CN108334132A - A kind of multiunit automatic temp controller and method - Google Patents

A kind of multiunit automatic temp controller and method Download PDF

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Publication number
CN108334132A
CN108334132A CN201810113332.9A CN201810113332A CN108334132A CN 108334132 A CN108334132 A CN 108334132A CN 201810113332 A CN201810113332 A CN 201810113332A CN 108334132 A CN108334132 A CN 108334132A
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CN
China
Prior art keywords
temperature
heating
detection zone
control instruction
detecting device
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CN201810113332.9A
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Chinese (zh)
Inventor
应富江
胡永宏
沈华
毛昀
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ZHENHAI PETROCHEMICAL JIANAN ENGINEERING Co Ltd
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ZHENHAI PETROCHEMICAL JIANAN ENGINEERING Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN201810113332.9A priority Critical patent/CN108334132A/en
Publication of CN108334132A publication Critical patent/CN108334132A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D23/00Control of temperature
    • G05D23/19Control of temperature characterised by the use of electric means
    • G05D23/20Control of temperature characterised by the use of electric means with sensing elements having variation of electric or magnetic properties with change of temperature
    • G05D23/22Control of temperature characterised by the use of electric means with sensing elements having variation of electric or magnetic properties with change of temperature the sensing element being a thermocouple

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

The present invention relates to a kind of multiunit automatic temp controller and method, which includes:Processor and multiple temperature conditioning units, temperature conditioning unit include:Temperature control device and heating device, processor, temperature control device and heating device are sequentially connected;Heating device is uniformly arranged on the place to be heated of equipment to be heated;Each temperature conditioning unit is corresponded at the place to be heated of equipment to be heated and is respectively provided with a temperature-detecting device, and temperature-detecting device is connect with processor.By the way that the multiunit automatic temp controller of multichannel is arranged in the embodiment of the present invention, heating device is uniformly arranged on place to be heated, and temperature-detecting device is arranged in corresponding heating device, the temperature at place to be heated is detected by temperature-detecting device, thus heating temperature is controlled, the case where realizing and place's heating temperature to be heated be precisely controlled, and ensure that the uniformity of the temperature at place to be heated, prevent the temperature difference at place to be heated from leading to poor heating.

Description

A kind of multiunit automatic temp controller and method
Technical field
The present invention relates to heating, cryogenic temperature control technology field more particularly to a kind of multiunit automatic temp controllers And method.
Background technology
Currently, with the continuous promotion of big companies' manufacturing capacity, 12 road computers of existing heat treatment are multiunit certainly Dynamic temperature controlling instruments cannot meet the needs of enlargement development, and the existing equipment response time is slow, seriously affects weldering The uniformity of the precision and temperature of seam heat treatment temperature control.
Invention content
Of the existing technology in order to solve the problems, such as, it is multiunit certainly that at least one embodiment of the present invention provides one kind Dynamic temperature regulating device, including:Processor and multiple temperature conditioning units, the temperature conditioning unit include:Temperature control device and heating device, it is described Processor, the temperature control device and the heating device are sequentially connected;The heating device is uniformly arranged on equipment to be heated Place to be heated;Each described temperature conditioning unit, which is corresponded to, at the place to be heated of the equipment to be heated is respectively provided with a temperature detection dress It sets, the temperature-detecting device is connected to the processor;
The processor, the temperature for receiving the temperature-detecting device detection generate temperature control according to the temperature and refer to It enables, and temperature control instruction is sent to the corresponding temperature conditioning unit of the temperature-detecting device, to pass through the temperature control device control Make the heating device adjustment heating temperature.
Based on the above-mentioned technical proposal, the embodiment of the present invention can also make following improvement.
Optionally, the processor, is specifically used for, and receives the temperature of all temperature-detecting device detections, and to institute There is the temperature of the temperature-detecting device detection to be averaged to obtain mean temperature, the temperature detected according to the temperature-detecting device The size of degree and the mean temperature generates the temperature control instruction.
Optionally, the processor, is specifically used for, if multiunit automatic temp controller is in heating process,
When the temperature of temperature-detecting device detection is more than the mean temperature, generates the first temperature control instruction and be sent to The corresponding temperature conditioning unit of the temperature-detecting device, controlling the heating device to pass through the temperature control device reduces heating temperature To reduce heating speed;
When the temperature of temperature-detecting device detection is equal to the mean temperature, generates the second temperature control instruction and be sent to The corresponding temperature conditioning unit of the temperature-detecting device controls the heating device to pass through the temperature control device and keeps heating temperature To keep heating speed constant;
When the temperature of temperature-detecting device detection is less than the mean temperature, generates third temperature control instruction and be sent to The corresponding temperature conditioning unit of the temperature-detecting device controls the heating device to pass through the temperature control device and improves heating temperature To improve heating speed;
Wherein, the heating speed of the heating device is less than 200 DEG C/h.
Optionally, the processor, is specifically used for, if multiunit automatic temp controller is in cooling procedure,
When the temperature of temperature-detecting device detection is more than the mean temperature, generates the 4th temperature control instruction and be sent to The corresponding temperature conditioning unit of the temperature-detecting device, controlling the heating device to pass through the temperature control device reduces heating temperature To improve cooling velocity;
When the temperature of temperature-detecting device detection is equal to the mean temperature, generates the 5th temperature control instruction and be sent to The corresponding temperature conditioning unit of the temperature-detecting device controls the heating device to pass through the temperature control device and keeps heating temperature To keep cooling velocity constant;
When the temperature of temperature-detecting device detection is less than the mean temperature, generates the 6th temperature control instruction and be sent to The corresponding temperature conditioning unit of the temperature-detecting device controls the heating device to pass through the temperature control device and improves heating temperature To reduce cooling velocity;
Wherein, the cooling velocity of the heating device is less than 250 DEG C/h.
Optionally, the processor, is specifically used for, and according to the number of the temperature-detecting device, the temperature control is instructed It is sent to the temperature conditioning unit of reference numeral.
Optionally, the quantity of the temperature conditioning unit is 24.
Optionally, the temperature control device includes:Temperature controller;The heating device includes:Thermocouple.
Optionally, the processor includes:Memory is pre-stored with the temperature-detecting device and institute in the memory The number for stating temperature conditioning unit corresponds to table.
The embodiment of the present invention additionally provides a kind of multiunit temperature automatically controlled method, including:
Obtain the temperature of each detection zone at the place to be heated of equipment to be heated;
Temperature control instruction is generated according to the temperature of the detection zone, temperature control instruction is sent to the detection zone Temperature conditioning unit;
The temperature conditioning unit instructs adjustment heating temperature according to the temperature control.
Optionally, before the generation temperature control instruction according to the temperature of the detection zone, further include:
The temperature of each detection zone is gone averagely to be worth to mean temperature;
It is described that temperature control instruction is generated according to the temperature of the detection zone, it specifically includes:
According to the size of the temperature of the detection zone and the mean temperature, the temperature control instruction is generated.
Optionally, the size of the temperature according to the detection zone and the mean temperature generates the temperature control and refers to It enables, specifically includes:
If multiunit temperature automatically controlled method is in heating process,
When the temperature of the detection zone is more than the mean temperature, generates the first temperature control instruction and be sent to the detection The temperature conditioning unit in region reduces heating temperature to reduce heating speed;
When the temperature of the detection zone is equal to the mean temperature, generates the second temperature control instruction and be sent to the detection The temperature conditioning unit in region keeps heating temperature to keep heating speed constant;
When the temperature of the detection zone is less than the mean temperature, generates third temperature control instruction and be sent to the detection The temperature conditioning unit in region improves heating temperature to improve heating speed;
Wherein, the heating speed is less than 200 DEG C/h.
Optionally, the size of the temperature and the mean temperature according to the monitoring region, generates the temperature control and refers to It enables, specifically includes:
If multiunit temperature automatically controlled method is in cooling procedure,
When the temperature of the detection zone is more than the mean temperature, generates the 4th temperature control instruction and be sent to the detection The temperature conditioning unit in region reduces heating temperature to improve cooling velocity;
When the temperature of the detection zone is equal to the mean temperature, generates the 5th temperature control instruction and be sent to the detection The temperature conditioning unit in region keeps heating temperature to keep cooling velocity constant;
When the temperature of the detection zone is less than the mean temperature, generates the 6th temperature control instruction and be sent to the detection The temperature conditioning unit in region improves heating temperature to reduce cooling velocity;
Wherein, the cooling velocity is less than 250 DEG C/h.
Optionally, the temperature of each detection zone at the place to be heated for obtaining equipment to be heated, specifically includes:
By the temperature-detecting device inspection for being uniformly arranged on each detection zone at the place to be heated of the equipment to be heated Survey the temperature of each detection zone;
Temperature control instruction is sent to the temperature conditioning unit of the detection zone, is specifically included:
The temperature conditioning unit that the corresponding detection zone is found according to the number of the temperature-detecting device, by the temperature control Instruction is sent to the temperature conditioning unit of the detection zone.
Optionally, according to pre-stored temperature-detecting device table corresponding with the number of the temperature conditioning unit and the temperature The number of degree detection device finds the temperature conditioning unit of the corresponding detection zone.
The above-mentioned technical proposal of the present invention has the following advantages that compared with prior art:Pass through setting in the embodiment of the present invention Heating device is uniformly arranged on place to be heated by the multiunit automatic temp controller of multichannel, and temperature is arranged in corresponding heating device Detection device detects the temperature at place to be heated by temperature-detecting device, thus controls heating temperature, realizes to place to be heated Heating temperature is precisely controlled, and ensure that the uniformity of the temperature at place to be heated, prevents the temperature difference at place to be heated from causing The case where poor heating.
Description of the drawings
Fig. 1 is a kind of multiunit automatic temp controller structural schematic diagram provided in an embodiment of the present invention;
Fig. 2 is the multiunit temperature automatically controlled method flow schematic diagram of one kind that another embodiment of the present invention provides.
Specific implementation mode
In order to make the object, technical scheme and advantages of the embodiment of the invention clearer, below in conjunction with the embodiment of the present invention In attached drawing, technical scheme in the embodiment of the invention is clearly and completely described, it is clear that described embodiment is A part of the embodiment of the present invention, instead of all the embodiments.Based on the embodiments of the present invention, ordinary skill people The every other embodiment that member is obtained without making creative work, shall fall within the protection scope of the present invention.
As shown in Figure 1, one embodiment provided in an embodiment of the present invention provides a kind of multiunit automatic temp controller, Including:Processor and multiple temperature conditioning units, temperature conditioning unit include:Temperature control device and heating device, processor, temperature control device and add Thermal is sequentially connected;Heating device is uniformly arranged on the place to be heated of equipment to be heated;At the place to be heated of equipment to be heated Each corresponding temperature conditioning unit is respectively provided with a temperature-detecting device, and temperature-detecting device is connect with processor;
Processor, the temperature for receiving temperature-detecting device detection generate temperature control instruction according to temperature, and temperature control are referred to Order is sent to the corresponding temperature conditioning unit of temperature-detecting device, and heating temperature is adjusted to control heating device by temperature control device.
In the present embodiment, the quantity of the temperature conditioning unit is 24.
In the present embodiment, the temperature control device includes:Temperature controller;The heating device includes:Thermocouple;It is described Temperature controller includes:PRX4 temperature control instruments.
In the present embodiment, the processor includes:Memory is pre-stored with the temperature detection dress in the memory Set table corresponding with the number of the temperature conditioning unit.
In above-described embodiment, a thermocouple is individually controlled using 24 pieces of PXR4 temperature control instruments, and pass through processor All temperature conditioning units are connected, thus 24 pieces of temperature control instruments of unified management control, solve large product local heat treatmet equipment energy Power cannot complete the problem for meeting manufacturing process, and large-scale weld seam heat treatment temperature control essence is improved while equipment performance greatly improves Degree and temperature uniformity, improve the quality of heat treatment.
In the present embodiment, processor is specifically used for, and receives the temperature of all temperature-detecting device detections, and to all The temperature of temperature-detecting device detection is averaged to obtain mean temperature, according to the temperature of temperature-detecting device detection and average temperature The size of degree generates temperature control instruction.
In the present embodiment, processor is specifically used for, if multiunit automatic temp controller is in heating process,
When the temperature of temperature-detecting device detection is more than mean temperature, generates the first temperature control instruction and be sent to temperature detection The corresponding temperature conditioning unit of device reduces heating temperature to reduce heating speed to control heating device by temperature control device;
When the temperature of temperature-detecting device detection is equal to mean temperature, generates the second temperature control instruction and be sent to temperature detection The corresponding temperature conditioning unit of device keeps heating temperature to keep heating speed constant to control heating device by temperature control device;
When the temperature of temperature-detecting device detection is less than mean temperature, generates third temperature control instruction and be sent to temperature detection The corresponding temperature conditioning unit of device improves heating temperature to improve heating speed to control heating device by temperature control device;
Wherein, the heating speed of heating device is less than 200 DEG C/h.
In the present embodiment, processor is specifically used for, if multiunit automatic temp controller is in cooling procedure,
When the temperature of temperature-detecting device detection is more than mean temperature, generates the 4th temperature control instruction and be sent to temperature detection The corresponding temperature conditioning unit of device reduces heating temperature to improve cooling velocity to control heating device by temperature control device;
When the temperature of temperature-detecting device detection is equal to mean temperature, generates the 5th temperature control instruction and be sent to temperature detection The corresponding temperature conditioning unit of device keeps heating temperature to keep cooling velocity constant to control heating device by temperature control device;
When the temperature of temperature-detecting device detection is less than mean temperature, generates the 6th temperature control instruction and be sent to temperature detection The corresponding temperature conditioning unit of device improves heating temperature to reduce cooling velocity to control heating device by temperature control device;
Wherein, the cooling velocity of heating device is less than 250 DEG C/h.
In the present embodiment, processor is specifically used for, and according to the number of temperature-detecting device, temperature control instruction is sent to The temperature conditioning unit of reference numeral.
As shown in Fig. 2, the embodiment of the present invention additionally provides a kind of multiunit temperature automatically controlled method, including:
Obtain the temperature of each detection zone at the place to be heated of equipment to be heated;
Temperature control instruction is generated according to the temperature of detection zone, temperature control instruction is sent to the temperature conditioning unit of detection zone;
Temperature conditioning unit instructs adjustment heating temperature according to temperature control.
In the present embodiment, before generating temperature control instruction according to the temperature of detection zone, further include:
The temperature of each detection zone is gone averagely to be worth to mean temperature;
Temperature control instruction is generated according to the temperature of detection zone, is specifically included:
According to the size of the temperature of detection zone and mean temperature, temperature control instruction is generated.
In the present embodiment, according to the size of the temperature of detection zone and mean temperature, temperature control instruction is generated, it is specific to wrap It includes:
If multiunit temperature automatically controlled method is in heating process,
When the temperature of detection zone is more than mean temperature, the temperature control list that the first temperature control instruction is sent to detection zone is generated Member reduces heating temperature to reduce heating speed;
When the temperature of detection zone is equal to mean temperature, the temperature control list that the second temperature control instruction is sent to detection zone is generated Member keeps heating temperature to keep heating speed constant;
When the temperature of detection zone is less than mean temperature, the temperature control list that third temperature control instruction is sent to detection zone is generated Member improves heating temperature to improve heating speed;
Wherein, heating speed is less than 200 DEG C/h.
In the present embodiment, according to the size of the temperature and mean temperature in monitoring region, temperature control instruction is generated, it is specific to wrap It includes:
If multiunit temperature automatically controlled method is in cooling procedure,
When the temperature of detection zone is more than mean temperature, the temperature control list that the 4th temperature control instruction is sent to detection zone is generated Member reduces heating temperature to improve cooling velocity;
When the temperature of detection zone is equal to mean temperature, the temperature control list that the 5th temperature control instruction is sent to detection zone is generated Member keeps heating temperature to keep cooling velocity constant;
When the temperature of detection zone is less than mean temperature, the temperature control list that the 6th temperature control instruction is sent to detection zone is generated Member improves heating temperature to reduce cooling velocity;
Wherein, cooling velocity is less than 250 DEG C/h.
In the present embodiment, the temperature for obtaining each detection zone at the place to be heated of equipment to be heated, specifically includes:
It is each by the temperature-detecting device detection for being uniformly arranged on each detection zone at the place to be heated of equipment to be heated The temperature of a detection zone;
Temperature control instruction is sent to the temperature conditioning unit of detection zone, is specifically included:
Temperature control instruction is sent to inspection by the temperature conditioning unit that corresponding detection zone is found according to the number of temperature-detecting device Survey the temperature conditioning unit in region.
Finally it should be noted that:The above embodiments are merely illustrative of the technical solutions of the present invention, rather than its limitations;Although Present invention has been described in detail with reference to the aforementioned embodiments, it will be understood by those of ordinary skill in the art that:It still may be used With technical scheme described in the above embodiments is modified or equivalent replacement of some of the technical features; And these modifications or replacements, various embodiments of the present invention technical solution that it does not separate the essence of the corresponding technical solution spirit and Range.

Claims (10)

1. a kind of multiunit automatic temp controller, which is characterized in that including:Processor and multiple temperature conditioning units, the temperature control Unit includes:Temperature control device and heating device, the processor, the temperature control device and the heating device are sequentially connected;Institute State the place to be heated that heating device is uniformly arranged on equipment to be heated;Each is corresponded at the place to be heated of the equipment to be heated The temperature conditioning unit is respectively provided with a temperature-detecting device, and the temperature-detecting device is connected to the processor;
The processor, the temperature for receiving the temperature-detecting device detection generate temperature control instruction according to the temperature, and Temperature control instruction is sent to the corresponding temperature conditioning unit of the temperature-detecting device, with by described in temperature control device control Heating device adjusts heating temperature.
2. a kind of multiunit automatic temp controller according to claim 1, which is characterized in that the processor, specifically For receiving the temperature of all temperature-detecting device detections, and take to the temperature of all temperature-detecting device detections It is averagely worth to mean temperature, according to the size of the temperature and the mean temperature of temperature-detecting device detection, generates institute State temperature control instruction.
3. a kind of multiunit automatic temp controller according to claim 2, which is characterized in that the processor, specifically For, if multiunit automatic temp controller is in heating process,
When the temperature of temperature-detecting device detection is more than the mean temperature, generation the first temperature control instruction is sent to described The corresponding temperature conditioning unit of temperature-detecting device reduces heating temperature to drop to control the heating device by the temperature control device Low heating speed;
When the temperature of temperature-detecting device detection is equal to the mean temperature, generation the second temperature control instruction is sent to described The corresponding temperature conditioning unit of temperature-detecting device keeps heating temperature to protect to control the heating device by the temperature control device It is constant to hold heating speed;
When the temperature of temperature-detecting device detection is less than the mean temperature, generation third temperature control instruction is sent to described The corresponding temperature conditioning unit of temperature-detecting device improves heating temperature to carry to control the heating device by the temperature control device High heating speed;
Wherein, the heating speed of the heating device is less than 200 DEG C/h.
4. a kind of multiunit automatic temp controller according to claim 2, which is characterized in that the processor, specifically For, if multiunit automatic temp controller is in cooling procedure,
When the temperature of temperature-detecting device detection is more than the mean temperature, generation the 4th temperature control instruction is sent to described The corresponding temperature conditioning unit of temperature-detecting device reduces heating temperature to carry to control the heating device by the temperature control device High cooling velocity;
When the temperature of temperature-detecting device detection is equal to the mean temperature, generation the 5th temperature control instruction is sent to described The corresponding temperature conditioning unit of temperature-detecting device keeps heating temperature to protect to control the heating device by the temperature control device It is constant to hold cooling velocity;
When the temperature of temperature-detecting device detection is less than the mean temperature, generation the 6th temperature control instruction is sent to described The corresponding temperature conditioning unit of temperature-detecting device improves heating temperature to drop to control the heating device by the temperature control device Low cooling velocity;
Wherein, the cooling velocity of the heating device is less than 250 DEG C/h.
5. a kind of multiunit automatic temp controller according to any one of claims 1-4, which is characterized in that the processing Device is specifically used for, and according to the number of the temperature-detecting device, temperature control instruction is sent to the temperature control list of reference numeral Member.
6. a kind of multiunit temperature automatically controlled method, which is characterized in that including:
Obtain the temperature of each detection zone at the place to be heated of equipment to be heated;
Temperature control instruction is generated according to the temperature of the detection zone, temperature control instruction is sent to the temperature control of the detection zone Unit;
The temperature conditioning unit instructs adjustment heating temperature according to the temperature control.
7. the multiunit temperature automatically controlled method of one kind according to claim 6, which is characterized in that described according to the detection Before the temperature in region generates temperature control instruction, further include:
The temperature of each detection zone is gone averagely to be worth to mean temperature;
It is described that temperature control instruction is generated according to the temperature of the detection zone, it specifically includes:
According to the size of the temperature of the detection zone and the mean temperature, the temperature control instruction is generated.
8. the multiunit temperature automatically controlled method of one kind according to claim 7, which is characterized in that described according to the detection The size of the temperature in region and the mean temperature generates the temperature control instruction, specifically includes:
If multiunit temperature automatically controlled method is in heating process,
When the temperature of the detection zone is more than the mean temperature, generates the first temperature control instruction and be sent to the detection zone Temperature conditioning unit, reduce heating temperature to reduce heating speed;
When the temperature of the detection zone is equal to the mean temperature, generates the second temperature control instruction and be sent to the detection zone Temperature conditioning unit, keep heating temperature to keep heating speed constant;
When the temperature of the detection zone is less than the mean temperature, generates third temperature control instruction and be sent to the detection zone Temperature conditioning unit, improve heating temperature to improve heating speed;
Wherein, the heating speed is less than 200 DEG C/h.
9. the multiunit temperature automatically controlled method of one kind according to claim 7, which is characterized in that described according to the monitoring The size of the temperature in region and the mean temperature generates the temperature control instruction, specifically includes:
If multiunit temperature automatically controlled method is in cooling procedure,
When the temperature of the detection zone is more than the mean temperature, generates the 4th temperature control instruction and be sent to the detection zone Temperature conditioning unit, reduce heating temperature to improve cooling velocity;
When the temperature of the detection zone is equal to the mean temperature, generates the 5th temperature control instruction and be sent to the detection zone Temperature conditioning unit, keep heating temperature to keep cooling velocity constant;
When the temperature of the detection zone is less than the mean temperature, generates the 6th temperature control instruction and be sent to the detection zone Temperature conditioning unit, improve heating temperature to reduce cooling velocity;
Wherein, the cooling velocity is less than 250 DEG C/h.
10. according to any multiunit temperature automatically controlled method of one kind in claim 6-9, which is characterized in that described to obtain The temperature for taking each detection zone at the place to be heated of equipment to be heated, specifically includes:
It is each by the temperature-detecting device detection for being uniformly arranged on each detection zone at the place to be heated of the equipment to be heated The temperature of a detection zone;
Temperature control instruction is sent to the temperature conditioning unit of the detection zone, is specifically included:
The temperature conditioning unit that the corresponding detection zone is found according to the number of the temperature-detecting device, the temperature control is instructed It is sent to the temperature conditioning unit of the detection zone.
CN201810113332.9A 2018-02-05 2018-02-05 A kind of multiunit automatic temp controller and method Pending CN108334132A (en)

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Application Number Priority Date Filing Date Title
CN201810113332.9A CN108334132A (en) 2018-02-05 2018-02-05 A kind of multiunit automatic temp controller and method

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Application Number Priority Date Filing Date Title
CN201810113332.9A CN108334132A (en) 2018-02-05 2018-02-05 A kind of multiunit automatic temp controller and method

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109738084A (en) * 2018-12-24 2019-05-10 深圳欣旺达智能科技有限公司 Type variable simulates incubator tester and its control method

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007139714A2 (en) * 2006-05-24 2007-12-06 Eastman Chemical Company Crystallizer temperature control via jacketing/insulation
CN102372423A (en) * 2010-08-16 2012-03-14 福清市新福兴玻璃有限公司 Hot bending furnace for colored glazing glass, method for preparing colored glazing toughened hot-bent glass and colored glazing toughened hot-bent glass
CN103302831A (en) * 2013-06-17 2013-09-18 李金国 Die temperature control system and method
CN107044997A (en) * 2016-12-30 2017-08-15 南京晨光汉森柔性管有限公司 A kind of tubulose heat-insulation layer test device of thermal conductivity coefficient and method of testing

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007139714A2 (en) * 2006-05-24 2007-12-06 Eastman Chemical Company Crystallizer temperature control via jacketing/insulation
CN102372423A (en) * 2010-08-16 2012-03-14 福清市新福兴玻璃有限公司 Hot bending furnace for colored glazing glass, method for preparing colored glazing toughened hot-bent glass and colored glazing toughened hot-bent glass
CN103302831A (en) * 2013-06-17 2013-09-18 李金国 Die temperature control system and method
CN107044997A (en) * 2016-12-30 2017-08-15 南京晨光汉森柔性管有限公司 A kind of tubulose heat-insulation layer test device of thermal conductivity coefficient and method of testing

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109738084A (en) * 2018-12-24 2019-05-10 深圳欣旺达智能科技有限公司 Type variable simulates incubator tester and its control method

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