the spare part surface again simultaneously, has effectively satisfied the transportation requirement of part high accuracy.
In further technical scheme, the mounting groove has been seted up at the top of conveyer belt, the mounting groove is established at the top of conveyer belt and is linear array setting, the inside rigid coupling of mounting groove has magnet, can effectually utilize the magnetic adsorption effect of magnet, firmly adsorbs the part on the conveyer belt, keeps stable position to realize accurate transport.
In further technical scheme, the rigid coupling has the alignment jig on the lateral wall of carriage, the alignment jig is in one side position department of telescopic pump, the inside rotation of alignment jig is provided with the light, can effectually provide sufficient light and illuminate the feed area, makes operating personnel can accurately observe position, shape and the state of part, and the sensor in the automation equipment of also being convenient for carries out accurate discernment and detects to the part simultaneously.
In further technical scheme, the anti-slip gasket has been attached to the lateral wall of grapple, the anti-slip gasket is established and is the slip treatment on the lateral wall of grapple, can effectually produce great frictional force when contacting with accurate part, and has elastic material can evenly disperse clamping force, avoids leaving the trace at the part surface because of local pressure is too big.
The beneficial effects of the utility model are as follows:
1. The multipurpose portable game console table disclosed by the utility model can effectively process the actual position of the part and the preset ideal position through automatic processing, and then control the feeding mechanism to accurately position, so that the part can be accurately conveyed to the processing position.
2. The multipurpose portable game console table can effectively ensure that parts always move along a preset linear track, prevent the parts from shifting and skewing in the feeding process, and ensure that the parts can be accurately conveyed to a processing station or a subsequent processing link.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an automatic feed according to an embodiment of the present utility model;
FIG. 2 is a rear view of an embodiment of the present utility model with automatic feed;
FIG. 3 is a schematic view of a slider according to an embodiment of the present utility model;
fig. 4 is a schematic view of the structure of a small push pump according to an embodiment of the present utility model.
In the figure, 11, a machine body, 12, a support column, 13, a sliding frame, 14, a driving motor, 15, a threaded rod, 16, a sliding block, 17, a telescopic pump, 18, a telescopic rod, 19, an equipment frame, 110, a grapple, 111, a small pushing pump, 21, a limit column, 22, a limit rod, 31, a guide plate, 32, a guide groove, 41, a conveying wheel, 42, a conveying belt, 43, a servo motor, 51, a mounting groove, 52, a magnet, 61, an adjusting frame, 62, an illuminating lamp, 71 and an anti-skid gasket.
Detailed Description
The utility model is further described in connection with the following detailed description in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
Examples:
1-4, including the organism 11, the top rigid coupling of organism 11 has support column 12, support column 12 establishes at the top of organism 11 and is the symmetry setting, the top rigid coupling of support column 12 has carriage 13, install driving motor 14 on the lateral wall of carriage 13, the output of driving motor 14 is connected with threaded rod 15, threaded rod 15 establishes the inside of carriage 13 and is the rotation setting, the inside threaded rod 15 of carriage 13 goes up the screw sliding and is equipped with slider 16, telescopic pump 17 is installed at the top of slider 16, telescopic pump 17's output is connected with telescopic link 18, telescopic link 18 establishes in the bottom position of carriage 13, the tip welding of telescopic link 18 has equipment rack 19, rotate on the lateral wall of equipment rack 19 and be equipped with grapple 110, grapple 110 establishes and is the symmetry setting on the lateral wall of equipment rack 19, small-size push pump 111 is installed at the top of equipment rack 19, the small push pump 111 is symmetrically arranged at the top of the equipment rack 19, the output end of the small push pump 111 is connected to the side wall of the grapple 110 to push, when the feeding of the precise parts is needed, the grapple 110 can be pushed by the small push pump 111 to operate simultaneously, so that the grapple 110 clamps the precise parts, the telescopic pump 17 is restarted to recover the telescopic rod 18, the precise parts clamped below the equipment rack 19 can be lifted, the threaded rod 15 is driven to rotate by the driving motor 14, the sliding block 16 can reciprocate, the precise parts can be operated to the designated position in the clamping process, the feeding treatment can be realized by the device, through the structure, the actual positions of the parts and the preset ideal positions can be effectively treated by the automatic treatment, and then the feeding mechanism is controlled to perform precise positioning, ensuring that the part can be accurately transported to the machining location.
The working principle of the technical scheme is as follows:
In another embodiment, as shown in fig. 1-3, a limiting post 21 is fixedly connected in the sliding frame 13, the limiting post 21 is arranged in the sliding block 16 in a sliding manner, and is arranged at the position of the symmetry plane of the threaded rod 15, a limiting rod 22 is fixedly connected at the top of the equipment frame 19, the limiting rod 22 is arranged in the sliding block 16 in a sliding manner, when the precision part is required to be clamped during working, limiting and bearing treatment can be performed through the limiting post 21 during reciprocating operation of the sliding block 16, deformation caused by overload during operation is prevented, and when the equipment frame 19 is pushed, the limiting rod 22 is used for limiting, deviation is prevented from being caused during pushing, part damage is prevented, by the structure, the part can be effectively ensured to always move along a preset linear track, deviation and skew of the part in the feeding process are prevented, and the part can be accurately conveyed to a processing station or a subsequent processing link.
In another embodiment, as shown in fig. 1-3, the top of the sliding block 16 is fixedly connected with a guide plate 31, the guide plate 31 is symmetrically arranged at the top of the sliding block 16, the top of the sliding frame 13 is provided with a guide groove 32, the guide groove 32 is symmetrically arranged at the top of the sliding frame 13, the guide plate 31 is slidably arranged in the guide groove 32, when the driving motor 14 drives the threaded rod 15 to reciprocate the sliding block 16, the guide plate 31 can move in a specific direction in the guide groove 32, and the function of supporting bearing can be achieved, overload is prevented from being caused by long-time operation, a stable and accurate moving path can be effectively provided for precise parts through the structure, and the precise parts can be ensured to enter a processing area in a correct posture, so that the processing precision and consistency are improved.
In another embodiment, as shown in fig. 1-2, a conveying wheel 41 is rotatably arranged in the machine body 11, the conveying wheel 41 is arranged in a linear array in the machine body 11, a conveying belt 42 is connected between the conveying wheels 41, a servo motor 43 is installed on the side wall of the machine body 11, the output end of the servo motor 43 is connected to the end position of the conveying wheel 41 and is rotatably arranged, when the precise part is required to be fed in operation, the precise part can be prevented from being arranged on the conveying belt 42, the conveying wheel 41 is driven to rotate by the servo motor 43, the conveying belt 42 can convey the precise part, and through the structure, the conveying belt 42 can effectively and stably follow the conveying belt 42 in the conveying process, meanwhile, scratch cannot be caused on the surface of the part, and the high-precision conveying requirement of the part is effectively met.
In another embodiment, as shown in fig. 1-2, the top of the conveying belt 42 is provided with the mounting groove 51, the mounting groove 51 is arranged at the top of the conveying belt 42 in a linear array, the magnet 52 is fixedly connected in the mounting groove 51, when the precise part is prevented on the conveying belt 42 in operation, the magnet 52 in the mounting groove 51 can be used for carrying out magnetic adsorption on the precise part, so that the part displacement can be prevented from being caused during conveying, clamping can not be carried out, the part can be firmly adsorbed on the conveying belt 42 by effectively utilizing the magnetic adsorption effect of the magnet 52, and the stable position can be kept, thereby realizing precise conveying.
In another embodiment, as shown in fig. 1-2, an adjusting frame 61 is fixedly connected to the side wall of the sliding frame 13, the adjusting frame 61 is arranged at one side position of the telescopic pump 17, an illuminating lamp 62 is rotatably arranged in the adjusting frame 61, when the precise part is required to be fed in operation, the adjusting frame 61 can be used for adjusting the angle of the illuminating lamp 62, so that the illuminating lamp 62 illuminates the feeding device to ensure sufficient light, the structure can effectively provide sufficient light to illuminate the feeding area, an operator can accurately observe the position, shape and state of the part, and meanwhile, a sensor in the automatic device is convenient for accurately identifying and detecting the part.
In another embodiment, as shown in fig. 1-4, the anti-slip pad 71 is attached to the side wall of the grapple 110, the anti-slip pad 71 is provided on the side wall of the grapple 110 to perform sliding treatment, when the precision part is clamped during operation, the anti-slip pad 71 can perform anti-slip treatment to prevent the precision part from falling off during clamping, and also can play a role in protecting the surface of the part, so that the part cannot be used.
When the feeding device is in operation, the small pushing pump 111 can be used for pushing the grapple 110 to operate simultaneously, so that the grapple 110 is used for clamping the precise part, the telescopic pump 17 is started for recovering the push rod of the telescopic rod 18, the precise part clamped below the equipment rack 19 can be lifted, the threaded rod 15 is driven to rotate by the driving motor 14, the sliding block 16 is made to reciprocate, the precise part is enabled to move to a designated position in the clamping process, the feeding device can be made to realize the feeding treatment, when the precise part is required to be clamped, the limiting column 21 can be used for limiting and bearing treatment when the sliding block 16 is reciprocated, deformation caused by excessive weight is prevented when the sliding block is operated, and when the equipment rack 19 is pushed, the limiting rod 22 can be used for limiting, deviation is prevented from being caused when the sliding block is pushed, preventing damage to the parts, when the driving motor 14 drives the threaded rod 15 to reciprocate the sliding block 16, the guide plate 31 can move in a specific direction in the guide groove 32, and can also play a role of supporting and bearing, so that overload is prevented from being caused by long-time operation, when the precise parts are required to be fed, the precise parts can be prevented from being on the conveying belt 42, the conveying wheel 41 is driven to rotate by the servo motor 43, the conveying belt 42 is enabled to convey the precise parts, when the precise parts are prevented from being on the conveying belt 42, the magnet 52 in the mounting groove 51 can be used for carrying out magnetic adsorption on the precise parts, the parts are prevented from being displaced when conveying, clamping cannot be carried out, when the precise parts are required to be fed, the illumination lamp 62 can be adjusted in angle by the adjusting frame 61, so that the illumination lamp 62 is used for illuminating the feeding device, ensure its sufficient light, when carrying out the centre gripping to accurate part, the accessible slipmat 71 carries out anti-skidding processing, prevents that accurate part from dropping when the centre gripping, also can play the effect of protection, prevents that the part surface from damaging, unable use.
The foregoing examples merely illustrate specific embodiments of the utility model, which are described in greater detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model.
Claims (7)
1. The utility model provides an automatic feeding device for precision part processing, includes organism (11), its characterized in that the top rigid coupling of organism (11) has support column (12), the top of support column (12) is the symmetry setting of establishing at the top of organism (11), the top rigid coupling of support column (12) has carriage (13), install driving motor (14) on the lateral wall of carriage (13), the output of driving motor (14) is connected with threaded rod (15), threaded rod (15) are established in the inside of carriage (13) and are the rotation setting, the screw thread slides on the inside threaded rod (15) of carriage (13) and is equipped with sliding block (16), telescopic pump (17) are installed at the top of sliding block (16), the output of telescopic pump (17) is connected with telescopic link (18), telescopic link (18) are established in the bottom position department of carriage (13), the tip welding of telescopic link (18) has equipment rack (19), rotate on the lateral wall of equipment rack (19) and be equipped with hook (110), hook (110) are established in the inside threaded rod (15) and are the symmetry setting up on the side wall (19) and are equipped with small-size pump (111) and are established at the top of the side wall of carriage (19), and the output end of the small pushing pump (111) is connected to the side wall of the grapple (110) to be in pushing arrangement.
2. The automatic feeding device for precision part machining according to claim 1, wherein the limiting column (21) is fixedly connected to the inside of the sliding frame (13), the limiting column (21) is arranged in the sliding block (16) in a sliding mode and is arranged at the symmetrical surface position of the threaded rod (15), the top of the equipment frame (19) is fixedly connected with the limiting rod (22), and the limiting rod (22) is arranged in the sliding block (16) in a sliding mode.
3. The automatic feeding device for precision part machining according to claim 2, wherein the top of the sliding block (16) is fixedly connected with a guide plate (31), the guide plate (31) is symmetrically arranged at the top of the sliding block (16), the top of the sliding frame (13) is provided with a guide groove (32), the guide groove (32) is symmetrically arranged at the top of the sliding frame (13), and the guide plate (31) is slidably arranged in the guide groove (32).
4. The automatic feeding device for precision part machining according to claim 3, wherein the inside of the machine body (11) is rotatably provided with conveying wheels (41), the conveying wheels (41) are arranged in a linear array in the machine body (11), a conveying belt (42) is connected between the conveying wheels (41), a servo motor (43) is mounted on the side wall of the machine body (11), and the output end of the servo motor (43) is connected to the end position of the conveying wheels (41) and is rotatably arranged.
5. The automatic feeding device for precision part machining according to claim 4, wherein the top of the conveying belt (42) is provided with mounting grooves (51), the mounting grooves (51) are arranged on the top of the conveying belt (42) in a linear array, and magnets (52) are fixedly connected in the mounting grooves (51).
6. The automatic feeding device for precision part machining according to claim 5, wherein an adjusting frame (61) is fixedly connected to the side wall of the sliding frame (13), the adjusting frame (61) is arranged at one side position of the telescopic pump (17), and an illuminating lamp (62) is rotatably arranged in the adjusting frame (61).
7. The automatic feeding device for precision part machining according to claim 6, wherein the anti-slip gasket (71) is attached to the side wall of the grapple (110), and the anti-slip gasket (71) is arranged on the side wall of the grapple (110) in a sliding manner.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423323813.2U CN223700146U (en) | 2024-12-31 | 2024-12-31 | Automatic feeding device for precision part machining |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202423323813.2U CN223700146U (en) | 2024-12-31 | 2024-12-31 | Automatic feeding device for precision part machining |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223700146U true CN223700146U (en) | 2025-12-23 |
Family
ID=98066702
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202423323813.2U Active CN223700146U (en) | 2024-12-31 | 2024-12-31 | Automatic feeding device for precision part machining |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223700146U (en) |
-
2024
- 2024-12-31 CN CN202423323813.2U patent/CN223700146U/en active Active
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