CN211989380U - Oiling mechanism and oiling device - Google Patents

Oiling mechanism and oiling device Download PDF

Info

Publication number
CN211989380U
CN211989380U CN201922047347.2U CN201922047347U CN211989380U CN 211989380 U CN211989380 U CN 211989380U CN 201922047347 U CN201922047347 U CN 201922047347U CN 211989380 U CN211989380 U CN 211989380U
Authority
CN
China
Prior art keywords
oiling
box
brush
plate
oil
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.)
Active
Application number
CN201922047347.2U
Other languages
Chinese (zh)
Inventor
谢波
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.)
Guangdong Midea Intelligent Technologies Co Ltd
Original Assignee
Guangdong Midea Intelligent Technologies 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 Guangdong Midea Intelligent Technologies Co Ltd filed Critical Guangdong Midea Intelligent Technologies Co Ltd
Priority to CN201922047347.2U priority Critical patent/CN211989380U/en
Application granted granted Critical
Publication of CN211989380U publication Critical patent/CN211989380U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Coating Apparatus (AREA)

Abstract

The utility model discloses an oiling mechanism and oiling station, oiling mechanism (4) include jacking adjustment mechanism (45), an oiling brush section of thick bamboo (54) and fat liquoring box (56), and the fat liquoring box includes top open-ended oil box chamber (64), and an oiling brush section of thick bamboo rotatably sets up in the fat liquoring box and the top of brush section of thick bamboo periphery wall protrusion in oil box chamber, and jacking adjustment mechanism is used for driving fat liquoring box vertical migration. The oiling device comprises a workpiece clamping mechanism and an oiling mechanism, wherein the workpiece clamping mechanism is used for clamping a workpiece to be oiled, and the oiling brush barrel is used for contacting the workpiece to be oiled under the regulation of the jacking regulating mechanism and performing surface oiling. The utility model discloses an oiling mechanism's simple structure, the practicality is strong, can avoid manual operation, and in the oiling station who uses, accessible electric control mode realizes automation or semi-automatization, and adjustable installation is applicable to pipelining etc. moreover, promotes the fat liquoring efficiency, guarantees the fat liquoring yields, more reduces the cost of labor.

Description

Oiling mechanism and oiling device
Technical Field
The utility model belongs to the oiling station field.
Background
When the surface oiling is done to the rotational molding surface of rotator (for example motor rotor), adopt manual operation at present mostly, operating personnel need one hand rotatory motor rotor, and the other hand carries out the oiling operation simultaneously, still need to shift air-dried motor rotor to the frock car one by one after the oiling.
The manual oiling operation mode is relatively original and low in efficiency, due to volatility and pungent taste of oil, the working environment is poor, operators are prone to discomfort, the operators need to change posts periodically, labor cost is high, oil stains are prone to polluting the environment due to manual oiling operation, and the manual oiling operation is difficult to clean.
SUMMERY OF THE UTILITY MODEL
To the above-mentioned defect or not enough of prior art, the utility model provides a novel fat liquoring mechanism and oiling station of using thereof to promote fat liquoring efficiency, practice thrift the human cost.
In order to achieve the above object, the utility model provides an oiling mechanism includes:
the oiling box comprises an oil box cavity with an opening at the top;
the oiling brush barrel is rotatably arranged in the oiling box, and the peripheral wall of the brush barrel at the top of the oiling brush barrel protrudes above the cavity of the oiling box; and
and the jacking adjusting mechanism is used for driving the oiling box to vertically move.
In some embodiments, the oiling mechanism further comprises:
the scraping brush section of thick bamboo, with the axial parallel arrangement of fat liquoring brush section of thick bamboo, the brush section of thick bamboo periphery wall of scraping brush section of thick bamboo and the brush section of thick bamboo periphery wall of fat liquoring brush section of thick bamboo contact each other and contact elasticity can be adjusted.
In one embodiment, the two ends of the oiling brush cylinder and the oil scraping brush cylinder are respectively and pivotally arranged on the opposite side walls of the oiling box; the side wall of the oiling box is provided with a long hole-shaped oil scraping brush cylinder pivoting hole extending along the axial distance direction between the oil scraping brush cylinder and the oiling brush cylinder, and the pivoting shaft end of the oil scraping brush cylinder extends into the oil scraping brush cylinder pivoting hole and can adjust the pivoting mounting position along the axial distance direction.
In a specific implementation mode, the oiling mechanism further comprises an oiling motor, the oiling box is a square box body, and the oil scraping brush cylinder, the oiling brush cylinder and the oiling motor are arranged at intervals along the length direction of the oiling box and are respectively and axially arranged along the width direction of the oiling box; the oiling motor is arranged on a motor support which is positioned on the outer side of the end part of the oiling box in the length direction and is parallel to the side wall of the oiling box, and a motor shaft of the oiling motor and a pivoting shaft end of the oiling brush barrel form chain transmission or gear transmission.
In a specific embodiment, the oiling mechanism further comprises:
the oil coating plate support is characterized in that the oil coating plate support is provided with an oil coating box, the oil coating box is arranged on the top surface of the oil coating plate support, the jacking adjusting mechanism is connected to act on the middle of the bottom surface of the oil coating plate support, and the side edge part of the bottom surface of the oil coating plate support extends downwards to form a guide column.
More specifically, the middle of the bottom surface of the oiling plate support can be provided with a floating joint connected with the jacking adjusting mechanism, and the side part of the bottom surface of the oiling plate support is provided with a guide column locking sleeve used for tightly connecting the guide column with the oiling plate support.
In a specific embodiment, the oiling mechanism further comprises:
the jacking adjusting mechanism is arranged on the assembly adjusting plate, and the guide column penetrates through the assembly adjusting plate.
More specifically, the assembly adjusting plate may be fitted with a guide post linear bearing through which the guide post protrudes downward.
In a specific embodiment, the oiling mechanism further comprises:
the mounting base plate is provided with a long-strip-shaped hole-shaped base plate avoiding groove, the guide post and the jacking adjusting mechanism downwards penetrate through the base plate avoiding groove, and the component adjusting plate is adjustably mounted on the mounting base plate along the length direction of the base plate avoiding groove.
More specifically, on both sides of the bottom plate avoiding groove, the component adjusting plate and the mounting bottom plate may be respectively provided with elongated fastening mounting holes in alignment.
Furthermore, the utility model also provides an oiling station, this oiling station includes:
the workpiece clamping mechanism is used for clamping a workpiece to be oiled; and
the oiling mechanism is arranged above the oil tank;
the oiling brush barrel is used for contacting a workpiece to be oiled under the regulation of the jacking regulating mechanism and oiling the surface of the workpiece.
The utility model discloses an among the fat liquoring mechanism, through with the rotatory setting of fat liquoring brush section of thick bamboo in oil box cavity, the section of thick bamboo wall surface of fat liquoring brush section of thick bamboo is infected with the fluid in oil box cavity and scribbles oil to workpiece surface through the rotation contact, accomplishes the fat liquoring operation, wherein accessible jacking adjustment mechanism is in order to adjust the high position of fat liquoring brush section of thick bamboo to accomplish rotation contact. Therefore, the oiling mechanism is simple in structure and strong in practicability, manual operation can be separated, automation or semi-automation can be achieved in the applied oiling device in an electric control mode, oiling efficiency is improved, and the oiling mechanism is adjustable in installation and suitable for assembly line operation and the like.
Further advantages of the invention, as well as the technical effects of preferred embodiments, will be further explained in the following detailed description.
Drawings
The accompanying drawings, which form a part hereof, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention without undue limitation. In the drawings:
fig. 1 is a perspective view of an oiling mechanism according to an embodiment of the present invention;
FIG. 2 is an enlarged perspective view of a portion of the oiling box of FIG. 1;
fig. 3 is a perspective view of a barrel surface oiling device employing an oiling mechanism according to an embodiment of the present invention; and
fig. 4 is a side view of fig. 3.
Description of the reference numerals
1 conveying motor 2 main frame
3 air-dry 4 chain frock subassemblies of fan
42 shaft end limiting mechanism of 41 chain wheel driving mechanism
43 mounting baseplate 44 guide post
45 jacking adjustment mechanism 46 subassembly regulating plate
47 guide post linear bearing 48 guide post lock sleeve
49 oiling plate support 50 oiling motor
51 motor support 52 greased drive sprocket
53 drive chain 54 oiling brush drum
55 oil scraping brush cylinder 56 oiling box
57 oiling brush barrel supporting bearing 58 oiling driven sprocket
59 elongated fastening mounting hole of floating joint 60
61 oil scraping brush cylinder pivot hole 62 oil scraping brush cylinder built-in bearing
63 oiling inlet pipe part 64 oil box cavity
65 oiling box welding part 66 oiling box inner wall
67 oiling brush cylinder pivot shaft 68 bottom plate avoiding groove
100 motor rotor L conveying direction
H vertical direction W guide rail spacing direction
Detailed Description
The following detailed description of the embodiments of the present invention will be made with reference to the accompanying drawings. It is to be understood that the description of the embodiments herein is for purposes of illustration and explanation only and is not intended to limit the invention. In the present invention, the embodiments and the features of the embodiments may be combined with each other without conflict.
The present invention will be described in detail with reference to the accompanying drawings in conjunction with embodiments.
A great deal of not enough that the operation brought to current manual fat liquoring, the utility model provides a novel fat liquoring mechanism. Referring to fig. 1 and 2, in a specific embodiment, the oiling mechanism comprises an oiling box 56, an oiling brush barrel 54 and a jacking adjusting mechanism 45, wherein the oiling box 56 comprises an oil box cavity 64 with an opening at the top, the oiling brush barrel 54 is rotatably arranged in the oiling box 56, part of the peripheral wall of the brush barrel protrudes above the oil box cavity 64, and the jacking adjusting mechanism 45 is used for driving the oiling box 56 to vertically move.
In use, the height position of the oiling brush cylinder 54 is adjusted by the jacking adjusting mechanism 45 so as to contact the surface of the workpiece to be oiled and adjust the contact tightness to be proper. It should be noted that the oiling mechanism of the present invention can perform an oiling operation on any workpiece to be oiled, but is particularly suitable for an oiling operation in which a rotating surface is in rotating contact with the workpiece to be oiled, that is, when the workpiece to be oiled is preferably a rotating molded body, such as the motor rotor 100, etc., the following description will be made by taking the motor rotor as an example, but obviously, the workpiece to be oiled is not limited thereto.
When the oiling brush cylinder 54 and the motor rotor 100 are in contact with each other, relative rotation between the oiling brush cylinder 54 and the motor rotor 100 can be driven, so that the oil in the oiling box 56 is uniformly coated on the surface of the motor rotor 100 through the oiling brush cylinder 54, and the oiling operation is completed. The oiling mechanism has the advantages of few components, strong operability and convenient adjustment, avoids a plurality of defects caused by manual operation, realizes automation or semi-automation in an electric control mode and the like, and improves oiling efficiency.
In the oiling mechanism shown in fig. 1, in particular, an oil wiping brush cylinder 55 is further included which is arranged axially parallel to the oiling brush cylinder 54, and the peripheral wall of the oil wiping brush cylinder 55 and the peripheral wall of the oiling brush cylinder 54 are in contact with each other and the contact tightness can be adjusted. When the contact tightness is zero or the contact is looser, the oil on the wall of the oiling brush barrel 54 is more viscous, and the oil film on the surface of the motor rotor 100 is thicker. Conversely, when the wiping cylinder 55 is in close contact with the oiling brush cylinder 54, the thickness of the surface oil film of the motor rotor 100 is smaller. Therefore, the contact tightness of the wiping brush cylinder 55 and the oiling brush cylinder 54 can be precisely controlled and adjusted according to the desired oil film thickness.
In order to adjust the contact tightness between the wiping cylinder 55 and the oiling brush cylinder 54, a specific structure for adjusting by using a long mounting hole is adopted in fig. 1 and 2. The two ends of the oil coating cylinder 54 and the two ends of the oil scraping cylinder 55 are respectively pivoted on the opposite side walls of the oil coating box 56, the side walls of the oil coating box 56 are provided with oil scraping cylinder pivoting holes 61 which are long hole-shaped and extend along the axial distance direction of the oil scraping cylinder 55 and the oil coating cylinder 54, and the pivoting shaft ends of the oil scraping cylinder 55 extend into the oil scraping cylinder pivoting holes 61 and can adjust the pivoting mounting positions along the axial distance direction.
More specifically, the end of the wiping cylinder 55 may be sleeved with a wiping cylinder built-in bearing 62, and the wiping cylinder built-in bearing 62 may be fixed to the inner wall 66 of the oiling box by a bearing housing and may be finely adjusted in position along the wiping cylinder pivot hole 61. The end of the oiling brush cylinder 54 can be welded with the oiling brush cylinder pivot shaft 67 and then installed in the oiling brush cylinder support bearing 57 embedded on the oiling box inner wall 66, so that the pivoting installation is realized.
The relative rotation can be generated by driving the oil brush cylinder 54 and the motor rotor 100, or the oil brush cylinder 54 can be driven to rotate by driving the motor rotor 100, so as to achieve the purpose of generating the relative rotation, or even the two can be driven independently. In the embodiment shown in fig. 1, the oiling mechanism further includes an oiling motor 50 as a power source, and a motor shaft of the oiling motor 50 and a pivot shaft end of the oiling brush cylinder 54 form a chain drive or a gear drive. Specifically, referring to fig. 1, the oiling box 56 is a square box, the wiping brush 55, the oiling brush 54 and the oiling motor 50 are arranged at intervals along the length direction of the oiling box 56 and are axially arranged along the width direction of the oiling box 56, and the oiling motor 50 is mounted on the motor bracket 51 which is positioned outside the end portion of the oiling box 56 in the length direction and is parallel to the side wall of the oiling box 56. In fig. 1 and 2, chain transmission is adopted, an oiling driving chain wheel 52 is arranged on the motor support 51, the end part of the oiling brush barrel pivot shaft 67 penetrates out of the outer side of the oiling brush barrel support bearing 57 and is provided with an oiling driven chain wheel 58, and a driving chain 53 is connected between the oiling driving chain wheel 52 and the oiling driven chain wheel 58.
The motor rotor 100 may be pivotally mounted directly above the basting brush drum 54 during the basting operation. The motor rotor 100 may be mounted on a stationary support, or may be mounted on a moving support or conveyor belt. In the cylinder surface oiling device shown in fig. 3 and 4, the motor rotor 100 is mounted on the chuck conveyor belt, and the longitudinal direction of the oiling box 56 is aligned with the conveying direction L of the chuck conveyor belt. In fig. 3, the clamping conveyor belt includes two chain tooling assemblies 4 arranged at intervals along the guide rail spacing direction W, two axial ends of the motor rotor 100 are pivotally mounted on the chain tooling assemblies 4 on two sides, and the chain tooling assemblies 4 are mounted on the guide rail of the main frame 2 and are driven by the conveying motor 1 through the chain wheel driving mechanism 41 to move along the conveying direction L, so as to drive the motor rotor 100 to move. Referring to fig. 4, along vertical direction H, the oiling mechanism is disposed below the chain tooling assembly 4, and a shaft end limiting mechanism 42 may be disposed above the chain tooling assembly 4 to act on shaft ends of the chain tooling assembly 4 and the motor rotor 100, so that the shaft end of the motor rotor 100 does not run out during the oiling operation.
When the conveyer belt is clamped and the motor rotor 100 with different diameters is clamped, the height position of the oiling brush barrel 54 is required to be adjusted. To this end, the oiling mechanism further includes a vertically spaced assembly adjustment plate 46 and an oiling plate support 49. The oiling box 56, the oiling motor 50 and the like can be mounted on the top surface of the oiling plate bracket 49 to realize the integral mounting of the oiling mechanism, specifically, the oiling box 56 can be welded and fixed through an oiling box welding part 65, and the oiling motor 50 can be mounted and fixed through a vertical motor bracket 51. The jacking adjusting mechanism 45 is installed on the assembly adjusting plate 46, and the top end of the jacking adjusting mechanism 45 is connected to the oiling flat plate bracket 49 so as to drive the oiling box 56 to vertically move, so that the height position of the oiling brush barrel 54 can be adjusted through the jacking adjusting mechanism 45.
The jacking adjustment mechanism 45 may be a manually operated screw jacking rod, or may be an electric push rod or an air cylinder. The jacking adjusting mechanism 45 is preferably connected to and acts on the middle of the bottom surface of the oiling plate bracket 49, and further, a guide post 44 extends downwards from the side edge part of the bottom surface of the oiling plate bracket 49, and the guide post 44 passes through the component adjusting plate 46 downwards so as to realize the smooth lifting of the oiling plate bracket 49 and the oiling part above the oiling plate bracket.
Referring to fig. 1, in a specific structure, a floating joint 59 connected with the jacking adjusting mechanism 45 is arranged in the middle of the bottom surface of the oiling plate bracket 49, and a guide column locking sleeve 48 for tightly connecting the guide column 44 with the oiling plate bracket 49 is arranged at the side edge part of the bottom surface of the oiling plate bracket 49. The assembly adjusting plate 46 is fitted with a guide post linear bearing 47, and the guide post 44 protrudes downward through the guide post linear bearing 47.
In the cylinder surface oiling devices shown in fig. 3 and 4, the operation and stop of the clamping conveyor belt can be controlled by signals such as a proximity switch, but the accuracy of the stop position of the clamping conveyor belt is not easy to be grasped, and the device needs to be debugged so that the oiling brush cylinder 54 and the motor rotor 100 are accurately contacted at the oiling point position. In other words, it is necessary to enable the oiling mechanism to be adjustable in the mounting position in the conveying direction L. To this end, the oiling mechanism shown in fig. 1 further includes, as an example, a mounting base plate 43 as a translational mounting base plate of the component adjustment plate 46, a base plate escape slot 68 in the form of a long hole is provided on the mounting base plate 43, the guide post 44 and the lift-up adjustment mechanism 45 pass downward through the base plate escape slot 68, and the component adjustment plate 46 is position-adjustably mounted on the mounting base plate 43 along the length direction of the base plate escape slot 68. After the assembly adjustment plate 46 is adjusted in mounting position along the bottom plate escape slot 68, it is necessary to securely mount the assembly adjustment plate 46 to the mounting bottom plate 43. Therefore, elongated fastening holes 60 are formed in the device adjustment plate 46 and the mounting base plate 43 at both sides of the base plate escape slot 68, respectively, and fastened and connected by fastening bolts or the like penetrating therethrough.
The utility model discloses an among the oiling mechanism, through setting up the adjustable mounting structure of wiping a brush section of thick bamboo 55, an oiling brush section of thick bamboo 54 and contact elasticity, can reach the accurate control to fat liquoring thickness, moreover through setting up a plurality of mounting panels and mutual mounting structure with adjustable position, when using to the barrel surface oiling station that figure 3, figure 4 show, steerable oiling brush section of thick bamboo 54 is along the high position of vertical direction H and along direction of delivery L's fat liquoring position, realizes promptly that fat liquoring position accurate adjustment. Therefore, the oiling mechanism is well applicable to different products and different oiling processes.
On the basis of above-mentioned fat liquoring mechanism, the utility model discloses the correspondence provides an oiling station, including being used for the work piece clamping mechanism and the foretell fat liquoring mechanism that the fat liquoring work piece was treated to the clamping, wherein, an oiling brush section of thick bamboo 54 is used for the contact to treat the fat liquoring work piece and carry out the surface fat liquoring under jacking adjustment mechanism 45's regulation.
The oiling device with the oiling mechanism can have various structural forms, and taking the cylinder surface oiling device shown in fig. 3 and 4 as an example, the workpiece clamping mechanism is a clamping conveying belt, and can be a chain tool assembly 4 and the like. During the oiling operation, the oiling mechanism with the jacking adjusting mechanism 45 is arranged at the oiling point position of the clamping conveyor belt and below the conveyor belt, and the axis of the oiling brush cylinder 54 is parallel to the axis of the motor rotor 100, and optionally, both the axes can be arranged along the direction W of the guide rail interval. Optionally, the oiling box 56 and the oiling brush cylinder 54 can be precisely positioned and installed under the oiling point position of the clamping conveyor belt, so that when the motor rotor 100 stops at the oiling point position, the oiling brush cylinder 54 just forms surface contact with the motor rotor 100, and then relative rotation is generated, and the oiling brush cylinder 54 continuously coats oil of the oiling box 56 on the surface of the cylinder wall of the motor rotor 100, so as to complete the oiling operation of the rotary contact.
After the surface of the oiling mechanism is oiled, the motor rotor 100 is continuously conveyed to move forward by the clamping conveyer belt. But because the drying and shaping can not be carried out immediately, the oil film on the surface of the cylinder wall is easy to accumulate due to the action of gravity and the like, so that the product qualification rate is high, even oil is dripped out, and the environment is polluted, therefore, an air drying fan 3 and the like can be arranged at the downstream of the oiling mechanism and is used for quickly drying the surface oil film.
Through the utility model discloses an oiling machine constructs and oiling station who uses thereof can realize the automatic surface coating oil operation of electric motor rotor 100 etc. reduces the cost of labor, can adopt electric control moreover, can stop the greasy dirt pollution that equipment brought, has guaranteed the clean health of workshop environment. In addition, the oiling device can be compatible with motor rotor 100 products of various models, has multiple functions, and reduces equipment investment. Particularly, the quality of product manufacturing is guaranteed through automatic production, the first-time qualified rate is improved, further, oil after being coated can be directly dried on line, the production efficiency and the yield are improved, in addition, the manual long-time contact of an oil coating process can be avoided, the working environment is improved, and the physical and mental health of operators is favorably guaranteed.
The above is merely a preferred embodiment of the present invention, and not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
It should be noted that the various technical features described in the above embodiments can be combined in any suitable manner without contradiction, and in order to avoid unnecessary repetition, the present invention does not need to describe any combination of the features.
In addition, various embodiments of the present invention can be combined arbitrarily, and the disclosed content should be regarded as the present invention as long as it does not violate the idea of the present invention.

Claims (10)

1. An oiling mechanism, characterized in that, oiling mechanism (4) includes:
an oiling cartridge (56) including an open-topped cartridge cavity (64);
the oiling brush barrel (54) is rotatably arranged in the oiling box (56), and the peripheral wall of the brush barrel at the top part protrudes out of the oil box cavity (64); and
and the jacking adjusting mechanism (45) is used for driving the oiling box (56) to vertically move.
2. An oiling mechanism according to claim 1, characterized in that said oiling mechanism (4) further comprises:
scrape an oil brush section of thick bamboo (55), with scribble oil brush section of thick bamboo (54) axial parallel arrangement, scrape the brush section of thick bamboo periphery wall of an oil brush section of thick bamboo (55) with the brush section of thick bamboo periphery wall of scribbling oil brush section of thick bamboo (54) contacts each other and contact elasticity can be adjusted.
3. An oiling mechanism according to claim 2, characterized in that the respective ends of the oiling brush cylinder (54) and the scraping brush cylinder (55) are pivotally mounted on opposite side walls of the oiling box (56), respectively; the side wall of the oiling box (56) is provided with a long hole-shaped oil scraping brush cylinder pivoting hole (61) extending along the axial distance direction of the oil scraping brush cylinder (55) and the oiling brush cylinder (54), and the pivoting shaft end of the oil scraping brush cylinder (55) extends into the oil scraping brush cylinder pivoting hole (61) and can be adjusted in the axial distance direction to be pivoted and installed.
4. The oiling mechanism as recited in claim 3, wherein the oiling mechanism (4) further comprises an oiling motor (50), the oiling box (56) is a square box body, the oil scraping brush cylinder (55), the oiling brush cylinder (54) and the oiling motor (50) are arranged at intervals along the length direction of the oiling box (56) and are respectively and axially arranged along the width direction of the oiling box (56);
the oiling motor (50) is arranged on a motor bracket (51) which is positioned on the outer side of the end part of the oiling box (56) in the length direction and is parallel to the side wall of the oiling box (56), and a motor shaft of the oiling motor (50) and a pivoting shaft end of the oiling brush barrel (54) form chain transmission or gear transmission.
5. An oiling mechanism according to any of claims 1 to 4, characterized in that said oiling mechanism (4) further comprises:
fat liquoring plate holder (49), install in fat liquoring box (56) on the top surface of fat liquoring plate holder (49), jacking adjustment mechanism (45) connection is acted on the bottom surface middle part of fat liquoring plate holder (49), the bottom surface side portion of fat liquoring plate holder (49) stretches out downwards has guide post (44).
6. The oiling mechanism as defined in claim 5, wherein a floating joint (59) connected with the jacking adjusting mechanism (45) is arranged in the middle of the bottom surface of the oiling plate bracket (49), and a guide post locking sleeve (48) used for tightly connecting the guide post (44) and the oiling plate bracket (49) is arranged on the side portion of the bottom surface of the oiling plate bracket (49).
7. An oiling mechanism according to claim 5, characterized in that said oiling mechanism (4) further comprises:
an assembly adjustment plate (46), a jacking adjustment mechanism (45) is installed on the assembly adjustment plate (46), and the guide post (44) passes through the assembly adjustment plate (46).
8. An oiling mechanism according to claim 7, characterized in that said oiling mechanism (4) further comprises:
mounting plate (43), be equipped with the bottom plate of rectangular poroid and dodge groove (68), guide post (44) with jacking adjustment mechanism (45) pass downwards bottom plate dodges groove (68), subassembly regulating plate (46) are followed the length direction position that the bottom plate dodged groove (68) adjustably install in on mounting plate (43).
9. The oiling mechanism according to claim 8, wherein elongated fastening holes (60) are provided in alignment on the assembly adjustment plate (46) and the mounting base plate (43), respectively, on both sides of the base plate escape slot (68).
10. An oiling device, characterized in that the oiling device comprises:
the workpiece clamping mechanism is used for clamping a workpiece to be oiled; and
an oiling mechanism as claimed in any one of claims 1 to 9;
the oiling brush barrel (54) is used for contacting the workpiece to be oiled and oiling the surface of the workpiece to be oiled under the regulation of the jacking regulating mechanism (45).
CN201922047347.2U 2019-11-22 2019-11-22 Oiling mechanism and oiling device Active CN211989380U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922047347.2U CN211989380U (en) 2019-11-22 2019-11-22 Oiling mechanism and oiling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922047347.2U CN211989380U (en) 2019-11-22 2019-11-22 Oiling mechanism and oiling device

Publications (1)

Publication Number Publication Date
CN211989380U true CN211989380U (en) 2020-11-24

Family

ID=73412859

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922047347.2U Active CN211989380U (en) 2019-11-22 2019-11-22 Oiling mechanism and oiling device

Country Status (1)

Country Link
CN (1) CN211989380U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114871071A (en) * 2022-05-10 2022-08-09 诸暨市金马特种弹簧有限公司 Production process of fatigue-resistant shock-insulation spring for commercial vehicle

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114871071A (en) * 2022-05-10 2022-08-09 诸暨市金马特种弹簧有限公司 Production process of fatigue-resistant shock-insulation spring for commercial vehicle

Similar Documents

Publication Publication Date Title
CN111729800A (en) Automatic intelligent two-way paint spraying apparatus of plank
CN211495581U (en) Chain type clamping conveyer belt and oiling device
CN211989380U (en) Oiling mechanism and oiling device
CN105944894A (en) Plate material painting device with drying function
CN211707185U (en) Automatic paint spraying device for surface of tubular part
CN216094444U (en) Efficient spraying device of spraying
KR100935664B1 (en) A device for painting of pipe
CN218889938U (en) Coating equipment is used in tablet production
CN112827697A (en) Automatic cooker spraying tool and spraying method
CN211073624U (en) Robot controller convenient to use
CN218834894U (en) Processing device for steel lining composite pipe fitting
CN108380757B (en) Full-automatic retooling equipment
CN210058805U (en) Automatic oil coating equipment for coating molybdenum disulfide lubricating oil on bolts of complete machine
CN112827736A (en) Barrel surface oiling station
CN113878401B (en) Safe and efficient scrap cleaning equipment for cutting edge of micro drill bit and cleaning method thereof
CN213825507U (en) Building board surface treatment device
CN110978145B (en) Drilling device for processing building boards
CN210098053U (en) Electrostatic spraying composite equipment for steel pipes
CN114074052A (en) Automatic coating equipment for carbon graphite parts
CN211637029U (en) Automatic paint spraying device
CN220787843U (en) Auto-parts surface electrophoresis lacquer handles hoist device
CN217190499U (en) Rotor shaft oiling mechanism
CN116422497A (en) Fixed-point surface processing mechanism for paper-plastic products
CN221360700U (en) Paint spraying roll-over stand
CN214519629U (en) Adjustable spray gun swinging device

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant