Method for operating printer for office equipment

文档序号:573883 发布日期:2021-05-21 浏览:10次 中文

阅读说明:本技术 办公设备用打印机的操纵方法 (Method for operating printer for office equipment ) 是由 候培学 于 2019-11-20 设计创作,主要内容包括:一种办公设备用打印机的操纵方法,在射孔热量小于设定的热量范围之际,热量防范仪操纵接触器闭合,对铜合金暖气片发送电能升温射孔;在射孔热量大于设定的热量范围之际,热量防范仪操纵接触器断开,终止向射孔升温;接触器即使断开,然而铜合金暖气片的剩下热量会持续升温热射孔,由此须让设定的热量范围的最大阈值变化成小于打印液恰当的采取热量范围的最大阈值,在射孔热量大于打印液恰当的采取热量范围的最大阈值前,就终止朝射孔升温,让打印液流过射孔的期间持续保持于恰当的运作热量。有效避免了现有技术中射孔出液断断续续、减弱执行速度、功率损失不小、成本高的缺陷。(When the heat of perforation is smaller than the set heat range, a heat prevention instrument controls a contactor to be closed, and sends electric energy to a copper alloy radiator to heat up the perforation; when the heat of the perforation is larger than the set heat range, the heat prevention instrument controls the contactor to be disconnected, and the temperature rise to the perforation is stopped; even if the contactor is disconnected, the residual heat of the copper alloy radiator can continuously heat up the thermal perforation, so that the set maximum threshold value of the heat range is changed to be smaller than the maximum threshold value of the printing fluid proper heat collecting range, the temperature rise towards the perforation is stopped before the heat of the perforation is larger than the maximum threshold value of the printing fluid proper heat collecting range, and the printing fluid is continuously kept at the proper operating heat during flowing through the perforation. The defects of intermittent perforation liquid discharge, low execution speed, low power loss and high cost in the prior art are effectively overcome.)

1. A method for operating a printer for office equipment is characterized in that when the heat of a perforation is smaller than a set heat range, a heat prevention instrument operates a contactor to be closed, and electric energy is sent to a copper alloy radiator to heat the perforation; when the heat of the perforation is larger than the set heat range, the heat prevention instrument controls the contactor to be disconnected, and the temperature rise to the perforation is stopped; even if the contactor is disconnected, the residual heat of the copper alloy radiator can continuously heat up the thermal perforation, so that the set maximum threshold value of the heat range is changed to be smaller than the maximum threshold value of the proper heat collecting range of the printing liquid, the temperature rise towards the perforation is stopped before the heat of the perforation is larger than the maximum threshold value of the proper heat collecting range of the printing liquid, and the printing liquid is continuously kept at the proper operating heat during flowing through the perforation;

the printer includes a supporting sheet; the supporting sheet is provided with a perforation which penetrates through the supporting sheet;

the printer also comprises a temperature rising device, and the temperature rising device is a copper alloy radiator;

the copper alloy radiator is arranged on the supporting piece and also surrounds the penetrating position of the perforation on the supporting piece.

2. The operating method of a printer for office equipment according to claim 1, wherein the printer further comprises a contactor; the contactor is connected with the copper alloy heating radiator to transmit electric energy to the copper alloy heating radiator to heat the copper alloy heating radiator; the copper alloy radiators then deliver heat to the perforations, leaving the printing fluid in the correct heat range during the time it passes through the perforations.

Technical Field

The invention relates to the technical field of office equipment, in particular to a control method of a printer for office equipment.

Background

The reliability of the printing liquid adopted by the printer is suitable for the operation condition of the printer perforation, and the reliability of the printing liquid is determined by the viscosity, the outer layer elasticity, the failure period and the obstruction state of the printing liquid, but the direct action of the printing liquid is only partially suitable for the performance of the printer, and the heat and the humidity of the storage and operation area also achieve key effects in the general adoption of the printing liquid. If the heat quantity exceeds the threshold value or is less than the threshold value, the viscosity of the printing liquid can be weakened or increased by a large amount, and the initial condition of the printing liquid is relieved. Whereby a problem of continuous liquid discharge or even blurring of the outline of the discharge occurs during the discharge of the printing liquid. The heat is smaller than the threshold value, so that the viscosity of the printing liquid is increased, the perforation liquid is intermittent, and the execution speed is reduced.

The printing fluid is kept at the correct operating heat, often by placing the printer in a temperature-controlled room. In combination with the thermostat controlling the heat in the room. However, this mode has low power loss and high cost.

Disclosure of Invention

In order to solve the problems, the invention provides the operating method of the printer for the office equipment, which effectively avoids the defects of intermittent perforation liquid outlet, low execution speed, low power loss and high cost in the prior art.

In order to overcome the defects in the prior art, the invention provides a solution for a control method of a printer for office equipment, which comprises the following specific steps:

when the heat of perforation is smaller than the set heat range, a heat prevention instrument controls a contactor to be closed, and sends electric energy to a copper alloy radiator to heat up the perforation; when the heat of the perforation is larger than the set heat range, the heat prevention instrument controls the contactor to be disconnected, and the temperature rise to the perforation is stopped; even if the contactor is disconnected, the residual heat of the copper alloy radiator can continuously heat up the thermal perforation, so that the set maximum threshold value of the heat range is changed to be smaller than the maximum threshold value of the proper heat collecting range of the printing liquid, the temperature rise towards the perforation is stopped before the heat of the perforation is larger than the maximum threshold value of the proper heat collecting range of the printing liquid, and the printing liquid is continuously kept at the proper operating heat during flowing through the perforation;

the printer for office equipment comprises a supporting sheet; the supporting sheet is provided with a perforation which penetrates through the supporting sheet;

the printer also comprises a temperature rising device, and the temperature rising device is a copper alloy radiator;

the copper alloy radiator is arranged on the supporting piece and also surrounds the penetrating position of the perforation on the supporting piece.

The printer further includes a contactor; the contactor is connected with the copper alloy heating radiator to transmit electric energy to the copper alloy heating radiator to heat the copper alloy heating radiator; the copper alloy radiators then deliver heat to the perforations, leaving the printing fluid in the correct heat range during the time it passes through the perforations.

The invention has the beneficial effects that:

the heating device is added to heat the perforation, so that the printing liquid is kept at proper operating heat during flowing through the perforation, the structure is not complex, and convenience is brought to use. The heat of the temperature raising device is directly sent to the perforation, so that the temperature raising device is not only suitable for raising the temperature of printing liquid, but also has small power loss and low cost.

Detailed Description

The present invention will be further described with reference to the following examples.

According to the operating method of the printer for the office equipment, when the perforation heat is smaller than the set heat range, the heat prevention instrument operates the contactor to be closed, and electric energy is sent to the copper alloy heating radiator to heat up the perforation; when the heat of the perforation is larger than the set heat range, the heat prevention instrument controls the contactor to be disconnected, and the temperature rise to the perforation is stopped; even if the contactor is disconnected, the residual heat of the copper alloy radiator can continuously heat up the thermal perforation, so that the set maximum threshold value of the heat range is changed to be smaller than the maximum threshold value of the proper heat collecting range of the printing liquid, the temperature rise towards the perforation is stopped before the heat of the perforation is larger than the maximum threshold value of the proper heat collecting range of the printing liquid, and the printing liquid is continuously kept at the proper operating heat during flowing through the perforation;

the printer for office equipment comprises a supporting sheet; the supporting sheet is provided with a perforation which penetrates through the supporting sheet;

the printer also comprises a temperature rising device, and the temperature rising device is a copper alloy radiator;

the copper alloy radiator is arranged on the supporting piece and also surrounds the penetrating position of the perforation on the supporting piece.

The printer further includes a contactor; the contactor is connected with the copper alloy heating radiator to transmit electric energy to the copper alloy heating radiator to heat the copper alloy heating radiator; the copper alloy radiators then deliver heat to the perforations, leaving the printing fluid in the correct heat range during the time it passes through the perforations.

The heating device is added to heat the perforation, so that the printing liquid is kept at proper operating heat during flowing through the perforation, the structure is not complex, and convenience is brought to use. The heat of the temperature raising device is directly sent to the perforation, so that the temperature raising device is not only suitable for raising the temperature of printing liquid, but also has small power loss and low cost.

The present invention has been described in terms of embodiments, and it will be understood by those skilled in the art that the present disclosure is not limited to the embodiments described above, and various changes, modifications and substitutions may be made without departing from the scope of the present invention.

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