Energy-saving and emission-reducing type printing machine
By setting up an exhaust gas treatment and cleaning mechanism in the printing machine, purifying harmful gases and cleaning fiber impurities, the problem of harmful gases and energy waste generated by the printing machine is solved, and the effects of air purification and energy conservation are achieved.
Patent Information
- Application Number
- CN202422234674.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-09-11
AI Technical Summary
Existing printing machines produce harmful gases during use, resulting in poor air environment and energy waste problems.
The exhaust gas treatment mechanism and cleaning mechanism are set up in the printing machine, including exhaust gas treatment boxes, pumps, air outlet pumps, filter components, nozzles, cleaning liquid tanks, plasma purifiers, activated carbon adsorption plates, air purification plates, hair dryers, partitions, impurity collection components, etc. Through the coordinated work of these components, harmful gases and fiber impurities are purified and cleaned up, and heat energy is converted into electricity to reduce energy waste.
Effectively deal with harmful gases generated by the printing machine, purify the air environment, reduce exhaust gas emissions, improve cleaning efficiency, save energy, and achieve energy saving and emission reduction effects.
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Figure CN223278764U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the technical field of printing machines, and in particular relates to an energy-saving and emission-reducing printing machine. Background Art
[0002] Digital printing machine is also known as universal flatbed printer, curved printer. It can print any material and irregular soft and hard objects. Digital printing machine completely replaces traditional processes such as silk screen printing, pad printing and transfer printing.
[0003] The existing Chinese patent publication number is CN118224914B, which discloses a waste heat recovery device for a printing and setting oven, comprising: a recovery box, fixedly arranged on the outside of the oven, an air intake pipe and a heat exchange gas pipe connected to the inside of the oven fixedly arranged at the bottom of the recovery box, an air inlet provided on one side of the air intake pipe, and a collection port provided on the other side of the air intake pipe.
[0004] The air intake filter in the above invention can filter continuously and collect fiber impurities separately to prevent the fiber impurities from returning to the inside of the oven and accumulating inside the oven to cause safety hazards. However, the printing machine will produce harmful gases during use. This invention cannot handle the harmful gases produced by the printing machine, resulting in a poor air environment. Utility Model Content
[0005] The purpose of this application is to address the above-mentioned technical problems and provide an energy-saving and emission-reduction printing machine, which can effectively treat the harmful gases generated by the printing machine, thereby purifying the air around the working environment and enabling the printing machine to have the function of energy saving and emission reduction.
[0006] The present application provides an energy-saving and emission-reducing printing machine, including a printing machine body, wherein the printing machine body includes:
[0007] Exhaust gas treatment mechanism, including exhaust gas treatment box, exhaust pump, exhaust pump and filter assembly;
[0008] Cleaning mechanism, including baffles, blowers and impurity collection components;
[0009] Setting oven;
[0010] The vacuum pump and the air outlet pump are placed at both ends of the waste gas treatment box, the filter assembly is placed inside the waste gas treatment box, the cleaning mechanism is placed in the shaping oven, and the air outlet of the hair dryer is aligned with the partition.
[0011] In the present technical solution, an exhaust gas treatment mechanism and a cleaning mechanism are arranged on the printing machine body, and an exhaust gas treatment box, an air suction pump, an air outlet pump and a filter assembly are arranged on the exhaust gas treatment mechanism, and the air suction pump and the air outlet pump are placed at both ends of the exhaust gas treatment box, and the filter assembly is placed inside the exhaust gas treatment box. During the printing process, the printing machine body will produce harmful gases with flying catkins. At this time, the air suction pump in the exhaust gas treatment box is controlled to work, and the air suction pump can suck the harmful gases with flying catkins into the exhaust gas treatment box. Thereafter, the harmful gases with flying catkins are purified by the filter assembly to remove harmful substances in the gas, and the purified gases are discharged through the air outlet pump, thereby reducing the impact of the printing machine body on the air environment and reducing the exhaust gas emissions of the printing machine body. The purpose of emission reduction is achieved. After the cloth is printed by the printing machine body, it is transferred to the shaping oven. The cleaning mechanism in the shaping oven is provided with a partition, a blower and an impurity collection component, and the air outlet of the blower is aligned with the partition. When the cloth is shaped in the shaping oven, the fiber impurities on the cloth fly inside the shaping oven. At this time, the blower is controlled to work to gather the fiber impurities at the partition, and then the impurity collection component is controlled to work. The impurity collection component can effectively clean the fiber impurities at the partition, so that the inside of the shaping oven is kept clean. The heat energy in the shaping oven is converted into electrical energy, and the converted electrical energy is used to power the blower and the impurity collection component, thereby reducing energy waste, making the printing machine body more energy-efficient, and achieving the purpose of energy saving and emission reduction.
[0012] Furthermore, the exhaust gas treatment mechanism includes:
[0013] sprinkler;
[0014] Clean the liquid tank, which is connected to the nozzle.
[0015] In this technical solution, a nozzle and a cleaning liquid tank are set in the exhaust gas treatment mechanism, and the cleaning liquid tank and the nozzle are connected. Cleaning liquid is stored inside the cleaning liquid tank. The cleaning liquid can wet impurities such as flying catkins in the air. After being wetted by the cleaning liquid, the impurities become heavier and fall with the cleaning liquid, thereby removing larger impurities in the air, making it easier for the filter component to perform subsequent purification work.
[0016] Furthermore, the filtering component includes:
[0017] Plasma purification machine;
[0018] The filter box includes an activated carbon adsorption plate and an air purification plate.
[0019] In this technical solution, a plasma purifier and a filter box with an activated carbon adsorption plate and an air purification plate are arranged in the filter assembly. After the larger impurities in the air are removed, the air is further purified through the filter assembly. The air is first sterilized and disinfected by the plasma purifier to eliminate the odor in the air, and then enters the filter box. The activated carbon adsorption plate can effectively adsorb impurities in the air, and the air purification plate can further clean the air. At this time, the air is relatively clean, and the air outlet pump is controlled to work so that the cleaned air is discharged along the air outlet pump, thereby completing the purification work.
[0020] Furthermore, the cleaning mechanism includes:
[0021] First motor;
[0022] an oblique rod connected to the first motor;
[0023] Wherein, the hair dryer is connected to the oblique rod.
[0024] In this technical solution, a first motor and an inclined rod are arranged in the cleaning mechanism, and the hair dryer is connected to the inclined rod. When the cloth is shaped in the shaping oven, the hair dryer is controlled to work, and the first motor is controlled to work. The first motor drives the inclined rod and the hair dryer to rotate. The wind blown by the hair dryer can cover the entire partition, thereby comprehensively gathering the fiber impurities in the shaping oven to the partition, improving the cleaning efficiency and facilitating the shaping work of the shaping oven.
[0025] Furthermore, the impurity collection component includes:
[0026] a second motor including a lead screw;
[0027] A cleaning brush cooperates with the screw rod;
[0028] waste bins;
[0029] Wherein, the cleaning brush is in contact with the partition.
[0030] In the present technical solution, a second motor with a screw, a cleaning brush and a waste box are provided in the impurity collecting assembly. When a large amount of fiber impurities accumulate on the partition, the second motor is controlled to work, and the second motor drives the screw to rotate, so that the cleaning brush is displaced at the screw, and the cleaning brush is in contact with the partition. The cleaning brush can effectively clean the fiber impurities on the partition into the waste box, so that the partition remains tidy and a large amount of impurities are prevented from accumulating in the shaping oven. The electric energy used by the first motor, the blower and the second motor is converted from the heat energy generated by the shaping oven, which reduces energy waste and the printing machine body is more energy-efficient when in use.
[0031] Furthermore, the printing machine body is also provided with an air suction hood;
[0032] Wherein, the suction hood is placed at the suction pump.
[0033] In this technical solution, an air suction hood is set in the printing machine body, and the air suction hood is placed at the vacuum pump. When the vacuum pump is working, suction is generated at the air inlet. The air suction hood can effectively expand the suction force of the vacuum pump, facilitate the absorption of air with impurities around the printing machine body, and improve the emission reduction efficiency of the printing machine body.
[0034] The beneficial effects of this application are:
[0035] 1. The printing machine produces harmful gases with flying catkins during the printing process. At this time, the vacuum pump in the exhaust gas treatment box is controlled to work. The vacuum pump can suck the harmful gases with flying catkins into the exhaust gas treatment box. After that, the harmful gases with flying catkins are purified by the filter component to remove harmful substances in the gas. The purified gas is discharged through the air outlet pump, thereby reducing the exhaust gas emissions of the printing machine.
[0036] 2. After removing large particles of impurities in the air, the air is sent to the plasma purifier for sterilization and disinfection to eliminate odors in the air. It then enters the filter box, where the activated carbon adsorption plate can effectively adsorb impurities in the air, and the air purification plate can further clean the air. The air outlet pump is then controlled to discharge the cleaned air along the air outlet pump to complete the purification work.
[0037] 3. The air outlet of the hair dryer is aligned with the partition. When the hair dryer is working, it can gather fiber impurities at the partition. Then the impurity collection component is controlled to work. The impurity collection component can effectively clean the fiber impurities at the partition, so that the inside of the shaping oven remains tidy. The heat energy in the shaping oven is converted into electrical energy, which reduces energy waste and makes the printing machine body more energy-efficient, thus achieving the purpose of energy saving. BRIEF DESCRIPTION OF THE DRAWINGS
[0038] Figure 1 This is a schematic structural diagram of an energy-saving and emission-reducing printing machine for this application;
[0039] Figure 2 It is a structural diagram of the exhaust gas treatment mechanism;
[0040] Figure 3 It is a structural diagram of the cleaning mechanism;
[0041] The reference numerals in the figure are: 100, printing machine body; 110, shaping oven; 120, suction hood; 200, exhaust gas treatment mechanism; 210, exhaust gas treatment box; 220, vacuum pump; 230, air outlet pump; 240, filter assembly; 241, plasma purifier; 242, filter box; 243, activated carbon adsorption plate; 244, air purification plate; 250, nozzle; 260, cleaning liquid tank; 300, cleaning mechanism; 310, partition; 320, blower; 330, impurity collection assembly; 331, second motor; 332, cleaning brush; 333, waste box; 334, screw; 340, first motor; 350, inclined rod. DETAILED DESCRIPTION
[0042] The following will be combined with the accompanying drawings in the embodiments of the present application to clearly describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of this application.
[0043] The terms "first," "second," and the like in the specification and claims of this application are used to distinguish similar objects, and are not used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of this application can be implemented in an order other than that illustrated or described herein, and that the objects distinguished by "first," "second," and the like are generally of the same type, and do not limit the number of objects; for example, the first object can be one or more. In addition, the term "and / or" in the specification and claims refers to at least one of the connected objects, and the character " / " generally indicates that the objects connected are in an "or" relationship.
[0044] The following provides a detailed description of the embodiments of the present application through specific embodiments and their application scenarios in conjunction with the accompanying drawings.
[0045] Example 1:
[0046] like Figure 1-3 As shown, the embodiment of the present application provides an energy-saving and emission-reducing printing machine, including a printing machine body 100, wherein the printing machine body 100 includes:
[0047] The exhaust gas treatment mechanism 200 includes an exhaust gas treatment box 210, an exhaust pump 220, an exhaust pump 230 and a filter assembly 240;
[0048] The cleaning mechanism 300 includes a partition 310, a blower 320 and an impurity collecting assembly 330;
[0049] Setting oven 110;
[0050] The vacuum pump 220 and the air outlet pump 230 are placed at both ends of the waste gas treatment box 210, the filter assembly 240 is placed inside the waste gas treatment box 210, the cleaning mechanism 300 is placed in the shaping oven 110, and the air outlet of the hair dryer 320 is aligned with the partition 310.
[0051] By setting an exhaust gas treatment mechanism 200 and a cleaning mechanism 300 on the printing machine body 100, an exhaust gas treatment box 210, an air suction pump 220, an air outlet pump 230 and a filter component 240 are set in the exhaust gas treatment mechanism 200, and the air suction pump 220 and the air outlet pump 230 are placed at both ends of the exhaust gas treatment box 210, and the filter component 240 is placed inside the exhaust gas treatment box 210. During the printing process, the printing machine body 100 will produce harmful gas with flying catkins. At this time, the air suction pump 220 in the exhaust gas treatment box 210 is controlled to work, and the air suction pump 220 can suck the harmful gas with flying catkins into the exhaust gas treatment box 210. Thereafter, the harmful gas with flying catkins is purified by the filter component 240 to remove harmful substances in the gas. The purified gas is discharged through the air outlet pump 230, thereby reducing the impact of the printing machine body 100 on the air environment and reducing the exhaust gas emissions of the printing machine body 100, achieving 310 , and the impurity collecting assembly 330 is controlled to work. The impurity collecting assembly 330 can effectively clean the fiber impurities at the partition 310, thereby keeping the interior of the shaping oven 110 clean and tidy. The heat energy in the shaping oven 110 is converted into electrical energy, and the converted electrical energy is used to power the hair dryer 320 and the impurity collecting assembly 330, thereby reducing energy waste and making the printing machine body 100 more energy-efficient, thereby achieving the purpose of energy saving and emission reduction.
[0052] Furthermore, the exhaust gas treatment mechanism 200 includes:
[0053] Nozzle 250;
[0054] The cleaning liquid tank 260 is connected to the spray head 250 .
[0055] By setting a nozzle 250 and a cleaning liquid tank 260 in the exhaust gas treatment mechanism 200, the cleaning liquid tank 260 and the nozzle 250 are connected, and cleaning liquid is stored inside the cleaning liquid tank 260. The cleaning liquid can wet impurities such as flying catkins in the air. After being wetted by the cleaning liquid, the impurities become heavier and fall with the cleaning liquid, thereby removing larger impurities in the air, making it easier for the filter component 240 to perform subsequent purification work.
[0056] Furthermore, the filter assembly 240 includes:
[0057] Plasma purifier 241;
[0058] The filter box 242 includes an activated carbon adsorption plate 243 and an air purification plate 244 .
[0059] By arranging a plasma purifier 241 and a filter box 242 with an activated carbon adsorption plate 243 and an air purification plate 244 in the filter component 240, after the larger impurities in the air are removed, the air is further purified through the filter component 240. The air first passes through the plasma purifier 241 for sterilization and disinfection to eliminate the odor in the air, and then enters the filter box 242. The activated carbon adsorption plate 243 can effectively adsorb impurities in the air, and the air purification plate 244 can further clean the air. At this time, the air is relatively clean, and the air outlet pump 230 is controlled to work so that the cleaned air is discharged along the air outlet pump 230, thereby completing the purification work.
[0060] Example 2:
[0061] like Figure 1-3 As shown, the embodiment of the present application provides an energy-saving and emission-reducing printing machine, which, in addition to the technical solutions of the above embodiments, also has the following technical features. The cleaning mechanism 300 includes:
[0062] a first motor 340;
[0063] The inclined rod 350 is connected to the first motor 340;
[0064] The hair dryer 320 is connected to the inclined rod 350 .
[0065] By arranging a first motor 340 and an inclined rod 350 in the cleaning mechanism 300, and connecting the hair dryer 320 and the inclined rod 350, when the cloth is shaped in the shaping oven 110, the hair dryer 320 is controlled to work, and the first motor 340 is controlled to work. The first motor 340 drives the inclined rod 350 and the hair dryer 320 to rotate. The wind blown by the hair dryer 320 can cover the entire partition 310, thereby comprehensively gathering the fiber impurities in the shaping oven 110 to the partition 310, thereby improving the cleaning efficiency and facilitating the shaping work of the shaping oven 110.
[0066] Furthermore, the impurity collecting assembly 330 includes:
[0067] The second motor 331 includes a screw rod 334;
[0068] A cleaning brush 332 cooperates with a screw rod 334;
[0069] waste bin 333;
[0070] The cleaning brush 332 is in contact with the partition 310 .
[0071] By providing a second motor 331 with a screw rod 334, a cleaning brush 332 and a waste box 333 in the impurity collecting assembly 330, when a large amount of fiber impurities accumulate on the partition 310, the second motor 331 is controlled to work, and the second motor 331 drives the screw rod 334 to rotate, so that the cleaning brush 332 is displaced at the screw rod 334, and the cleaning brush 332 is in contact with the partition 310. The cleaning brush 332 can effectively clean the fiber impurities on the partition 310 into the waste box 333, so that the partition 310 remains tidy and a large amount of impurities are prevented from accumulating in the shaping oven 110. The electric energy used by the first motor 340, the blower 320 and the second motor 331 is converted from the heat energy generated by the shaping oven 110, which reduces energy waste. The printing machine body 100 is more energy-efficient when in use.
[0072] Furthermore, the printing machine body 100 is also provided with an air suction hood 120;
[0073] The suction hood 120 is placed at the suction pump 220 .
[0074] By setting an air suction hood 120 in the printing machine body 100, the air suction hood 120 is placed at the vacuum pump 220. When the vacuum pump 220 is working, suction is generated at the air inlet. The air suction hood 120 can effectively expand the suction force of the vacuum pump 220, facilitate the absorption of air with impurities around the printing machine body 100, and improve the emission reduction efficiency of the printing machine body 100.
[0075] It should be noted that, in this article, the terms "comprise", "include" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the statement "comprises a ..." does not exclude the presence of other identical elements in the process, method, article or device comprising the element. In addition, it should be noted that the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in the opposite order according to the functions involved. For example, the described method may be performed in an order different from that described, and various steps may also be added, omitted, or combined. In addition, the features described with reference to certain examples may be combined in other examples.
[0076] The embodiments of the present application are described above in conjunction with the accompanying drawings, but the present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of this application, ordinary technicians in this field can also make many forms without departing from the purpose of this application and the scope of protection of the claims, all of which are within the protection of this application.
Claims
1. An energy-saving and emission-reducing printing machine, comprising a printing machine body (100), characterized in that: The printing machine body (100) comprises: An exhaust gas treatment mechanism (200) includes an exhaust gas treatment box (210), an air extraction pump (220), an air outlet pump (230), and a filter assembly (240); A cleaning mechanism (300) includes a partition (310), a blower (320) and an impurity collecting assembly (330); a shaping oven (110); The vacuum pump (220) and the air outlet pump (230) are placed at both ends of the waste gas treatment box (210), the filter assembly (240) is placed inside the waste gas treatment box (210), the cleaning mechanism (300) is placed in the shaping oven (110), and the air outlet of the blower (320) is aligned with the partition (310).
2. The energy-saving and emission-reducing printing machine according to claim 1, characterized in that: The exhaust gas treatment mechanism (200) comprises: nozzle (250); The cleaning liquid tank (260) is connected to the spray head (250).
3. The energy-saving and emission-reducing printing machine according to claim 2, characterized in that: The filter assembly (240) comprises: Plasma purification machine (241); The filter box (242) includes an activated carbon adsorption plate (243) and an air purification plate (244).
4. The energy-saving and emission-reducing printing machine according to claim 3, characterized in that: The cleaning mechanism (300) comprises: a first motor (340); an oblique rod (350) connected to the first motor (340); Wherein, the hair dryer (320) is connected to the inclined rod (350).
5. The energy-saving and emission-reducing printing machine according to claim 4, characterized in that: The impurity collecting assembly (330) comprises: A second motor (331) includes a screw rod (334); A cleaning brush (332) cooperates with the screw rod (334); waste bin (333); The cleaning brush (332) is in contact with the partition (310).
6. The energy-saving and emission-reducing printing machine according to claim 5, characterized in that: The printing machine body (100) is further provided with an air suction hood (120); The suction hood (120) is placed at the suction pump (220).
Citation Information
Patent Citations
A waste heat recovery device for printing and setting oven
CN118224914B