CN213681307U - Automatic reinforced high temperature dyeing machine - Google Patents
Automatic reinforced high temperature dyeing machine Download PDFInfo
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- CN213681307U CN213681307U CN202022363819.8U CN202022363819U CN213681307U CN 213681307 U CN213681307 U CN 213681307U CN 202022363819 U CN202022363819 U CN 202022363819U CN 213681307 U CN213681307 U CN 213681307U
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- containing box
- alkali
- dye
- anhydrous sodium
- sodium sulphate
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Abstract
An automatic feeding high-temperature dyeing machine comprises a dye vat, a dye containing box, a sodium sulfate containing box, an alkali containing box and a control console, wherein the dye containing box is communicated with dye guide pipes extending into the dye vat, and each dye guide pipe is provided with a flow controller; the bottom parts of the anhydrous sodium sulphate containing box and the alkali containing box are respectively provided with a weight sensor, the anhydrous sodium sulphate containing box is communicated with an anhydrous sodium sulphate conduit which extends into the dye vat, the alkali containing box is communicated with an alkali conduit which extends into the dye vat, and the anhydrous sodium sulphate conduit and the alkali conduit are respectively provided with a control valve; the control console is in signal control connection with each control valve, the weight sensor and the flow controller respectively, so that a user can input dyes with different colors into the dye vat according to different proportions, and simultaneously, sodium sulfate and alkali are input into the dye vat together in different sequences and quantities according to the characteristics of the fabric to be prepared, so that the fabrics with different styles are prepared, the error rate is low, the labor cost is reduced, and the efficiency is improved.
Description
Technical Field
The utility model belongs to the technical field of dyeing and finishing equipment and specifically relates to indicate an automatic reinforced high temperature dyeing machine.
Background
In general, dyeing machines are classified into a finished product dyeing machine and a high temperature dyeing machine, wherein the high temperature dyeing machine is mainly used for dyeing of fabric.
Most of existing dyeing machines have the functions of uniform dyeing and finishing effect and difficulty in dyeing flowers, but the realization of the function not only needs to depend on the charging sequence and proportion of raw materials such as dye, anhydrous sodium sulphate, alkali and the like, but also has higher requirements on the adding time and the adding amount according to parts of various raw materials, and if all the conditions are manually operated, the existing operation errors are larger, the manpower is wasted, and the industrial modernization trend cannot be followed.
SUMMERY OF THE UTILITY MODEL
The utility model provides an automatic reinforced high temperature dyeing machine, its main aim at overcome and all rely on the manpower, defect of inefficiency to the interpolation of dyeing material now.
In order to solve the technical problem, the utility model adopts the following technical scheme:
an automatic feeding high-temperature dyeing machine comprises a dye vat and a plurality of dye containing boxes, wherein the dye containing boxes contain dyes with different colors respectively, the dyeing machine also comprises a sodium sulfate containing box, an alkali containing box and a control console, dye guide pipes extending into the dye vat are communicated with the dye containing boxes, and each dye guide pipe is provided with a flow controller to control the flow of the dye; the bottom parts of the anhydrous sodium sulphate containing box and the alkali containing box are respectively provided with a weight sensor for weighing, the anhydrous sodium sulphate containing box is communicated with an anhydrous sodium sulphate guide pipe extending into the dye vat, the alkali containing box is communicated with an alkali guide pipe extending into the dye vat, and the anhydrous sodium sulphate guide pipe and the alkali guide pipe are respectively provided with a control valve for controlling the feeding amount; the console is in signal control connection with the control valves, the weight sensor and the flow controller respectively.
Preferably, the anhydrous sodium sulphate conduit and the alkali conduit are respectively arranged obliquely.
Preferably, the control valve is arranged at the lower discharge end of the anhydrous sodium sulphate guide pipe and the alkali guide pipe.
Preferably, the control valve is an electric ball valve.
Compared with the prior art, the utility model discloses the beneficial effect who produces lies in:
the utility model discloses a set up anhydrous sodium sulphate and hold the case, alkali holds the case and is used for controlling the flow controller of pay-off volume, the control valve for the user can be as required with the dyestuff of different colours according to different proportions input to the dye vat in mix, the surface fabric characteristic of preparation as required simultaneously, with anhydrous sodium sulphate and alkali with different order, quantity input the dye vat in mix together, and then make the surface fabric of different patterns, its error rate is low, and greatly reduced the cost of labor, the efficiency is improved.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
Refer to fig. 1. An automatic feeding high-temperature dyeing machine comprises a dye vat 1, a plurality of dye containing boxes 2, a anhydrous sodium sulphate containing box 3, an alkali containing box 4 and a control console 5, wherein the dye containing boxes 2 respectively contain dyes with different colors, the dye containing boxes 2 are communicated with dye guide pipes 21 extending into the dye vat 1, and each dye guide pipe 21 is provided with a flow controller 22 for controlling the flow of the dye; the anhydrous sodium sulphate containing box 3 and the alkali containing box 4 are respectively provided with a weight sensor (not shown) for weighing at the bottom, the anhydrous sodium sulphate containing box 3 is communicated with an anhydrous sodium sulphate conduit 31 extending into the dye vat 1, the alkali containing box 4 is communicated with an alkali conduit 41 extending into the dye vat 1, and the anhydrous sodium sulphate conduit 31 and the alkali conduit 41 are respectively provided with a control valve 6 for controlling the feeding amount; the console 5 is connected to the control valves 6, the weight sensor, and the flow rate controller 22 in a signal-controlled manner. The utility model discloses a set up anhydrous sodium sulphate and hold case 3, alkali holds case 4 and is used for controlling the flow controller 22 of pay-off volume, control valve 6, make the user mix in can inputing dye vat 1 with the dyestuff of different colours according to different proportions as required, the surface fabric characteristic of preparation as required simultaneously, with anhydrous sodium sulphate and alkali with the order of difference, the quantity is inputed the dye vat together and is mixed, and then make the surface fabric of different patterns, its error rate is low, and greatly reduced the cost of labor, the efficiency is improved.
Specifically, refer to fig. 1. In the utility model, the anhydrous sodium sulphate conduit 31 and the alkali conduit 41 are respectively arranged obliquely. The control valve 6 is arranged at the lower discharge ends of the anhydrous sodium sulphate conduit 31 and the alkali conduit 41. The control valve is an electric ball valve. The utility model discloses a control is realized through control cabinet 5, the user sets up each dyestuff promptly and holds case 2 on control cabinet 5, the anhydrous sodium sulphate holds case 3, the alkali holds after 4 required loads and the ejection of compact order of case, control cabinet 5 holds case 2 according to the dyestuff that preset sequence control corresponds, the anhydrous sodium sulphate holds case 3, the alkali holds flow controller 22 or the control valve 6 start on the case 4, make different dyestuffs hold in the case 2 in different dyestuff pass through dyestuff pipe 21 and carry dye vat 1, the anhydrous sodium sulphate that the anhydrous sodium sulphate held in the case 3 carries dye vat 1 through anhydrous sodium sulphate pipe 31 in, the alkali holds the alkali in the case 4 and mixes in carrying dye vat 1 through alkali pipe 41. The flow controllers 22 can detect the flow in real time, and when the detected flow reaches a preset value, the corresponding flow controller 22 stops acting; the weight sensors at the bottoms of the anhydrous sodium sulphate containing box 3 and the alkali containing box 4 respectively sense the weight of the corresponding anhydrous sodium sulphate containing box 3 and the alkali containing box 4 in real time, and when the weight of the anhydrous sodium sulphate containing box 3 and the weight of the alkali containing box 4 are reduced to a set value, a signal is sent to the console 5, so that the console controls the corresponding control valve 6 to be closed.
The above examples are merely illustrative for clarity and are not intended to limit the embodiments. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. And are neither required nor exhaustive of all embodiments. And obvious variations or modifications can be made without departing from the scope of the invention.
Claims (4)
1. The utility model provides an automatic reinforced high temperature dyeing machine, includes dye vat and several dyestuff containing box, several dyestuff containing box holds the dyestuff that the colour is different respectively, its characterized in that: the dye vat is characterized by further comprising a anhydrous sodium sulphate containing box, an alkali containing box and a control console, wherein dye guide pipes extending into the dye vat are communicated with the dye containing box, and each dye guide pipe is provided with a flow controller for controlling the flow of dye; the bottom parts of the anhydrous sodium sulphate containing box and the alkali containing box are respectively provided with a weight sensor for weighing, the anhydrous sodium sulphate containing box is communicated with an anhydrous sodium sulphate guide pipe extending into the dye vat, the alkali containing box is communicated with an alkali guide pipe extending into the dye vat, and the anhydrous sodium sulphate guide pipe and the alkali guide pipe are respectively provided with a control valve for controlling the feeding amount; the console is in signal control connection with the control valves, the weight sensor and the flow controller respectively.
2. An automatic feed high temperature dyeing machine as claimed in claim 1, characterized in that: the anhydrous sodium sulphate conduit and the alkali conduit are respectively arranged in an inclined way.
3. An automatic feed high temperature dyeing machine as claimed in claim 2, characterized in that: the control valve is arranged at the lower discharge end of the anhydrous sodium sulphate guide pipe and the alkali guide pipe.
4. An automatic feed high temperature dyeing machine as claimed in claim 1, characterized in that: the control valve is an electric ball valve.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022363819.8U CN213681307U (en) | 2020-10-22 | 2020-10-22 | Automatic reinforced high temperature dyeing machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022363819.8U CN213681307U (en) | 2020-10-22 | 2020-10-22 | Automatic reinforced high temperature dyeing machine |
Publications (1)
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CN213681307U true CN213681307U (en) | 2021-07-13 |
Family
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Family Applications (1)
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CN202022363819.8U Active CN213681307U (en) | 2020-10-22 | 2020-10-22 | Automatic reinforced high temperature dyeing machine |
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CN (1) | CN213681307U (en) |
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2020
- 2020-10-22 CN CN202022363819.8U patent/CN213681307U/en active Active
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