WO2022016614A1 - 一种用于热镀锌锅的高效吸热装置 - Google Patents

一种用于热镀锌锅的高效吸热装置 Download PDF

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Publication number
WO2022016614A1
WO2022016614A1 PCT/CN2020/107036 CN2020107036W WO2022016614A1 WO 2022016614 A1 WO2022016614 A1 WO 2022016614A1 CN 2020107036 W CN2020107036 W CN 2020107036W WO 2022016614 A1 WO2022016614 A1 WO 2022016614A1
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Prior art keywords
plate
welded
heat
pipe
box
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PCT/CN2020/107036
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English (en)
French (fr)
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杨建辉
樊泽贵
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惠博新型材料有限公司
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Publication of WO2022016614A1 publication Critical patent/WO2022016614A1/zh

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    • CCHEMISTRY; METALLURGY
    • C23COATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; CHEMICAL SURFACE TREATMENT; DIFFUSION TREATMENT OF METALLIC MATERIAL; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL; INHIBITING CORROSION OF METALLIC MATERIAL OR INCRUSTATION IN GENERAL
    • C23CCOATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; SURFACE TREATMENT OF METALLIC MATERIAL BY DIFFUSION INTO THE SURFACE, BY CHEMICAL CONVERSION OR SUBSTITUTION; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL
    • C23C2/00Hot-dipping or immersion processes for applying the coating material in the molten state without affecting the shape; Apparatus therefor
    • C23C2/04Hot-dipping or immersion processes for applying the coating material in the molten state without affecting the shape; Apparatus therefor characterised by the coating material
    • C23C2/06Zinc or cadmium or alloys based thereon
    • CCHEMISTRY; METALLURGY
    • C23COATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; CHEMICAL SURFACE TREATMENT; DIFFUSION TREATMENT OF METALLIC MATERIAL; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL; INHIBITING CORROSION OF METALLIC MATERIAL OR INCRUSTATION IN GENERAL
    • C23CCOATING METALLIC MATERIAL; COATING MATERIAL WITH METALLIC MATERIAL; SURFACE TREATMENT OF METALLIC MATERIAL BY DIFFUSION INTO THE SURFACE, BY CHEMICAL CONVERSION OR SUBSTITUTION; COATING BY VACUUM EVAPORATION, BY SPUTTERING, BY ION IMPLANTATION OR BY CHEMICAL VAPOUR DEPOSITION, IN GENERAL
    • C23C2/00Hot-dipping or immersion processes for applying the coating material in the molten state without affecting the shape; Apparatus therefor
    • C23C2/003Apparatus
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D19/00Regenerative heat-exchange apparatus in which the intermediate heat-transfer medium or body is moved successively into contact with each heat-exchange medium
    • F28D19/04Regenerative heat-exchange apparatus in which the intermediate heat-transfer medium or body is moved successively into contact with each heat-exchange medium using rigid bodies, e.g. mounted on a movable carrier
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F21/00Constructions of heat-exchange apparatus characterised by the selection of particular materials
    • F28F21/08Constructions of heat-exchange apparatus characterised by the selection of particular materials of metal

Definitions

  • the invention belongs to the technical field of hot-dip galvanizing pot processing, and in particular relates to an efficient heat absorption device for a hot-dip galvanizing pot.
  • Hot-dip galvanizing is also called hot-dip galvanizing and hot-dip galvanizing. It is an effective method of metal anti-corrosion. It is mainly used in metal structural facilities in various industries.
  • the hot-dip galvanizing pot is the place where the workpiece is hot-dip galvanized.
  • the zinc liquid in the pot is kept at about 450 degrees to complete the galvanizing of the workpiece.
  • the existing high-efficiency heat absorbing devices still have the disadvantages of inconvenient to absorb the heat generated during operation and then preheating the betrothal gift, inconvenient to adjust the position where the smoke is drawn, and lack of anti-splash and protection features. function problem.
  • the present invention provides a high-efficiency heat-absorbing device for a hot-dip galvanizing pot, so as to solve the problem that the existing high-efficiency heat-absorbing device is inconvenient to absorb the heat generated during operation, and then preheat and utilize the betrothal gifts. It is inconvenient to adjust the position where the smoke is drawn, and it does not have the function of splash-proof and protection.
  • a high-efficiency heat-absorbing device for hot-dip galvanizing pot including base, support column, reinforced steel rod, support plate, reinforced steel plate, fan, air purifier, heat-absorbing utilization box structure, connecting pipe, adjustable suction suction Heat cover structure, PLC, drive switch, pot body, liftable splash guard frame structure, material preheating conveying pipeline structure and water pump,
  • the support columns are welded on the left and middle left sides between the base and the support plate respectively and the front and rear parts on the right side of the center;
  • the reinforced steel rod is welded on the lower part between the support column and the support column;
  • the reinforced steel plate is welded between the support column and the support plate;
  • the fan bolt is installed on the support column The left side of the upper end of the board;
  • the air purifier bolt is installed on the middle left side of the upper end of the support board, and the left end of the air purifier is connected with the fan bolt;
  • the heat absorption utilization box structure is installed on the right side of the upper end of the support board ;
  • the structure of the adjustable suction and heat absorption cover includes a conveying hose, a communication ring, a collection cover, a side connecting plate, a first reducer, an adjustment motor, an adjustment plate, a movable cylinder and a protective cover.
  • the hoses are respectively embedded between the upper end of the communication ring and the lower end of the connecting pipe and between the lower end of the communication ring and the upper end of the collecting cover;
  • the side connecting plate is welded on the inner side of the lower end of the adjusting plate;
  • the first reducer bolt It is installed on the outer wall of the side connecting plate;
  • the protective sleeve is embedded in the outer wall of the conveying hose.
  • the elevating splash guard frame structure includes a baffle plate, a slide rail, a mounting box, a lifting motor, a second reducer, a threaded rod, a lifting block and a support plate, and the baffle plate is sleeved on the pot
  • the sliding rails are welded on the left and right ends of the pot body respectively, and the sliding rails are inserted into the interior of the shielding plate at the same time;
  • the mounting boxes are respectively bolted to the right and middle right of the upper end of the base;
  • the lifting motor bolt is installed on the upper end of the second reducer, and the output shaft of the lifting motor is connected with the second reducer key;
  • the second reducer bolt is installed on the upper end of the support plate, and the lower end of the second reducer is connected to the second reducer.
  • the upper end of the threaded rod is connected with a key; the lower end of the threaded rod is keyed on the lower part of the inner wall of the installation box; the support plate is welded on
  • the material preheating and conveying pipeline structure includes a working cylinder, a blocking ring, a processing pipe, a buffer spiral ring, a left injection head, a right discharging head and a support rod, and the left and right ends of the working cylinder are welded with blocking
  • the processing pipe is welded inside the retaining ring; the buffer spiral ring is welded on the middle part of the outer wall of the processing pipe; the left injection head is welded on the left side of the upper end of the working cylinder, and the upper end of the left injection head is welded It is connected with the left conveying pipe flange; the right discharge head is welded on the right side of the upper end of the working cylinder, while the upper end of the right discharge head is connected with the right conveying pipe flange; the supporting rods are welded on the left and right of the lower end of the working cylinder respectively. Between the two sides and the base, while the mandrel is set at the front of the left side of the base.
  • the heat-absorbing plate and the buffer plate inside the heat-absorbing box intersect each other, and the heat-absorbing plate is made of copper plate.
  • the heat absorbing box is communicated with the interlayer between the working cylinder and the processing pipe through the left and right conveying pipes on the left and right sides of the lower part, and a water pump is provided on the left conveying pipe.
  • the protective cover on the outer wall of the conveying hose adopts an aluminum film sleeve, and the conveying hose is respectively connected with the collecting cover and the connecting pipe.
  • the left end of the first reducer is axially connected with the right end of the collecting cover; the adjusting motor bolt is installed on the right end of the first reducer.
  • the shielding plates and the shielding plates are bolted to each other, and the shielding plates are sleeved on the outside of the pot body.
  • the lifting block is a rectangular block, the lifting block is inserted into the installation box, and the lifting block is screwed on the outer wall of the threaded rod.
  • the sliding rail is set in a T-shape, the sliding rail is adapted to a shielding plate, and a T-shaped groove is arranged inside the shielding plate.
  • the buffer spiral ring is arranged between the working cylinder and the processing pipe, and the left and right ends of the buffer spiral ring are respectively provided with a left injection head and a right discharge head.
  • the heat-absorbing plate inside the heat-absorbing box and the buffer plate intersect each other, and the heat-absorbing plate adopts a copper plate, and the upper and lower sides of the heat-absorbing box are respectively injected with higher temperature flue gas and temperature.
  • the water can absorb the heat in the flue gas, so that it can be used accordingly.
  • the described heat absorbing box is communicated with the interlayer between the working cylinder and the processing pipe through the left conveying pipe and the right conveying pipe on the left and right sides of the lower part respectively. , the hot water can enter the interlayer between the mandrel and the processing pipe and be used.
  • the right end of the heat-absorbing box is communicated with the liquid injection pipe, and the right end of the liquid-injection pipe is sealed by a manual valve, which facilitates water injection to the lower part of the heat-absorbing box, and then performs heat-absorbing work.
  • the protective cover on the outer wall of the conveying hose adopts an aluminum film sleeve, and the conveying hose is respectively connected with the collecting cover and the connecting pipe, which is convenient for adjusting and adjusting the structure of the adjustable suction and heat-absorbing cover. Connectivity is then used.
  • the adjusting plate is welded to the left and right ends of the communication ring, and the upper end of the adjusting plate is bolted to the output shaft of the movable cylinder; the movable cylinder is embedded in the right side of the support plate, driving After the movable cylinder, the collecting cover can be lifted and lifted to a suitable position for use.
  • the left end of the first reducer is axially connected to the right end of the collecting cover; the adjusting motor bolt is installed on the right end of the first reducer, which is convenient for adjusting the angle of inclination, so that the matching cover is different. It is used in the same position, thereby avoiding the effect of the collection cover affecting the galvanizing effect of the parts.
  • the shielding plates and the shielding plates are bolted to each other, the shielding plates are sleeved on the outside of the pot body, and can lift the pot body when in use. to the splash-proof function, thereby increasing the protective effect.
  • the lifting block is a rectangular block, the lifting block is inserted into the installation box, and the lifting block is threaded on the outer wall of the threaded rod. After driving the lifting motor, it is convenient to drive the threaded rod. Rotating and driving the lifting block to rise and fall, and then driving the shielding plate to rise and fall, the utility model can be easily used or stored.
  • the sliding rail is set to be T-shaped, the sliding rail is adapted to the shielding plate, and the shielding plate is provided with a T-shaped groove, which is convenient for installation with the shielding plate, and also increases the It improves the stability of the shutter when it is raised and lowered.
  • the processing tube is arranged in an inclined shape, and the processing tube is arranged on the left side of the pot body.
  • the material can be preheated and then enter the pot body. Heat to melt.
  • the buffer spiral ring is arranged between the working cylinder and the processing pipe, and the left and right ends of the buffer spiral ring are respectively provided with a left injection head and a right discharge head.
  • the water is buffered, which increases the heating effect.
  • Figure 1 is a schematic structural diagram of the present invention.
  • FIG. 2 is a schematic structural diagram of the structure of the heat-absorbing utilization box of the present invention.
  • FIG. 3 is a schematic structural diagram of the structure of the adjustable air suction and heat absorption hood structure of the present invention.
  • FIG. 4 is a schematic structural diagram of the elevating splash guard frame structure of the present invention.
  • FIG. 5 is a schematic structural diagram of the material preheating and conveying pipeline structure of the present invention.
  • Figure 6 is a schematic diagram of the electrical wiring of the present invention.
  • Adjustable suction and heat-absorbing hood structure 101, Conveying hose; 102, Connecting ring; 103, Collecting hood; 104, Side connecting plate; 105, First reducer; 106, Adjusting motor; 107, adjustment plate; 108, movable cylinder; 109, protective sleeve; 11, PLC; 12, drive switch; 13, pot body; 143, installation box; 144, lift motor; 145, second reducer; 146, threaded rod; 147, lift block; 148, pallet; 15, material preheating and conveying pipeline structure; 151, working cylinder; 152, retaining ring ; 153, processing pipe; 154, buffer spiral ring; 155, left injection head; 156, right discharge head; 157, strut; 16, water pump.
  • a high-efficiency heat absorption device for a hot-dip galvanizing pot includes a base 1, a support column 2, a reinforced steel rod 3, a support plate 4, a reinforced steel plate 5, a fan 6, an air Purifier 7, heat absorption and utilization box structure 8, connecting pipe 9, adjustable suction heat absorption cover structure 10, PLC11, drive switch 12, pot body 13, liftable splash guard frame structure 14, material preheating conveying pipeline Structure 15 and water pump 16,
  • the support column 2 is welded to the front and rear parts of the left side, the middle left side and the middle right side between the base 1 and the support plate 4, respectively;
  • the reinforcing steel rod 3 is welded to the support column 2 and the lower part between the support column 2;
  • the reinforced steel plate 5 is welded between the support column 2 and the support plate 4;
  • the fan 6 bolts are installed on the left side of the upper end of the support plate 4;
  • the air purifier 7 The bolt is installed on the middle left side of the upper end of the support plate 4, and the left end of the air purifier 7 is bolt
  • the adjustable suction and heat absorbing cover structure 10 specifically includes a conveying hose 101 , a communication ring 102 , a collecting cover 103 , a side connecting plate 104 , and a first reducer 105, regulating motor 106, regulating plate 107, movable cylinder 108 and protective sleeve 109, the conveying hose 101 is respectively embedded between the upper end of the communication ring 102 and the lower end of the connecting pipe 9, the lower end of the communication ring 102 and the collection cover 103
  • the side connecting plate 104 is welded on the inner side of the lower end of the adjusting plate 107; the first reducer 105 is bolted on the outer wall of the side connecting plate 104; the protective sleeve 109 is embedded in the conveying soft
  • the movable cylinder 108 is driven to drive the adjusting plate 107, the communication ring 102 and the collecting cover 103 to rise and fall, and
  • the liftable splash guard frame structure 14 includes a shutter 141 , a slide rail 142 , an installation box 143 , a lift motor 144 , a second reducer 145 ,
  • the threaded rod 146, the lifting block 147 and the supporting plate 148, the shielding plate 141 is sleeved on the outer side of the pot body 13;
  • the sliding rails 142 are welded to the left and right ends of the pot body 13 respectively, and the sliding rails 142 are inserted in the The interior of the shielding plate 141;
  • the mounting box 143 is bolted on the right side and the middle right side of the upper end of the base 1 respectively;
  • the lifting motor 144 is bolted on the upper end of the second reducer 145, and the output of the lifting motor 144
  • the shaft is keyed to the second reducer 145;
  • the second reducer 145 is bolted on the upper end of the support plate 148, and the lower end of the second reducer 145 is
  • the material preheating and conveying pipeline structure 15 includes a working cylinder 151, a blocking ring 152, a processing pipe 153, a buffer spiral ring 154, a left injection head 155, a right discharge
  • the head 156 and the support rod 157, the left and right ends of the inner working cylinder 151 are welded with a retaining ring 152;
  • the processing tube 153 is welded inside the retaining ring 152;
  • the buffer spiral ring 154 is welded to the processing tube 153
  • the left injection head 155 is welded on the left side of the upper end of the working cylinder 151, and the upper end of the left injection head 155 is flanged to the left conveying pipe 87;
  • the right discharge head 156 is welded on the working cylinder 151.
  • the heat absorbing plate 85 and the buffer plate 86 inside the heat absorbing box 81 intersect with each other, the heat absorbing plate 85 is made of copper plate, and the temperature is injected into the upper and lower sides of the heat absorbing box 81 respectively.
  • the water can absorb the heat in the flue gas and use it accordingly.
  • the heat absorbing box 81 is connected with the interlayer between the working cylinder 151 and the processing pipe 153 through the left conveying pipe 87 and the right conveying pipe 88 on the left and right sides of the lower part, respectively, while the left conveying pipe 87
  • a water pump 16 is provided on the upper part. After driving the water pump 16, the hot water can enter the interlayer between the mandrel 151 and the processing pipe 153 and be used.
  • the right end of the heat absorbing box 81 is communicated with the liquid injection pipe 89, and the right end of the liquid injection pipe 89 is sealed by the manual valve 810, so that water can be injected into the lower part of the heat absorbing box 81, and then Do endothermic work.
  • the protective cover 109 on the outer wall of the conveying hose 101 is an aluminum film sleeve, and the conveying hose 101 is respectively connected with the collecting cover 103 and the connecting pipe 9, which is convenient to cooperate with the adjustable suction pipe.
  • the air and heat absorber structure 10 is adjusted and communicated to be used accordingly.
  • the adjusting plate 107 is welded to the left and right ends of the communication ring 102 respectively, and the upper end of the adjusting plate 107 is bolted to the output shaft of the movable cylinder 108; the movable cylinder 108 is embedded in the support.
  • the movable cylinder 108 On the right side inside the plate 4, after driving the movable cylinder 108, it can drive the collecting cover 103 to ascend and descend to a suitable position for use.
  • the left end of the first reducer 105 is axially connected to the right end of the collecting cover 103; the adjusting motor 106 is bolted on the right end of the first reducer 105, which is convenient for adjusting the angle of inclination, Therefore, the collection cover 103 can be used in different positions, thereby preventing the collection cover 103 from affecting the effect of galvanizing the parts.
  • the pot body 13 can have a splash-proof function, thereby increasing the protection effect.
  • the lifting block 147 is a rectangular block, the lifting block 147 is inserted into the installation box 143, and the lifting block 147 is threadedly connected to the outer wall of the threaded rod 146 to drive the lifting block 147.
  • the motor 144 it is convenient to drive the threaded rod 146 to rotate, drive the lifting block 147 to rise and fall, and then drives the shielding plate 141 to rise and fall, which is convenient for use or storage.
  • the sliding rail 142 is set to be T-shaped, the sliding rail 142 is adapted to the shielding plate 141, and the shielding plate 141 is provided with a T-shaped groove inside, which is convenient for matching the shielding plate. 141 is installed, and at the same time, the stability of the shielding plate 141 when it is raised and lowered is also increased.
  • the processing tube 153 is arranged in an inclined shape, and the processing tube 153 is arranged on the left side of the pot body 13.
  • the material When the material is placed in the processing tube 153, the material can be preheated. Then, it enters the pot body 13 for heating and melting.
  • the buffer helical ring 154 is arranged between the working cylinder 151 and the processing pipe 153, and the left and right ends of the buffer helical ring 154 are respectively provided with a left injection head 155 and a right discharge head 156. At the same time of hot water, it can buffer the hot water, thereby increasing the heating effect.
  • the water pump 16 is a TDA35 water pump.
  • the fan 6 is a fan of type DKT2.25-10-63.
  • the air purifier 7 is a Y-4110 type air purifier.
  • the PLC 11 adopts a PLC with a model of FX2N-48.
  • the adjusting motor 106 is a 2I(R)K-6I(R)K type motor.
  • the movable cylinder 108 is a QGB125X400-MP4-Y type cylinder.
  • the lift motor 144 is a 2I(R)K-6I(R)K type motor.
  • the drive switch 12 is electrically connected to the input end of the PLC11
  • the fan 6 is electrically connected to the output end of the PLC11
  • the air purifier 7 is electrically connected to the output end of the PLC11
  • the water pump 16 is electrically connected to the output end of the PLC 11
  • the regulating motor 106 is electrically connected to the output end of the PLC 11
  • the movable cylinder 108 is electrically connected to the output end of the PLC 11
  • the lifting motor 144 is electrically connected to the output end of the PLC 11 .
  • the working principle of the present invention when in use, the fan 6 is driven to inhale, so that the flue gas and heat rising from the pot body 13 can pass through the collecting cover 103, the conveying hose 101 and the connecting pipe 9 into the heat absorbing box 81 and then flow between the heat absorption plate 85 and the buffer plate 86, and then drive the water pump 16 again to make the water in the heat absorption box 81 absorb heat through the heat absorption plate 85, and then pass through the left conveying pipe 87 into the interlayer between the working cylinder 151 and the processing pipe 153, so that the material in the processing pipe 153 can be preheated.
  • the lift 156 and the right conveying pipe 88 enter the heat absorption box 81 to absorb heat again, and the preheated material can enter the pot body 13 to be melted and tinned.
  • the lift is driven.
  • the motor 144 drives the threaded rod 146 to rotate, so that the shielding plate 141 around the pot body 13 is raised, so that the material in the pot body 13 can be protected from splashing.
  • the movable cylinder is driven.

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Abstract

一种用于热镀锌锅的高效吸热装置,包括底座(1),支撑柱(2),加固钢杆(3),支撑板(4),加固钢板(5),风机(6),空气净化器(7),吸热利用箱结构(8),连接管(9),可调节吸气吸热罩结构(10),PLC(11),驱动开关(12),锅体(13),可升降防溅挡板架结构(14),材料预热输送管道结构(15)和水泵(16),所述的支撑柱(2)分别焊接在底座(1)和支撑板(4)之间左侧、中左侧和中右侧的前后两部;所述的加固钢杆(3)焊接在支撑柱(2)和支撑柱(2)之间的下部;所述的加固钢板(3)焊接在支撑柱(2)和支撑板(4)之间。通过吸热利用箱结构(8)的设置,在吸热箱内上下两侧分别注入温度较高的烟气和温度较低的水时,能够使水吸取烟气中的热量,从而随之进行利用。

Description

一种用于热镀锌锅的高效吸热装置 技术领域
本发明属于热镀锌锅加工技术领域,尤其涉及一种用于热镀锌锅的高效吸热装置。
背景技术
热镀锌也叫热浸锌和热浸镀锌,是一种有效的金属防腐方式,主要用于各行业的金属结构设施上,热镀锌锅是工件完成热镀锌的场所,热镀锌锅中的锌液保持在450度左右方可完成工件的镀锌,如此高的温度下,热镀锌槽中伴随着一定的锌烟,若不对这些锌烟进行处理,任由其蒸发到空气环境中,不仅造成了能源的浪费,同时污染了生产车间的环境并对工作人员的健康造成威胁,所以发明处一种吸热净化的装置,从而解决上述的问题,且更好的进行镀锌的工作。
但是,现有的高效吸热装置还存在着不便于吸取工作时产生的热量并随之对彩礼进行预热利用、不便于调节吸取烟气时所在的位置和不具备起到防溅并防护的功能的问题。
因此,发明一种用于热镀锌锅的高效吸热装置显得非常必要。
发明内容
为了解决上述技术问题,本发明提供一种用于热镀锌锅的高效吸热装置,以解决现有的高效吸热装置不便于吸取工作时产生的热量并随之对彩礼进行预热利用、不便于调节吸取烟气时所在的位置和不具备起到防溅并防护的功能的问题。一种用于热镀锌锅的高效吸热装置,包括底座,支撑柱,加固钢杆,支撑板,加固钢板,风机,空气净化器,吸热利用箱结构,连接管,可调节吸气吸热罩结构,PLC,驱动开关,锅体,可升降防溅挡板架结构,材料预热输送管道结构和水泵,所述的支撑柱分别焊接在底座和支撑板之间左侧、中左侧和中 右侧的前后两部;所述的加固钢杆焊接在支撑柱和支撑柱之间的下部;所述的加固钢板焊接在支撑柱和支撑板之间;所述的风机螺栓安装在支撑板上端的左侧;所述的空气净化器螺栓安装在支撑板上端的中左侧,同时空气净化器的左端与风机螺栓连接;所述的吸热利用箱结构安装在支撑板上端的右侧;所述的连接管一端与吸热利用箱结构连接,另一端与可调节吸气吸热罩结构连接;所述的PLC螺栓安装在底座上端前部的左侧,同时PLC的前表面电性连接有驱动开关;所述的锅体螺栓安装在底座内部的右侧;所述的可升降防溅挡板架结构安装在锅体的外壁上;所述的材料预热输送管道结构安装在底座上端前部的左侧;所述的水泵安装在材料预热输送管道结构上;所述的吸热利用箱结构包括吸热箱,左连接头,右连接头,隔板,吸热板,缓冲板,左输送管,右输送管,注液管和手动阀,所述的吸热箱焊接在支撑板上端的右侧;所述的左连接头焊接在吸热箱的左端,同时左连接头左端与空气净化器螺栓连接;所述的右连接头焊接在吸热箱的右端,同时右连接头右端套接有连接管;所述的隔板焊接在吸热箱内部的中间部位;所述的吸热板焊接在隔板的内部;所述的缓冲板分别焊接在吸热箱内壁的上下两部;所述的左输送管焊接在吸热箱前表面的左侧的下部,同时左输送管上螺纹连接有水泵;所述的右输送管焊接在吸热箱前表面右侧的下部;所述的注液管焊接在吸热箱右端的中下部,同时注液管的右端螺纹连接有手动阀。
优选的,所述的可调节吸气吸热罩结构包括输送软管,连通环,收集罩,侧连接板,第一减速器,调节电机,调节板,活动气缸和保护套,所述的输送软管分别镶嵌在连通环的上端和连接管的下端之间与连通环下端和收集罩的上端之间;所述的侧连接板焊接在调节板下端的内侧;所述的第一减速器螺栓安装在侧连接板的外壁上;所述的保护套嵌入在输送软管的外壁上。
优选的,所述的可升降防溅挡板架结构包括遮挡板,滑轨,安装盒,升降电机,第二减速器,螺纹杆,升降块和托板,所述的遮挡板套接在锅体的外侧;所述的滑轨分别焊接在锅体的左右两端,同时滑轨插入在遮挡板的内部;所述 的安装盒分别螺栓安装在底座上端的右侧和中右侧;所述的升降电机螺栓安装在第二减速器的上端,同时升降电机的输出轴与第二减速器键连接;所述的第二减速器螺栓安装在托板的上端,同时第二减速器的下端与螺纹杆的上端键连接;所述的螺纹杆下端键连接在安装盒内壁的下部;所述的托板焊接在安装盒的内壁上部。
优选的,所述的材料预热输送管道结构包括工作筒,挡环,加工管,缓冲螺旋环,左注入头,右排出头和支杆,所述的工作筒内部的左右两端焊接有挡环;所述的加工管焊接在挡环的内部;所述的缓冲螺旋环焊接在加工管的外壁中间部位;所述的左注入头焊接在工作筒上端的左侧,同时左注入头的上端与左输送管法兰连接;所述的右排出头焊接在工作筒上端的右侧,同时右排出头的上端与右输送管法兰连接;所述的支杆分别焊接在工作筒下端的左右两侧和底座之间,同时工作筒设置在底座左侧的前部。
优选的,所述的吸热箱内部的吸热板与缓冲板相互交叉,所述的吸热板采用铜板。
优选的,所述的吸热箱分别通过下部左右两侧的左输送管和右输送管与工作筒和加工管之间的夹层连通,同时左输送管上设置有水泵。
优选的,所述的输送软管外壁上的保护套采用铝膜套,所述的输送软管分别与收集罩和连接管连接。
优选的,所述的第一减速器的左端与收集罩的右端轴接;所述的调节电机螺栓安装在第一减速器的右端。
优选的,所述的遮挡板设置有四个,所述的遮挡板与遮挡板相互螺栓连接,所述的遮挡板套接在锅体的外侧。
优选的,所述的升降块采用矩形块,所述的升降块插入在安装盒内,所述的升降块螺纹连接在螺纹杆的外壁上。
优选的,所述的滑轨设置为T型,所述的滑轨与遮挡板相适配,所述的遮挡板内部设置有T型槽。
优选的,所述的缓冲螺旋环设置在工作筒和加工管之间,同时缓冲螺旋环左右两端分别设置有左注入头和右排出头。
与现有技术相比,本发明的有益效果为:
1.本发明中,所述的吸热箱内部的吸热板与缓冲板相互交叉,所述的吸热板采用铜板,在吸热箱内上下两侧分别注入温度较高的烟气和温度较低的水时,能够使水吸取烟气中的热量,从而随之进行利用。
2.本发明中,所述的吸热箱分别通过下部左右两侧的左输送管和右输送管与工作筒和加工管之间的夹层连通,同时左输送管上设置有水泵,驱动水泵之后,能够使热水进入到工作筒和加工管之间的夹层并进行利用。
3.本发明中,所述的吸热箱右端与注液管连通,同时注液管的右端通过手动阀密封住,便于对吸热箱的下部注水,并随之进行吸热工作。
4.本发明中,所述的输送软管外壁上的保护套采用铝膜套,所述的输送软管分别与收集罩和连接管连接,便于配合该可调节吸气吸热罩结构调节并连通随之使用。
5.本发明中,所述的调节板分别焊接在连通环的左右两端,同时调节板的上端与活动气缸的输出轴螺栓连接;所述的活动气缸嵌入在支撑板内部的右侧,驱动该活动气缸之后,能够带动收集罩升降到合适的位置处使用。
6.本发明中,所述的第一减速器的左端与收集罩的右端轴接;所述的调节电机螺栓安装在第一减速器的右端,便于调节倾斜的角度,从而配合收集罩呈不同的位置使用,进而避免了收集罩影响零件镀锌的效果。
7.本发明中,所述的遮挡板设置有四个,所述的遮挡板与遮挡板相互螺栓连接,所述的遮挡板套接在锅体的外侧,在使用时,能够对锅体起到防溅的功能,从而增加了防护的效果。
8.本发明中,所述的升降块采用矩形块,所述的升降块插入在安装盒内,所述的升降块螺纹连接在螺纹杆的外壁上,驱动该升降电机之后,便于带动螺纹杆旋转并带动升降块升降,且随之带动遮挡板升降,能够便于进行使用或者收纳。
9.本发明中,所述的滑轨设置为T型,所述的滑轨与遮挡板相适配,所述的遮挡板内部设置有T型槽,便于配合遮挡板进行安装,同时也增加了遮挡板升降时的稳定性。
10.本发明中,所述的加工管设置为倾斜状,所述的加工管设置在锅体的左侧,在加工管内放置材料时,能够对材料进行预热,然后随之进入到锅体内进行加热融化。
11.本发明中,所述的缓冲螺旋环设置在工作筒和加工管之间,同时缓冲螺旋环左右两端分别设置有左注入头和右排出头,在注入热水的同时,能够对热水进行缓冲,从而增加了加热的效果。
附图说明
图1是本发明的结构示意图。
图2是本发明的吸热利用箱结构的结构示意图。
图3是本发明的可调节吸气吸热罩结构的结构示意图。
图4是本发明的可升降防溅挡板架结构的结构示意图。
图5是本发明的材料预热输送管道结构的结构示意图。
图6是本发明的电气接线示意图。
图中:
1、底座;2、支撑柱;3、加固钢杆;4、支撑板;5、加固钢板;6、风机;7、空气净化器;8、吸热利用箱结构;81、吸热箱;82、左连接头;83、右连接头;84、隔板;85、吸热板;86、缓冲板;87、左输送管;88、右输送管;89、注液管;810、手动阀;9、连接管;10、可调节吸气吸热罩结构;101、输送软管;102、连通环;103、收集罩;104、侧连接板;105、第一减速器;106、调节电机;107、调节板;108、活动气缸;109、保护套;11、PLC;12、驱动开关;13、锅体;14、可升降防溅挡板架结构;141、遮挡板;142、滑轨;143、安装盒;144、升降电机;145、第二减速器;146、螺纹杆;147、升降块;148、托板;15、材料预热输送管道结构;151、工作筒;152、挡环;153、加工管;154、缓冲螺旋环;155、左注入头;156、右排出头;157、支杆;16、水泵。
具体实施方式
以下结合附图对本发明做进一步描述:
实施例:
如附图1至附图2所示,一种用于热镀锌锅的高效吸热装置,包括底座1,支撑柱2,加固钢杆3,支撑板4,加固钢板5,风机6,空气净化器7,吸热利用箱结构8,连接管9,可调节吸气吸热罩结构10,PLC11,驱动开关12,锅体13,可升降防溅挡板架结构14,材料预热输送管道结构15和水泵16,所述的支撑柱2分别焊接在底座1和支撑板4之间左侧、中左侧和中右侧的前后两部;所述的加固钢杆3焊接在支撑柱2和支撑柱2之间的下部;所述的加固钢板5焊接在支撑柱2和支撑板4之间;所述的风机6螺栓安装在支撑板4上端的左侧;所述的空气净化器7螺栓安装在支撑板4上端的中左侧,同时空气净化器7的左端与风机6螺栓连接;所述的吸热利用箱结构8安装在支撑板4上端的右侧;所述的连接管9一端与吸热利用箱结构8连接,另一端与可调节吸气吸热罩结构10连接;所述的PLC11螺栓安装在底座1上端前部的左侧,同时PLC11的前表面电性连接有驱动开关12;所述的锅体13螺栓安装在底座1内部的右侧;所述的可升降防溅挡板架结构14安装在锅体13的外壁上;所述的材料预热输 送管道结构15安装在底座1上端前部的左侧;所述的水泵16安装在材料预热输送管道结构15上;所述的吸热利用箱结构8包括吸热箱81,左连接头82,右连接头83,隔板84,吸热板85,缓冲板86,左输送管87,右输送管88,注液管89和手动阀810,所述的吸热箱81焊接在支撑板4上端的右侧;所述的左连接头82焊接在吸热箱81的左端,同时左连接头82左端与空气净化器7螺栓连接;所述的右连接头83焊接在吸热箱81的右端,同时右连接头83右端套接有连接管9;所述的隔板84焊接在吸热箱81内部的中间部位;所述的吸热板85焊接在隔板84的内部;所述的缓冲板86分别焊接在吸热箱81内壁的上下两部;所述的左输送管87焊接在吸热箱81前表面的左侧的下部,同时左输送管87上螺纹连接有水泵16;所述的右输送管88焊接在吸热箱81前表面右侧的下部;所述的注液管89焊接在吸热箱81右端的中下部,同时注液管89的右端螺纹连接有手动阀810;驱动风机6进行吸气,这样即可使锅体13上升的烟气与热量穿过收集罩103、输送软管101和连接管9进入到吸热箱81内的上方,且随之在吸热板85和缓冲板86之间流动,之后再次驱动水泵16使处在吸热箱81内的水通过吸热板85吸热之后,随之通过左输送管87流出。
如附图3所示,上述实施例中,具体的,所述的可调节吸气吸热罩结构10包括输送软管101,连通环102,收集罩103,侧连接板104,第一减速器105,调节电机106,调节板107,活动气缸108和保护套109,所述的输送软管101分别镶嵌在连通环102的上端和连接管9的下端之间与连通环102下端和收集罩103的上端之间;所述的侧连接板104焊接在调节板107下端的内侧;所述的第一减速器105螺栓安装在侧连接板104的外壁上;所述的保护套109嵌入在输送软管101的外壁上;需要调节收集罩103时,驱动活动气缸108带动调节板107、连通环102和收集罩103升降,之后再次驱动调节电机106配合第一减速器105带动收集罩103旋转,即可到达合适的位置处并随之使用。
如附图4所示,上述实施例中,具体的,所述的可升降防溅挡板架结构14包括遮挡板141,滑轨142,安装盒143,升降电机144,第二减速器145,螺纹 杆146,升降块147和托板148,所述的遮挡板141套接在锅体13的外侧;所述的滑轨142分别焊接在锅体13的左右两端,同时滑轨142插入在遮挡板141的内部;所述的安装盒143分别螺栓安装在底座1上端的右侧和中右侧;所述的升降电机144螺栓安装在第二减速器145的上端,同时升降电机144的输出轴与第二减速器145键连接;所述的第二减速器145螺栓安装在托板148的上端,同时第二减速器145的下端与螺纹杆146的上端键连接;所述的螺纹杆146下端键连接在安装盒143内壁的下部;所述的托板148焊接在安装盒143的内壁上部;驱动该升降电机144带动螺纹杆146旋转,从而使锅体13四周的遮挡板141升起,这样即可对锅体13中的材料进行防溅防护。
如附图5所示,上述实施例中,具体的,所述的材料预热输送管道结构15包括工作筒151,挡环152,加工管153,缓冲螺旋环154,左注入头155,右排出头156和支杆157,所述的工作筒151内部的左右两端焊接有挡环152;所述的加工管153焊接在挡环152的内部;所述的缓冲螺旋环154焊接在加工管153的外壁中间部位;所述的左注入头155焊接在工作筒151上端的左侧,同时左注入头155的上端与左输送管87法兰连接;所述的右排出头156焊接在工作筒151上端的右侧,同时右排出头156的上端与右输送管88法兰连接;所述的支杆157分别焊接在工作筒151下端的左右两侧和底座1之间,同时工作筒151设置在底座1左侧的前部。
上述实施例中,具体的,所述的吸热箱81内部的吸热板85与缓冲板86相互交叉,所述的吸热板85采用铜板,在吸热箱81内上下两侧分别注入温度较高的烟气和温度较低的水时,能够使水吸取烟气中的热量,从而随之进行利用。
上述实施例中,具体的,所述的吸热箱81分别通过下部左右两侧的左输送管87和右输送管88与工作筒151和加工管153之间的夹层连通,同时左输送管87上设置有水泵16,驱动水泵16之后,能够使热水进入到工作筒151和加工管153之间的夹层并进行利用。
上述实施例中,具体的,所述的吸热箱81右端与注液管89连通,同时注 液管89的右端通过手动阀810密封住,便于对吸热箱81的下部注水,并随之进行吸热工作。
上述实施例中,具体的,所述的输送软管101外壁上的保护套109采用铝膜套,所述的输送软管101分别与收集罩103和连接管9连接,便于配合该可调节吸气吸热罩结构10调节并连通随之使用。
上述实施例中,具体的,所述的调节板107分别焊接在连通环102的左右两端,同时调节板107的上端与活动气缸108的输出轴螺栓连接;所述的活动气缸108嵌入在支撑板4内部的右侧,驱动该活动气缸108之后,能够带动收集罩103升降到合适的位置处使用。
上述实施例中,具体的,所述的第一减速器105的左端与收集罩103的右端轴接;所述的调节电机106螺栓安装在第一减速器105的右端,便于调节倾斜的角度,从而配合收集罩103呈不同的位置使用,进而避免了收集罩103影响零件镀锌的效果。
上述实施例中,具体的,所述的遮挡板141设置有四个,所述的遮挡板141与遮挡板141相互螺栓连接,所述的遮挡板141套接在锅体13的外侧,在使用时,能够对锅体13起到防溅的功能,从而增加了防护的效果。
上述实施例中,具体的,所述的升降块147采用矩形块,所述的升降块147插入在安装盒143内,所述的升降块147螺纹连接在螺纹杆146的外壁上,驱动该升降电机144之后,便于带动螺纹杆146旋转并带动升降块147升降,且随之带动遮挡板141升降,能够便于进行使用或者收纳。
上述实施例中,具体的,所述的滑轨142设置为T型,所述的滑轨142与遮挡板141相适配,所述的遮挡板141内部设置有T型槽,便于配合遮挡板141进行安装,同时也增加了遮挡板141升降时的稳定性。
上述实施例中,具体的,所述的加工管153设置为倾斜状,所述的加工管153设置在锅体13的左侧,在加工管153内放置材料时,能够对材料进行预热,然后随之进入到锅体13内进行加热融化。
上述实施例中,具体的,所述的缓冲螺旋环154设置在工作筒151和加工管153之间,同时缓冲螺旋环154左右两端分别设置有左注入头155和右排出头156,在注入热水的同时,能够对热水进行缓冲,从而增加了加热的效果。
上述实施例中,具体的,所述的水泵16采用型号为TDA35型水泵。
上述实施例中,具体的,所述的风机6采用型号为DKT2.25-10-63型风机。
上述实施例中,具体的,所述的空气净化器7采用型号为Y-4110型空气净化器。
上述实施例中,具体的,所述的PLC11采用型号为FX2N-48型的PLC。
上述实施例中,具体的,所述的调节电机106采用型号为2I(R)K-6I(R)K型电机。
上述实施例中,具体的,所述的活动气缸108采用型号为QGB125X400-MP4-Y型气缸。
上述实施例中,具体的,所述的升降电机144采用型号为2I(R)K-6I(R)K型电机。
上述实施例中,具体的,所述的驱动开关12电性连接PLC11的输入端,所述的风机6电性连接PLC11的输出端,所述的空气净化器7电性连接PLC11的输出端,所述的水泵16电性连接PLC11的输出端,所述的调节电机106电性连接PLC11的输出端,所述的活动气缸108电性连接PLC11的输出端,所述的升降电机144电性连接PLC11的输出端。
工作原理
本发明的工作原理:在使用时,驱动风机6进行吸气,这样即可使锅体13上升的烟气与热量穿过收集罩103、输送软管101和连接管9进入到吸热箱81内的上方,且随之在吸热板85和缓冲板86之间流动,之后再次驱动水泵16使处在吸热箱81内的水通过吸热板85吸热之后,随之通过左输送管87进入到工作筒151和加工管153之间的夹层中,这样即可对加工管153内的材料进行预热,当水进入到工作筒151内后,穿过缓冲螺旋环154、右排出头156和右输送 管88进入到吸热箱81内再次吸热,完成预热的材料能够进入到锅体13内融化进行镀锡的工作,在使用的同时,当需要防溅时,驱动该升降电机144带动螺纹杆146旋转,从而使锅体13四周的遮挡板141升起,这样即可对锅体13中的材料进行防溅防护,使用过程中,需要调节收集罩103时,驱动活动气缸108带动调节板107、连通环102和收集罩103升降,之后再次驱动调节电机106配合第一减速器105带动收集罩103旋转,即可到达合适的位置处并随之使用。
利用本发明所述的技术方案,或本领域的技术人员在本发明技术方案的启发下,设计出类似的技术方案,而达到上述技术效果的,均是落入本发明的保护范围。

Claims (10)

  1. 一种用于热镀锌锅的高效吸热装置,其特征在于,该用于热镀锌锅的高效吸热装置,包括底座(1),支撑柱(2),加固钢杆(3),支撑板(4),加固钢板(5),风机(6),空气净化器(7),吸热利用箱结构(8),连接管(9),可调节吸气吸热罩结构(10),PLC(11),驱动开关(12),锅体(13),可升降防溅挡板架结构(14),材料预热输送管道结构(15)和水泵(16),所述的支撑柱(2)分别焊接在底座(1)和支撑板(4)之间左侧、中左侧和中右侧的前后两部;所述的加固钢杆(3)焊接在支撑柱(2)和支撑柱(2)之间的下部;所述的加固钢板(5)焊接在支撑柱(2)和支撑板(4)之间;所述的风机(6)螺栓安装在支撑板(4)上端的左侧;所述的空气净化器(7)螺栓安装在支撑板(4)上端的中左侧,同时空气净化器(7)的左端与风机(6)螺栓连接;所述的吸热利用箱结构(8)安装在支撑板(4)上端的右侧;所述的连接管(9)一端与吸热利用箱结构(8)连接,另一端与可调节吸气吸热罩结构(10)连接;所述的PLC(11)螺栓安装在底座(1)上端前部的左侧,同时PLC(11)的前表面电性连接有驱动开关(12);所述的锅体(13)螺栓安装在底座(1)内部的右侧;所述的可升降防溅挡板架结构(14)安装在锅体(13)的外壁上;所述的材料预热输送管道结构(15)安装在底座(1)上端前部的左侧;所述的水泵(16)安装在材料预热输送管道结构(15)上;所述的吸热利用箱结构(8)包括吸热箱(81),左连接头(82),右连接头(83),隔板(84),吸热板(85),缓冲板(86),左输送管(87),右输送管(88),注液管(89)和手动阀(810),所述的吸热箱(81)焊接在支撑板(4)上端的右侧;所述的左连接头(82)焊接在吸热箱(81)的左端,同时左连接头(82)左端与空气净化器(7)螺栓连接;所述的右连接头(83)焊接在吸热箱(81)的右端,同时右连接头(83)右端套接有连接管(9);所述的隔板(84)焊接在吸热箱(81)内部的中间部位;所述的吸热板(85)焊接在隔板(84)的内部;所述的缓冲板(86)分别焊接在吸热箱(81)内壁的上下两部;所述的左输送管(87) 焊接在吸热箱(81)前表面的左侧的下部,同时左输送管(87)上螺纹连接有水泵(16);所述的右输送管(88)焊接在吸热箱(81)前表面右侧的下部;所述的注液管(89)焊接在吸热箱(81)右端的中下部,同时注液管(89)的右端螺纹连接有手动阀(810);所述的可调节吸气吸热罩结构(10)包括输送软管(101),连通环(102),收集罩(103),侧连接板(104),第一减速器(105),调节电机(106),调节板(107),活动气缸(108)和保护套(109),所述的输送软管(101)分别镶嵌在连通环(102)的上端和连接管(9)的下端之间与连通环(102)下端和收集罩(103)的上端之间;所述的侧连接板(104)焊接在调节板(107)下端的内侧;所述的第一减速器(105)螺栓安装在侧连接板(104)的外壁上;所述的保护套(109)嵌入在输送软管(101)的外壁上。
  2. 如权利要求1所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的可升降防溅挡板架结构(14)包括遮挡板(141),滑轨(142),安装盒(143),升降电机(144),第二减速器(145),螺纹杆(146),升降块(147)和托板(148),所述的遮挡板(141)套接在锅体(13)的外侧;所述的滑轨(142)分别焊接在锅体(13)的左右两端,同时滑轨(142)插入在遮挡板(141)的内部;所述的安装盒(143)分别螺栓安装在底座(1)上端的右侧和中右侧;所述的升降电机(144)螺栓安装在第二减速器(145)的上端,同时升降电机(144)的输出轴与第二减速器(145)键连接;所述的第二减速器(145)螺栓安装在托板(148)的上端,同时第二减速器(145)的下端与螺纹杆(146)的上端键连接;所述的螺纹杆(146)下端键连接在安装盒(143)内壁的下部;所述的托板(148)焊接在安装盒(143)的内壁上部;所述的材料预热输送管道结构(15)包括工作筒(151),挡环(152),加工管(153),缓冲螺旋环(154),左注入头(155),右排出头(156)和支杆(157),所述的工作筒(151)内部的左右两端焊接有挡环(152);所述的加工管(153)焊接在挡环(152)的内部;所述的缓冲螺旋环(154)焊接在加工管(153)的外壁中间部位;所述的左注入头(155)焊接在工作筒(151)上端的左侧,同时左注入头 (155)的上端与左输送管(87)法兰连接;所述的右排出头(156)焊接在工作筒(151)上端的右侧,同时右排出头(156)的上端与右输送管(88)法兰连接;所述的支杆(157)分别焊接在工作筒(151)下端的左右两侧和底座(1)之间,同时工作筒(151)设置在底座(1)左侧的前部。
  3. 如权利要求1所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的吸热箱(81)内部的吸热板(85)与缓冲板(86)相互交叉,所述的吸热板(85)采用铜板。
  4. 如权利要求1所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的吸热箱(81)分别通过下部左右两侧的左输送管(87)和右输送管(88)与工作筒(151)和加工管(153)之间的夹层连通,同时左输送管(87)上设置有水泵(16)。
  5. 如权利要求1所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的吸热箱(81)右端与注液管(89)连通,同时注液管(89)的右端通过手动阀(810)密封住。
  6. 如权利要求1所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的输送软管(101)外壁上的保护套(109)采用铝膜套,所述的输送软管(101)分别与收集罩(103)和连接管(9)连接。
  7. 如权利要求1所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的调节板(107)分别焊接在连通环(102)的左右两端,同时调节板(107)的上端与活动气缸(108)的输出轴螺栓连接;所述的活动气缸(108)嵌入在支撑板(4)内部的右侧。
  8. 如权利要求1所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的第一减速器(105)的左端与收集罩(103)的右端轴接;所述的调节电机(106)螺栓安装在第一减速器(105)的右端。
  9. 如权利要求2所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的遮挡板(141)设置有四个,所述的遮挡板(141)与遮挡板(141)相互螺栓 连接,所述的遮挡板(141)套接在锅体(13)的外侧。
  10. 如权利要求2所述的用于热镀锌锅的高效吸热装置,其特征在于,所述的加工管(153)设置为倾斜状,所述的加工管(153)设置在锅体(13)的左侧。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116646794A (zh) * 2023-07-27 2023-08-25 山东震威电气设备有限公司 一种用于低压配电柜线鼻烫锡的预热烫接箱

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113000533A (zh) * 2021-03-30 2021-06-22 河南凯威钢构有限公司 一种热浸锌工艺用防护装置

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007291472A (ja) * 2006-04-27 2007-11-08 Nippon Steel Corp 合金化溶融亜鉛メッキ鋼帯の製造方法
CN101691961A (zh) * 2009-09-30 2010-04-07 重庆大学 不锈钢板式换热器及其加工成型方法
CN101994074A (zh) * 2009-08-17 2011-03-30 河北卓亿线路器材有限公司 清洁型全封闭热镀锌生产线
CN205443423U (zh) * 2016-03-18 2016-08-10 无锡市顺天铁塔器材制造有限公司 一种铁塔塔材热镀锌余热循环利用装置
CN205856580U (zh) * 2016-08-04 2017-01-04 惠博新型材料有限公司 一种热镀锌带钢生产余热利用装置
CN108396274A (zh) * 2018-04-18 2018-08-14 响水亿鑫伟业科技有限公司 一种热镀锌生产用热镀锌锅
WO2019214778A1 (de) * 2018-05-07 2019-11-14 Ram Engineering + Anlagenbau Gmbh Wärmetauscheranordnung für tauchbad in der feuerverzinkung
CN110592511A (zh) * 2019-07-24 2019-12-20 扬州市佳佳镀锌有限公司 一种具有遮挡功能的安全可靠性高的热镀锌设备
CN210001914U (zh) * 2019-05-24 2020-01-31 四川简达金属构件有限公司 一种热镀锌槽余热回收装置
CN210765467U (zh) * 2019-09-30 2020-06-16 惠博新型材料有限公司 一种镀锌板生产线余热利用装置

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN208320288U (zh) * 2018-04-03 2019-01-04 广西电力线路器材厂有限责任公司 一种锌烟收集装置
CN208791720U (zh) * 2018-08-01 2019-04-26 浙江慧钢技术发展有限公司 一种助镀剂加热用的锌锅结构
CN111214947A (zh) * 2020-04-01 2020-06-02 瑞科盟(青岛)生物工程有限公司 一种生物发酵罐废气处理装置

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2007291472A (ja) * 2006-04-27 2007-11-08 Nippon Steel Corp 合金化溶融亜鉛メッキ鋼帯の製造方法
CN101994074A (zh) * 2009-08-17 2011-03-30 河北卓亿线路器材有限公司 清洁型全封闭热镀锌生产线
CN101691961A (zh) * 2009-09-30 2010-04-07 重庆大学 不锈钢板式换热器及其加工成型方法
CN205443423U (zh) * 2016-03-18 2016-08-10 无锡市顺天铁塔器材制造有限公司 一种铁塔塔材热镀锌余热循环利用装置
CN205856580U (zh) * 2016-08-04 2017-01-04 惠博新型材料有限公司 一种热镀锌带钢生产余热利用装置
CN108396274A (zh) * 2018-04-18 2018-08-14 响水亿鑫伟业科技有限公司 一种热镀锌生产用热镀锌锅
WO2019214778A1 (de) * 2018-05-07 2019-11-14 Ram Engineering + Anlagenbau Gmbh Wärmetauscheranordnung für tauchbad in der feuerverzinkung
CN210001914U (zh) * 2019-05-24 2020-01-31 四川简达金属构件有限公司 一种热镀锌槽余热回收装置
CN110592511A (zh) * 2019-07-24 2019-12-20 扬州市佳佳镀锌有限公司 一种具有遮挡功能的安全可靠性高的热镀锌设备
CN210765467U (zh) * 2019-09-30 2020-06-16 惠博新型材料有限公司 一种镀锌板生产线余热利用装置

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116646794A (zh) * 2023-07-27 2023-08-25 山东震威电气设备有限公司 一种用于低压配电柜线鼻烫锡的预热烫接箱
CN116646794B (zh) * 2023-07-27 2023-09-26 山东震威电气设备有限公司 一种用于低压配电柜线鼻烫锡的预热烫接箱

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