CN216421679U - High-efficient volume production machining orthotic devices - Google Patents

High-efficient volume production machining orthotic devices Download PDF

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Publication number
CN216421679U
CN216421679U CN202123108710.0U CN202123108710U CN216421679U CN 216421679 U CN216421679 U CN 216421679U CN 202123108710 U CN202123108710 U CN 202123108710U CN 216421679 U CN216421679 U CN 216421679U
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base
correcting
production machining
sides
machining
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CN202123108710.0U
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张增博
张阿蓬
程娟
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Xi'an Pengwei Mechanical Equipment Co ltd
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Xi'an Pengwei Mechanical Equipment Co ltd
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Abstract

The utility model discloses a high-efficient volume production machining orthotic devices relates to machining technical field. The utility model discloses a: the upper end parts of two sides of a base of the correcting mechanism are connected with correcting components, the upper part of the outer surface of the base is fixedly connected with a scrap receiving component, and the central positions of the lower parts of two sides of the base are connected with mounting components through movable components; adjustment mechanism, adjustment mechanism include that the equidistance runs through the regulation hole of seting up in correction subassembly upper end middle part, and the regulation post cup joints with the inboard upper portion rear end of correction subassembly and is connected. The utility model discloses a set up correction subassembly and adjustment mechanism, solved current machining for the location platform of work piece location screws up the operation through the bolt, and the bolt is not hard up after long-time use, and the location platform is very easily deviated, influences the in-service use effect, simultaneously, or the correction structure adjusting position that is used for the location platform is inconvenient, has not satisfied the problem of user demand.

Description

High-efficient volume production machining orthotic devices
Technical Field
The utility model belongs to the technical field of machining, especially, relate to a high-efficient volume production machining orthotic devices.
Background
Machining refers to a process of changing the physical dimensions or properties of a workpiece by a mechanical device. The difference in the machining method can be divided into cutting machining and pressing machining.
However, the following disadvantages still exist in the practical use:
1. in the existing mechanical processing, a positioning table for positioning a workpiece is screwed up through a bolt, and after the positioning table is used for a long time, the bolt is loosened, so that the positioning table is easy to deviate, and the actual use effect is influenced;
2. the existing machining or the correction structure for the positioning table is inconvenient in position adjustment, and the use requirement cannot be met.
Therefore, the existing efficient mass-production machining correcting device cannot meet the requirements in practical use, so that an improved technology is urgently needed in the market to solve the problems.
Disclosure of Invention
An object of the utility model is to provide a high-efficient volume production machining orthotic devices through setting up orthotic devices and adjustment mechanism, has solved current machining for the operation of screwing up is passed through the bolt to the location platform of work piece location, and the bolt is not hard up after long-time use, and the location platform is very easily deviated, influences the in-service use effect, and simultaneously, or the correction structure adjusting position that is used for the location platform is inconvenient, has not satisfied the problem of user demand.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to a high-efficient volume production machining orthotic devices, include:
the upper end parts of two sides of a base of the correcting mechanism are connected with correcting components, the upper part of the outer surface of the base is fixedly connected with a scrap receiving component, and the central positions of the lower parts of two sides of the base are connected with mounting components through movable components;
adjustment mechanism, adjustment mechanism includes that the equidistance runs through the regulation hole of seting up in correction subassembly upper end middle part, and the regulation post cup joints with the inboard upper portion rear end of correction subassembly and is connected.
Further, the base comprises a base frame and a cover plate, and the cover plate is connected to the central position of the upper end and the lower end of the base frame in a damping clamping mode; the base is composed of a base frame and a cover plate, so that the base frame is easy to disassemble and assemble, and the external structure can be connected and positioned.
Furthermore, the correcting component comprises two groups of supports which are bilaterally symmetrical, the upper parts of the inner ends of the supports are connected with pressure sensors, and sleeve columns in the middle of the bottom ends of the supports are sleeved in sleeves at the two side ends of the upper end surface of the cover plate; the sleeve between the sleeve and the sleeve column is used for positioning the support column, and whether the positioning table is deviated or not is detected through the contact between the pressure sensor and the positioning table.
Furthermore, the movable assembly comprises two groups of limiting blocks which are bilaterally symmetrical, the inner sides of the limiting blocks are in threaded connection with sliding rails, and the sliding rails are in sliding connection with sliding blocks; the limiting block is used for positioning the sliding rail, and the size of the mounting assembly can be adjusted by sliding the sliding block in the sliding rail.
Furthermore, the front end part of the mounting frame of the mounting assembly is provided with a through screw hole, a stud is connected in the screw hole in a penetrating manner, and the end part of the stud is in threaded connection with a nut; the device is fixed and installed through the space on the inner side surface of the installation frame by the screwing operation of the nut on the end part of the stud.
Furthermore, the scrap receiving assembly comprises opening frames connected to the two sides of the base frame and the upper ends of the end parts, and side receiving plates and end receiving plates with the same size are connected in the opening frames in a damping mode; the side bearing plates and the end bearing plates are connected through the opening frame, and the opening frame is used for bearing scraps generated in machining and improving the working environment.
The utility model discloses following beneficial effect has:
1. the utility model discloses a set up correction assembly, whether by pressure sensor and location platform between the contact, and whether take place offset's judgement, accuracy and sensitivity are high, easy to use to the platform of fixing a position.
2. The utility model discloses a set up adjustment mechanism, by carrying out height size to correcting the structure and adjusting to be applicable to the correction operation of many specifications location platform, satisfy different user demands.
Of course, it is not necessary for any particular product to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is an exploded view of the present invention;
FIG. 2 is a schematic view of the connection between the adjusting mechanism and the straightening assembly of the present invention;
FIG. 3 is a schematic view of the connection between the movable assembly and the mounting assembly of the present invention;
fig. 4 is a schematic view of the connection between the frame and the scrap collecting component of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
100. a correction mechanism; 110. a base; 111. a base frame; 112. a cover plate; 120. a corrective component; 121. a pillar; 122. a pressure sensor; 123. sleeving a column; 130. a movable component; 131. a limiting block; 132. a slide rail; 133. a slider; 140. mounting the component; 141. a mounting frame; 142. a stud; 143. a nut; 150. a scrap receiving assembly; 151. an open frame; 152. a side bearing plate; 153. an end bearing plate; 200. an adjustment mechanism; 210. an adjustment hole; 220. and (4) adjusting the column.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
Referring to fig. 1-4, the present invention provides a correcting device for high-efficiency mass production machining, comprising:
the correcting mechanism 100 comprises a base 110, wherein the correcting components 120 are connected to the end parts of the two sides of the base 110, the upper part of the outer surface of the base 110 is fixedly connected with a scrap receiving component 150, and the central positions of the lower parts of the two sides of the base 110 are connected with a mounting component 140 through a movable component 130;
adjustment mechanism 200, adjustment mechanism 200 includes that the equidistance runs through the regulation hole 210 of seting up in the middle part of straightening subassembly 120 upper end, and just regulation hole 210 cup joints with the regulation post 220 of straightening subassembly 120 inboard upper portion rear end and is connected.
As shown in fig. 1-2, the base 110 includes a base frame 111 and a cover plate 112, and the cover plate 112 is connected to the central position of the upper and lower ends of the base frame 111 in a damping snap-fit manner;
specifically, when the base 110 is used, the space in the base frame 111 may be filled with external articles, the cover plate 112 may be placed on the upper and lower ends of the base frame 111, and a force for pushing the cover plate inward may be applied;
the correcting component 120 comprises two groups of support columns 121 which are bilaterally symmetrical, the upper parts of the inner ends of the support columns 121 are connected with pressure sensors 122, and sleeve columns 123 in the middle of the bottom ends of the support columns 121 are sleeved in sleeves at two side ends of the upper end face of the cover plate 112;
specifically, when the rectification assembly 120 is used, the bottom end sleeve column 123 of the support column 121 is sleeved in the sleeve, and the pressure sensor 122 is sleeved at a designated position inside the support column 121.
As shown in fig. 3-4, the movable assembly 130 includes two sets of limiting blocks 131 that are bilaterally symmetrical, and the inner sides of the limiting blocks 131 are connected with sliding rails 132 by screw threads, and the sliding rails 132 are connected with sliding blocks 133 in a sliding manner;
the front end part of the mounting rack 141 of the mounting component 140 is arranged in a through screw hole, a stud 142 is connected in the screw hole in a penetrating way, and the end part of the stud 142 is connected with a nut 143 in a threaded way;
specifically, when the device structure is mounted, a force for pushing and pulling the mounting bracket 141 is applied to adjust the appropriate distance between the mounting brackets 141, and at this time, the mounting bracket 141 is placed outside the external connection structure, the stud 142 is inserted into the screw hole, and the end of the stud 142 is screwed with the nut 143.
The scrap receiving assembly 150 comprises an opening frame 151 connected to the two sides of the base frame 111 and the upper end of the end part, and a side receiving plate 152 and an end receiving plate 153 with the same size are connected in the opening frame 151 in a damping manner;
specifically, when the scrap receiving assembly 150 is used, the side receiving plate 152 and the end receiving plate 153 with appropriate sizes are respectively placed in the opening frame 151, and force for pushing the scrap inward is applied.
When the device is used:
firstly, the structure of the device is installed and fixed, at the moment, the size of the installation frame 141 is adjusted according to the use requirement, the distance of the installation frame 141 is correspondingly adjusted by applying pushing and pulling force to the installation frame, meanwhile, the stud 142 penetrates through the screw hole, and the end part of the stud is screwed by the nut 143;
then, the cover plate 112 is placed at the upper end and the lower end of the base frame 111, and an inward force is applied to position the cover plate 112, at this time, the sleeve column 123 at the bottom end of the supporting column 121 is sleeved in the sleeve, and the adjusting column 220 at the rear end of the pressure sensor 122 is sleeved in the adjusting hole 210 at the designated position;
finally, the outer positioning table is placed between the pressure sensors 122, the position deviation distance within the rated range is reserved, at the moment, the outer positioning table is connected and fixed through the outer bolt, if the outer bolt loosens in the using process, the outer positioning table at the moment is in contact with the pressure sensors 122, the outer alarm is triggered to perform alarm operation, and at the moment, the positioning table needs to be subjected to bolt re-tightening and correcting operation.
The above is only the preferred embodiment of the present invention, and the present invention is not limited thereto, any technical solutions recorded in the foregoing embodiments are modified, and some technical features thereof are replaced with equivalent ones, and any modification, equivalent replacement, and improvement made thereby all belong to the protection scope of the present invention.

Claims (6)

1. The utility model provides a high-efficient volume production machining orthotic devices which characterized in that includes:
the correcting mechanism (100) comprises a base (110), wherein correcting components (120) are connected to the end portions of the two sides of the base (110), a scrap receiving component (150) is fixedly connected to the upper portion of the outer surface of the base (110), and a mounting component (140) is connected to the central position of the lower portion of the two sides of the base (110) through a movable component (130);
adjustment mechanism (200), adjustment mechanism (200) run through including the equidistance and set up in regulation hole (210) of correcting subassembly (120) upper end middle part, and regulation hole (210) cup joint with regulation post (220) of correcting subassembly (120) inboard upper portion rear end and be connected.
2. The efficient mass production machining correcting device of claim 1, wherein the base (110) comprises a base frame (111) and a cover plate (112), and the cover plate (112) is connected to the central position of the upper end and the lower end of the base frame (111) in a damping snap-fit manner.
3. The efficient mass production machining straightening device as claimed in claim 1, wherein the straightening assembly (120) comprises two groups of support columns (121) which are bilaterally symmetrical, the upper portions of the inner ends of the support columns (121) are connected with pressure sensors (122), and sleeve columns (123) in the middle of the bottom ends of the support columns (121) are sleeved in sleeve pipes at the two side ends of the upper end face of the cover plate (112).
4. The efficient mass production machining correcting device of claim 1, wherein the movable assembly (130) comprises two sets of limiting blocks (131) which are bilaterally symmetrical, sliding rails (132) are connected to the inner sides of the limiting blocks (131) in a threaded manner, and sliding blocks (133) are connected to the sliding rails (132) in a sliding manner.
5. The efficient mass production machining correcting device of claim 1, wherein the mounting assembly (140) comprises a mounting frame (141) with a threaded hole at the front end thereof, a stud (142) is connected in the threaded hole in a penetrating manner, and a nut (143) is connected to the end of the stud (142) in a threaded manner.
6. The efficient mass production machining correcting device of claim 1, wherein the scrap receiving assembly (150) comprises an open frame (151) connected to both sides and the upper end of the base frame (111), and a side receiving plate (152) and an end receiving plate (153) with corresponding sizes are respectively connected in the open frame (151) in a damping manner.
CN202123108710.0U 2021-12-13 2021-12-13 High-efficient volume production machining orthotic devices Active CN216421679U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123108710.0U CN216421679U (en) 2021-12-13 2021-12-13 High-efficient volume production machining orthotic devices

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123108710.0U CN216421679U (en) 2021-12-13 2021-12-13 High-efficient volume production machining orthotic devices

Publications (1)

Publication Number Publication Date
CN216421679U true CN216421679U (en) 2022-05-03

Family

ID=81318060

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123108710.0U Active CN216421679U (en) 2021-12-13 2021-12-13 High-efficient volume production machining orthotic devices

Country Status (1)

Country Link
CN (1) CN216421679U (en)

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