CN221065404U - Automatic nickel alloy production of unloading is with location clamp device - Google Patents

Automatic nickel alloy production of unloading is with location clamp device Download PDF

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Publication number
CN221065404U
CN221065404U CN202323103721.9U CN202323103721U CN221065404U CN 221065404 U CN221065404 U CN 221065404U CN 202323103721 U CN202323103721 U CN 202323103721U CN 221065404 U CN221065404 U CN 221065404U
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China
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nickel alloy
frame
clamp device
positioning clamp
collecting
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CN202323103721.9U
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Chinese (zh)
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朱新军
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Jiangsu Boang Alloy Technology Co ltd
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Jiangsu Boang Alloy Technology Co ltd
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Abstract

The utility model relates to the technical field of nickel alloy production, in particular to a positioning clamp device for automatic blanking for nickel alloy production, which comprises a support frame, wherein an anti-slip and anti-displacement mechanism is arranged on the surface of a pressing plate, an automatic blanking mechanism is arranged on the surfaces of an operating table and an L-shaped frame, and a powder collecting mechanism is arranged on the surfaces of the support frame and the operating table. The utility model not only avoids the phenomenon that the nickel alloy slides or shifts on the surface of the placing table when the positioning clamp device is used for positioning and clamping the nickel alloy on the surface of the placing table, but also ensures the accuracy degree of the positioning clamp device when the nickel alloy is processed, avoids the phenomenon that dust flies to pollute the surrounding environment and the body health of operators when the positioning clamp device is used, improves the working efficiency when the positioning clamp device is used, saves the manpower resources when the positioning clamp device is used, and avoids the phenomenon that the nickel alloy is accumulated on the surface of the placing table when the positioning clamp device is used.

Description

Automatic nickel alloy production of unloading is with location clamp device
Technical Field
The utility model relates to the technical field of nickel alloy production, in particular to a positioning clamp device for nickel alloy production, which is capable of automatically blanking.
Background
The nickel alloy can be used as a material for an electronic tube, a precise alloy, a nickel-based superalloy, a nickel-based corrosion-resistant alloy, a shape memory alloy and the like, and has wide application in the departments of energy development, chemical industry, electronics, navigation, aviation, aerospace and the like, however, the nickel alloy is required to be clamped by a locating clamp device during production and processing.
The locating clamp device is required to have an anti-slip and anti-displacement function on the nickel alloy placed on the surface of the placing table when in use, however, some locating clamp devices do not have the function when in use, so that the phenomenon that the nickel alloy slides or displaces on the surface of the placing table when the locating clamp device is used for locating and clamping the nickel alloy on the surface of the placing table is easy to occur, and meanwhile, the accuracy degree of the locating clamp device during processing the nickel alloy can not be ensured when in use; the locating clamp device needs to have a function of centralized collection treatment on powder generated during nickel alloy processing when in use, and if the locating clamp device cannot be provided with the function, the phenomena that dust flies to pollute the surrounding environment and the body health of operators are easy to occur in the using process of the locating clamp device; the locating clamp device needs to be provided with an automatic discharging function when in use, however, some locating clamp devices cannot be provided with an automatic discharging function when in use, so that the working efficiency of the locating clamp device is reduced, human resources of the locating clamp device when in use cannot be saved, and the phenomenon that nickel alloy is accumulated on the surface of a placing table in the using process of the locating clamp device is easily caused.
Disclosure of utility model
The utility model aims to provide a positioning clamp device for nickel alloy production capable of automatically blanking, which solves the problems that the positioning clamp device in the prior art cannot set an anti-slip and anti-displacement function for nickel alloy placed on the surface of a placing table, cannot set a centralized collection treatment function for powder generated during nickel alloy processing and cannot set an automatic blanking function when in use.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides an automatic nickel alloy production of unloading is with location clamp device, includes the support frame, the surface hinge of support frame has the door body, the surface mounting of door body has control button, the surface mounting of support frame top position department has L type frame, the below of L type frame is provided with the operation panel, the surface of operation panel is all installed and is placed the platform, the surface of operation panel all is provided with the clamping frame, the second electric putter is all installed on the surface of clamping frame bottom position department, the input and the output electric connection of control button of second electric putter, the output of second electric putter is installed and is used for supporting tightly the clamp plate of centre gripping to the nickel alloy, hold the chamber in the inside of support frame, the surface of support plate is provided with anti-skidding anti-displacement mechanism, the inside of anti-skidding anti-displacement mechanism includes the fixed disk, holds groove and anti-skidding anti-displacement portion, the surface of operation panel and L type frame is provided with automatic unloading mechanism, automatic unloading mechanism comprises third electric putter, collection frame and automatic unloading portion, collection frame and collection frame are provided with powder collection mechanism by the fixed surface.
Preferably, the surface of support frame top position department all installs first electric putter, first electric putter's input and control button's output electric connection, first electric putter's output is fixed mutually with the surface of operation panel bottom position department, the holder is located the both sides of placing the platform respectively, the cell body has all been seted up on the surface of operation panel, and cell body and holder sliding fit each other, the scale mark that is used for carrying out the location to the nickel alloy is all installed to the surface of placing the platform both sides.
Preferably, the powder collecting part is arranged on the surfaces of the support frame and the operation table, the powder accumulated on the surface of the placing table is collected intensively through the powder collecting part, the powder collecting part is composed of a collecting box and a fixing assembly, equidistant through holes are formed in the surfaces of the placing table, the operation table and the support frame, and the fixing cover is arranged on the surface of the top position of the support frame.
Preferably, the fixed cover is communicated with the through hole, the collecting boxes for collecting dust are arranged in the accommodating cavities, the collecting boxes are in sliding fit with the inner walls of the accommodating cavities, the fixing assemblies are arranged on the inner walls of the accommodating cavities, the fixing assemblies are respectively located on two sides of the collecting boxes, and the fixing assemblies are in sliding fit with the surfaces of the collecting boxes.
Preferably, the automatic unloading portion sets up the surface at operation panel and L type frame, the nickel alloy after placing the surface processing of platform carries out automatic unloading through automatic unloading portion and collects the processing, the inside of automatic unloading portion includes fastening bolt, lead screw, driving motor and pushing plate, the surface of L type frame bottom position department all is provided with third electric putter, third electric putter's input and control button's output electric connection, third electric putter and the mutual sliding fit of surface of L type frame bottom position department, the pushing plate is installed to third electric putter's output.
Preferably, driving motor is all installed to the inside of L type frame, driving motor's input and control button's output electric connection, driving motor's output is installed the pivot through the shaft coupling, the inside of L type frame all is provided with the lead screw, the surface of lead screw and the inner wall of L type frame mutually rotate the cooperation, the surface of lead screw is fixed with the surface of pivot mutually, the surface of lead screw is fixed with the surface of third electric putter mutually, the guide post is all installed to the inside of L type frame, the mutual sliding fit of third electric putter and the surface of guide post.
Preferably, the surface of the operation panel is provided with a collecting frame for collecting the processed nickel alloy, the surface of the collecting frame is in contact with the surface of the operation panel, the surface of the collecting frame is connected with a fastening bolt for fixing the collecting frame and the operation panel in a threaded manner, and one end of the fastening bolt penetrates through the collecting frame and is fastened with the surface of the operation panel in a threaded manner.
Preferably, the anti-slip displacement prevention part is arranged on the surface of the pressing plate, the nickel alloy placed on the surface of the placing table is subjected to anti-slip displacement prevention through the anti-slip displacement prevention part, the anti-slip displacement prevention part is composed of a protection pad and a monitor, the monitor is arranged in the pressing plate, the surface of the bottom position of the pressing plate is provided with a containing groove, the fixing disc is arranged in the containing groove, and the surface of the bottom position of the fixing disc is provided with the protection pad for preventing the nickel alloy from slipping.
Compared with the prior art, the utility model has the beneficial effects that: the positioning clamp device for the automatic blanking nickel alloy production not only avoids the phenomenon that the nickel alloy slides or shifts on the surface of the placing table when the positioning clamp device is used for positioning and clamping the nickel alloy on the surface of the placing table, but also ensures the accuracy degree of the nickel alloy during processing when the positioning clamp device is used, avoids the phenomenon that dust flies to pollute the surrounding environment and the body health of operators when the positioning clamp device is used, improves the working efficiency of the positioning clamp device when the positioning clamp device is used, saves the manpower resources when the positioning clamp device is used, and avoids the phenomenon that the nickel alloy is accumulated on the surface of the placing table when the positioning clamp device is used;
The anti-slip anti-displacement mechanism is arranged, the protective pad is driven to move downwards under the action of the fixed disc in the containing groove, so that the protective pad moves downwards to be in contact with the surface of the nickel alloy, the nickel alloy on the surface of the placing table is abutted against under the combined action of the fixed disc and the protective pad, the auxiliary clamping effect is achieved, the nickel alloy is prevented from loosening in the processing process, then, when the nickel alloy is processed, the processing condition of the nickel alloy and the clamping condition of the nickel alloy on the surface of the placing table are monitored under the action of the monitor, after the monitor monitors the nickel alloy to process, the monitor controls the positioning clamp device to stop processing the nickel alloy, when the monitor monitors the nickel alloy to displace, the monitor gives an alarm, the position of the nickel alloy on the surface of the placing table is prompted to change, the anti-slip function of the nickel alloy placed on the surface of the placing table is achieved, the phenomenon that the nickel alloy slides or displaces on the surface of the placing table when the positioning clamp device is used for positioning and clamping the nickel alloy is avoided, and meanwhile, the accurate processing degree of the nickel alloy is ensured when the positioning clamp device is used;
By arranging the powder collecting mechanism, powder immediately enters the inside of the fixed cover through the through hole, then enters the inside of the collecting box through the through hole in the support frame, the powder is collected and adsorbed intensively under the action of the collecting box, if the powder in the collecting box needs to be treated, at the moment, the door body is opened, and the collecting box is pulled again, so that the collecting box slides on the surface of the fixed assembly, the collecting box slides in the accommodating cavity, the collecting box is pulled out from the inside of the accommodating cavity, the function of collecting and treating the powder generated during nickel alloy processing by the positioning clamp device is realized, and therefore, the phenomenon that dust flies to pollute the surrounding environment and the body health of operators in the use process of the positioning clamp device is avoided;
Through being provided with automatic unloading mechanism, control driving motor work, drive the pivot rotation under driving motor's effect, when the pivot rotates, the pivot drives the screw rod and rotates in the inside of L type frame, when the screw rod rotates, the screw rod drives the surface slip of third electric putter in L type frame bottom position department, make third electric putter drive the flitch motion to required position, afterwards, the control button is operated again, make control button control third electric putter work, drive the flitch downward movement under the effect of third electric putter, the driving motor is operated again, make driving motor drive the flitch back-and-forth movement, will place the nickel alloy on platform surface and release, afterwards, the nickel alloy falls to the inside of collecting the frame, collect the nickel alloy under the effect of collecting the frame, after collecting the inside nickel alloy of frame is collected, unscrew fastening bolt, take off the surface of collecting the frame from the operation panel, the function of the automatic unloading of locating clip device has been realized, thereby the work efficiency when locating clip device is used has been improved, the manpower resources when locating clip device uses have been saved, the nickel alloy phenomenon of piling up of placing the platform surface in the locating clip device use appearance.
Drawings
FIG. 1 is a schematic view of a three-dimensional appearance structure of the present utility model;
FIG. 2 is a schematic view of a front cross-sectional structure of the present utility model;
FIG. 3 is an enlarged schematic top view of the console of the present utility model;
FIG. 4 is an enlarged view of the bottom cross section of the L-shaped bracket of the present utility model;
fig. 5 is an enlarged view of the bottom cross section of the pressing plate of the present utility model.
In the figure: 1. a support frame; 101. a control button; 102. a door body; 103. a first electric push rod; 104. an operation table; 105. an L-shaped frame; 106. a holding chamber; 107. a pressing plate; 108. a clamping frame; 109. a second electric push rod; 110. a placement table; 111. scale marks; 2. a powder collection mechanism; 201. a through hole; 202. a fixed cover; 203. a powder collection unit; 2031. a collection box; 2032. a fixing assembly; 3. an automatic blanking mechanism; 301. a third electric push rod; 302. a collection frame; 303. an automatic blanking part; 3031. a fastening bolt; 3032. a screw rod; 3033. a driving motor; 3034. a pushing plate; 4. an anti-slip and anti-displacement mechanism; 401. a fixed plate; 402. a holding groove; 403. an anti-slip and anti-displacement part; 4031. a protective pad; 4032. and a monitor.
Description of the embodiments
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model, and all other embodiments obtained by those skilled in the art without making any inventive effort based on the embodiments of the present utility model are within the scope of protection of the present utility model.
The structure of the positioning clamp device for automatic blanking nickel alloy production provided by the utility model is shown in fig. 1 and 2, the positioning clamp device comprises a support frame 1, a door body 102 is hinged to the surface of the support frame 1, a control button 101 is arranged on the surface of the door body 102, the model of the control button 101 can be LA series, an L-shaped frame 105 is arranged on the surface of the top position of the support frame 1, an operation table 104 is arranged below the L-shaped frame 105, a first electric push rod 103 is arranged on the surface of the top position of the support frame 1, the model of the first electric push rod 103 can be DG series, the input end of the first electric push rod 103 is electrically connected with the output end of the control button 101, the output end of the first electric push rod 103 is fixed with the surface of the bottom position of the operation table 104, a placing table 110 is arranged on the surface of the operation table 104, clamping frames 108 are respectively arranged on two sides of the placing table 110, grooves are respectively arranged on the surface of the operation table 104, the grooves are mutually matched with the clamping frames 108 in a sliding mode, a second electric push rod 103 is arranged on the surface of the bottom position of the clamping frames 108, the second electric push rod 103 is electrically connected with the output end of the second electric push rod 109, the second electric push rod 109 is electrically connected with the output end of the support frame 101, and the two sides of the electric push rod 109 are electrically connected with the output end of the nickel alloy 101, and the two electric push rod 109 are electrically connected with the two sides of the electric push rod 109, and the electric push rod is electrically connected with the two alloy holding rod 107.
Further, as shown in fig. 2 and 5, the surface of the pressing plate 107 is provided with an anti-slip and anti-displacement mechanism 4, the inside of the anti-slip and anti-displacement mechanism 4 includes a fixing disc 401, a holding groove 402 and an anti-slip and anti-displacement portion 403, the anti-slip and anti-displacement portion 403 is disposed on the surface of the pressing plate 107, the nickel alloy placed on the surface of the placing table 110 is subjected to anti-slip and anti-displacement through the anti-slip and anti-displacement portion 403, the anti-slip and anti-displacement portion 403 is composed of a protection pad 4031 and a monitor 4032, the monitor 4032 is mounted in the pressing plate 107, the surface of the bottom of the pressing plate 107 is provided with a holding groove 402, the inside of the holding groove 402 is provided with a fixing disc 401, and the surface of the bottom of the fixing disc 401 is provided with a protection pad 4031 for preventing the nickel alloy.
During implementation, the protection pad 4031 is driven to move downwards under the action of the fixing disc 401 in the holding groove 402, so that the protection pad 4031 moves downwards to be in contact with the surface of the nickel alloy, the nickel alloy on the surface of the placing table 110 is abutted against under the combined action of the fixing disc 401 and the protection pad 4031, the auxiliary clamping effect is achieved, the nickel alloy is prevented from loosening in the processing process, then, when the nickel alloy is processed, the processing condition of the nickel alloy and the clamping condition of the nickel alloy on the surface of the placing table 110 are monitored under the action of the monitor 4032, after the monitor 4032 monitors the processing of the nickel alloy, the monitor 4032 controls the locating clamp device to stop processing the nickel alloy, and when the monitor 4032 monitors the displacement of the nickel alloy, the monitor 4032 gives an alarm to prompt the change of the position of the nickel alloy on the surface of the placing table 110 so as to realize the function of the locating clamp device for preventing the nickel alloy placed on the surface of the placing table 110 from sliding and displacement.
Further, as shown in fig. 2 and 4, the surface of the operating table 104 and the surface of the L-shaped frame 105 are provided with an automatic discharging mechanism 3, the automatic discharging mechanism 3 is composed of a third electric push rod 301, a collecting frame 302 and an automatic discharging portion 303, the automatic discharging portion 303 is arranged on the surface of the operating table 104 and the surface of the L-shaped frame 105, the nickel alloy after surface processing of the placing table 110 is subjected to automatic discharging collecting treatment through the automatic discharging portion 303, the inside of the automatic discharging portion 303 comprises a fastening bolt 3031, a lead screw 3032, a driving motor 3033 and a pushing plate 3034, the surfaces of the bottom position of the L-shaped frame 105 are provided with a third electric push rod 301, the type of the third electric push rod 301 is optionally DG series, the input end of the third electric push rod 301 is electrically connected with the output end of the control button 101, the surface of the third electric push rod 301 is in sliding fit with the surface of the bottom position of the L-shaped frame 105, the output end of the third electric push rod 301 is provided with a pushing plate 3034, the inside of the L-shaped frame 105 is provided with a driving motor 3033, the driving motor 3033 is optionally provided with a driving shaft 3, the surface of the driving motor is rotatably connected with the surface of the inner wall of the tubular guide frame 302, the surface of the guide frame 2 is fixedly arranged on the inner wall of the surface of the guide frame 2, the surface of the guide frame 2 is fixedly matched with the surface of the collecting frame 105, the surface of the electric push rod 301 is fixedly connected with the surface of the inner surface of the third electric push rod 301 is matched with the surface of the inner wall of the inner guide post 105, the inner surface of the inner wall of the inner guide post 105 is mounted, the surface of the collecting frame 302 is connected with a fastening bolt 3031 for fixing the collecting frame 302 and the operating platform 104 in a threaded manner, and one end of the fastening bolt 3031 penetrates through the collecting frame 302 and is fastened with the surface of the operating platform 104 in a threaded manner.
When the positioning clamp device is implemented, the driving motor 3033 is controlled to work, the rotating shaft is driven to rotate under the action of the driving motor 3033, when the rotating shaft rotates, the rotating shaft drives the screw rod 3032 to rotate in the L-shaped frame 105, when the screw rod 3032 rotates, the screw rod 3032 drives the third electric push rod 301 to slide on the surface of the bottom of the L-shaped frame 105, so that the third electric push rod 301 drives the pushing plate 3034 to move to a required position, then the control button 101 is operated, the control button 101 is controlled to operate, the pushing plate 3034 is driven to move downwards under the action of the third electric push rod 301, the driving motor 3033 is operated to drive the pushing plate 3034 to move back and forth, the nickel alloy on the surface of the positioning clamp device is pushed out, then the nickel alloy falls into the collecting frame 302, the nickel alloy is collected under the action of the collecting frame 302, after the nickel alloy inside the collecting frame 302 is collected, the fastening bolt 3031 is unscrewed, and the collecting frame 302 is taken off from the surface of the operating platform 104, and the automatic unloading function of the positioning clamp device is realized.
Further, as shown in fig. 2 and 3, the surfaces of the support frame 1 and the operation table 104 are provided with a powder collecting mechanism 2, the powder collecting mechanism 2 is composed of a through hole 201, a fixing cover 202 and a powder collecting part 203, the powder collecting part 203 is arranged on the surfaces of the support frame 1 and the operation table 104, the powder accumulated on the surface of the placing table 110 is collected intensively through the powder collecting part 203, the powder collecting part 203 is composed of a collecting box 2031 and a fixing component 2032, the surfaces of the placing table 110, the operation table 104 and the support frame 1 are provided with equidistant through holes 201, the surfaces at the top of the support frame 1 are provided with the fixing cover 202, the fixing cover 202 is communicated with the through holes 201, the collecting box 2031 for collecting dust is arranged in the cavity 106, the collecting box 2031 is in sliding fit with the inner wall of the cavity 106, the fixing component 2032 is arranged on the inner wall of the cavity 106, the fixing components 2032 are respectively arranged on two sides of the collecting box 2031, and the fixing component 2032 is in sliding fit with the surface of the collecting box 2031.
When the nickel alloy processing is performed, when powder is generated, the powder enters the fixing cover 202 through the through hole 201, then enters the collecting box 2031 through the through hole 201 in the supporting frame 1, the powder is collected and adsorbed under the action of the collecting box 2031, if the powder in the collecting box 2031 needs to be processed, at this time, the door 102 is opened, the collecting box 2031 is pulled again, the collecting box 2031 slides on the surface of the fixing component 2032, the collecting box 2031 slides in the accommodating cavity 106, and the collecting box 2031 is pulled out from the accommodating cavity 106, so that the function of collecting the powder generated during the nickel alloy processing by the locating clamp device is realized.
Working principle: when in use, firstly, the support frame 1 is placed at a designated position, nickel alloy to be processed is placed on the surface of the placing table 110, then, the clamping frame 108 is pulled by observing the scale marks 111, so that the clamping frame 108 slides on the surface of the operating table 104, when the clamping frame 108 moves to a required position, the control button 101 is operated, so that the control button 101 controls the second electric push rod 109 on the surface of the clamping frame 108 to work, the pressing plate 107 is driven to move downwards under the action of the second electric push rod 109, so that the pressing plate 107 is moved to be contacted with the surface of the nickel alloy, when the nickel alloy on the surface of the placing table 110 is clamped, in order to avoid the phenomenon that the nickel alloy is displaced on the surface of the placing table 110, at the moment, the protection pad 4031 is driven to move downwards under the action of the fixed disc 401 inside the holding groove 402, the protective pad 4031 is enabled to move downwards to contact with the surface of the nickel alloy, the nickel alloy on the surface of the placing table 110 is abutted against under the combined action of the fixed disc 401 and the protective pad 4031, the auxiliary clamping function is achieved, the nickel alloy is prevented from loosening in the processing process, then, when the nickel alloy is processed, the processing condition of the nickel alloy and the clamping condition of the nickel alloy on the surface of the placing table 110 are monitored under the action of the monitor 4032, when the monitor 4032 monitors that the nickel alloy is processed, the monitor 4032 controls the positioning clamp device to stop processing the nickel alloy, when the monitor 4032 monitors that the nickel alloy is displaced, the monitor 4032 gives an alarm to prompt the position of the nickel alloy on the surface of the placing table 110 to change, so that the anti-skid and anti-displacement functions of the nickel alloy placed on the surface of the placing table 110 by the positioning clamp device are realized, thereby avoiding the phenomenon that the nickel alloy slides or shifts on the surface of the placing table 110 when the nickel alloy on the surface of the placing table 110 is positioned and clamped by the positioning clamp device, and simultaneously ensuring the accuracy degree of the positioning clamp device during the nickel alloy processing when in use.
When the nickel alloy on the surface of the placing table 110 is processed, some powder is generated, the powder easily floats in the air to affect the body health of operators, at this time, when the nickel alloy is processed to generate the powder, the powder immediately enters the inside of the fixing cover 202 through the through hole 201, then enters the inside of the collecting box 2031 through the through hole 201 inside the supporting frame 1, the powder is collected and adsorbed under the action of the collecting box 2031, if the powder inside the collecting box 2031 needs to be processed, at this time, the door 102 is opened, the collecting box 2031 is pulled again, so that the collecting box 2031 slides on the surface of the fixing component 2032, the collecting box 2031 slides in the inside of the containing cavity 106, and the collecting box 2031 is pulled out from the inside of the containing cavity 106, so that the function of collecting the powder generated during the nickel alloy processing by the locating clip device is realized, and the phenomenon that the dust flies to pollute the surrounding environment and the body health of operators in the use process of the locating clip device is avoided.
After the nickel alloy is processed, the nickel alloy is usually required to be manually removed from the surface of the placing table 110, time and labor are wasted, the nickel alloy is easy to be accumulated on the surface of the placing table 110, at this time, the control button 101 is operated, the control button 101 controls the driving motor 3033 to work, the rotating shaft is driven to rotate under the action of the driving motor 3033, when the rotating shaft rotates, the rotating shaft drives the lead screw 3032 to rotate in the L-shaped frame 105, when the lead screw 3032 rotates, the lead screw 3032 drives the third electric push rod 301 to slide on the surface of the bottom of the L-shaped frame 105, the third electric push rod 301 drives the pushing plate 3034 to move to a required position, then, the control button 101 is operated again, the control button 101 controls the third electric push rod 301 to work, the pushing plate 3034 is driven to move downwards under the action of the third electric push rod 301, and then the driving motor 3033 is operated, so that the driving motor 3033 drives the pushing plate 3034 to move back and forth, the nickel alloy on the surface of the placing table 110 is pushed out, then the nickel alloy falls into the collecting frame 302, the nickel alloy is collected under the action of the collecting frame 302, after the nickel alloy in the collecting frame 302 is collected, the fastening bolt 3031 is unscrewed, the collecting frame 302 is taken down from the surface of the operation table 104, so that the automatic blanking function of the positioning clamp device is realized, the working efficiency of the positioning clamp device during use is improved, the manpower resource of the positioning clamp device during use is saved, the phenomenon that the nickel alloy is accumulated on the surface of the placing table 110 during the use process of the positioning clamp device is avoided, and finally the use work of the positioning clamp device is completed.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (8)

1. The utility model provides an automatic nickel alloy production of unloading is with location clamp device, includes support frame (1), its characterized in that: the surface of the supporting frame (1) is hinged with a door body (102), a control button (101) is arranged on the surface of the door body (102), an L-shaped frame (105) is arranged on the surface of the top position of the supporting frame (1), an operating table (104) is arranged below the L-shaped frame (105), a placing table (110) is arranged on the surface of the operating table (104), a clamping frame (108) is arranged on the surface of the operating table (104), a second electric push rod (109) is arranged on the surface of the bottom position of the clamping frame (108), the input end of the second electric push rod (109) is electrically connected with the output end of the control button (101), a pressing plate (107) for tightly pressing nickel alloy is arranged at the output end of the second electric push rod (109), a containing cavity (106) is formed in the supporting frame (1), an anti-slip displacement mechanism (4) is arranged on the surface of the pressing plate (107), an inner part of the anti-slip displacement mechanism (4) comprises a fixed disc (401), a holding groove (403), an automatic material collecting mechanism (301) and an automatic material collecting mechanism (301) are arranged on the surface of the lower frame (302), and an automatic material collecting mechanism (301) are arranged on the lower surface of the lower frame (3) (302), the powder collecting mechanism (2) is arranged on the surfaces of the supporting frame (1) and the operating platform (104), and the powder collecting mechanism (2) is composed of a through hole (201), a fixed cover (202) and a powder collecting part (203).
2. The automatic blanking positioning clamp device for nickel alloy production according to claim 1, wherein: the utility model discloses a nickel alloy positioning device, including support frame (1), support frame (104), support frame (108), support frame (1) top position department's surface all installs first electric putter (103), the output of input and control button (101) of first electric putter (103) electric connection, the output of first electric putter (103) is fixed with the surface of operation panel (104) bottom position department mutually, holder (108) are located respectively and place the both sides of platform (110), the cell body has all been seted up on the surface of operation panel (104), and cell body and holder (108) sliding fit each other, the scale mark (111) that are used for carrying out the location to the nickel alloy are all installed to the surface of placing the platform (110) both sides.
3. The automatic blanking positioning clamp device for nickel alloy production according to claim 1, wherein: powder collection portion (203) set up on the surface of support frame (1) and operation panel (104), place the surface of platform (110) and pile up powder and concentrate collection through powder collection portion (203), powder collection portion (203) are by collection box (2031) and fixed subassembly (2032) constitution, equidistant through-hole (201) have all been seted up on the surface of platform (110), operation panel (104) and support frame (1), fixed cover (202) are all installed on the surface of support frame (1) top position department.
4. A positioning clamp device for automatic blanking of nickel alloy production according to claim 3, wherein: the dust collecting device is characterized in that the fixed cover (202) is communicated with the through hole (201), collecting boxes (2031) used for collecting dust are arranged in the containing cavity (106), the collecting boxes (2031) are in sliding fit with the inner walls of the containing cavity (106), fixing assemblies (2032) are mounted on the inner walls of the containing cavity (106), the fixing assemblies (2032) are located on two sides of the collecting boxes (2031) respectively, and the fixing assemblies (2032) are in sliding fit with the surfaces of the collecting boxes (2031).
5. The automatic blanking positioning clamp device for nickel alloy production according to claim 1, wherein: automatic unloading portion (303) set up the surface at operation panel (104) and L type frame (105), the nickel alloy after placing the surface processing of platform (110) carries out automatic unloading through automatic unloading portion (303) and collects the processing, the inside of automatic unloading portion (303) contains fastening bolt (3031), lead screw (3032), driving motor (3033) and pushing plate (3034), the surface of L type frame (105) bottom position department all is provided with third electric putter (301), the input of third electric putter (301) and the output electric connection of control button (101), the mutual sliding fit of surface of third electric putter (301) and L type frame (105) bottom position department, pushing plate (3034) are installed to the output of third electric putter (301).
6. The automatic blanking positioning clamp device for nickel alloy production according to claim 1, wherein: the inside of the L-shaped frame (105) is provided with a driving motor (3033), the input end of the driving motor (3033) is electrically connected with the output end of the control button (101), the output end of the driving motor (3033) is provided with a rotating shaft through a coupler, the inside of the L-shaped frame (105) is provided with a lead screw (3032), the surface of lead screw (3032) and the inner wall of L type frame (105) mutually rotate the cooperation, the surface of lead screw (3032) is fixed with the surface of pivot, the surface of lead screw (3032) is fixed with the surface of third electric putter (301), the guide post is all installed to the inside of L type frame (105), the surface of third electric putter (301) and guide post mutually sliding fit.
7. The automatic blanking positioning clamp device for nickel alloy production according to claim 1, wherein: the surface of operation panel (104) all is provided with and is used for collecting collection frame (302) of nickel alloy after the processing, the surface of collection frame (302) contacts with the surface of operation panel (104), the surface of collection frame (302) all threaded connection has fastening bolt (3031) that are used for fixing collection frame (302) and operation panel (104), the one end of fastening bolt (3031) runs through collection frame (302) and with the surface screw thread fastening of operation panel (104).
8. The automatic blanking positioning clamp device for nickel alloy production according to claim 1, wherein: the anti-slip anti-displacement part (403) is arranged on the surface of the pressing plate (107), the nickel alloy placed on the surface of the placing table (110) is subjected to anti-slip anti-displacement through the anti-slip anti-displacement part (403), the anti-slip anti-displacement part (403) is composed of a protection pad (4031) and a monitor (4032), the monitor (4032) is arranged in the inner part of the pressing plate (107), the surface of the bottom position of the pressing plate (107) is provided with a containing groove (402), the inner part of the containing groove (402) is provided with a fixed disc (401), and the surface of the bottom position of the fixed disc (401) is provided with the protection pad (4031) for carrying out anti-slip on the nickel alloy.
CN202323103721.9U 2023-11-17 2023-11-17 Automatic nickel alloy production of unloading is with location clamp device Active CN221065404U (en)

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Application Number Priority Date Filing Date Title
CN202323103721.9U CN221065404U (en) 2023-11-17 2023-11-17 Automatic nickel alloy production of unloading is with location clamp device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323103721.9U CN221065404U (en) 2023-11-17 2023-11-17 Automatic nickel alloy production of unloading is with location clamp device

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CN221065404U true CN221065404U (en) 2024-06-04

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CN202323103721.9U Active CN221065404U (en) 2023-11-17 2023-11-17 Automatic nickel alloy production of unloading is with location clamp device

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