Printer for office equipment with enhanced performance

文档序号:573882 发布日期:2021-05-21 浏览:17次 中文

阅读说明:本技术 增强性能的办公设备用打印机 (Printer for office equipment with enhanced performance ) 是由 候培学 于 2019-11-20 设计创作,主要内容包括:一种增强性能的办公设备用打印机,包括撑持片;撑持片上配备着射孔,射孔透过撑持片;打印机也包括升温设备,升温设备是铜合金暖气片;铜合金暖气片配备于撑持片上,还围着射孔于撑持片上的穿过位置。有效避免了现有技术中射孔出液断断续续、减弱执行速度的缺陷。(A performance-enhancing printer for office equipment includes a holding 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 defects that the perforation liquid is intermittent and the execution speed is weakened in the prior art are effectively overcome.)

1. A performance-enhanced printer for office equipment, comprising a holding 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 enhanced performance printer for office equipment of claim 1, further comprising 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.

3. The performance enhancing printer for office equipment as recited in claim 1, further comprising a thermal sensor and a thermal protector; the heat sensor is used for acquiring the heat of the perforation and transmitting the heat value of the perforation to the heat prevention instrument.

Technical Field

The invention relates to the technical field of office equipment, in particular to a performance-enhanced printer for office equipment.

Background

The reliability of the printing liquid is determined by viscosity, outer layer elasticity, failure period and obstruction state of the printing liquid, but the factors of direct action are only partially suitable for the performance of the printer, and the heat and humidity of the storage and operation area also achieve key effects in the universal 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.

Disclosure of Invention

In order to solve the problems, the invention provides the printer for the office equipment with enhanced performance, which effectively avoids the defects of intermittent perforation liquid discharge and weakened execution speed in the prior art.

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

a performance-enhancing printer for office equipment, comprising a holding piece A1; the supporting sheet A1 is provided with a perforation A2, and the perforation A2 penetrates through the supporting sheet A1;

the printer also comprises a temperature rising device, and the temperature rising device is a copper alloy radiator A3;

copper alloy radiator A3 is provided on stay A1 and also surrounds perforation A2 at a through position A4 on stay A1.

The printer also includes contact a 5; the contactor A5 is connected with the copper alloy radiator A3, and transmits electric energy to the copper alloy radiator A3 to heat the copper alloy radiator A3; copper alloy radiator A3 then delivered heat to perforation a2, leaving the print fluid in the correct heat range during its passage through perforation a 2.

The printer also comprises a heat induction instrument and a heat prevention instrument; the heat sensing instrument is used to acquire the heat from perforation a2 and also to transmit the heat value from perforation a2 to the heat protection instrument.

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.

Drawings

FIG. 1 is an overall architecture diagram of the enhanced performance printer for office equipment of the present invention;

fig. 2 is a schematic front view of the enhanced performance office equipment printer of the present invention.

Detailed Description

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

As shown in fig. 1 to 2, the performance-enhanced printer for office equipment of the present embodiment includes a holding sheet a 1; the supporting sheet A1 is provided with a perforation A2, and the perforation A2 penetrates through the supporting sheet A1;

the printer also comprises a temperature rising device, and the temperature rising device is a copper alloy radiator A3;

copper alloy radiator A3 is provided on stay A1 and also surrounds perforation A2 at a through position A4 on stay A1.

The printer also includes contact a 5; the contactor A5 is connected with the copper alloy radiator A3, and transmits electric energy to the copper alloy radiator A3 to heat the copper alloy radiator A3; copper alloy radiator A3 then delivered heat to perforation a2, leaving the print fluid in the correct heat range during its passage through perforation a 2.

The printer also comprises a heat induction instrument and a heat prevention instrument; the heat sensing instrument is used to acquire the heat from perforation a2 and also to transmit the heat value from perforation a2 to the heat protection instrument. The heat prevention instrument performs processing on the acquired heat value for printing, and the contact of the contactor a5 is operated depending on whether the heat value for spraying is higher than a set heat range or not.

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 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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