Air tightness detection device for aluminum alloy wheel hub and method for detecting air tightness of wheel hub
US-2016223425-A1 · Aug 4, 2016 · US
US9562831B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9562831-B2 |
| Application number | US-201514667517-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 24, 2015 |
| Priority date | Mar 25, 2014 |
| Publication date | Feb 7, 2017 |
| Grant date | Feb 7, 2017 |
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The present invention discloses a rotary wheel airtightness detecting machine which comprises a body frame, an air cylinder, an upper seal, a lower seal, a water tank, an electric motor and a self-made air cylinder, etc. During use, the present invention can make the wheel be automatically centered between the upper seal and the lower seal, avoiding severe abrasion of equipment caused by inclination of the upper pressing plate for sealing upon biased positioning of the wheel.
Opening claim text (preview).
The invention claimed is: 1. A rotary wheel airtightness detecting machine comprising a body frame ( 1 ), first guide pillars ( 2 ), first guide sleeves ( 3 ), a lower platform ( 4 ), a hollow shaft ( 5 ), a bearing block ( 6 ), a cylinder barrel ( 7 ), a spring ( 8 ), a water tank ( 9 ), a piston ( 10 ), a cylinder cover ( 11 ), a cylinder rod ( 12 ), an upper platform ( 13 ), a lower seal ( 14 ), a guide flange ( 15 ), an upper seal ( 16 ), a lower plate ( 17 ), a swivel ( 18 ), an upper plate ( 19 ), second guide pillars ( 20 ), second guide sleeves ( 21 ), a compressing cylinder ( 22 ), a first pulley ( 23 ), a synchronous belt ( 24 ), a second pulley ( 25 ), an electric motor ( 26 ) and a lifting cylinder ( 27 ), characterized in that four first guide sleeves ( 3 ) are fixed on the lower platform ( 4 ) and cooperate with four first guide pillars ( 2 ), the upper ends of which are fixed with the water tank ( 9 ); the output rod of the lifting cylinder ( 27 ), which is also fixed on the lower platform ( 4 ), is hinged with the bottom of the water tank ( 9 ); the hollow shaft ( 5 ), the upper end of which is fitted with the upper platform ( 13 ) and the lower end of which is fixed with the first pulley ( 23 ), is fixed in the bearing block ( 6 ) by means of a bearing; the lower seal ( 14 ) is fixed to the upper end of the upper platform ( 13 ); the cylinder barrel ( 7 ), which is provided at its upper part with vents, is mounted on the upper platform ( 13 ) and placed within the hollow shaft ( 5 ); the cylinder rod ( 12 ) is connected with the piston ( 10 ) with the spring ( 8 ) under the latter, the cylinder cover ( 11 ) is mounted at the upper part of and within the cylinder barrel ( 7 ), all above components form a self-made air cylinder; in normal state, the spring ( 8 ) is compressed and the guide flange ( 15 ) on the top end of the cylinder rod ( 12 ) is beneath the upper surface of the lower seal ( 14 ), which makes it convenient to clamp the wheel; the lower end of the lower plate ( 17 )is mounted with the upper seal ( 16 ), and the upper end of the lower plate ( 17 ) is mounted with the swivel ( 18 ); the upper plate ( 19 ), the upper end of which is fixed with four second guide pillars ( 20 ), is fixed to the inner ring of the swivel ( 18 ); four second guide sleeves ( 21 ) which cooperate with the second guide pillars ( 20 ) are fixed to the top end of the body frame ( 1 ); the output rod of the compressing cylinder ( 22 ), which is also fixed to the top end of the body frame ( 1 ), is hinged with the upper plate ( 19 ); the electric motor ( 26 ), the output end of which is mounted with the second pulley ( 25 ), is installed on the side of the body frame ( 1 ) and drives the first pulley ( 23 ) and the hollow shaft ( 5 ) to rotate by means of the synchronous belt ( 24 ).
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