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歐陸EUROTHERM碳勢控制儀2604/2704

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  • 公司名稱廣州博瑋自動化設備有限公司
  • 品       牌
  • 型       號
  • 所  在  地廣州市
  • 廠商性質代理商
  • 更新時間2022/5/3 18:07:15
  • 訪問次數1133
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廣州博瑋自動化設備有限公司是一家以工業自動化為主體,集銷售、維修、技改、研發、培訓為一體的高科技公司。經過一段時間的發展,已具有相當的規模,并在自動化行業中具有一定的影響力,目前設有業務部、維修部、電氣工程部、技術培訓部、產品研發部等五個部門,*定長切斷高速飛剪追剪與交流異步伺服電機控制專家,廣東省自動化學會理事單位/學會VVF委員會委員。

公司以“針對性的銷售和推廣、出色的產品質量、高效的工業自動化集成解決方案、富有影響力的客戶服務”為市場目標。服務內容包括自動化控制產品的銷售與維修,電子產品開發,工廠設備定期維護,工控技術培訓,自動化控制系統的定長切斷高速飛剪系統與交流伺服節能控制交鑰匙工程的設計、編程,安裝和調試,單機設備自動化聯線等七大部分。

產品銷售:公司與各工控產品生產商保持良好的合作關系,

品牌包括

1:英國歐陸自動化-多回路溫度控制系統/溫度壓力儀表/傳感器/可控硅/記錄儀/DCS系統;英國WEST-多回路溫度控制系統/溫度壓力儀表;

2:英國SSD(原歐陸)直流調速器/變頻器/交流伺服;

3:時光IMS系列交流交流伺服控制器/大連交流異步伺服電機/成都光煒德國AMK技術交流異步伺服電機/中國臺灣富田變頻與交流異步伺服電機/中國臺灣億圖全系列伺服數控系統/德國SEW變頻器與減速機。

4:英國CT/西門子/ABB/意大利EEI/中國臺灣凌陽--直流調速器/變頻器;

5:德國JUMAO溫度壓力儀表/傳感器/記錄儀,美國HONEYWELL/日本富士溫度壓力儀表/傳感器/記錄儀;

6:日本RKC儀表/記錄儀/壓力傳感器/可控硅;美國DYnisco/意大利Gefran/意大利ERO溫度壓力儀表,傳感器,壓力表,閥位控制器;

7:西門子-觸摸屏,PLC/中國臺灣威綸觸摸屏;德國倫咨交流伺服;除上述品牌公司在廣州建有大規模的庫存中心,備有各品牌電氣儀器配件,質量、價格和物流速度均屬*。

產品維修:電子電氣產品維修的主要企業。精修進口國產變頻器,直流調速器,交流伺服控制器,PLC,觸摸屏,工控機工業電腦,記錄儀,儀器儀表,交直流電機與交流伺服電機等工控產品、醫療儀器、娛樂機器、樓宇和智能家居類控制器等。高超的檢測技術可把故障點落實到IC等元件上。在工控行業,“維修工控產品,找博瑋”已形成口碑。有許多維修中心承諾*修復產品,要真正做到其實是夸大事實。目前博瑋公司的元件級修復率為81.5%,在同行中是比較高的,公司下一步的目標是提高到85%。

產品開發:精通單片機電子技術,為客戶開發各種電子產品,為各行業開發各種非標準機械設備,目前正在研發工業機器人,其成果可廣泛應用于包裝、噴涂、焊接、玻璃等行業。

設備維護:以*的專業技術力量,承接工廠的設備對外包維護保養。為客戶解決因人手不足或技術不專,而引起生產線頻出故障影響生產等問題。

技術培訓:*的培訓體系,使公司的技術隊伍不斷壯大。并已為社會培訓出眾多的工控技術人才。參加培訓的講師全部是有實踐經驗的工程師,培訓注重的是實際操作的應用,*案例式的培訓。詳情參考公司的培訓資訊。

自動化控制工程項目:承接各種品牌PLC、觸摸屏、組態軟件、工業組網、DCS和SCADA系統的編程;按客戶的設備和工藝要求進行自動化系統的設計、安裝和調試。能提供一攬子自動化解決方案。

1:專業定長切斷/高速飛剪/追剪系統—汽車散熱器高頻焊接制管線/鋼管高頻焊接制管線/鋼板鋁板鋼筋鋼管剪切生產線/瓦楞紙電腦橫切生產線/PVC管材鋁管不銹鋼復合管剪切生產線/包裝機械-紙張薄膜鋁箔復合膜流延膜剪切生產線/其他定長剪切設備等采用交流伺服控制的電氣控制系統有豐富的設計、編程,調試、維護經驗;

2:為廣大客戶在冶金行業(多輥軋機設備,鋼板彩涂設備,鍍鋅設備,平板設備,涂油設備,鋼卷合卷重卷設備,壓延設備,拉矯設備,分條設備,分剪縱剪設備,整平設備),塑料橡膠行業(擠出機,密煉機,流延膜機,吹膜機,拉絲機吹瓶機),包裝印刷行業(流延膜設備、淋膜復合設備、瓦楞紙設備、套色印刷設備),化纖行業(印染設備,中纖與長纖設備,無紡布設備),電線電纜行業(單對絞設備、成纜設備、退火拉絲設備)等設計、編程,調試與制造了數百套電氣控制柜,在客戶中享有良好的信譽。

3:節能控制交鑰匙工程:注塑機械,高速沖床,紡織機械,陶瓷機械,造紙機械,塑料機械,鍋爐系統,*空調,恒壓供水設備,水廠及廢水處理設備等行業采用交流伺服或變頻控制節能,節能效果明顯高達50%-60%.

自動化聯線:大型的石化工廠除外,現國內的工廠生產線大多數是以單臺設備為主,存在效率低,產能低,故障高,用人多等問題,這種模式已難以滿足市場和社會的需求。生產過程自動化已是發展的一個趨勢,博瑋公司提供的單臺設備的自動化聯線服務,能使工廠的設備全部聯線,做到機器統一運行調度,統一生產。

公司目標:“針對性的銷售和推廣、出色的產品質量、高效的工業自動化集成解決方案、富有影響力的客戶服務”

 

“溫度控制器”,“記錄儀”“歐陸DCS”,“歐陸直流調速器”,“伺服控制器”,“歐陸可控硅”,“伺服電機”,“壓力傳感器”,“N-TRON”,“瑞恩電氣”


2604/2704 碳勢控制表功能說明

歐陸EUROTHERM碳勢控制儀2604/2704 產品信息

2604/2704 碳勢控制表功能說明

 

Carburising

When Mild steels or certain low carbon steels are heated at temperatures above 900oC in a carbon rich atmosphere, the surface of the steel absorbs carbon by diffusion. The depth of carbon enrichment depends on the time and temperature of the treatment known as carburising. The presence of carbon in the steel causes a change in its physical properties. Accurate control of both temperature and carbon potential are needed to achieve the required profile of carbon enrichment.

Zirconia Sensor Theory

The Zirconia probe generates a millivolt signal based on the ratio of oxygen concentration between the reference airside of the probe (outside the furnace) and the amount of oxygen actually inside the furnace. Temperature is measured using a built in thermocouple at the tip of the probe. Together, these signals are used by the 2604 zirconia function block to calculate the actual percentage of carbon in the furnace atmosphere. The 2604 oxygen probe interface is compatible with most commonly used zirconia probes.

 

2604 Integrated Furnace Controller

              Synchronised temperature/carbon profiles

              Automatic probe cleaning

              Furnace sooting alarm

              Probe deterioration alarm

              Temperature control of quench

 

 

 

 

 

 

 

 

 

 

 

A 2604 three loop controller is used to control both furnace temperature, carbon potential and quench. In many batch furnace applications a setpoint programmer is used to generate temperature and carbon profiles which are synchronised to a common time base.

Furnace Temperature Control

Although the sensor input of the temperature loop can come from the zirconia probe, it is more common for a separate thermocouple to be used. The heat control output can either be connected to gas burners or thyristors. In some applications a cooling output may also be connected to a circulation fan or an exhaust damper.

Furnace Atmosphere control

In atmosphere loops the controller increases the carbon potential by opening a solenoid valve which allows a carburising gas (ie propane) to enter the furnace. Conversely, to decrease the carbon potential, air or nitrogen is introduced into the furnace. Automatic probe cleaning functions ensure that the reading is accurate, whilst probe health and sooting alarms warn of a deterioration in the probes performance.

Quench Temperature Control

Steel parts are rapidly cooled (Quenched) from around 850oC to obtain the desired hardness, strength or toughness. Depending on the material being treated, the quench medium is usually oil or water. The quench control loop maintains the quench bath at the desired temperature and provides a quench timer facility.

Sooting Alarm

As well as alarms on the temperature and carbon potential in the furnace the 2604 can trigger an alarm, when the atmospheric conditions are such that carbon will be deposited as soot on all surfaces inside the furnace, including the workpiece. Avoiding sooting protects the furnace lining, maintains the accuracy of the zirconia probe and stops formation of a soot barrier on the workpiece which can prevent carbon diffusion.

Automatic Probe Cleaning

The 2604 has a probe clean and recovery strategy that can be programmed to occur between batches or manually requested by an operator. A short blast of compressed air is used to remove any soot and other particles that may have accumulated on the probe. Once the cleaning has been completed the time taken for the probe to recover is measured. If the recovery time is too long this indicates that the probe is ageing and replacement or refurbishment is due. During the cleaning and recovery cycle, the %CP reading is frozen thereby ensuring continuous furnace operation.

Enriching Gas Correction

A gas analyser can be used to determine the CO concentration of the enriching gas. If an analogue output is available from the analyser, it can be fed into the 2604 to automatically adjust the calculated % carbon reading. Alternatively, an operator may enter this value manually.

 

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