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Anti-fogging meter

An instrument and anti-fog technology, applied in the field of instruments, can solve problems such as short effective time, damage to water surface tension, and poor anti-fog effect

Inactive Publication Date: 2014-04-02
潍坊科科电气有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] There are two traditional anti-fog methods for instruments: one is to strengthen the ventilation inside and outside the instrument, eliminate the temperature difference between the inside and outside of the instrument, and prevent the hot air with high water vapor content from condensing water mist on the front cover of the instrument at a lower temperature to achieve instrument anti-fogging. The purpose of fog, but this kind of method improves the air permeability of the instrument itself, and at the same time means that the waterproof and dustproof performance of the instrument is seriously reduced. Facing the harsh working environment of agricultural machinery and engineering vehicles, this approach is obviously not advisable.
The second is to spray anti-fogging agent on the inner surface of the front cover of the meter to destroy the surface tension of the water, so that the hot and humid air in the meter cannot condense into fine and small water droplets in the front cover of the meter, so as to achieve the purpose of anti-fog. The defective of method is: 1, effective time is short
If the fogging conditions are met frequently, regardless of whether the instrument itself has been used, the anti-fogging agent needs to be re-sprayed every 5-7 days, which also requires the user to frequently disassemble the instrument for maintenance and maintenance. Obviously, this The method is not only cumbersome, but also for the product instrument within the warranty period, it is not advisable to disassemble the instrument frequently; 2. The anti-fog effect is poor

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] like Figure 1 to Figure 3 As shown, the anti-fog instrument includes an instrument panel lower case 1, an instrument panel upper case 2 is sealed and installed on the instrument panel lower case 1, and the instrument panel lower case 1 and the instrument panel upper case 2 is provided with a sealant layer, an instrument panel rear chamber 4 is formed between the instrument panel lower case 1 and the instrument panel upper case 2; a transparent gauge is sealed and installed on the instrument panel upper case 2 Front cover 3, a sealant layer is provided at the connection between the instrument panel upper case 2 and the instrument panel front cover 3, and an instrument panel front chamber is formed between the instrument panel upper case 2 and the instrument panel front cover 3 5. The front cavity 5 of the instrument panel is smaller than the rear cavity 4 of the instrument panel; a dial 6 is installed on the lower surface of the upper housing 2 of the instrument panel; ...

Embodiment 2

[0036] This embodiment is basically the same as Embodiment 1, except that the meter shaft sealing isolation device includes a meter shaft spacer sleeve fixedly arranged on the upper surface of the instrument core mounting plate 11 and distributed around the meter shaft 8 13. The meter shaft spacer 13 is integrally formed on the upper surface of the meter core mounting plate 11; a sealant layer is provided between the upper end of the meter shaft spacer 13 and the lower surface of the dial 6, The number of the table shaft spacer 13 is consistent with the number of the table shaft 8 .

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Abstract

The invention discloses an anti-fogging meter, which comprises a lower dashboard shell and an upper dashboard shell. A rear dashboard cavity is formed between the lower dashboard shell and the upper dashboard shell, a front meter cover is hermetically mounted on the upper dashboard shell, a front dashboard cavity is formed between the upper dashboard shell and the front meter cover, and a dial is mounted on the upper dashboard shell and provided with a meter shaft hole. A meter movement mounting board and a meter movement are mounted in the rear dashboard cavity, a meter shaft is arranged on the meter movement, a meter needle cap is mounted at the upper end of the meter shaft, a meter needle is mounted on the meter needle cap, a meter shaft hermetical isolation device is arranged between the dial and the meter movement mounting board to partition the meter shaft and the rear dashboard cavity, and a meter shaft isolation cavity is communicated with the meter shaft hole. The front cavity and the rear cavity are partitioned by the meter shaft hermetical isolation device, air containing heavier vapor in the rear cavity cannot enter the front cavity, and accordingly vapor sources are reduced, fogging of the front meter cover can be effectively prevented, visibility of the meter is improved, and observation is facilitated for drivers.

Description

technical field [0001] The invention relates to an instrument, in particular to a vehicle instrument. Background technique [0002] The instrument is one of the important accessories to grasp the running status of the vehicle. The driver can grasp the working condition by means of the display of the instrument during driving. The working conditions of agricultural machinery are complex. In the case of a large temperature difference between the inside and outside, a layer of fog is easily generated on the inner layer of the instrument cover, which affects the visualization effect of the instrument and makes it difficult for the machine operator to accurately grasp the operating status of the machine. [0003] Traditional needle-type vehicle gauges, including but not limited to stepper motor gauges, moving magnet gauges and mechanical gauges, have the following common features in structure, such as Figure 4 Shown, namely by table front cover 3, table needle 9, table needle ca...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B60K35/00
Inventor 吕万疆宋立杰马汝强王建平
Owner 潍坊科科电气有限公司
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