Surface treatment device for a new alloy material
By introducing a grinding head structure driven by X-axis, Y-axis and Z-axis modules into the surface treatment device for new alloy materials, and combining it with an indexable grinding head and placement mechanism, the problem of low efficiency in changing grinding heads and omnidirectional grinding in existing devices has been solved, achieving efficient omnidirectional grinding and flexible processing.
Patent Information
- Application Number
- CN202211509159.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-29
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2042-11-29
AI Technical Summary
Existing surface treatment equipment for new alloy materials is inconvenient when changing the precision of the grinding head, and the processing position is fixed, making it impossible to perform all-round grinding, resulting in low work efficiency.
A surface treatment device for new alloy materials was designed. It adopts an X-axis module, a Y-axis module and a Z-axis module to drive the grinding head structure. Combined with an indexable grinding head and a placement mechanism, it can realize all-round grinding treatment of new alloy materials.
The indexable grinding head and placement mechanism enable all-round grinding of new alloy materials, improving work efficiency and supporting the replacement of grinding stone components with different grinding degrees, thus enhancing the flexibility and stability of processing.
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Figure CN115741356B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the field of alloy processing, and particularly relates to an alloy new material surface treatment device. BACKGROUND
[0002] New materials refer to structural materials and functional materials with excellent performance that are newly developed or are being developed, in recent years, the new materials researched and developed in the world mainly include new metal materials, fine ceramics and optical fibers, and the like, and the surface of alloy new materials needs to be polished and impurity-removed during processing.
[0003] At present, a kind of alloy new material surface intelligent processing equipment and surface treatment process are disclosed in Chinese patent application No.CN202110541821.6, which belongs to the technical field of new material processing device, and comprises a bottom shell, the left and right sides of the upper surface of the bottom shell are fixedly connected with side plates, recesses are formed in the opposite surfaces of the two side plates, adjusting mechanisms are arranged in the recesses, impurity-removing mechanisms are fixedly connected to the opposite surfaces of the two adjusting mechanisms, the front and rear sides of the two side plates are fixedly connected through reinforcing plates, by setting the shovel plate and the polishing roller, the shovel plate can shovel off the dust and impurities attached to the surface of the new material to avoid affecting the subsequent processing of the new material, and the polishing roller can polish the surface of the new material, by setting the impurity-removing mechanism, the shovel plate can remove the dust from the surface of the moving new material, under the action of the second sliding block and the second sliding groove, the clamping plate can stably move along the track under the action of the clamping plate, so that the position of the shovel plate can be effectively adjusted,
[0004] However, the precision of the polishing head at the polishing position of the existing alloy new material surface treatment device cannot be easily replaced, and the processing position of the alloy new material is relatively fixed, so that only one side can be processed at a time, and the polishing treatment cannot be conveniently performed in all directions, thereby reducing the work efficiency. SUMMARY
[0005] Therefore, in order to solve the above problems, the application provides an alloy new material surface treatment device.
[0006] The alloy new material surface treatment device is characterized in that the polishing mechanism comprises an X-axis module connected to the top side of the support frame, a support arranged at the sliding position of the bottom of the X-axis module, a Y-axis module arranged at the left bottom side of the support, a Z-axis module connected to the sliding position of the other side of the Y-axis module, a positioning block connected to the sliding position of the left side of the Z-axis module, and a grinding head structure fixedly connected to the rear side of the Z-axis module.
[0007] Preferably, the clamping body has a transverse and longitudinal displacement function, and the clamping body bottom side is provided with a clamping jaw, the structure size of the feeding body and the discharging body is the same, and the feeding body and the discharging body are arranged on both sides of the placing mechanism.
[0008] Preferably, the grinding head structure comprises a mounting cover fixedly connected to the positioning block, a servo motor fixedly connected to the right upper side of the mounting cover, a worm connected to the left output end of the servo motor, a worm wheel engaged with the front side of the worm, a support rod fixedly connected to the top end of the worm wheel, a rotating shaft fixedly connected to the bottom of the worm wheel, a rotating disc integrally formed at the bottom end of the rotating shaft, and a grinding stone assembly connected to the top side of the rotating disc.
[0009] Preferably, the grinding stone assembly is provided with three groups, and the three groups of grinding stone assemblies are equidistantly distributed.
[0010] Preferably, the grinding stone assembly comprises a rectangular cover fixedly connected to the rotating disc, a driving motor fixedly connected to the inner side of the rectangular cover, a power shaft connected to the output end of the driving motor, a supporting block wrapped outside the power shaft, a dustproof cover fixedly connected to the top side of the supporting block, and a grinding disc connected to the other end of the power shaft.
[0011] Preferably, the placing mechanism comprises an outer cover fixedly connected to the bottom of the machine base, a vertical plate fixedly connected to the front side of the outer cover, an extension cylinder fixedly connected to the rear top side of the vertical plate, a first chuck structure and a second chuck structure respectively connected to the left and right sides of the extension cylinder, and a supporting structure fixedly connected to the inner side of the outer cover.
[0012] Preferably, the first and second clamping head structures are of the same size and are symmetrically arranged in the support structure.
[0013] Preferably, the first clamping head structure comprises a rectangular plate fixed to the telescopic cylinder, an L-shaped block connected to the outer side of the rectangular plate, a sleeve fixed to the rear of the rectangular plate, a first motor embedded in the middle of the inner side of the sleeve, and a circular plate connected to the output end of the first motor, with the middle of one side of the circular plate being rotatably connected to the sleeve.
[0014] Preferably, the support structure comprises a cylinder fixed to the base, a telescopic rod fixed to the middle of the inner side of the cylinder, a vertical rod mounted on the top end of the telescopic rod, an electric push rod connected to one side of the vertical rod, a support disc holder rotatably connected to the top end of the vertical rod, a pinion fixed to the outer surface of the bottom side of the support disc holder, a gear column engaged with one side of the pinion, and a second motor connected to the middle of the bottom side of the gear column, with the other end of the electric push rod being rotatably connected to the cylinder, the top middle side of the gear column being rotatably connected to the cylinder, and the support disc holder being rotatably connected to the top middle side of the cylinder.
[0015] Preferably, the top end of the support disc holder is circular, and a magnetic plate is arranged on the inner side of the top end of the support disc holder.
[0016] Preferably, the support disc holder is made of aluminum alloy.
[0017] Preferably, the material of the circular plate is rubber.
[0018] The present application has the following advantages: the present application improves the surface treatment device for new alloy materials, which has the following improvements compared with the same type of equipment:
[0019] Advantage 1: The surface treatment device for new alloy materials optimally sets the polishing mechanism and the placing structure, the feeding body and the discharging body are arranged on the two sides of the placing structure, the alloy new material is clamped from the feeding body to the placing structure by the clamping jaw at the bottom of the clamping body, the treated alloy new material is clamped to the discharging body by the clamping jaw after polishing treatment by the polishing mechanism, the position of the polishing head on the polishing mechanism can be indexed for use, different polishing heads are used to treat the alloy new material, and the placing structure can index and overturn the alloy new material for omnidirectional polishing treatment, thereby improving the work efficiency.
[0020] Advantage 2: The alloy new material surface treatment device disclosed by the application moves the grinding head structure to the alloy new material for processing under the action of the X-axis module, the Y-axis module and the Z-axis module, and the grinding stone assembly is provided with three groups, the three groups of grinding stone assemblies are equidistantly distributed, the worm wheel drives the three groups of grinding stone assemblies to rotate through the rotating shaft rod, so that grinding stone assemblies with different grinding degrees are replaced for processing.
[0021] Advantage 3: The alloy new material surface treatment device disclosed by the application makes the first chuck structure and the second chuck structure close to or away from each other through the telescopic air cylinder, so as to clamp the alloy new material, and the support structure supports the bottom of the alloy new material to ensure the stability of the alloy new material processing, and the circular plate rotates after the first motor is started, so that the alloy new material is turned over.
[0022] Advantage 4: The alloy new material surface treatment device disclosed by the application is provided with a magnetic sheet on the inner side of the top end of the support disc frame to adsorb and position the alloy new material, and the alloy new material is indexed by the support disc frame after the second motor is started, so as to ensure the omnibearing processing of the alloy new material. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 is a structural schematic diagram of the application;
[0024] Figure 2 is a structural schematic diagram of the top of the machine base of the application;
[0025] Figure 3 is a structural schematic diagram of the grinding mechanism of the application;
[0026] Figure 4 is a structural schematic diagram of the grinding head structure of the application;
[0027] Figure 5 is a structural schematic diagram of the placing mechanism of the application;
[0028] Figure 6 is a structural schematic diagram of the first chuck structure of the application;
[0029] Figure 7 is a structural schematic diagram of the support structure of the application.
[0030] Wherein: base-1, foot pad-2, shield-3, feed main body-4, discharge main body-5, support frame-6, clamping main body-7, polishing mechanism-8, placing mechanism-9, X-axis module-81, support-82, Y-axis module-83, Z-axis module-84, positioning block-85, grinding head structure-86, mounting cover-861, servo motor-862, worm-863, worm gear-864, support rod-865, shaft rod-866, turntable-867, grinding stone assembly-868, rectangular cover-8681, driving motor-8682, power shaft-8683, supporting block-8684, dust cover-8685, grinding disc-8686, cover seat-91, vertical plate-92, telescopic cylinder-93, first chuck structure-94, second chuck structure-95, support structure-96, rectangular sheet-941, L-shaped block-942, sleeve seat-943, first motor-944, circular sheet-945, cylinder seat-961, telescopic rod-962, vertical rod-963, electric push rod-964, support disc holder-965, pinion-966, gear column-967, second motor-968. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the present application will be described below in detail with reference to the drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of the present application.
[0032] Please refer to Figure 1 and Figure 2The utility model relates an alloy new material surface treatment device, including base 1, pad foot 2, shield 3, feed main body 4, discharge main body 5, support frame 6, clamping main body 7, polishing mechanism 8 and placing mechanism 9, the bottom four ends of base 1 are installed pad foot 2, and the top outside of base 1 is connected with shield 3, and shield 3 plays the role of protection on the outside, the left and right sides of base 1 top are respectively fastened with feed main body 4 and discharge main body 5, and the front and rear sides of base 1 top are fixedly connected with support frame 6, and the top side of support frame 6 is provided with the clamping main body 7 for clamping the alloy new material, and the inside top side of support frame 6 is installed with polishing mechanism 8, and the top middle side of base 1 is connected with placing mechanism 9, the clamping main body 7 has the effect of transverse and longitudinal displacement, and the bottom side of clamping main body 7 is provided with a clamping jaw, the structure of feed main body 4 and discharge main body 5 is same, and feed main body 4 and discharge main body 5 are arranged on the two sides of placing mechanism 9 respectively, to clamp the alloy new material from feed main body 4 to placing structure 9 by the clamping jaw of clamping main body 7 bottom, after polishing treatment by polishing mechanism 8, the treated alloy new material is clamped to discharge main body 5 by the clamping jaw and is transported, the position of polishing head on polishing mechanism 8 can be indexed to use, to treat alloy new material by different polishing heads, and placing structure 9 can index and overturn alloy new material to polish in all directions, improve the work efficiency of treatment.
[0033] Please refer to Figure 2 、 Figure 3 and Figure 4 The utility model relates to an alloy new material surface treatment device, and polishing mechanism 8 includes the X axle module 81 that top side is connected with support frame 6, the support 82 of setting in the bottom sliding part of X axle module 81, the Y axle module 83 of installing in support 82 left department bottom side, the Z axle module 84 of being connected in Y axle module 83 other side sliding part, the positioning block 85 of being connected in Z axle module 84 left side sliding part and the grinding head structure 86 of fixedly connected in Z axle module 84 rear side, under the action of X axle module 81, Y axle module 83 and Z axle module 84 make grinding head structure 86 move to alloy new material and process treatment;
[0034] The grinding head structure 86 comprises a mounting cover 861 fixed with the positioning block 85 at the front middle side, a servo motor 862 fastened to the inside right upper side of the mounting cover 861, a worm 863 connected to the left output end of the servo motor 862, a worm gear 864 engaged with the front side of the worm 863, which is driven by the servo motor to rotate with the worm 863, a support rod 865 fixedly connected to the top end middle side of the worm gear 864, which supports the rotation of the worm gear 864, a rotating shaft rod 866 fixedly connected to the bottom middle side of the worm gear 864, a rotating disc 867 integrally formed at the bottom end of the rotating shaft rod 866, and a grinding stone assembly 868 connected to the top side of the rotating disc 867, wherein the grinding stone assembly 868 is provided in three groups and is distributed equidistantly, the rotating disc 867 drives the three groups of grinding stone assemblies 868 to rotate through the rotating shaft rod 866, so as to replace the grinding stone assemblies 868 with different polishing degrees for processing, the left end of the worm 863 is rotationally connected with the mounting cover 861, so as to ensure the stability of the rotation of the worm 863, the top end of the support rod 865 is rotationally connected with the mounting cover 861, and the bottom of the rotating disc 867 is rotationally connected with the mounting cover 861, so as to ensure the stability of the rotation.
[0035] The grinding stone assembly 868 comprises a rectangular cover 8681 fixed with the rotating disc 867 at the bottom, a driving motor 8682 fastened to the inside middle side of the rectangular cover 8681, a power shaft 8683 connected to the outside output end of the driving motor 8682, a supporting block 8684 wrapped outside the power shaft 8683, a dust cover 8685 fixed to the top side of the supporting block 8684, and a grinding disc 8686 connected to the other end of the power shaft 8683, which is driven by the driving motor 8682 to rotate, wherein the grinding disc 8686 is arranged inside the dust cover 8685 to play a protective role.
[0036] Please refer to Figure 2 , Figure 5 , Figure 6 and Figure 7 , the alloy new material surface treatment device of the application, the placing mechanism 9 comprises an outer cover seat 91 fixed with the base 1 at the bottom, a vertical plate 92 fixedly connected to the front side of the outer cover seat 91, a telescopic pneumatic cylinder 93 fixed to the top side of the rear part of the vertical plate 92, a first chuck structure 94 and a second chuck structure 95 respectively connected to the left and right sides of the telescopic pneumatic cylinder 93, and a supporting structure 96 fixed to the inside middle side of the outer cover seat 91, wherein the first chuck structure 94 and the second chuck structure 95 are the same in size, and the first chuck structure 94 and the second chuck structure 95 are symmetrically arranged on the left and right sides of the middle part of the supporting structure 96, the first chuck structure 94 and the second chuck structure 95 are made to approach or move away from each other by the telescopic pneumatic cylinder 93, so as to clamp the alloy new material, and the supporting structure 96 supports the bottom of the alloy new material, so as to ensure the stability of the processing of the alloy new material.
[0037] The first clamping head structure 94 comprises a rectangular sheet 941 fixed on one side of the telescopic air cylinder 93, an L-shaped block 942 connected to the outer side of the rectangular sheet 941, a sleeve seat 943 fixedly connected to the rear part of the rectangular sheet 941, a first motor 944 embedded in the middle part of the inner side of the sleeve seat 943, and a circular sheet 945 connected to the output end of the first motor 944, one side of the middle part of the circular sheet 945 is rotationally connected with the sleeve seat 943, and the circular sheet 945 rotates after the first motor 944 is started, so that the alloy new material is turned over.
[0038] The support structure 96 comprises a cylinder seat 961 fixed on the bottom of the base 1, a telescopic rod 962 fixedly connected to the middle side of the inner part of the cylinder seat 961, which serves to support on the bottom side, a vertical rod 963 installed on the top end part of the telescopic rod 962, an electric push rod 964 connected to one side of the vertical rod 963, which moves and adjusts the height position of the vertical rod 963 under the action of the electric push rod 964, a support disc holder 965 rotationally connected to the top end part of the vertical rod 963, a pinion 966 fixedly connected to the outer surface of the bottom side of the support disc holder 965, a gear column 967 engaged with one side of the pinion 966, and a second motor 968 connected to the middle side of the bottom part of the gear column 967, which rotates the pinion 966 and the support disc holder 965 under the action of the second motor 968. The other end of the electric push rod 964 is rotationally connected with the cylinder seat 961, the top middle side of the gear column 967 is rotationally connected with the cylinder seat 961, and the support disc holder 965 penetrates through the top middle side of the cylinder seat 961 and is rotationally connected therewith, so as to ensure the stability of the support rotation. The top end part of the support disc holder 965 is circular, and a magnetic sheet is arranged on the inner side of the top end part of the support disc holder 965, so as to adsorb and position the alloy new material. At the same time, the alloy new material is rotated by the support disc holder 965 under the action of the second motor 968, so as to ensure the omnidirectional processing of the alloy new material and improve the working efficiency of the processing.
[0039] The alloy new material surface treatment device is improved, and the working principle is as follows:
[0040] First, place the design on the position where the alloy new material needs to be processed through the feet 2 on the bottom of the base 1, so as to use the design;
[0041] Second, place the alloy new material on the feeding main body 4 when using, and the feeding main body 4 transports the alloy new material to the inner side, and the clamping main body 7 is started to clamp the alloy new material on the support disc holder 965, and then the telescopic air rod 93 is controlled to clamp the alloy new material on both sides of the alloy new material to position the alloy new material.
[0042] Third, according to the precision of the polishing needs, the servo motor 862 is started to make the worm 863 through the cooperation with the worm gear 864 to make the rotating shaft rod 866 through the rotating disc 867 to drive the abrasive stone assembly 868 to rotate to the position needed to be processed, and then the abrasive stone assembly 868 is made close to the new alloy material under the action of the X-axis module 81, the Y-axis module 83 and the Z-axis module 84, and then the abrasive disc 8686 is made to rotate through the starting of the driving motor 8682, and then the new alloy material is polished;
[0043] Fourth, in the polishing process, the electric push rod 964 is started to make the vertical rod 963 drive the support disc holder 965 to move down, so as to release the limiting of the new alloy material on the bottom side, and then the first motor 944 is started to make the disc 945 rotate, and then the new alloy material is turned over to polish the other side, and at the same time, the first chuck structure 94 and the second chuck structure 95 are loosened to clamp the new alloy material, and then the second motor 968 is started to make the gear column 967 drive the pinion 966 to rotate, so as to make the new alloy material rotate by ninety degrees, and then the new alloy material is clamped again through the first chuck structure 94 and the second chuck structure 95, and then the new alloy material is processed in all directions;
[0044] Fifth, after the processing, the processed new alloy material is placed on the discharge main body 5 through the clamping main body 7 to be discharged and collected.
[0045] The alloy new material surface treatment device is improved, the polishing mechanism 8 and the placing structure 9 are arranged through optimization, the feeding body 4 and the discharging body 5 are arranged on the two sides of the placing structure 9 respectively, the alloy new material is clamped from the feeding body 4 to the placing structure 9 through the clamping jaw at the bottom of the clamping body 7, the alloy new material is clamped to the discharging body 5 through the clamping jaw after polishing treatment by the polishing mechanism 8, the polishing head position on the polishing mechanism 8 can be indexed for use, different polishing heads are used for treating the alloy new material, the placing structure 9 can index and overturn the alloy new material for all-round polishing treatment, and the working efficiency of treatment is improved; the grinding head structure 86 is moved to the alloy new material for processing under the action of the X-axis module 81, the Y-axis module 83 and the Z-axis module 84, the three groups of grinding stone assemblies 868 are equidistantly distributed, the worm wheel 864 drives the three groups of grinding stone assemblies 868 to rotate through the rotating shaft rod 866, so that the grinding stone assemblies 868 with different polishing degrees are replaced for processing; the first clamping head structure 94 and the second clamping head structure 95 are close to or away from each other through the telescopic cylinder 93, so that the alloy new material is clamped, the support structure 96 supports the bottom of the alloy new material, so that the stability of alloy new material processing is ensured, the circular plate 945 rotates after the first motor 944 is started, so that the alloy new material is overturned; the top of the support disc frame 965 is circular, and the inside of the top of the support disc frame 965 is provided with a magnetic sheet, so that the alloy new material is adsorbed and positioned, and the alloy new material is indexed through the support disc frame 965 after the second motor 968 is started, so that the alloy new material is processed in all directions.
[0046] The above shows and describes the basic principles and main features of the present application and the advantages of the present application, and the standard parts used in the present application can be purchased from the market, and the special-shaped parts can be ordered according to the description and the drawings, the specific connection mode of each part adopts the conventional bolt, rivet, welding and other conventional means in the prior art, the machinery, parts and equipment adopt the conventional type in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, which will not be described in detail here.
[0047] The above description of the disclosed embodiments enables a person skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A surface treatment device for a new alloy material, comprising a base (1), wherein pads (2) are installed at the four ends of the bottom of the base (1), and a protective cover (3) is connected to the outer side of the top of the base (1). A feeding body (4) and a discharging body (5) are respectively fixedly fastened to the left and right sides of the top of the base (1), and a support frame (6) is fixedly connected to the front and rear sides of the top of the base (1). A clamping body (7) for clamping and moving the new alloy material is provided on the top side of the support frame (6). Its features are: It also includes a grinding mechanism (8) installed on the top side inside the support frame (6) and a placement mechanism (9) connected to the top middle side of the base (1). The grinding mechanism (8) includes an X-axis module (81) connected to the support frame (6) on the top side, a bracket (82) set at the bottom sliding part of the X-axis module (81), a Y-axis module (83) installed on the bottom left side of the bracket (82), a Z-axis module (84) connected to the sliding part on the other side of the Y-axis module (83), a positioning block (85) connected to the sliding part on the left side of the Z-axis module (84), and a grinding head structure (86) fixedly connected to the rear side of the Z-axis module (84). The grinding head structure (86) includes a mounting cover (861) fixed to the positioning block (85) at the front middle side, a servo motor (862) fastened to the upper right side inside the mounting cover (861), a worm (863) connected to the left output end of the servo motor (862), a worm wheel (864) meshing with the front side of the worm (863), a support rod (865) fixedly connected to the middle side of the top end of the worm wheel (864), a rotating shaft (866) fixedly connected to the middle side of the bottom of the worm wheel (864), a turntable (867) integrally formed at the bottom end of the rotating shaft (866), and a grinding stone assembly (868) connected to the top side of the turntable (867). The grinding stone assembly (868) is provided in three sets. The left end of the worm (863) is rotatably connected to the mounting cover (861), the top end of the support rod (865) is rotatably connected to the mounting cover (861), and the bottom of the turntable (867) is rotatably connected to the mounting cover (861). The grinding wheel assembly (868) includes a rectangular cover (8681) whose bottom is fixed to the turntable (867), a drive motor (8682) fastened to the middle side inside the rectangular cover (8681), a power shaft (8683) connected to the output end of the drive motor (8682), a support block (8684) wrapped around the outside of the power shaft (8683), a dust cover (8685) fixed to the top side of the support block (8684), and a grinding disc (8686) connected to the other end of the power shaft (8683). The grinding disc (8686) is disposed inside the dust cover (8685). The placement mechanism (9) includes an outer cover (91) with its bottom fixed to the base (1), a vertical plate (92) fixedly connected to the front side of the outer cover (91), a telescopic cylinder (93) fixed to the rear top side of the vertical plate (92), a first clamping structure (94) and a second clamping structure (95) respectively connected to the left and right sides of the telescopic cylinder (93), and a support structure (96) fixed to the middle side inside the outer cover (91). The support structure (96) includes a cylindrical base (961) whose bottom is fixed to the base (1), a telescopic rod (962) fixedly connected to the middle side inside the cylindrical base (961), a vertical rod (963) installed at the top of the telescopic rod (962), an electric push rod (964) connected to one side of the vertical rod (963), a support plate (965) rotatably connected to the top of the vertical rod (963), a small gear (966) fixedly connected to the bottom side of the outer surface of the support plate (965), a gear column (967) meshing with one side of the small gear (966), and a second motor (968) connected to the middle side of the bottom of the gear column (967). The other end of the electric push rod (964) is rotatably connected to the cylindrical base (961).
2. The surface treatment device for a new alloy material according to claim 1, characterized in that: The clamping body (7) has the function of horizontal and vertical displacement, and the clamping body (7) is provided with a gripper on the bottom side. The feeding body (4) and the discharging body (5) have the same size structure, and the feeding body (4) and the discharging body (5) are respectively located on both sides of the placement mechanism (9).
3. The surface treatment device for a new alloy material according to claim 1, characterized in that: Three sets of grinding stone components (868) are equidistantly distributed.
4. The surface treatment device for a new alloy material according to claim 1, characterized in that: The first clamp structure (94) and the second clamp structure (95) are the same size, and the first clamp structure (94) and the second clamp structure (95) are symmetrically arranged in the middle of the support structure (96).
5. The surface treatment device for a new alloy material according to claim 1, characterized in that: The first clamp structure (94) includes a rectangular plate (941) fixed to the telescopic cylinder (93) on one side, an L-shaped block (942) connected to the outside of the rectangular plate (941), a sleeve (943) fixedly connected to the rear of the rectangular plate (941), a first motor (944) embedded in the middle of the inner side of the sleeve (943), and a circular plate (945) connected to the output end of the first motor (944). The middle of one side of the circular plate (945) is rotatably connected to the sleeve (943).
6. The surface treatment apparatus for a new alloy material according to claim 1, characterized in that: The gear column (967) is rotatably connected to the cylinder seat (961) at the top center, and the support plate (965) passes through the top center of the cylinder seat (961) and is rotatably connected to it.
7. The surface treatment apparatus for a new alloy material according to claim 6, characterized in that: The top of the support plate (965) is round, and a magnetic sheet is provided on the inner side of the top of the support plate (965).
Citation Information
Patent Citations
Intelligent treatment equipment for surface of new alloy material and surface treatment process
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