Protective device for spraying of aluminum alloy wheel
10675650 ยท 2020-06-09
Assignee
Inventors
- Weidong Liu (Qinhuangdao, CN)
- Fengyan Liu (Qinhuangdao, CN)
- Jiandong Guo (Qinhuangdao, CN)
- Xiaoguang Huang (Qinhuangdao, CN)
- Bowen Xue (Qinhuangdao, CN)
- Yao Zheng (Qinhuangdao, CN)
Cpc classification
B05B12/30
PERFORMING OPERATIONS; TRANSPORTING
B05B15/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25B11/00
PERFORMING OPERATIONS; TRANSPORTING
B05B12/30
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A protective device for spraying of a wheel is mainly composed of a support, a cylinder, a push plate, bases, floating shafts, shaft sleeves, stop screws, copper sleeves, rotatable pins, springs, elastic collars, end covers, flange plates, guards and a mandrel, wherein the bases and the cylinder are fixed on the support, a flange plate is fixed on each base, an output shaft of the cylinder is connected with the push plate, a copper sleeve is enclosed in each base via an elastic collar, an end cover encloses a spring and a floating shaft inside a shaft sleeve, and the spring is connected with the floating shaft and an end cover respectively.
Claims
1. A protective device for spraying of an aluminum alloy wheel, being composed of a support, a cylinder, a push plate, bases, floating shafts, shaft sleeves, stop screws, copper sleeves, rotatable pins, springs, elastic collars, end covers, flange plates, guards and a mandrel, wherein the bases and the cylinder are fixed on the support, a flange plate is fixed on each base, an output shaft of the cylinder is connected with the push plate, a copper sleeve is enclosed in each base via an elastic collar, an end cover encloses a spring and a floating shaft inside a shaft sleeve, and the spring is connected with the floating shaft and an end cover respectively; a stop screw is fixed to a side wall of the shaft sleeve and connected to a bottom side vertical slot of the floating shaft; the mandrel is fixed on an upper end face of the shaft sleeves, and a rotatable pin is fixed to a side wall of each base, passes through the copper sleeve and is connected to the shaft sleeve.
2. The protective device according to claim 1, wherein a spirally rising ring slot is formed in the side wall of each shaft sleeve.
3. The protective device according to claim 1, wherein after the cylinder is charged with air, the output shaft of the cylinder drives the push plate to move up, the push plate first contacts the floating shafts and drives the floating shafts to move up, the springs begin to contract, and the floating shafts and the shaft sleeves move relatively in the vertical direction; the push plate contacts the shaft sleeves and is set to drive the shaft sleeves and the floating shafts to move up synchronously; and the shaft sleeves, the copper sleeves and the end covers are set to rotate up relative to the bases by matching of the rotatable pins and the ring slots of the shaft sleeves.
4. The protective device according to claim 1, wherein when the cylinder is at the top, bottom step surfaces of the guards are inserted into upper end face open slots of the end covers; after the compressed air is closed, the shaft sleeves and the floating shafts rotate down relative to the bases under the action of gravity by matching of the rotatable pins and side ring slots of the shaft sleeves, and intermediate thin shafts of the guards move to the openings of the floating shafts; and at the same time, upper end faces of the bottom step surfaces of the guards are set to caught at the openings of the floating shafts, so that the guards press on a bolt hole countersink platform of the wheel.
5. The protective device according to claim 1, wherein, an opening is formed in a side wall of the top of the floating shaft, open slots are uniformly distributed in the upper end face of the end cover, the opening of the floating shaft is in the same direction as the open slots of the end cover via matching of the stop screw and the side vertical slot of the floating shaft, and the floating shaft can move in the vertical direction.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The embodiments of the present disclosure will be described in detail below in combination with the accompanying drawings, in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
LIST OF REFERENCE SYMBOLS
(9) 1 support
(10) 2 cylinder
(11) 3 push plate
(12) 4 base
(13) 5 floating shaft
(14) 6 shaft sleeve
(15) 7 stop screw
(16) 8 copper sleeve
(17) 9 rotatable pin
(18) 10 spring
(19) 11 elastic collar
(20) 12 end cover
(21) 13 flange plate
(22) 14 guard
(23) 15 mandrel
(24) 5-1 opening
(25) 5-2 side vertical slot
(26) 12-1 open slot
DETAILED DESCRIPTION
Embodiment 1
(27) The details and working conditions of the specific device according to the present disclosure will be described in detail below in combination with the drawings.
(28) This embodiment discloses a protective device for spraying of a wheel, which is mainly composed of a support 1, a cylinder 2, a push plate 3, bases 4, floating shafts 5, shaft sleeves 6, stop screws 7, copper sleeves 8, rotatable pins 9, springs 10, elastic collars 11, end covers 12, flange plates 13, guards 14 and a mandrel 15, wherein the bases 4 and the cylinder 2 are fixed on the support 1, a flange plate 13 is fixed on each base 4, an output shaft of the cylinder 2 is connected with the push plate 3, a copper sleeve 8 is enclosed in each base 4 via an elastic collar 11, an end cover 12 encloses a spring 10 and a floating shaft 5 inside a shaft sleeve 6, the spring 10 is connected with the floating shaft 5 and an end cover 12 respectively, a stop screw 7 is fixed to the side wall of the shaft sleeve 6 and connected to a bottom side vertical slot 5-2 of the floating shaft 5, an opening 5-1 is formed in a side wall of the top of the floating shaft 5, open slots 12-1 are uniformly distributed in the upper end face of the end cover 12, the opening 5-1 of the floating shaft 5 is in the same direction as the open slots 12-1 of the end cover 12 via matching of the stop screw and the side vertical slot 5-2 of the floating shaft, and the floating shafts 5 can move in the vertical direction. The mandrel 15 is fixed on the upper end face of the shaft sleeves 6, and a rotatable pin 9 is fixed to the side wall of each base 4, the rotatable pin 9 passes through the copper sleeve 8 and is connected to the shaft sleeve 6. A spirally rising ring slot 6-1 is formed in the side wall of each shaft sleeve 6. After the cylinder 2 is charged with air, the output shaft of the cylinder 2 drives the push plate 3 to move up, the push plate 3 first contacts with the floating shafts 5 and drives the floating shafts 5 to move up, the springs 10 begin to contract, the floating shafts 5 and the shaft sleeves 6 move relatively in the vertical direction, then, the push plate 3 contacts with the shaft sleeves 6 and drives the shaft sleeves 6 and the floating shafts 5 to move up synchronously, and at the same time, the shaft sleeves 6, the copper sleeves 8 and the end covers 12 rotate up relative to the bases 4 by matching of the rotatable pins 9 and the ring slots 6-1 of the shaft sleeves 6. When the cylinder 2 is at the top, bottom step surfaces 14-1 of the guards 14 are inserted into upper end face open slots 12-1 of the end covers 12. After the compressed air is closed, the shaft sleeves 6 and the floating shafts 5 rotate down relative to the bases 4 under the action of gravity by matching of the rotatable pins 9 and the side ring slots 6-1 of the shaft sleeves 6, intermediate thin shafts 14-2 of the guards 14 move to the openings 5-1 of the floating shafts 5, and at the same time, the upper end faces of the bottom step surfaces 14-1 of the guards 14 are caught at the openings 5-1 of the floating shafts 5, so that the guards 14 press a bolt hole countersink platform of the wheel.
(29) Before actual use, the cylinder 2 is charged with air, the output shaft of the cylinder 2 drives the push plate 3 to move up, the push plate 3 first contacts the floating shafts 5 and drives the floating shafts 5 to move up, the springs 10 begin to contract, the floating shafts 5 and the shaft sleeves 6 move relatively in the vertical direction, then, the push plate 3 contacts the shaft sleeves 6 and drives the shaft sleeves 6 and the floating shafts 5 to move up synchronously, at the same time, the shaft sleeves 6, the copper sleeves 8 and the end covers 12 rotate up relative to the bases 4 by matching of the rotatable pins 9 and the ring slots 6-1 of the shaft sleeves 6, and the end covers 12 and the floating shafts 5 are at the highest positions. During the actual use, wheel flange surfaces are fitted to the flange plates 13 in the device of the present disclosure, the mandrel 15 is matched with the center hole of the wheel, bolt holes are respectively aligned with the open slots 12-1 uniformly distributed in the end faces, the guards 14 are placed into the bolt holes, and the bottom step surfaces 14-1 of the guards 14 are inserted into the upper end face open slots 12-1 of the end covers 12. After the introduction of air to the cylinder 2 is stopped, the shaft sleeves 6 and the floating shafts 5 rotate down relative to the bases 4 under the action of gravity by matching of the rotatable pins 9 and the side ring slots 6-1 of the shaft sleeves 6, the openings 5-1 of the floating shafts 5 rotate to the intermediate thin shafts 14-2 of the guards 14, and at the same time, the upper end faces of the bottom step surfaces 14-1 of the guards 14 are caught at the openings 5-1 of the floating shafts 5, so that the guards 14 press on the bolt hole countersink platform of the wheel. So far, the protection of the wheel is completed and spraying begins.