CN214162567U - Burnishing machine is used in production of 8K mirror surface stainless steel container - Google Patents

Burnishing machine is used in production of 8K mirror surface stainless steel container Download PDF

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Publication number
CN214162567U
CN214162567U CN202120101434.6U CN202120101434U CN214162567U CN 214162567 U CN214162567 U CN 214162567U CN 202120101434 U CN202120101434 U CN 202120101434U CN 214162567 U CN214162567 U CN 214162567U
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China
Prior art keywords
polishing
base
cotton layer
fixed
stainless steel
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CN202120101434.6U
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Chinese (zh)
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张中鑫
过继洲
张文军
王新胜
李鹏
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Jiaozuo Kekai Fluoroplastic Machinery Co ltd
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Jiaozuo Kekai Fluoroplastic Machinery Co ltd
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Abstract

The utility model discloses a burnishing machine is used in production of 8K mirror surface stainless steel container relates to the relevant technical field of stainless steel processing. The utility model discloses a base, hook post, the cotton layer of polishing, driving motor and pillar, the central authorities at base top have seted up and have held the chamber, hold the intracavity annular array and be provided with the hook post, and the top of base top central authorities is provided with the cotton layer of polishing, and the top on the cotton layer of polishing is provided with driving motor, and the rear side at base top is fixed with the pillar, and the top of pillar is fixed with the raceway. The utility model discloses a set up base, hook post, the cotton layer of polishing, driving motor and pillar, solved the degree of consistency of current burnishing machine polishing and leaded to the effect of polishing relatively poor inadequately and do not have the problem that has stainless steel container cleaning function concurrently.

Description

Burnishing machine is used in production of 8K mirror surface stainless steel container
Technical Field
The utility model belongs to the technical field of the stainless steel processing is relevant, especially relate to a burnishing machine is used in production of 8K mirror surface stainless steel container.
Background
The fine grinding of the stainless steel container is carried out by a polishing machine, the polishing machine is an electric tool, the polishing machine comprises basic elements such as a base, a polishing disc, a polishing fabric, a polishing cover and a cover, a motor is fixed on the base, a taper sleeve for fixing the polishing disc is connected with a motor shaft through a screw, the polishing fabric is fastened on the polishing disc through a ferrule, after the motor is started by switching on a switch on the base, the motor can apply pressure to a sample by hand to polish on the rotating polishing disc, polishing liquid added in the polishing process can flow into a square disc beside the polishing machine through a drain pipe in a plastic disc fixed on the base, and the polishing cover and the cover can prevent dust and other sundries from falling on the polishing fabric to affect the using effect when the polishing machine is not used, but the polishing cover and the polishing machine have the following defects in practical use:
1. when the existing polishing machine polishes a stainless steel container, the polishing agent is coated in advance, and the polishing agent is not uniformly coated, so that the polishing uniformity is not enough, and the polishing effect is poor;
2. the prior polishing machine needs to clean the stainless steel container after polishing the stainless steel container, and has no cleaning function of the stainless steel container.
Therefore, the existing polishing machine cannot meet the requirement in practical use, so that the market urgently needs improved technology to solve the problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a burnishing machine is used in production of 8K mirror surface stainless steel container, through setting up base, hook post, the cotton layer of polishing, driving motor and pillar, solved the degree of consistency of current burnishing machine polishing and leaded to the polishing not enough the effect relatively poor and do not have the problem that has the stainless steel container cleaning function concurrently.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to a burnishing machine is used in production of 8K mirror surface stainless steel container, including base, hooked column, the cotton layer of polishing, driving motor and pillar, the central authorities at base top have seted up and have held the chamber, it is provided with the hooked column to hold the intracavity annular array, the top of base top central authorities is provided with the cotton layer of polishing, the top on the cotton layer of polishing is provided with driving motor, the rear side at base top is fixed with the pillar, the top of pillar is fixed with the raceway, the utility model discloses a base will the utility model discloses a support subaerial, through the base with the hooked column restriction wherein, restrict the stainless steel container through the hooked column, through the cooperation of polishing cotton layer and driving motor, polish the stainless steel container of hooked column restriction on the base, will wash the conveyer pipe of the stainless steel container water after polishing to fix on the base through the pillar.
Furthermore, the both sides at base top have all been seted up the liter hole, all the cover is equipped with the column that rises in the liter hole, the apopore has been seted up to one side on base front side upper portion, the bottom central authorities that hold the chamber on the base have seted up the top chamber, first gas transmission hole has all been seted up to the bottom of base both sides, first gas transmission hole has all been cup jointed first gas-supply pipe in, first gas transmission hole all communicates with the liter hole that corresponds, and the base is through the drive of the air of the interior column that cup joints of liter on it in first gas-supply pipe, carries out the lifting with the fagging.
Furthermore, a second gas transmission hole is formed in the bottom of the front side of the base and is communicated with the top cavity, a second gas transmission pipe is fixedly sleeved in the second gas transmission hole, a bottom sealing block is fixedly arranged on the base at the bottom of the top cavity, and the base transmits gas for driving the top column to the top cavity through the second gas transmission pipe sleeved in the second gas transmission hole.
Further, the bottom of the hook column is fixed with a matching plate, the bottom of the matching plate is fixed with a bottom plate, the bottom of the bottom plate is fixed with the bottom of the cavity on the base, a top opening is formed in the center of the top of the bottom plate, a top column is sleeved in the top opening, the bottom of the top column is sleeved in a top cavity on the base, and the hook column clamps a stainless steel container needing polishing on the base.
Furthermore, the polishing cotton layer is fixedly sleeved inside the polishing cotton layer, a jack is formed in the center of the top of the dispersed cotton layer, an inserting column is fixedly inserted into the jack in an inserting mode, a top disc is arranged on the top of the polishing cotton layer, a top opening is formed in the center of the top disc, a conveying port is formed in the top disc on the front side of the top opening, and polishing agents conveyed by the conveying port in the top disc are uniformly dispersed onto the polishing cotton layer through the dispersed cotton layer.
Further, driving motor's bottom is fixed with the fagging, two of the bottom both sides of fagging are fixed and are risen the post top on the base, driving motor's output is fixed with the drive shaft, the upper portion and the fagging of drive shaft week side are rotated and are connected, the bottom side of drive shaft is fixed at the top of inserting the post, the bottom of drive shaft week side rotates with the top opening on the cotton layer top of polishing and cup joints, the fagging below of drive shaft both sides all is fixed with the spliced pole, the bottom of spliced pole all is fixed in the bottom of drive shaft week side and the cotton layer top of polishing top of the layer top of polishing, and the power that driving motor produced drives the cotton layer of polishing through the drive shaft transmission above that and rotates and polishes the stainless steel container.
The utility model discloses following beneficial effect has:
1. the utility model discloses a set up the cotton layer of polishing, solved the degree of consistency of current burnishing machine polishing and leaded to the relatively poor problem of effect of polishing inadequately, carry the polishing agent through the transport opening of seting up on the cotton layer of polishing on the top dish on the cotton layer of polishing on the dispersion cotton, carry out homodisperse through the dispersion cotton and arrive the cotton layer surface of polishing, make the cotton layer of polishing agent even polishing when polishing, make the effect of polishing more even, the stainless steel surface of polishing out is more smooth.
2. The utility model discloses a set up base, hook post, the cotton layer of polishing, driving motor and pillar, solved current burnishing machine and did not have the problem that has stainless steel container cleaning function concurrently, fix the pillar on the base through the base, fix the raceway in the base top through the pillar, after the polishing, on the raceway will wash the water and carry the stainless steel container who holds the chamber in through the restriction of hook post, wash the stainless steel container after the polishing under driving motor driven polishing cotton layer rotates.
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 a perspective view of the assembly structure of the present invention;
FIG. 2 is a perspective view of the base structure of the present invention;
FIG. 3 is a perspective view of the hook post structure of the present invention;
FIG. 4 is a perspective view of the structure of the polishing cotton layer of the present invention;
FIG. 5 is a perspective view of the driving motor of the present invention;
fig. 6 is a perspective view of the pillar structure of the present invention.
In the drawings, the components represented by the respective reference numerals are listed below:
100. a base; 101. a cavity; 102. lifting the hole; 103. lifting the column; 104. a top chamber; 105. a first gas transmission hole; 106. a first gas delivery pipe; 107. a bottom sealing block; 108. a second gas transmission hole; 109. a second gas delivery pipe; 110. a water outlet hole; 200. hooking the column; 201. a top opening; 202. a mating plate; 203. a base plate; 204. a top pillar; 300. polishing the cotton layer; 301. dispersing cotton; 302. a jack; 303. inserting a column; 304. a top tray; 305. a top opening; 306. a delivery port; 400. a drive motor; 401. a supporting plate; 402. a drive shaft; 403. connecting columns; 500. a pillar; 501. a water delivery pipe.
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. 1-6, the present invention relates to a polishing machine for producing 8K mirror surface stainless steel container, comprising a base 100, a hooking rod 200, a polishing cotton layer 300, a driving motor 400 and a pillar 500, wherein the center of the top of the base 100 is provided with a cavity 101, the base 100 supports the polishing machine on the ground, the cavity 101 holds the hooking rod 200 on the base 100, the circular array of the hooking rods 200 is arranged in the cavity 101, a plurality of hooking rods 200 are fixed on a bottom plate 203 for matching, the stainless steel container to be polished is held therein, the polishing cotton layer 300 is arranged above the center of the top of the base 100, the polishing cotton layer 300 is driven by the driving motor 400 to polish the stainless steel container clamped on the hooking rod 200, the driving motor 400 is arranged above the polishing cotton layer 300, the driving motor 400 drives the polishing cotton layer 300 to rotate, the pillar 500 is fixed on the rear side of the top of the base 100, the water pipe 501 is fixed on the top of the support column 500, and the water pipe 501 is supported on the support column 500, so that the water pipe 501 washes the chips generated in the polishing process of cleaning the stainless steel container and the polishing agent on the chips.
As shown in fig. 1 and 2, lifting holes 102 are formed on both sides of the top of the base 100, the lifting holes 102 are used for sleeving the lifting columns 103 on the base 100, the lifting columns 103 are sleeved in the lifting holes 102, the lifting columns 103 are used for lifting the supporting plate 401 under the driving of air conveyed in first air conveying pipes 106 in first air conveying holes 105, one side of the upper part of the front side of the base 100 is provided with water outlet holes 110, the water outlet holes 110 are used for conveying water conveyed into the accommodating cavity 101 in the water conveying pipe 501 for cleaning and polishing machine out of the base 100, the center of the bottom of the accommodating cavity 101 on the base 100 is provided with a top cavity 104, the bottom of the top column 204 is sleeved in the base 100 by the top cavity 104, the first air conveying holes 105 are formed in the bottoms of both sides of the base 100, the first air conveying holes 105 are used for sleeving the first air conveying pipes 106 on both sides of the base 100, the first air conveying holes 105 are all sleeved with the first air conveying pipes 106, the lifting columns 103 conveyed in the first air conveying pipes 106 are used for lifting the lifting to lift the supporting plate 401, the first air delivery holes 105 are all communicated with the corresponding lifting holes 102, and the base 100 lifts the supporting plate 401 under the driving of air delivered in the first air delivery pipe 106 through the lifting columns 103 sleeved in the lifting holes 102 on the base.
As shown in fig. 1 and 2, a second air delivery hole 108 is formed in the bottom of the front side of the base 100, a second air delivery pipe 109 is sleeved on the base 100 through the second air delivery hole 108, the second air delivery hole 108 is communicated with the top cavity 104, the second air delivery pipe 109 is fixedly sleeved in the second air delivery hole 108, the second air delivery pipe 109 delivers air for lifting the top pillar 204 to the top cavity 104, a bottom sealing block 107 is fixed on the base 100 at the bottom of the top cavity 104, the bottom sealing block 107 seals the bottom of the top cavity 104, and the base 100 delivers air for driving the top pillar 204 to the top cavity 104 through the second air delivery pipe 109 sleeved in the second air delivery hole 108.
As shown in fig. 1 and 3, the bottom of the hook column 200 is fixed with a matching plate 202, the matching plate 202 connects the hook column 200 with a bottom plate 203, the bottom of the matching plate 202 is fixed with a bottom plate 203, the bottom plate 203 fixes the hook column 200 with the bottom of the upper cavity 101 of the base 100, the bottom of the bottom plate 203 is fixed with the bottom of the upper cavity 101 of the base 100, the top center of the bottom plate 203 is provided with a top opening 201, the top opening 201 sleeves the top column 204 on the bottom plate 203, the top opening 201 is internally sleeved with a top column 204, the top column 204 is pushed out of the limit of the hook column 200 after polishing a stainless steel container in the base 100, the bottom of the top column 204 is sleeved in the top cavity 104 on the base 100, the top column 204 is driven by air conveyed into the top cavity 104 through a second air pipe 109, after the stainless steel container in the base 100 is polished, it is pushed out of the hook post 200, and the hook post 200 limits the stainless steel to be polished in the cavity 101 on the base 100.
As shown in fig. 1 and 4, a dispersion cotton 301 is sleeved and fixed inside a polishing cotton layer 300, the dispersion cotton 301 uniformly conveys a polishing agent conveyed by a conveying port 306 to the polishing cotton layer 300, a jack 302 is arranged at the center of the top of the dispersion cotton 301, a jack 302 is used for sleeved and fixed in the dispersion cotton 301 by a jack 303, the jack 302 is internally and fixedly connected with a jack 303, the jack 303 drives the polishing cotton layer 300 by power generated by a driving motor 400, a top plate 304 is arranged at the top of the polishing cotton layer 300, the top plate 304 is sleeved and fixed at the bottom of the driving shaft 402 by a top opening 305, a top opening 305 is arranged at the center of the top plate 304, the top opening 305 is sleeved and fixed at the bottom of the driving shaft 402, a conveying port 306 is arranged on the top plate 304 at the front side of the top opening 305, the conveying port 306 conveys the polishing agent of a polishing stainless steel container to the dispersion cotton 301, the polishing cotton layer 300 conveys the polishing agent to the dispersion cotton 301 through the conveying port 306 on the top plate 304 for dispersion, the polishing agent is uniformly delivered to the surface of the polishing cotton layer 300 under the dispersion of the dispersion cotton 301.
As shown in fig. 1 and 5, a supporting plate 401 is fixed at the bottom of a driving motor 400, the supporting plate 401 is driven by lifting columns 103 to lift and lower the structures on the driving motor 400 and a polishing cotton layer 300, two sides of the bottom of the supporting plate 401 are fixed at the tops of two lifting columns 103 on a base 100, the supporting plate 401 is driven by the lifting columns 103 to lift or lower, a driving shaft 402 is fixed at the output end of the driving motor 400, the driving shaft 402 transmits power generated on the driving motor 400 to an insertion column 303 to drive the polishing cotton layer 300 to rotate, a stainless steel container limited by a hooking column 200 in a cavity 101 on the base 100 is polished, the upper part of the peripheral side of the driving shaft 402 is rotatably connected with the supporting plate 401, the bottom side of the driving shaft 402 is fixed at the top of the insertion column 303, the bottom of the peripheral side of the driving shaft 402 is rotatably sleeved with a top opening 305 on a top disc 304 above the polishing cotton layer 300, connecting columns 403 are fixed below the supporting plates 401 at two sides of the driving shaft 402, the connection column 403 fixes the support plate 401 and the top disc 304, so that the support plate 401 and the top disc 304 do not move relatively, the bottom of the connection column 403 is fixed at the bottom of the periphery of the driving shaft 402 and above the top disc 304 above the polishing cotton layer 300, the power generated by the driving motor 400 is transmitted to the insertion column 303 on the polishing cotton layer 300 through the driving shaft 402 thereon, and the polishing cotton layer 300 rotates through the insertion column 303.
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 burnishing machine is used in production of 8K mirror surface stainless steel container, includes base (100), hook post (200), polishing cotton layer (300), driving motor (400) and pillar (500), its characterized in that: the middle of base (100) top has been seted up and has been held chamber (101), it is provided with hook post (200) to hold annular array in chamber (101), the top at base (100) top center is provided with polishing cotton layer (300), the top on polishing cotton layer (300) is provided with driving motor (400), the rear side at base (100) top is fixed with pillar (500), the top of pillar (500) is fixed with raceway (501).
2. The polishing machine for producing the 8K mirror surface stainless steel container as claimed in claim 1, wherein lifting holes (102) are formed in two sides of the top of the base (100), lifting columns (103) are sleeved in the lifting holes (102), a water outlet hole (110) is formed in one side of the upper portion of the front side of the base (100), a top cavity (104) is formed in the center of the bottom of an upper accommodating cavity (101) of the base (100), first air transmission holes (105) are formed in the bottoms of the two sides of the base (100), first air transmission pipes (106) are sleeved in the first air transmission holes (105), and the first air transmission holes (105) are communicated with the corresponding lifting holes (102).
3. The polishing machine for producing the 8K mirror surface stainless steel container as claimed in claim 2, wherein a second air delivery hole (108) is formed in the bottom of the front side of the base (100), the second air delivery hole (108) is communicated with the top cavity (104), a second air delivery pipe (109) is fixedly connected in the second air delivery hole (108) in a sleeved mode, and a bottom sealing block (107) is fixedly arranged on the base (100) at the bottom of the top cavity (104).
4. The polishing machine for producing the 8K mirror surface stainless steel container according to claim 1, wherein a matching plate (202) is fixed to the bottom of each hook column (200), a bottom plate (203) is fixed to the bottom of each matching plate (202), the bottom of each bottom plate (203) is fixed to the bottom of an upper cavity (101) of the base (100), a top opening (201) is formed in the center of the top of each bottom plate (203), a top column (204) is sleeved in each top opening (201), and the bottom of each top column (204) is sleeved in a top cavity (104) of the base (100).
5. The polishing machine for producing the 8K mirror surface stainless steel container according to claim 1, wherein the polishing cotton layer (300) is fixedly sleeved inside the polishing cotton layer (300), a jack (302) is formed in the center of the top of the dispersing cotton layer (301), a plug column (303) is fixedly inserted in the jack (302), a top plate (304) is arranged on the top of the polishing cotton layer (300), a top opening (305) is formed in the center of the top plate (304), and a conveying port (306) is formed in the top plate (304) in front of the top opening (305).
6. The polishing machine for producing 8K mirror surface stainless steel containers according to claim 1, a supporting plate (401) is fixed at the bottom of the driving motor (400), two sides of the bottom of the supporting plate (401) are fixed at the tops of two lifting columns (103) on the base (100), a driving shaft (402) is fixed at the output end of the driving motor (400), the upper part of the peripheral side of the driving shaft (402) is rotationally connected with a supporting plate (401), the bottom side of the driving shaft (402) is fixed at the top of the inserting column (303), the bottom of the peripheral side of the driving shaft (402) is rotatably sleeved with a top opening (305) on a top disc (304) above the polishing cotton layer (300), connecting columns (403) are fixed below the supporting plates (401) at the two sides of the driving shaft (402), the bottoms of the connecting columns (403) are fixed at the bottom of the peripheral side of the driving shaft (402) and above the top disc (304) above the polishing cotton layer (300).
CN202120101434.6U 2021-01-14 2021-01-14 Burnishing machine is used in production of 8K mirror surface stainless steel container Active CN214162567U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120101434.6U CN214162567U (en) 2021-01-14 2021-01-14 Burnishing machine is used in production of 8K mirror surface stainless steel container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120101434.6U CN214162567U (en) 2021-01-14 2021-01-14 Burnishing machine is used in production of 8K mirror surface stainless steel container

Publications (1)

Publication Number Publication Date
CN214162567U true CN214162567U (en) 2021-09-10

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ID=77592894

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120101434.6U Active CN214162567U (en) 2021-01-14 2021-01-14 Burnishing machine is used in production of 8K mirror surface stainless steel container

Country Status (1)

Country Link
CN (1) CN214162567U (en)

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