CN115351696A - Type motor shaft is with slope vibratory finishing machine based on sound wave is intervene - Google Patents

Type motor shaft is with slope vibratory finishing machine based on sound wave is intervene Download PDF

Info

Publication number
CN115351696A
CN115351696A CN202211283003.1A CN202211283003A CN115351696A CN 115351696 A CN115351696 A CN 115351696A CN 202211283003 A CN202211283003 A CN 202211283003A CN 115351696 A CN115351696 A CN 115351696A
Authority
CN
China
Prior art keywords
polishing
angle
sealing
wall
liquid
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN202211283003.1A
Other languages
Chinese (zh)
Other versions
CN115351696B (en
Inventor
杜海峰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiangsu Shenglac Building Materials Co ltd
Original Assignee
Jiangsu Shenglac Building Materials Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiangsu Shenglac Building Materials Co ltd filed Critical Jiangsu Shenglac Building Materials Co ltd
Priority to CN202211283003.1A priority Critical patent/CN115351696B/en
Publication of CN115351696A publication Critical patent/CN115351696A/en
Application granted granted Critical
Publication of CN115351696B publication Critical patent/CN115351696B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B31/00Machines or devices designed for polishing or abrading surfaces on work by means of tumbling apparatus or other apparatus in which the work and/or the abrasive material is loose; Accessories therefor
    • B24B31/06Machines or devices designed for polishing or abrading surfaces on work by means of tumbling apparatus or other apparatus in which the work and/or the abrasive material is loose; Accessories therefor involving oscillating or vibrating containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B31/00Machines or devices designed for polishing or abrading surfaces on work by means of tumbling apparatus or other apparatus in which the work and/or the abrasive material is loose; Accessories therefor
    • B24B31/12Accessories; Protective equipment or safety devices; Installations for exhaustion of dust or for sound absorption specially adapted for machines covered by group B24B31/00
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B41/00Component parts such as frames, beds, carriages, headstocks
    • B24B41/06Work supports, e.g. adjustable steadies
    • B24B41/067Work supports, e.g. adjustable steadies radially supporting workpieces
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B55/00Safety devices for grinding or polishing machines; Accessories fitted to grinding or polishing machines for keeping tools or parts of the machine in good working condition
    • B24B55/12Devices for exhausting mist of oil or coolant; Devices for collecting or recovering materials resulting from grinding or polishing, e.g. of precious metals, precious stones, diamonds or the like
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Finish Polishing, Edge Sharpening, And Grinding By Specific Grinding Devices (AREA)

Abstract

The invention discloses an inclined vibration polishing machine for a motor shaft based on sound wave intervention, which comprises a base, a left supporting plate, a right supporting plate, an angle adjusting type sound control mechanism, a fluid transmission type slide bar mechanism and a solid-liquid transformation type heat storage mechanism, wherein the left supporting plate is arranged on the upper wall of the base, the right supporting plate is arranged on the upper wall of one end, far away from the left supporting plate, of the base, the angle adjusting type sound control mechanism is arranged at one end, far away from the base, of the left supporting plate and the right supporting plate, the fluid transmission type slide bar mechanism is arranged on the angle adjusting type sound control mechanism, and the solid-liquid transformation type heat storage mechanism is arranged on the side wall of the angle adjusting type sound control mechanism. The invention belongs to the technical field of polishing equipment, and particularly relates to an inclined vibration polishing machine for a motor shaft based on sound wave intervention; the invention provides an inclined vibration polishing machine for a motor shaft based on sound wave intervention, which can reduce the probability of diffusion of fragments and improve the collection efficiency of the fragments.

Description

Type motor shaft is with slope vibratory finishing machine based on sound wave is intervene
Technical Field
The invention belongs to the technical field of polishing equipment, and particularly relates to an inclined vibration polishing machine for a motor shaft based on sound wave intervention.
Background
Motor shaft need polish after the processing and handle to clear away epaxial burr, and these processing burrs are difficult for getting rid of, consequently handle and get up and need consume very big manpower, traditional pivot polishing treatment facility structure is complicated with the polishing procedure, and work efficiency is low, and the piece that produces brings certain influence for the subsequent processing of pivot in the processing procedure, but also influences operating personnel's operational environment, causes certain harm for operating personnel.
Disclosure of Invention
Aiming at the situation and overcoming the defects of the prior art, the invention provides the sound wave intervention type inclined vibration polishing machine for the motor shaft, and aims at the problem that scraps generated by motor shaft polishing are difficult to collect.
The invention provides an inclined vibration polishing machine for a motor shaft based on sound wave intervention, which can reduce the probability of diffusion of fragments and improve the collection efficiency of the fragments.
The inclined vibration polishing machine comprises a base, a left supporting plate, a right supporting plate, an angle adjusting type sound control mechanism, a fluid transmission type slide bar mechanism and a solid-liquid transition type heat storage mechanism, wherein the left supporting plate is arranged on the upper wall of the base, the right supporting plate is arranged on the upper wall of the base, one end of the base, far away from the left supporting plate, is arranged on the upper wall of the base, the angle adjusting type sound control mechanism is arranged at one end, far away from the base, of the left supporting plate and the right supporting plate, the fluid transmission type slide bar mechanism is arranged on the angle adjusting type sound control mechanism, the solid-liquid transition type heat storage mechanism is arranged on the side wall of the angle adjusting type sound control mechanism, the angle adjusting type sound control mechanism comprises an angle adjusting mechanism, a sealing sound explosion mechanism and an impurity collecting mechanism, the angle adjusting type sound control mechanism is arranged at one end of the left supporting plate and the right supporting plate, the sealing sound explosion mechanism is arranged on the upper wall of the angle adjusting mechanism, the impurity collecting mechanism is arranged on the right supporting plate, the fluid transmission type slide bar mechanism comprises a double dynamic clamping mechanism and a driving mechanism, the angle adjusting mechanism is arranged inside the angle adjusting type sound control mechanism, the driving mechanism is arranged on the side wall of the double dynamic clamping mechanism, the bottom of the phase transition type sound control mechanism is arranged on the phase transition type sound control mechanism, and the bottom of the phase transition type sound control mechanism is arranged on the phase transition mechanism, and the phase transition type sound control mechanism, and the phase transition type heat storage mechanism, and the bottom of the phase transition mechanism is arranged on the double dynamic phase transition mechanism, and the double dynamic phase transition type sound control mechanism, and the bottom of the phase transition mechanism is arranged on the phase transition type sound control mechanism, and the phase transition type sound control mechanism, and the bottom of the phase transition type sound control mechanism is arranged between the phase transition mechanism.
As a further preference of the scheme, the angle adjusting mechanism comprises an adjusting groove, a rotating groove, a sliding groove, an angle sliding rod, an angle frame, an angle threaded hole, an angle bolt, an angle hinge block, a positioning groove, a threaded column, a locking nut, a positioning block and a polishing barrel, wherein the adjusting groove is formed in one end, away from the base, of the left support plate, the adjusting groove is in a through arrangement, the rotating groove is formed in the side wall of the left support plate below the adjusting groove, the rotating groove is in a through arrangement, the sliding groove is symmetrically formed in the inner walls of the two sides of the adjusting groove, the angle sliding rod is slidably arranged in the inner wall of the sliding groove, the angle frame is arranged between the angle sliding rods, the angle threaded hole is formed in the bottom wall of the angle frame, the angle bolt is arranged in the inner wall of the angle threaded hole in a penetrating manner, the angle bolt is rotatably arranged on the upper wall of the rotating groove, the angle bolt is in threaded connection with the angle threaded hole, the angle hinge block is hinged to one end, away from the angle bolt, the angle frame is arranged at one end, the right support plate, away from the base, the positioning groove is arranged in a penetrating arrangement, the inner wall of the threaded column is symmetrically arranged at the two sides of the positioning groove, the positioning column is arranged on the inner walls of the positioning block, the positioning nut is arranged on the two sides of the positioning groove, the positioning block, the threaded column, the positioning block is arranged on the outer side of the threaded column, and the polishing barrel; the sealing sonic boom mechanism comprises sealing rods, polishing ports, sealing sliding blocks, sealing springs, sealing sliding rods, sealing covers and a sonic vibrator, the sealing rods are symmetrically arranged on the upper walls of two ends of the polishing barrel, the polishing ports are symmetrically arranged on the upper wall of the polishing barrel, the sealing sliding blocks are arranged on the outer sides of the sealing rods in a sliding mode, the sealing springs are arranged between the bottom wall of the sealing sliding block on the outer side of the sealing rods and the upper wall of the polishing barrel, the sealing sliding rods are arranged on the side wall of the sealing sliding blocks, the sealing covers are arranged on one sides, far away from the sealing sliding blocks, of the sealing rods, the sealing covers are arranged above the polishing ports, the sonic vibrator is arranged on the upper wall of the polishing barrel between the polishing ports, and the power end of the sonic vibrator penetrates through the inner wall of the polishing barrel; the impurity collecting mechanism comprises an impurity port and a collecting box, the impurity port is arranged on the bottom wall of one end, close to the left supporting plate, of the polishing barrel, the collecting box is arranged on the inner wall of the left supporting plate below the positioning groove, and the collecting box is arranged with an upper end opening; in an initial state, a sealing spring is in a shortened state, a sealing slide block slides along a sealing rod to drive a sealing cover to be clamped into a polishing opening, when the polishing machine is used, the sealing slide rod is pulled, the sealing slide rod drives a sealing slide block to slide and rise along the sealing rod through deformation of the sealing spring, a sealing cover is far away from the inside of the polishing opening, a motor shaft to be polished is placed into a polishing barrel, the sealing slide rod is loosened, elastic resetting of the sealing spring drives the sealing slide block to slide and fall along the sealing rod, the sealing slide block drives the sealing cover to be clamped into the inside of the polishing opening through the sealing slide rod, an angle bolt is rotated, the angle bolt drives an angle frame to rise through an angle threaded hole, the polishing barrel rotates around one end of the angle frame under the action of the angle hinge block, one end, which is far away from the angle hinge block, the polishing barrel rotates around a threaded column through a positioning block, the locking nut is rotated to be close to the positioning block along the threaded column, the inclination angle of the polishing barrel is fixed, at the impurity opening is located above a collecting box, a sound vibrator inputs iron chips into the inside of the polishing barrel through a power end, and the sound wave is stored in the bottom wall of the polishing barrel.
Preferably, the double-dynamic clamping mechanism comprises a liquid cylinder, liquid flow rods, liquid flow plates, fixed magnets, movable magnets, rotary clamping blocks, a middle plate, clamping springs and opposite clamping blocks, the liquid cylinder is symmetrically arranged on the inner walls of two ends of the polishing cylinder, the liquid flow rods are symmetrically arranged on the inner wall of the liquid cylinder, the fixed magnets are symmetrically arranged on two ends of the liquid flow rods, the liquid flow plates are slidably arranged between the liquid flow rods, the movable magnets are symmetrically arranged on the side walls of the liquid flow plates on the outer sides of the liquid flow rods in pairs, the fixed magnets and the movable magnets are oppositely arranged, the movable magnets and the fixed magnets on the side, close to the left support plate, of the liquid flow plates are arranged in the same polarity, the movable magnets and the fixed magnets on the side, far away from the left support plate, of the liquid flow plates are arranged in the opposite polarity, the rotary clamping blocks are arranged on the liquid flow plates in a penetrating manner, the rotary clamping blocks are rotatably arranged on the liquid flow plates, the middle inner wall of the polishing cylinder is arranged on the middle inner wall of the middle of the polishing cylinder, the clamping springs are symmetrically arranged on the side, the opposite clamping blocks far away from the middle plate, the inner wall of the polishing cylinder is arranged on the opposite clamping blocks; the driving mechanism comprises a driving motor, a driving shaft, a hydraulic shaft and transmission blades, the driving motor is symmetrically arranged on two sides of the polishing barrel, the driving shaft penetrates through the polishing barrel and is arranged at the power end of the driving motor, the hydraulic shaft is arranged on one side, close to the driving shaft, of the rotating clamping block, and the transmission blades are respectively arranged on the outer sides of the driving shaft and the hydraulic shaft; the lateral wall of one end of a motor shaft offsets with a rotating block, the relative clamping block is shortened through deformation of a clamping spring, then one end of the motor shaft, which is far away from the relative clamping block, is inserted into the liquid cylinder and offsets with the rotating clamping block, under the action of repulsion force pushing and magnetic force adsorption, the motor shaft is clamped between the rotating clamping block and the relative clamping block, a driving motor drives a driving shaft to rotate, the driving shaft drives transmission liquid inside the liquid cylinder to rotate through a transmission blade, the transmission liquid drives a hydraulic shaft to rotate through a transmission blade, the hydraulic shaft drives the rotating clamping block to rotate, and the rotating clamping block drives the motor shaft to rotate.
The guide movement mechanism comprises a guide port, a guide limiting column, a polishing threaded hole, a polishing bolt, a carrying semicircular plate and a rubber layer, wherein multiple groups of the guide port are symmetrically arranged on two sides of the polishing barrel, the guide limiting column is slidably arranged in the guide port, the polishing threaded hole is formed in the side wall of the polishing barrel between the guide ports, the polishing bolt is arranged in the polishing threaded hole and is in threaded connection with the polishing threaded hole, the carrying semicircular plate is arranged on one side, close to the polishing barrel, of the guide limiting column, the carrying semicircular plate is arranged in the polishing barrel, one side, close to the carrying semicircular plate, of the polishing bolt is rotatably arranged on the side wall of the carrying semicircular plate, the rubber layer is arranged on one side, far away from the polishing bolt, of the carrying semicircular plate, and the rubber layer is oppositely arranged; the phase change absorption mechanism comprises a groove, a solid-liquid phase change layer, a polishing layer and a heat dissipation column, wherein the groove is symmetrically arranged on the side wall of the object carrying semicircular plate, one end of the groove is provided with an opening, the solid-liquid phase change layer is arranged on the inner wall of the groove, the polishing layer is arranged on one side, away from the object carrying semicircular plate, of the rubber layer, the solid-liquid phase change layer penetrates through the rubber layer and is attached to the polishing layer, and the heat dissipation column sequentially penetrates through the polishing cylinder and the object carrying semicircular plate and is arranged inside the groove; the bottom wind control mechanism comprises heat dissipation grooves and heat dissipation fans, wherein multiple groups of heat dissipation grooves are arranged on the bottom wall of the base, the heat dissipation grooves are cavities with openings at the upper ends, and the heat dissipation fans are arranged inside the heat dissipation grooves; rotate polishing bolt, polishing bolt drives and carries thing semicircle board relative motion, it drives polishing layer and motor shaft surface laminating to carry the thing semicircle board to remove along the direction mouth through the spacing post of direction, the high-speed rotation of motor shaft rubs with polishing layer, solid-liquid phase change layer takes place the phase transition and absorbs the heat along with the rising of frictional temperature, thereby control motor shaft and polishing the frictional temperature between the layer, reduce the probability of motor shaft surface burn, the heat dissipation post is derived the partial heat on solid-liquid phase change layer, the heat dissipation fan dispels the heat to the heat dissipation post, keep the high-efficient absorption of solid-liquid phase change layer to the heat.
The controller is arranged on the side wall of the right supporting plate and is electrically connected with the sound vibrator, the driving motor and the heat dissipation fan respectively.
Preferably, the controller is of a type SYC89C52RC-401.
The beneficial effect who adopts above-mentioned structure this scheme to gain as follows:
compared with the prior art, the scrap iron generated by motor shaft polishing is recycled under the windless condition through the intervention of sound waves under the matching use of a variable angle structure in a cylindrical mode, and meanwhile, the scraps attached to the surface of the motor shaft are cleaned under the vibration action of the sound waves, so that on one hand, the scraps can be timely collected, and on the other hand, the diffusion of polishing dust is effectively avoided through the windless mode, and the polishing efficiency of the motor shaft is improved to a certain extent;
secondly, through the arranged phase change heat absorption structure, the traditional mode of cooling by adopting refrigeration equipment is overcome, the mode of instantly absorbing heat by solid-liquid change of a phase change layer is adopted, the friction temperature between a motor shaft and a polishing layer is kept, meanwhile, the heat absorption duration of the phase change layer is prolonged through the external conduction action of a heat conduction column, so that the polishing quality of the motor shaft is ensured, the motor shaft rotates at a high speed to rub against the polishing layer, the solid-liquid phase change layer generates phase change along with the increase of the friction temperature to absorb heat, so that the friction temperature between the motor shaft and the polishing layer is controlled, the probability of surface burn of the motor shaft is reduced, the heat dissipation column guides out partial heat of the solid-liquid phase change layer, the heat dissipation fan dissipates heat of the heat dissipation column, and the efficient absorption of the heat by the solid-liquid phase change layer is kept;
finally, through the utilization of repulsion and the relative effort of magnetic force, the less drawback of spring dynamic transmission moment of torsion has been reduced, make the motor shaft that length differs can carry out the centre gripping of self-adaptation and place, motor shaft one end lateral wall offsets with rotatory piece earlier, relative grip block shortens through the deformation of centre gripping spring, then the motor shaft is kept away from the one end of relative grip block and is inserted inside the liquid section of thick bamboo and offset with the rotation grip block, under repulsion promotion and the adsorbed effect of magnetic force, with the motor shaft centre gripping between rotation grip block and relative grip block.
Drawings
FIG. 1 is a schematic view of the overall structure of the present solution;
FIG. 2 is a perspective view of the present solution;
FIG. 3 is a schematic diagram of the explosion structure of the present solution;
FIG. 4 is a front view of the present solution;
FIG. 5 is a rear view of the present solution;
FIG. 6 is a left side view of the present solution;
FIG. 7 is a right side view of the present solution;
FIG. 8 is a top view of the present solution;
FIG. 9 isbase:Sub>A partial sectional view A-A of FIG. 8;
FIG. 10 is a sectional view of portion B-B of FIG. 6;
FIG. 11 is an enlarged view of part A of FIG. 1;
FIG. 12 is an enlarged view of the portion B of FIG. 2;
FIG. 13 is a schematic view of the polishing barrel according to the present embodiment;
FIG. 14 is a schematic view of a fluid driven slide bar mechanism according to the present embodiment;
fig. 15 is a schematic view of a combined structure of the base, the left support plate and the right support plate according to the present scheme.
Wherein, 1, a base, 2, a left support plate, 3, a right support plate, 4, an angle adjusting type sound control mechanism, 5, an angle adjusting mechanism, 6, an adjusting groove, 7, a rotating groove, 8, a sliding groove, 9, an angle sliding rod, 10, an angle frame, 11, an angle threaded hole, 12, an angle bolt, 13, an angle hinged block, 14, a positioning groove, 15, a threaded column, 16, a locking nut, 17, a positioning block, 18, a polishing barrel, 19, a sealing sound explosion mechanism, 20, a sealing rod, 21, a polishing port, 22, a sealing sliding block, 23, a sealing spring, 24, a sealing sliding rod, 25, a sealing cover, 26, a sound vibrator, 27, an impurity collecting mechanism, 28, an impurity port, 29, a collecting box, 30, a fluid transmission type sliding rod mechanism, 31 and a double dynamic clamping mechanism, 32, a liquid cylinder, 33, a liquid flow rod, 34, a liquid flow plate, 35, a fixed magnet, 36, a movable magnet, 37, a rotating clamping block, 38, an intermediate plate, 39, a clamping spring, 40, an opposite clamping block, 41, a driving mechanism, 42, a driving motor, 43, a driving shaft, 44, a hydraulic shaft, 45, a driving blade, 46, a solid-liquid transition type heat storage mechanism, 47, a guide movement mechanism, 48, a guide port, 49, a guide limiting column, 50, a polishing threaded hole, 51, a polishing bolt, 52, a carrying semicircular plate, 53, a rubber layer, 54, a phase change absorption mechanism, 55, a groove, 56, a solid-liquid phase change layer, 57, a polishing layer, 58, a heat dissipation column, 59, a bottom air control mechanism, 60, a heat dissipation groove, 61, a heat dissipation fan, 62, a controller, 63 and a rotating block.
The accompanying drawings, which are included to provide a further understanding of the disclosure and are incorporated in and constitute a part of this specification, illustrate embodiments of the disclosure and together with the description serve to explain the principles of the disclosure and not to limit the disclosure.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments; all other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present solution.
In the description of the present solution, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present solution.
As shown in fig. 1-15, the present invention provides an inclined vibration polishing machine for motor shaft based on acoustic wave intervention, which comprises a base 1, a left support plate 2, a right support plate 3, an angle adjustment type sound control mechanism 4, a fluid transmission type slide bar mechanism 30 and a solid-liquid transition type heat storage mechanism 46, the left supporting plate 2 is arranged on the upper wall of the base 1, the right supporting plate 3 is arranged on the upper wall of one end of the base 1 far away from the left supporting plate 2, the angle adjusting type sound control mechanism 4 is arranged at one end of the left support plate 2 and the right support plate 3 far away from the base 1, the fluid transmission type slide bar mechanism 30 is arranged on the angle adjustment type sound control mechanism 4, the solid-liquid transformation type heat storage mechanism 46 is arranged on the side wall of the angle adjustment type sound control mechanism 4, the angle adjusting type sound control mechanism 4 comprises an angle adjusting mechanism 5, a sealing sonic boom mechanism 19 and an impurity collecting mechanism 27, the angle adjusting type sound control mechanism 4 is arranged at one end of the left support plate 2 and the right support plate 3, the sealing sound explosion mechanism 19 is arranged on the upper wall of the angle adjusting mechanism 5, the impurity collecting mechanism 27 is provided on the right support plate 3, the fluid transmission type slide bar mechanism 30 includes a double dynamic holding mechanism 31 and a driving mechanism 41, the double dynamic clamping mechanism 31 is arranged inside the angle adjusting type sound control mechanism 4, the driving mechanism 41 is arranged on the side wall of the angle adjusting type sound control mechanism 4, the solid-liquid transformation type heat storage mechanism 46 comprises a guide movement mechanism 47, a phase change absorption mechanism 54 and a bottom wind control mechanism 59, the guiding movement mechanism 47 is arranged on the side wall of the angle adjusting type sound control mechanism 4, the phase change absorbing mechanism 54 is arranged on one side of the guiding movement mechanism 47 close to the angle adjusting type sound control mechanism 4, the bottom wind control mechanism 59 is arranged on the upper wall of the base 1 between the left support plate 2 and the right support plate 3.
As a further preferred option in the scheme of the present application, the angle adjusting mechanism 5 includes an adjusting groove 6, a rotating groove 7, a sliding groove 8, an angle sliding rod 9, an angle frame 10, an angle threaded hole 11, an angle bolt 12, an angle hinge block 13, a positioning groove 14, a threaded post 15, a lock nut 16, a positioning block 17 and a polishing barrel 18, the adjusting groove 6 is disposed at one end of the left support plate 2 away from the base 1, the adjusting groove 6 is a through arrangement, the rotating groove 7 is disposed at a side wall of the left support plate 2 below the adjusting groove 6, the rotating groove 7 is a through arrangement, the sliding grooves 8 are symmetrically disposed at inner walls of two sides of the adjusting groove 6, the angle sliding rod 9 is slidably disposed at an inner wall of the sliding groove 8, the angle frame 10 is disposed between the angle sliding rods 9, the angle threaded hole 11 is disposed at a bottom wall of the angle frame 10, the angle bolt 12 is disposed at an inner wall of the angle threaded hole 11, the angle bolt 12 is rotatably disposed at an upper wall of the rotating groove 7, the angle bolt 12 is in a threaded connection with the angle threaded hole 11, the angle hinge block 13 is disposed at one end of the angle frame 10 away from the right support plate 3, the threaded hole is disposed at an end of the base 1, the threaded post is disposed at an outer side wall of the threaded positioning groove 15, the threaded positioning block 15, the threaded post is disposed at an outer side of the threaded positioning groove 15, the threaded positioning block 15, and the threaded positioning block 15, the threaded positioning groove 15, the threaded hole 15, and the nut 15; the sealing sonic boom mechanism 19 comprises a sealing rod 20, a polishing port 21, a sealing slide block 22, a sealing spring 23, a sealing slide rod 24, a sealing cover 25 and a sonic vibrator 26, wherein the sealing rod 20 is symmetrically arranged on the upper walls of two ends of the polishing barrel 18, the polishing port 21 is symmetrically arranged on the upper wall of the polishing barrel 18, the sealing slide block 22 is slidably arranged on the outer side of the sealing rod 20, the sealing spring 23 is arranged between the bottom wall of the sealing slide block 22 on the outer side of the sealing rod 20 and the upper wall of the polishing barrel 18, the sealing slide rod 24 is arranged on the side wall of the sealing slide block 22, the sealing slide rod 24 is oppositely arranged, the sealing cover 25 is arranged on one side, away from the sealing slide block 22, of the sealing slide rod 24, the sealing cover 25 is arranged above the polishing port 21, the sonic vibrator 26 is arranged on the upper wall of the polishing barrel 18 between the polishing ports 21, and the power end of the sonic vibrator 26 penetrates through the inner wall of the polishing barrel 18; the impurity collecting mechanism 27 comprises an impurity port 28 and a collecting box 29, the impurity port 28 is arranged on the bottom wall of one end of the polishing barrel 18 close to the left support plate 2, the collecting box 29 is arranged on the inner wall of the left support plate 2 below the positioning groove 14, and the collecting box 29 is arranged with an opening at the upper end; in an initial state, the sealing spring 23 is in a shortened state, the sealing slide block 22 slides along the sealing rod 20 to drive the sealing cover 25 to be clamped into the polishing opening 21, when the polishing machine is used, the sealing slide rod 24 is pulled, the sealing slide rod 24 drives the sealing slide block 22 to slide and rise along the sealing rod 20 through deformation of the sealing spring 23, the sealing cover 25 is far away from the polishing opening 21, a motor shaft to be polished is placed into the polishing barrel 18, the sealing slide rod 24 is loosened, the sealing spring 23 elastically resets to drive the sealing slide block 22 to slide and fall along the sealing rod 20, the sealing slide block 22 drives the sealing cover 25 to be clamped into the polishing opening 21 through the sealing slide rod 24, the angle bolt 12 is rotated, the angle bolt 12 drives the angle frame 10 to rise through the angle threaded hole 11, the polishing barrel 18 rotates around one end of the angle frame 10 under the action of the angle hinge block 13, one end, far away from the angle block 13, of the polishing barrel 18 rotates around the threaded column 15 through the hinge block 17, the polishing barrel 18 is changed from a horizontal state into an inclined state, the locking nut 16 rotates along the threaded column 15 to fix the inclination angle of the polishing barrel 18, at the impurities are positioned above the opening 28, the opening, the impurities flow into the sound wave collection box 18, and then the scrap iron is input into the sound collection box 18 through the sound collection box, and the sound collection box 18.
The double-dynamic clamping mechanism 31 comprises a liquid cylinder 32, a liquid flow rod 33, a liquid flow plate 34, a fixed magnet 35, a movable magnet 36, a rotary clamping block 37, an intermediate plate 38, a clamping spring 39 and an opposite clamping block 40, wherein the liquid cylinder 32 is symmetrically arranged on the inner wall of two ends of the polishing cylinder 18, the liquid flow rod 33 is symmetrically arranged on the inner wall of the liquid cylinder 32, the fixed magnet 35 is symmetrically arranged on two ends of the liquid flow rod 33, the liquid flow plate 34 is slidably arranged between the liquid flow rods 33, two movable magnets 36 are a group of liquid flow plate 34 side walls symmetrically arranged on the outer side of the liquid flow rod 33, the fixed magnet 35 and the movable magnet 36 are oppositely arranged, the movable magnet 36 and the fixed flow plate 35 on one side of the liquid flow plate 34 close to the left support plate 2 are arranged in the same polarity, the movable magnet 36 and the fixed magnet 35 on one side of the liquid flow plate 34 far away from the left support plate 2 are arranged in different polarity, the rotary clamping block 37 is arranged on the liquid flow plate 34 in a penetrating way, the rotary clamping block 37 is rotatably arranged on the liquid flow 34, the intermediate plate 38 is arranged on the inner wall of the polishing cylinder 18, the clamping spring 39 is symmetrically arranged on two sides far away from the clamping block 40, and the inner wall of the rotary clamping block 39 is arranged on one side of the polishing cylinder 18 far away from the clamping block 40; the driving mechanism 41 comprises a driving motor 42, a driving shaft 43, a hydraulic shaft 44 and transmission blades 45, the driving motor 42 is symmetrically arranged at two sides of the polishing barrel 18, the driving shaft 43 penetrates through the polishing barrel 18 and is arranged at the power end of the driving motor 42, the hydraulic shaft 44 is arranged at one side of the rotating clamping block 37 close to the driving shaft 43, and the transmission blades 45 are respectively arranged at the outer sides of the driving shaft 43 and the hydraulic shaft 44; the lateral wall of one end of the motor shaft is firstly abutted against the rotating block 63, the relative clamping block 40 is shortened through the deformation of the clamping spring 39, then one end of the motor shaft, which is far away from the relative clamping block 40, is inserted into the liquid cylinder 32 and abutted against the rotating clamping block 37, under the action of repulsion force pushing and magnetic force adsorption, the motor shaft is clamped between the rotating clamping block 37 and the relative clamping block 40, the driving motor 42 drives the driving shaft 43 to rotate, the driving shaft 43 drives the transmission liquid inside the liquid cylinder 32 to rotate through the transmission blade 45, the transmission liquid drives the hydraulic shaft 44 to rotate through the transmission blade 45, the hydraulic shaft 44 drives the rotating clamping block 37 to rotate, and the rotating clamping block 37 drives the motor shaft to rotate.
The guide movement mechanism 47 comprises guide openings 48, guide limit columns 49, polishing threaded holes 50, polishing bolts 51, carrying semicircular plates 52 and rubber layers 53, wherein multiple groups of the guide openings 48 are symmetrically arranged at two sides of the polishing barrel 18, the guide limit columns 49 are arranged inside the guide openings 48 in a sliding manner, the polishing threaded holes 50 are arranged on the side wall of the polishing barrel 18 between the guide openings 48, the polishing bolts 51 are arranged inside the polishing threaded holes 50, the polishing bolts 51 are in threaded connection with the polishing threaded holes 50, the carrying semicircular plates 52 are arranged at one sides, close to the polishing barrel 18, of the guide limit columns 49, the carrying semicircular plates 52 are arranged inside the polishing barrel 18, one sides, close to the carrying semicircular plates 52, of the polishing bolts 51 are rotatably arranged on the side wall of the carrying semicircular plates 52, the rubber layers 53 are arranged at one sides, far away from the polishing bolts 51, of the carrying semicircular plates 52, and the rubber layers 53 are oppositely arranged; the phase change absorption mechanism 54 comprises a groove 55, a solid-liquid phase change layer 56, a polishing layer 57 and a heat dissipation column 58, wherein the groove 55 is symmetrically arranged on the side wall of the object carrying semicircular plate 52, the groove 55 is arranged with an opening at one end, the solid-liquid phase change layer 56 is arranged on the inner wall of the groove 55, the polishing layer 57 is arranged on one side of the rubber layer 53 far away from the object carrying semicircular plate 52, the solid-liquid phase change layer 56 penetrates through the rubber layer 53 and is attached to the polishing layer 57, and the heat dissipation column 58 sequentially penetrates through the polishing cylinder 18 and the object carrying semicircular plate 52 and is arranged inside the groove 55; the bottom wind control mechanism 59 comprises heat dissipation grooves 60 and heat dissipation fans 61, wherein multiple groups of heat dissipation grooves 60 are arranged on the bottom wall of the base 1, the heat dissipation grooves 60 are cavities with openings at the upper ends, and the heat dissipation fans 61 are arranged inside the heat dissipation grooves 60; rotate polishing bolt 51, polishing bolt 51 drives year thing semicircle board 52 relative motion, it drives polishing layer 57 and motor shaft surface laminating to carry thing semicircle board 52 through the spacing post 49 of direction along 48 removals of direction mouth, the high-speed rotation of motor shaft rubs with polishing layer 57, solid-liquid phase change layer 56 takes place the phase transition and absorbs the heat along with the rising of frictional temperature, thereby control the frictional temperature between motor shaft and the polishing layer 57, reduce the probability of motor shaft surface burn, heat dissipation post 58 exports the partial heat of solid-liquid phase change layer 56, heat dissipation fan 61 dispels the heat to heat dissipation post 58, keep solid-liquid phase change layer 56 to thermal high-efficient absorption.
The controller 62 is arranged on the side wall of the right support plate 3, and the controller 62 is electrically connected with the sound vibrator 26, the driving motor 42 and the heat dissipation fan 61 respectively.
The controller 62 is of the type SYC89C52RC-401.
In a specific use process, in the first embodiment, in an initial state, the sealing spring 23 is in a shortened state, the sealing slider 22 slides along the sealing rod 20 to drive the sealing cover 25 to be clamped into the polishing opening 21, when the polishing device is used, the sealing slider 24 is pulled, the sealing slider 24 drives the sealing slider 22 to slide and rise along the sealing rod 20 through deformation of the sealing spring 23, and the sealing cover 25 is far away from the polishing opening 21.
Specifically, a motor shaft to be polished is placed inside a polishing barrel 18, the side wall of one end of the motor shaft abuts against the side wall of a rotating block 63, a relative clamping block 40 is deformed and shortened through a clamping spring 39, then one end, far away from the relative clamping block 40, of the motor shaft is inserted into a liquid barrel 32 and abuts against a rotating clamping block 37, the motor shaft is clamped between the rotating clamping block 37 and the relative clamping block 40 under the action of repulsion force pushing and magnetic force adsorption, a sealing slide rod 24 is loosened, elastic resetting of a sealing spring 23 drives a sealing slide block 22 to slide down along a sealing rod 20, the sealing slide block 22 drives a sealing cover 25 to be clamped into a polishing opening 21 through the sealing slide rod 24, an angle bolt 12 is rotated, the angle bolt 12 drives an angle frame 10 to ascend height through an angle threaded hole 11, the polishing barrel 18 rotates around one end of the angle frame 10 under the action of an angle hinge block 13, one end, far away from the angle hinge block 13, rotates around a threaded column 15 through a positioning block 17, the polishing barrel 18 is changed from a horizontal state into an inclined state, a lock nut 16 rotates close to the positioning block 17 to fix an inclined angle of the positioning block 17, impurities above the polishing barrel 18, the polishing barrel 18 is positioned above the polishing barrel, and drives a semi-circle loading bolt 51 to move along a semi-circle loading guide plate 52, and a semi-circle loading guide plate 52 moves along a semi-circle loading guide plate 52;
the controller 62 controls the driving motor 42 to rotate, the driving motor 42 drives the driving shaft 43 to rotate, the driving shaft 43 drives the transmission liquid in the liquid cylinder 32 to rotate through the transmission blade 45, the transmission liquid drives the hydraulic driving shaft 44 to rotate through the transmission blade 45, the hydraulic driving shaft 44 drives the rotating clamping block 37 to rotate, the rotating clamping block 37 drives the motor shaft to rotate, and the polishing layer 57 performs polishing operation on the motor shaft rotating at a high speed;
the controller 62 controls the sound vibrator 26 to start, the sound vibrator 26 inputs sound waves into the polishing barrel 18 through the power end, and iron chips inside the polishing barrel 18 are vibrated through the action of the sound waves and flow into the collecting box 29 through the impurity opening 28 along the bottom wall of the polishing barrel 18 for storage.
Second embodiment, this embodiment is based on the above embodiment, the motor shaft rotates at a high speed to rub against the polishing layer 57, and the solid-liquid phase change layer 56 changes phase to absorb heat as the friction temperature increases, so as to control the friction temperature between the motor shaft and the polishing layer 57, and reduce the possibility of surface burn of the motor shaft.
Specifically, the heat dissipation column 58 guides out part of heat of the solid-liquid phase change layer 56, the controller 62 controls the heat dissipation fan 61 to start, the heat dissipation fan 61 dissipates heat of the heat dissipation column 58, efficient absorption of heat by the solid-liquid phase change layer 56 is kept, the friction temperature between the polishing layer 57 and the motor shaft is ensured not to be overheated, and the motor shaft is prevented from being damaged; repeating the above operation when using next time.
It should be noted that, in this document, relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present solution have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the solution, the scope of which is defined in the appended claims and their equivalents.
The present solution and its embodiments have been described above, but the description is not limited thereto, and what is shown in the drawings is only one of the embodiments of the present solution, and the actual structure is not limited thereto. In summary, those skilled in the art should be able to devise similar structural modes and embodiments without inventing any departure from the spirit and scope of the present disclosure.

Claims (10)

1. The utility model provides a based on type motor shaft is with slope vibratory finishing machine is intervene to sound wave, includes base (1), left support plate (2) and right branch fagging (3), its characterized in that: the angle adjusting type sound control mechanism comprises an angle adjusting type sound control mechanism (4), a fluid transmission type slide rod mechanism (30) and a solid-liquid transition type heat storage mechanism (46), wherein the left support plate (2) is arranged on the upper wall of the base (1), the right support plate (3) is arranged on the upper wall of one end, far away from the left support plate (2), of the base (1), the angle adjusting type sound control mechanism (4) is arranged at one end, far away from the base (1), of the left support plate (2) and the right support plate (3), the fluid transmission type slide rod mechanism (30) is arranged on the angle adjusting type sound control mechanism (4), the solid-liquid transition type heat storage mechanism (46) is arranged on the side wall of the angle adjusting type sound control mechanism (4), the angle adjusting type sound control mechanism (4) comprises an angle adjusting mechanism (5), a sealing sound explosion mechanism (19) and an impurity collecting mechanism (27), the angle adjusting type sound control mechanism (4) is arranged at one end of the left support plate (2) and the right support plate (3), the sealing sound explosion mechanism (19) is arranged on the upper wall of the angle adjusting mechanism (5), the impurity collecting mechanism (27) is arranged on the right support plate (3), and the fluid transmission mechanism (31) comprises a double dynamic clamping mechanism (31) and an angle adjusting mechanism (31), angle modulation type sound accuse mechanism (4) lateral wall is located in actuating mechanism (41), solid-liquid transformation type heat-retaining mechanism (46) are including direction motion (47), phase transition absorbing mechanism (54) and bottom wind accuse mechanism (59), angle modulation type sound accuse mechanism (4) lateral wall is located in direction motion (47), one side that direction motion (47) are close to angle modulation type sound accuse mechanism (4) is located in phase transition absorbing mechanism (54), base (1) upper wall between left branch fagging (2) and right branch fagging (3) is located in bottom wind accuse mechanism (59).
2. The machine according to claim 1, wherein the machine comprises: angle adjustment mechanism (5) are including adjustment tank (6), rotation groove (7), spout (8), angle slide bar (9), angle frame (10), angle screw hole (11), angle bolt (12), the articulated piece of angle (13), constant head tank (14), screw thread post (15), lock nut (16), locating piece (17) and polishing barrel (18), the one end of base (1) is kept away from in left support plate (2) is located in adjustment tank (6), adjustment tank (6) is for lining up the setting, left support plate (2) lateral wall below adjustment tank (6) is located in rotation groove (7), rotation groove (7) are for lining up the setting, adjustment tank (6) both sides inner wall is located to spout (8) symmetry, spout (8) inner wall is located in angle slide bar (9) slip, angle frame (10) are located between angle slide bar (9), angle frame (10) diapire is located to angle screw hole (11), angle bolt (12) run through rotation groove (7) and locate angle screw hole (11) inner wall, angle bolt (12) rotate on angle groove (7).
3. The acoustic wave intervention-based inclined vibration polishing machine for the motor shaft as claimed in claim 2, wherein: angle bolt (12) and angle screw hole (11) threaded connection, the articulated one end of locating angle frame (10) and keeping away from angle bolt (12) of angle articulated piece (13), the one end of keeping away from base (1) is located right branch fagging (3) in constant head tank (14), constant head tank (14) are for lining up the setting, constant head tank (14) both sides inner wall is located to screw thread post (15) symmetry, screw thread post (15) outside is located in lock nut (16), lock nut (16) and screw thread post (15) threaded connection, locating piece (17) are rotated and are located between screw thread post (15), angle articulated piece (13) and locating piece (17) upper wall are located in polishing barrel (18).
4. The acoustic wave intervention-based inclined vibration polishing machine for the motor shaft as claimed in claim 3, wherein: sealed sonic boom mechanism (19) is including sealing rod (20), polishing mouth (21), sealed slider (22), sealing spring (23), sealed slide bar (24), sealed lid (25) and sound vibrator (26), polishing section of thick bamboo (18) both ends upper wall is located to sealing rod (20) symmetry, polishing mouth (21) symmetry is located polishing section of thick bamboo (18) upper wall, sealing slider (22) slide and locate sealing rod (20) outside, sealing spring (23) are located between sealing slider (22) diapire in sealing rod (20) outside and polishing section of thick bamboo (18) upper wall, sealing slider (22) lateral wall is located in sealing slide bar (24), sealed slide bar (24) set up relatively.
5. The acoustic wave intervention-based inclined vibration polishing machine for the motor shaft as claimed in claim 4, wherein: the sealing cover (25) is arranged on one side, away from the sealing slide block (22), of the sealing slide rod (24), the sealing cover (25) is arranged above the polishing openings (21), the sound vibrator (26) is arranged on the upper wall of the polishing barrel (18) between the polishing openings (21), and the power end of the sound vibrator (26) penetrates through the inner wall of the polishing barrel (18); the impurity collecting mechanism (27) comprises an impurity opening (28) and a collecting box (29), the impurity opening (28) is arranged on the bottom wall of one end, close to the left support plate (2), of the polishing barrel (18), the collecting box (29) is arranged on the inner wall of the left support plate (2) below the positioning groove (14), and the collecting box (29) is arranged with an opening at the upper end.
6. The acoustic wave intervention-based inclined vibration polishing machine for the motor shaft as claimed in claim 5, wherein: double-dynamic fixture (31) include liquid section of thick bamboo (32), liquid pole (33), liquid flow board (34), fixed magnet (35), removal magnet (36), rotate grip block (37), intermediate lamella (38), clamping spring (39), relative grip block (40) and rotatory piece (63), polishing barrel (18) both ends inner wall is located to liquid section of thick bamboo (32) symmetry, liquid section of thick bamboo (32) inner wall is located to liquid flow pole (33) symmetry, liquid flow pole (33) both ends are located to fixed magnet (35) symmetry, liquid flow board (34) slide and locate between liquid flow pole (33), two liang of two of liquid flow board (34) lateral walls of locating the liquid flow pole (33) outside for a set of symmetry in removal magnet (36), fixed magnet (35) set up with removal magnet (36) relatively, liquid flow board (34) are close to removal magnet (36) and fixed magnet (35) homopolar setting of left branch fagging (2) one side.
7. The acoustic wave intervention-based inclined vibration polishing machine for the motor shaft as claimed in claim 6, wherein: the liquid flows removal magnet (36) and fixed magnet (35) heteropolarity setting of keeping away from left branch fagging (2) one side in board (34), rotate grip block (37) and run through and locate on liquid flows board (34), rotate grip block (37) and rotate and locate on liquid flows board (34), inner wall in the middle of polishing barrel (18) is located in intermediate lamella (38) symmetry to intermediate lamella (39), one side of intermediate lamella (38) is kept away from in grip block (39) is located in relative grip block (40), and relative grip block (40) slide and locate polishing barrel (18) inner wall, one side of keeping away from grip spring (39) is located in relative grip block (40) in rotatory piece (63).
8. The acoustic wave intervention-based inclined vibration polishing machine for the motor shaft as claimed in claim 7, wherein: drive mechanism (41) include driving motor (42), drive shaft (43), axle (44) and transmission blade (45) surges, polishing barrel (18) both sides are located to driving motor (42) symmetry, drive shaft (43) run through polishing barrel (18) and locate driving motor (42) power end, rotation grip block (37) is located in liquid shaft (44) and is close to one side of drive shaft (43), the drive shaft (43) and the axle (44) outside of surging are located respectively in transmission blade (45).
9. The machine according to claim 8, wherein the machine comprises: guide motion mechanism (47) are including direction mouth (48), spacing post of direction (49), polishing screw hole (50), polishing bolt (51), year thing semicircle board (52) and rubber layer (53), polishing barrel (18) both sides are located to direction mouth (48) multiunit symmetry, direction spacing post (49) slide locate inside direction mouth (48), polishing barrel (18) lateral wall between direction mouth (48) is located in polishing screw hole (50), inside polishing bolt (51) is located polishing screw hole (50), polishing bolt (51) and polishing screw hole (50) threaded connection, one side that spacing post of direction (49) is close to polishing barrel (18) is located to year thing semicircle board (52), it locates inside polishing barrel (18) to carry thing semicircle board (52), one side rotation that polishing bolt (51) is close to year thing board (52) is located year thing semicircle board (52) lateral wall, one side that year thing semicircle board (52) was kept away from polishing bolt (51) is located to rubber layer (53), rubber layer (53) set up relatively.
10. The acoustic wave intervention-based inclined vibration polishing machine for the motor shaft as claimed in claim 9, wherein: the phase change absorption mechanism (54) comprises a groove (55), a solid-liquid phase change layer (56), a polishing layer (57) and a heat dissipation column (58), wherein the groove (55) is symmetrically arranged on the side wall of the object carrying semicircular plate (52), the groove (55) is provided with an opening at one end, the solid-liquid phase change layer (56) is arranged on the inner wall of the groove (55), the polishing layer (57) is arranged on one side, away from the object carrying semicircular plate (52), of the rubber layer (53), the solid-liquid phase change layer (56) penetrates through the rubber layer (53) to be attached to the polishing layer (57), and the heat dissipation column (58) sequentially penetrates through the polishing barrel (18) and the object carrying semicircular plate (52) and is arranged inside the groove (55); bottom wind-operated mechanism (59) include radiating groove (60) and heat dissipation fan (61), base (1) diapire is located to radiating groove (60) multiunit, radiating groove (60) are upper end open-ended cavity, inside radiating groove (60) was located to heat dissipation fan (61).
CN202211283003.1A 2022-10-20 2022-10-20 Type motor shaft is with slope vibratory finishing machine based on sound wave is intervene Active CN115351696B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202211283003.1A CN115351696B (en) 2022-10-20 2022-10-20 Type motor shaft is with slope vibratory finishing machine based on sound wave is intervene

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202211283003.1A CN115351696B (en) 2022-10-20 2022-10-20 Type motor shaft is with slope vibratory finishing machine based on sound wave is intervene

Publications (2)

Publication Number Publication Date
CN115351696A true CN115351696A (en) 2022-11-18
CN115351696B CN115351696B (en) 2023-03-31

Family

ID=84008105

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202211283003.1A Active CN115351696B (en) 2022-10-20 2022-10-20 Type motor shaft is with slope vibratory finishing machine based on sound wave is intervene

Country Status (1)

Country Link
CN (1) CN115351696B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117047639A (en) * 2023-08-17 2023-11-14 维致新材料科技(南通)有限公司 Mould burnishing device

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3390490A (en) * 1964-09-19 1968-07-02 Walther Technik Carl Kurt Walt Device for processing surfaces
US5512008A (en) * 1993-07-27 1996-04-30 General Kinematics Corporation Vibratory tumbling apparatus
US6416384B1 (en) * 1997-07-30 2002-07-09 Ebara Corporation Method and apparatus for polishing
CN208262556U (en) * 2018-06-14 2018-12-21 泉州妍颖贸易有限公司 A kind of novel furniture burnishing device
CN112123151A (en) * 2020-09-15 2020-12-25 湖南常德牌水表制造有限公司 Cast iron pipe section ultrasonic water meter production is with grinding device who has iron fillings clearance mechanism
CN213380906U (en) * 2020-07-15 2021-06-08 醴陵市湘昊陶瓷科技有限公司 Burnishing machine for ceramic manufacture
CN214723271U (en) * 2021-04-28 2021-11-16 安徽建源木业有限公司 But angle regulation's multiply wood burnishing device
CN214869611U (en) * 2021-06-30 2021-11-26 云南孤狼翼族生物科技有限公司 Burnishing machine is used in soft capsule processing
CN217097133U (en) * 2022-04-09 2022-08-02 山东硕鑫智能装备有限公司 Dust collecting structure of bottom surface sanding machine

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3390490A (en) * 1964-09-19 1968-07-02 Walther Technik Carl Kurt Walt Device for processing surfaces
US5512008A (en) * 1993-07-27 1996-04-30 General Kinematics Corporation Vibratory tumbling apparatus
US6416384B1 (en) * 1997-07-30 2002-07-09 Ebara Corporation Method and apparatus for polishing
CN208262556U (en) * 2018-06-14 2018-12-21 泉州妍颖贸易有限公司 A kind of novel furniture burnishing device
CN213380906U (en) * 2020-07-15 2021-06-08 醴陵市湘昊陶瓷科技有限公司 Burnishing machine for ceramic manufacture
CN112123151A (en) * 2020-09-15 2020-12-25 湖南常德牌水表制造有限公司 Cast iron pipe section ultrasonic water meter production is with grinding device who has iron fillings clearance mechanism
CN214723271U (en) * 2021-04-28 2021-11-16 安徽建源木业有限公司 But angle regulation's multiply wood burnishing device
CN214869611U (en) * 2021-06-30 2021-11-26 云南孤狼翼族生物科技有限公司 Burnishing machine is used in soft capsule processing
CN217097133U (en) * 2022-04-09 2022-08-02 山东硕鑫智能装备有限公司 Dust collecting structure of bottom surface sanding machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117047639A (en) * 2023-08-17 2023-11-14 维致新材料科技(南通)有限公司 Mould burnishing device
CN117047639B (en) * 2023-08-17 2024-04-19 维致新材料科技(南通)有限公司 Mould burnishing device

Also Published As

Publication number Publication date
CN115351696B (en) 2023-03-31

Similar Documents

Publication Publication Date Title
CN115351696B (en) Type motor shaft is with slope vibratory finishing machine based on sound wave is intervene
CN210378778U (en) Improved capacitor dipping machine
CN214412448U (en) Mount for motor disassembly convenient to disassemble and assemble
CN215117448U (en) Heat dissipation frame for cloud computing host
CN211103277U (en) Surface rust removing device for petroleum drilling tool
CN213517479U (en) Low-temperature discharge performance stabilizing device for digital battery
CN211249378U (en) Novel copper ring inside and outside polishing device
CN212343535U (en) Adjustable damping motor
CN207206039U (en) A kind of burr remover for automobile brake sheet
CN213396347U (en) A high-efficient drying device for metal powder
CN111823107A (en) Surface treatment equipment for aluminum product processing production and operation method thereof
CN213560183U (en) Cutting device is used in processing of miniature module
CN213888512U (en) Grinding device for gear machining
CN219761616U (en) Multi-frequency variable frequency cabinet with adjustable
CN218834923U (en) Coating device for packaging box
CN214790205U (en) Permanent magnet coupling test bed adjusting device
CN217978071U (en) Radiating LED liquid crystal display
CN218760551U (en) Adjustable fixing base of kiln dust removal fan based on rotation type
CN220699146U (en) Spherical processing device for massive hard carbon anode material
CN213020896U (en) Improve processing equipment that nickel plating diamond does not agglomerate
CN213136295U (en) Metal casting surface treatment device
CN219644341U (en) Computer cabinet cooling equipment
CN216427333U (en) High-frequency induction heating equipment for metal heat treatment
CN217058151U (en) Cooling device for processing glass fiber reinforced plastics
CN214396841U (en) A transportation frame for bearing computer hard disk

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant