Assembled cast iron radiator for heat supply engineering
Through the design of the support mechanism and external protection mechanism, combined with components such as purified fan and heat dissipation pipe, the applicability and assembly difficulty of cast iron radiators in heating projects are solved, and the rapid transfer and effective discharge of heat is achieved, and the service life is extended.
Patent Information
- Application Number
- CN202422537221.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The existing cast iron radiators are poorly applicable in the field of heating engineering, difficult to assemble, and may easily lead to an increase in the surface temperature of the radiator under high temperature environments, affecting the life of the heat, and at the same time, the heat cannot be effectively discharged and replaced.
The combination design of the support mechanism, cast iron heat dissipation mechanism and external protection mechanism is adopted, and components such as purifying fans, drive fans, wind speed regulators, heat dissipation pipes and liquid extraction pumps are used to achieve heat conduction of low-temperature air and rapid transfer of heat. Through the cooperation of the air mesh and arc-shaped gasket, the low-temperature gasification and rapid extraction of heat are achieved.
It improves the applicability of cast iron radiators in heating projects, reduces the heat load on the surface of the radiator, extends the service life, and achieves efficient heat discharge and replacement.
Smart Images

Figure CN223216372U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of radiator processing, in particular to an assembled cast iron radiator for heating engineering. Background Art
[0002] Cast iron radiators are made of gray cast iron. They offer advantages such as simple structure, excellent corrosion resistance, long service life, and excellent thermal stability. However, compared to steel radiators, cast iron radiators also suffer from lower pressure bearing capacity, high metal consumption, unsightly appearance, and outdated styles. Furthermore, with the advancement of heat metering technology, the tendency for sand to stick to the inner walls of cast iron radiators has hindered their widespread use, leading to a gradual decline in their market share. In recent years, manufacturers have implemented technological upgrades, significantly improving the pressure bearing capacity, inner wall smoothness, and appearance of cast iron radiators.
[0003] Among them, the "A Stable and Efficient Cast Iron Radiator" disclosed in the application number "CN202121971604.2" is also an increasingly mature technology, which records "The utility model discloses a stable and efficient cast iron radiator, including a radiator body, the radiator body includes a first cast iron shell and a second cast iron shell, the top of the inner wall of the first cast iron shell is fixedly installed with a first water pipe, both sides of the first water pipe are fixedly connected to the heat conducting plate, the bottom of the inner wall of the second cast iron shell is fixedly connected to the second water pipe, and the middle part of the inner wall of the second water pipe is fixedly connected to the heat conducting plate. A curved heat dissipation pipe is fixedly connected, first reinforcing ribs are embedded in the bottom of both sides of the first cast iron shell, a first spring is installed between the two first reinforcing ribs, second reinforcing ribs are embedded in the top of both sides of the second cast iron shell, and a second spring is installed between the two second reinforcing ribs. The utility model provides a stable and efficient cast iron radiator, which is provided with a first water guide pipe, a second water guide pipe, a heat conduction plate and a curved heat dissipation pipe, thereby improving the effect of heat conduction and heat dissipation, improving the efficiency of heat exchange, reducing the internal force shaking of the radiator body during use, and improving the stability during use;
[0004] There are also the following defects:
[0005] 1) Although the existing cast iron radiator has the function of heat dissipation, it is not very suitable for the field of heating engineering. In addition, the assembly of cast iron radiators is difficult. In terms of heating, the cast iron radiator absorbs high temperature, which easily causes the temperature of the cast iron radiator surface to rise, resulting in self-load during the heat dissipation stage and affecting the lifespan.
[0006] 2) The heat attached to the cast iron sheets during the operation of the cast iron radiator cannot create an internal circulation system for air discharge, which makes it difficult to transfer the heat absorbed by the cast iron radiator after heating. In addition, the heat replacement of the corresponding cast iron radiator is not thorough enough. Utility Model Content
[0007] The purpose of the present utility model is to provide an assembled cast iron radiator for heating engineering to solve the problem that the existing cast iron radiator proposed in the above background technology, although it has the heat dissipation function, is not very suitable for the field of heating engineering, and the cast iron radiator is difficult to assemble. In terms of heating, the cast iron radiator absorbs high temperature and it is easy to cause the temperature received by the surface of the cast iron radiator to rise, resulting in self-load in the heat dissipation stage and affecting the service life.
[0008] To achieve the above-mentioned purpose, the present utility model provides the following technical solutions: an assembled cast iron radiator for heating engineering, comprising a supporting mechanism, a cast iron heat dissipation mechanism and an external protection mechanism;
[0009] The support mechanism serves as a ground-supported component;
[0010] The outer protection mechanism is used to support the side component structures that are assembled together to protect the embedded heating components;
[0011] The support mechanism includes a fitting bracket arranged on the ground, and the side walls of the fitting bracket are respectively provided with a rubber base, a shock-absorbing rubber pad is installed in the middle of the bottom end of the rubber base, a first connecting rod is installed laterally on the middle side of the shock-absorbing rubber pad, a connecting piece is installed laterally on the middle part of the first connecting rod, the bottom two sides of the connecting piece are supported by the ground for buffering, a first horizontal bar is installed in the middle of the top of the connecting piece, a cast iron heat dissipation mechanism is provided in the middle of the top of the first horizontal bar, the cast iron heat dissipation mechanism includes a trapezoidal gasket supported by the ground, a rubber block is installed at the end position of the trapezoidal gasket, and the top surface of the rubber block is laterally installed with the first trapezoidal bracket. Cast iron protrusions are correspondingly provided at the two end positions of the first trapezoidal bracket, and circular openings are provided on the surface of the cast iron protrusions in sequence. Access sleeves are installed at both ends of the cast iron protrusions, and a linkage sleeve is installed in the middle of the end of the access sleeve. The linkage sleeve is arranged at the upper and lower end heads of the cast iron protrusion, and the end of the linkage sleeve is sleeved with an annular heat exchange sleeve. A buffering fitting gasket is provided at the bottom of the annular heat exchange sleeve, and a first access base is provided at the upper and lower ends of the buffering fitting gasket. A first heat dissipation side plate is symmetrically provided at both ends of the first access base, and a strip gasket is installed horizontally on the surface of the first heat dissipation side plate, and a strip bearing block is installed on the surface of the strip gasket.
[0012] As a preferred solution of the present invention: an access gasket is horizontally installed in the middle of the top of the strip-shaped bearing block, a connecting seat is installed in the middle of the top of the first access base, a square steel pipe is horizontally installed in the middle of the top of the connecting seat, and an external protection mechanism is installed on the back of the first access base.
[0013] As a preferred solution of the present utility model: the external protection mechanism includes a second transverse strip installed in the middle of the end of the first access base, a purification fan is provided on the surface of the second transverse strip, a second access base is provided in the middle of the purification fan, a gas injection hole is provided in the middle of the second access base, a square block is provided in the middle of the top of the purification fan, a gas suction groove is provided in the middle of the end of the square block, a first arc-shaped gasket is fitted in the middle of the slot of the gas suction groove, and a wind speed regulator is installed in the middle of the top of the first arc-shaped gasket.
[0014] As a preferred solution of the present invention: the side wall of the purification fan is also provided with a driving fan, and protective frames are installed at both ends of the driving fan, and a connecting gasket is fitted in the middle of the protective frame, and the four corners of the connecting gasket are provided with adapter nails, and a trapezoidal support mechanism is installed in the middle of the top of the protective frame, and the trapezoidal support mechanism includes an arc-shaped support bracket arranged in the middle of the protective frame, and the four corners of the arc-shaped support bracket are provided with a first fastening screw, and the end of the arc-shaped support bracket is hinged with a first driving roller, and the end of the first driving roller is installed with a heat dissipation cover, and the end of the heat dissipation cover is provided with an air outlet, and the inner wall of the air outlet is hinged with a plurality of hinged side panels, and the two end heads of the plurality of hinged side panels are respectively embedded in the end of the air outlet, and a gas boosting mechanism is installed on the back of the air outlet.
[0015] As a preferred solution of the present utility model: the gas boosting mechanism includes a first strip block installed at the end position of the heat dissipation hood, the side wall of the first strip block is installed with a heat dissipation plate, the middle part of the plate surface of the heat dissipation plate is provided with a wind cover, the middle part of the wind cover is provided with a regulating cover, the middle part of the regulating cover is installed with an electric motor, and the output end of the electric motor is transmission-connected to the rotating blade embedded in the middle part of the regulating cover.
[0016] As a preferred solution of the present invention: a heat replacement mechanism is installed at the end position of the second transverse strip, and the heat replacement mechanism includes a mounting plate installed at the end of the protective frame, and a second arc-shaped gasket is installed on the side wall of the mounting plate, and an arc-shaped fitting plate is installed on the edge side wall of the second arc-shaped gasket, and fixed bearings are provided at both ends of the arc-shaped fitting plate, and a second driving roller is installed in the middle of the fixed bearing, and a wind mesh is installed in the middle of the top of the second driving roller, and a pattern is engraved on the surface of the wind mesh, and a square slot is opened at one end of the wind mesh, and a wind net is connected to one end of the square slot, and a coolant compression mechanism is fitted on the bottom of the wind net.
[0017] As a preferred solution of the present invention: the coolant compression mechanism includes a second heat dissipation side plate installed on the surface of the second arc-shaped gasket, and fastening nuts are installed at the four corners of the second heat dissipation side plate, and a limiting rod is installed laterally on the end of the fastening nut, and a second connecting rod is installed on one end of the limiting rod, and a heat pipe is installed on the side wall surface of the second connecting rod, and the heat dissipation pipe is U-shaped, and one end of the heat dissipation pipe is connected to a liquid suction pipe, and the bottom end of the liquid suction pipe is connected to a liquid suction pump, and a storage tank is installed on the side of the pump body of the liquid suction pump, and a tank rack is sleeved on the end position of the storage tank, and a fastening bolt is fitted on the surface of the tank rack, and a sleeve bracket is installed in the middle of the end of the fastening bolt, and a drive sleeve is installed in the middle of the sleeve bracket, and the end of the drive sleeve is provided with a second fastening screw.
[0018] As a preferred solution of the present invention: a return port is provided at the other end of the second heat dissipation side plate, one end of the return port is connected to an access connecting pipe, and one end of the access connecting pipe is connected to the back end of the storage tank;
[0019] The top side of the protective frame is also hinged with a limit assembly mechanism, and the limit assembly mechanism includes a second trapezoidal bracket installed on the top side of the protective frame. A fitting pad is installed horizontally on the top of the second trapezoidal bracket, and a plurality of heat dissipation strips are sequentially arranged on the surface of the fitting pad, and a second strip block is also provided on the back of the plurality of heat dissipation strips.
[0020] As a preferred solution of the present invention: linkage sleeves are obliquely installed on both sides of the back side of the top end of the second strip block, the end position of the linkage sleeve is transversely installed with an assembly seat and an "X" bracket is installed, one end of the "X" bracket is linked to the end of the third access base and is provided with an articulated roller shaft, one end of the articulated roller shaft is hinged with a connecting rod, an adapter rod is transversely installed between the connecting rods, the middle part of the bottom end of the adapter rod is sleeved with an annular sleeve, and linkage roller shafts are transversely installed between adjacent annular sleeves.
[0021] As a preferred solution of the present invention: a regulating cross bar is installed horizontally in the middle of the end of the second trapezoidal bracket, a wind filter screen is provided in the middle of the bottom end of the regulating cross bar, and a regulating slot is installed at one end of the wind filter screen.
[0022] Compared with the prior art, the beneficial effects of the present invention are:
[0023] 1. The connecting rod and the fitting brackets on both sides cooperate with each other to share the weight of the fitting gasket on the top, which is convenient for the subsequent preparation of the heat dissipation side plate and the access base, and the adaptation and assembly are realized through the cast iron protrusion and the hole position of multiple circular openings on the surface. The purpose is to disperse the support at one end of multiple linkage sleeves, which is used for the sleeve connection of the annular surrounding sleeve as a unified and equidistant arrangement of multiple cast iron radiators, which is convenient for installation without affecting its function. The heat conduction of slow heat dissipation will facilitate the diffusion and diversion of heat due to the gap between adjacent cast iron protrusions;
[0024] 2. In addition, the low-temperature air is replaced by heat conduction of the two purification fans, combined with the driving fan, to achieve low-temperature heat transfer by sucking in the low-temperature air. In addition, the wind speed is transferred by the distributed regulator, which rotates according to the hole position of the circular opening. The gas is replaced and drawn in based on the corresponding arc gasket and square slot area. After the suction is completed, the turbine air duct is transferred. The purpose is to have a strong enough wind speed to quickly transfer the heat on the cast iron surface, neutralize the high temperature on the cast iron radiator surface, and achieve a cooling effect.
[0025] 3. In addition, the low temperature is generated by evenly spacing the wind mesh and then reaching the area of the arc-shaped bonding sheet, and then the low temperature is conducted according to the area of the arc-shaped gasket and the arc-shaped thermal bonding sheet, and is connected according to the pipeline area of the heat dissipation pipe and the vertically opposite liquid extraction pipes at both ends. Finally, a pipeline is formed based on the liquid extraction pump at the rear end, the connecting pipe and the liquid extraction pipe. This pipeline can complete the heat entrainment and transfer. Finally, the wind force generated by the coordinated control of the motor and the rotating blades can promote the rapid extraction of hot air, avoid the overall heat accumulation, and reduce the heat load of the cast iron radiator itself. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 This is a schematic diagram of the structure of the utility model;
[0027] Figure 2 This is a schematic diagram of the back structure of the utility model;
[0028] Figure 3 This is a schematic structural diagram of the coolant compression mechanism of the present utility model;
[0029] Figure 4 This is a schematic structural diagram of the heat replacement mechanism of the present utility model;
[0030] Figure 5 This is a schematic diagram of the structure of the cast iron heat dissipation mechanism of the utility model;
[0031] Figure 6 This is a schematic diagram of the square steel pipe structure of the utility model;
[0032] Figure 7This is a schematic structural diagram of the first arc-shaped gasket of the present invention;
[0033] Figure 8 This is a schematic structural diagram of the linkage roller shaft of the present utility model;
[0034] Figure 9 This is a structural diagram of the limit assembly mechanism of the utility model;
[0035] Figure 10 This is a schematic diagram of the structure of the gas boosting mechanism of the utility model;
[0036] Figure 11 This is a schematic diagram of the structure of the heat dissipation cover of the utility model;
[0037] Figure 12 This is a schematic diagram of the structure of the adapter rod of the utility model;
[0038] Figure 13 This is a schematic diagram of the structure of the annular heat exchange jacket of the utility model;
[0039] Figure 14 This is a schematic diagram of the tank rack structure of the utility model.
[0040] In the figure: 1, support mechanism; 11, fitting bracket; 12, rubber base; 13, shock-absorbing rubber pad; 14, first connecting rod; 15, connecting piece; 16, first transverse bar;
[0041] 2. Cast iron heat dissipation mechanism; 21. Trapezoidal gasket; 22. Rubber block; 23. First trapezoidal bracket; 24. Cast iron protrusion; 25. Circular opening; 26. Access sleeve; 27. Linkage sleeve; 28. Annular heat exchange sleeve; 29. Buffering gasket; 291. First access base; 292. First heat dissipation side plate; 293. Strip gasket; 294. Strip bearing block; 295. Access gasket; 296. Square steel pipe;
[0042] 3. External protection mechanism; 31. Second transverse bar; 32. Purification fan; 321. Drive fan; 322. Protection frame; 323. Connecting gasket; 324. Adapter pin; 33. Second access base; 34. Gas injection hole; 35. Square block; 36. Gas suction slot; 37. First arc-shaped gasket; 38. Wind speed regulator;
[0043] 4. Trapezoidal support mechanism; 41. Arc-shaped support bracket; 42. First fastening screw; 43. First drive roller; 44. Heat dissipation cover; 45. Air outlet; 46. Articulated side panel;
[0044] 6. Gas boosting mechanism; 61. First strip block; 62. Heat sink; 63. Wind hood; 64. Control hood; 65. Motor; 66. Rotating blades;
[0045] 7. Heat exchange mechanism; 71. Mounting plate; 72. Second arc-shaped gasket; 73. Arc-shaped fitting plate; 74. Fixed bearing; 75. Second driving roller; 76. Wind mesh; 77. Pattern; 78. Square slot; 79. Wind mesh;
[0046] 8. Coolant compression mechanism; 81. Second heat dissipation side plate; 82. Fastening nut; 83. Second connecting rod; 84. Heat dissipation pipe; 85. Liquid extraction pipe; 86. Liquid extraction pump; 87. Storage tank; 88. Tank rack; 89. Fastening bolt; 891. Socket bracket; 892. Drive sleeve; 893. Second fastening screw; 894. Return port; 895. Access connecting pipe;
[0047] 9. Limit assembly mechanism; 91. Second trapezoidal bracket; 92. Fitting pad; 93. Heat dissipation strip; 94. Second strip block; 95. Linkage sleeve; 96. Assembly seat; 97. "X" bracket; 99. Third access base; 991. Articulated roller; 992. Connecting rod; 993. Adapter rod; 994. Annular sleeve; 995. Linkage roller; 996. Adjustment cross bar; 997. Air filter screen; 998. Adjustment slot. DETAILED DESCRIPTION
[0048] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0049] See also Figure 1 - Figure 14 , the utility model provides a technical solution: an assembled cast iron radiator for heating engineering, comprising a supporting mechanism 1, a cast iron heat dissipation mechanism 2 and an outer protection mechanism 3;
[0050] The support mechanism 1 serves as a ground support component;
[0051] The outer protection mechanism 3 is used to support the side component structures that are assembled together to protect the embedded heating components;
[0052] The support mechanism 1 includes a fitting bracket 11 set on the ground, and the side walls of the fitting bracket 11 are respectively provided with a rubber base 12, and a shock-absorbing rubber pad 13 is installed in the middle of the bottom end of the rubber base 12. A first connecting rod 14 is installed laterally on the middle side of the shock-absorbing rubber pad 13, and a connecting piece 15 is installed laterally in the middle of the first connecting rod 14. The bottom two sides of the connecting piece 15 are buffered with the ground, and a first transverse bar 16 is installed in the middle of the top of the connecting piece 15. A cast iron heat dissipation mechanism 2 is provided in the middle of the top of the first transverse bar 16. The cast iron heat dissipation mechanism 2 includes a trapezoidal gasket 21 supported by the ground, and a rubber block 22 is installed at the end position of the trapezoidal gasket 21. The top surface of the rubber block 22 is laterally installed with a first trapezoidal bracket 23. The first trapezoidal bracket The two end positions of 23 are respectively provided with cast iron protrusions 24, and the surfaces of the cast iron protrusions 24 are provided with circular openings 25 in sequence. Access sleeves 26 are installed at both ends of the cast iron protrusion 24, and a linkage sleeve 27 is installed in the middle of the end of the access sleeve 26. The linkage sleeve 27 is arranged at the upper and lower end ends of the cast iron protrusion 24, and the end of the linkage sleeve 27 is sleeved with an annular heat exchange sleeve 28. A buffer fitting gasket 29 is provided at the bottom of the annular heat exchange sleeve 28. The upper and lower ends of the buffer fitting gasket 29 are provided with a first access base 291, and both ends of the first access base 291 are symmetrically provided with a first heat dissipation side plate 292. A strip gasket 293 is installed horizontally on the surface of the first heat dissipation side plate 292, and a strip bearing block 294 is installed on the surface of the strip gasket 293.
[0053] In this embodiment: an access gasket 295 is installed horizontally in the middle of the top of the strip-shaped supporting block 294, a connecting seat is installed in the middle of the top of the first access base 291, a square steel pipe 296 is installed horizontally in the middle of the top of the connecting seat, and an external protection mechanism 3 is installed on the back of the first access base 291.
[0054] The main purpose of the square steel pipe 296 is to realize the combined assembly of the cast iron heat dissipation mechanism 2 for the purpose of heat accumulation.
[0055] In this embodiment: the outer protection mechanism 3 includes a second transverse bar 31 installed in the middle of the end of the first access base 291, a purification fan 32 is provided on the surface of the second transverse bar 31, a second access base 33 is provided in the middle of the purification fan 32, a gas injection hole 34 is provided in the middle of the second access base 33, a square block 35 is provided in the middle of the top of the purification fan 32, a gas suction groove 36 is provided in the middle of the end of the square block 35, a first arc-shaped gasket 37 is fitted in the middle of the slot of the gas suction groove 36, and a wind speed regulator 38 is installed in the middle of the top of the first arc-shaped gasket 37.
[0056] The purification fan 32 used accelerates the speed of drawing in low-temperature air, and the outside air is sent in from the gas suction groove 36. When the driving fan 321 rotates, the high-temperature gas transfer is completed.
[0057] In this embodiment: the side wall of the purification fan 32 is also provided with a driving fan 321, and protective frames 322 are installed at both ends of the driving fan 321, and a connecting gasket 323 is fitted in the middle of the protective frame 322, and the four corners of the connecting gasket 323 are provided with adapting nails 324, and a trapezoidal support mechanism 4 is installed in the middle of the top of the protective frame 322, and the trapezoidal support mechanism 4 includes an arc-shaped support bracket 41 arranged in the middle of the protective frame 322, and the four corners of the arc-shaped support bracket 41 are provided with a first fastening screw 42, and the end of the arc-shaped support bracket 41 is hinged with a first driving roller 43, and the end of the first driving roller 43 is installed with a heat dissipation cover 44, and the end of the heat dissipation cover 44 is provided with an air outlet 45, and the inner wall of the air outlet 45 is hinged with a plurality of hinged side panels 46, and the two end heads of the plurality of hinged side panels 46 are respectively embedded in the end heads of the air outlet 45, and a gas pressurizing mechanism 6 is installed on the back of the air outlet 45.
[0058] Functionally, the air outlet 45 and the hinged side panel 46 are used to install the driving fan 321 and improve the wind speed of the air diversion entering the driving fan 321.
[0059] In this embodiment: the gas boosting mechanism 6 includes a first strip block 61 installed at the end position of the heat dissipation cover 44, and a heat dissipation plate 62 is installed on the side wall of the first strip block 61. A wind cover 63 is provided in the middle of the plate surface of the heat dissipation plate 62, and a regulating cover 64 is provided in the middle of the wind cover 63. A motor 65 is installed in the middle of the regulating cover 64, and the output end of the motor 65 is transmission-connected to a rotating blade 66 embedded in the middle of the regulating cover 64.
[0060] Functionally, the purpose of heat dissipation is to transfer hot air, and the motor drives the rotating blades 66 to achieve heat dissipation.
[0061] In this embodiment: a heat exchange mechanism 7 is installed at the end position of the second transverse strip 31, and the heat exchange mechanism 7 includes a mounting plate 71 mounted on the end of the protective frame 322, and a second arc-shaped gasket 72 is installed on the side wall of the mounting plate 71, and an arc-shaped fitting plate 73 is installed on the edge side wall of the second arc-shaped gasket 72, and fixed bearings 74 are provided at both ends of the arc-shaped fitting plate 73, and a second driving roller 75 is installed in the middle of the fixed bearing 74, and a wind mesh 76 is installed in the middle of the top of the second driving roller 75, and a pattern 77 is engraved on the surface of the wind mesh 76, and a square slot 78 is opened at one end of the wind mesh 76, and a wind mesh 79 is connected to one end of the square slot 78, and a coolant compression mechanism 8 is fitted on the bottom of the wind mesh 79.
[0062] In this embodiment: the coolant compression mechanism 8 includes a second heat dissipation side plate 81 installed on the surface of the second arc-shaped gasket 72, and fastening nuts 82 are installed at the four corners of the second heat dissipation side plate 81. A limiting rod is installed laterally on the end of the fastening nut 82, and a second connecting rod 83 is installed on one end of the limiting rod. A heat dissipation pipe 84 is installed on the side wall surface of the second connecting rod 83. The heat dissipation pipe 84 is U-shaped, and one end of the heat dissipation pipe 84 is connected to a liquid extraction pipe 85. The bottom end of the liquid extraction pipe 85 is connected to a liquid extraction pump 86. A storage tank 87 is installed on the side of the pump body of the liquid extraction pump 86. A tank rack 88 is sleeved on the end of the storage tank 87. A fastening bolt 89 is installed on the surface of the tank rack 88. A sleeve bracket 891 is installed in the middle of the end of the fastening bolt 89. A drive sleeve 892 is installed in the middle of the sleeve bracket 891. The end of the drive sleeve 892 is provided with a second fastening screw 893.
[0063] The tank rack 88 is used to adapt and install the storage tank 87. After the storage tank 87 is installed, it is bound according to the surface of the socket bracket 891.
[0064] In this embodiment, a return port 894 is provided at the other end of the second heat dissipation side plate 81 . One end of the return port 894 is connected to an access connecting pipe 895 . One end of the access connecting pipe 895 is connected to the back end of the storage tank 87 .
[0065] The top side of the protective frame 322 is also hinged with a limiting assembly mechanism 9, which includes a second trapezoidal bracket 91 installed on the top side of the protective frame 322. A fitting pad 92 is horizontally installed on the top of the second trapezoidal bracket 91. Several heat dissipation strips 93 are sequentially provided on the surface of the fitting pad 92, and a second strip block 94 is also provided on the back of the several heat dissipation strips 93.
[0066] The second trapezoidal bracket 91 and the fitting pad 92 cooperate with each other to better introduce air.
[0067] In this embodiment: linkage sleeves 95 are obliquely installed on both sides of the back side of the top end of the second bar block 94, and an assembly seat 96 is horizontally installed at the end of the linkage sleeve 95, and an "X" bracket 97 is installed. One end of the "X" bracket 97 is linked to the end of the third access base 99 and is provided with an articulated roller shaft 991, and one end of the articulated roller shaft 991 is hinged with a connecting rod 992, and an adapter rod 993 is horizontally installed between the connecting rods 992, and an annular sleeve 994 is sleeved on the middle part of the bottom end of the adapter rod 993, and a linkage roller shaft 995 is horizontally installed between adjacent annular sleeves 994.
[0068] The connecting rod 992 and the annular sleeve 994 are positioned to facilitate assembly of the overall structure.
[0069] In this embodiment: a regulating cross bar 996 is horizontally installed in the middle of the end of the second trapezoidal bracket 91, and a wind filter screen 997 is provided in the middle of the bottom end of the regulating cross bar 996, and a regulating slot 998 is installed at one end of the wind filter screen 997.
[0070] Support is achieved by using an air filter screen 997 and one end of the regulating slot 998.
[0071] First, the heating project construction:
[0072] The initial assembly step is to assemble and adapt the cast iron radiator to the heating pipe. In the adaptation range, the symmetrical state of the first transverse bars 16 on both sides of the connecting piece 15 and the position of the connecting piece 15 are symmetrical. In the process of symmetrical distribution, according to the sharing state of the fitting bracket 11, the rod body of each specific first connecting rod 14 is realized. The sharing state realizes the scheduling support on multiple rubber bases 12. Based on the pad connection of the specific shock-absorbing rubber pad 13, it finally ensures the weight and the pressure on the ground. The bearing function of the first transverse bar 16 is used as a support point for sharing the installation of the cast iron heat dissipation mechanism 2.
[0073] Step 2: Assemble multiple independent cast iron heat dissipation mechanisms 2
[0074] In this process, it is necessary to determine the support on the pressure weight of the rubber block 22 and the trapezoidal gasket 21, and finally use the first trapezoidal bracket 23 as the connecting end around the corresponding buffer fitting gasket 29 to support the weight. Based on the sleeve connection state of the linkage sleeve 27, the sleeve connection share of the two independent linkage sleeves 27 is shared according to the sleeve connection state of the linkage sleeves 27 at the upper and lower ends;
[0075] According to the sharing state of the corresponding first access base 291, the sleeve connection is achieved, and the sleeve connection of the annular heat exchange sleeve 28 is utilized. Finally, the front and rear assembly based on the strip gaskets 293 on the side walls ensures that the cast iron protrusion 24 for heat dissipation and the trapezoidal bracket are connected on the structural components. At the same time, the side-by-side splicing of multiple heat dissipation structures is better improved. The equidistant placement is achieved according to the specific bearing function of the first access base 291. The linkage sleeve 27 connected to the upper and lower ends of the cast iron protrusion 24 in the access state utilizes the top bearing end of the strip bearing block 294 at the top, based on the pad connection state of the access gasket 295 at the top, to better complete the unified assembly of the corresponding square steel pipe 296.
[0076] Step 3: Heat guidance and diffusion during the heating engineering stage;
[0077] Afterwards, the personnel follow the corresponding purification fan 32 as a heat conduction method, the purpose of which is to transfer the hot air. During the transfer, the fan blades of the driving fan 321 rotate, and the high speed generated after the scheduling is accelerated at the high speed to generate wind force at the position of the embedded gas suction groove 36. After the wind force is discharged, in order to control the wind speed, combined with the automation of the wind speed regulator 38, the embedded second access base 33 is used to better complete the wind suction, and after the suction is supercharged by the worm gear, it is drawn into the position of the first trapezoidal bracket 23 to achieve heat replacement;
[0078] Step 4: Low temperature treatment of air;
[0079] The low temperature is generated by first passing through the area of the wind mesh 76 and the gaps in its space, and the high-temperature gas is transferred in. After being transferred in, the gas is independently sucked in through the wind mesh 79 at the rear end, and then the arc-shaped fitting sheets 73 with layer-by-layer cold conduction effect will reduce the normal temperature air. Because the multiple second arc-shaped gaskets 72 are pre-heated by one end of the second heat dissipation side plate 81, the temperature is transferred by the U-shaped heat dissipation pipe 84 to realize the transfer of Freon liquid. The low-temperature liquid will first be introduced into the liquid extraction pipe 85 from the position of the liquid extraction pump 86. The direction of this liquid is to take away the high-temperature liquid along the heat dissipation pipe 84. After the Freon temperature of the high-temperature liquid rises, it is transferred to the area of the liquid extraction pump 86 at the rear end, and then introduced into the storage tank 87 to form a circulation path.
[0080] The storage tank 87 is restrained by the binding and limiting action of the sleeve brackets 891 at both ends, and is finally bound and fixed to the side wall of the first transverse bar 16;
[0081] Step 5: Gas flow direction for heating and ventilation;
[0082] This process needs to be combined with the direction of the second trapezoidal bracket 91. After the high-temperature gas has cooled and contacts the cast iron radiator, the heat generated is transferred again to the position of the fitting pad 92. When the regional position of the fitting pad 92 transfers the direction of the gas again and is introduced into the position of the fitting pad 92, according to the transfer of the gas, the gas will rotate due to the power supply of the motor 65. During the rotation process, the rotation of the rotating blades 66 will be uniformly scheduled. The generated wind speed will be placed from one end of the wind cover 63 to one end of the heat dissipation cover 44 to further realize exhaust. Under the action of the gas discharge, it will be uniformly scheduled from the position of the air outlet 45. Under the action of the wind speed flipping of multiple independent hinged side panels 46, the deflection of the blades is completed, thereby realizing the combing of the wind speed and accelerating the discharge of hot air.
[0083] Step 6: Overall adaptation and installation of the machine;
[0084] This link is based on the position limitation of the two independent assembly seats 96 set up on the outermost side of the second trapezoidal bracket 91, and further adapts the coordination of the two symmetrical "X" brackets 97 installed on the outer side. In this way, the weight of the connection as the third access base 99 is deflected and hinged by the articulated roller 991 to achieve a symmetrical connection of the two independent connecting rods 992. Its purpose is to share the weight of one end of the adapter rod 993 and then connect it with the position of the annular sleeve 994 below. In the connection link, the limiting function of the annular sleeve 994 at both ends is horizontally connected with one end of the linkage roller 995.
[0085] The contents not described in detail in this specification belong to the prior art known to professional and technical personnel in this field. Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments or to replace some of the technical features therein with equivalents. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An assembled cast iron radiator for heating engineering, comprising a support mechanism (1), a cast iron heat dissipation mechanism (2) and an external protection mechanism (3); The support mechanism (1) serves as a ground support component; Its characteristics are: The outer protection mechanism (3) is used to support the side component structures that are fitted together to protect the embedded heating components; The support mechanism (1) includes a fitting bracket (11) arranged on the ground, the side walls of the fitting bracket (11) are respectively provided with a rubber base (12), a shock-absorbing rubber pad (13) is installed in the middle of the bottom end of the rubber base (12), a first connecting rod (14) is installed laterally on the middle side of the shock-absorbing rubber pad (13), a connecting piece (15) is installed laterally on the middle of the first connecting rod (14), the bottom two sides of the connecting piece (15) are supported by the ground for buffering, a first transverse bar (16) is installed in the middle of the top of the connecting piece (15), a cast iron heat dissipation mechanism (2) is provided in the middle of the top of the first transverse bar (16), the cast iron heat dissipation mechanism (2) includes a trapezoidal gasket (21) supported by the ground, a rubber block (22) is installed at the end position of the trapezoidal gasket (21), the top surface of the rubber block (22) is laterally installed with a first trapezoidal bracket (23), the first trapezoidal bracket Cast iron protrusions (24) are provided at both ends of the (23) in correspondence, and circular openings (25) are provided on the surface of the cast iron protrusions (24) in sequence. Access sleeves (26) are installed at both ends of the cast iron protrusions (24), and a linkage sleeve (27) is installed in the middle of the end of the access sleeve (26). The linkage sleeve (27) is arranged at the upper and lower ends of the cast iron protrusion (24), and the end of the linkage sleeve (27) is sleeved with an annular heat exchange sleeve (28). A buffering gasket (29) is provided at the bottom of the annular heat exchange sleeve (28). A first access base (291) is provided at both ends of the buffering gasket (29), and a first heat dissipation side plate (292) is symmetrically provided at both ends of the first access base (291). A strip gasket (293) is installed horizontally on the surface of the first heat dissipation side plate (292), and a strip bearing block (294) is installed on the surface of the strip gasket (293).
2. The assembled cast iron radiator for heating engineering according to claim 1, characterized in that: An access gasket (295) is installed transversely at the middle of the top of the strip-shaped bearing block (294), a connecting seat is installed at the middle of the top of the first access base (291), a square steel pipe (296) is installed transversely at the middle of the top of the connecting seat, and an external protection mechanism (3) is installed on the back of the first access base (291).
3. The assembled cast iron radiator for heating engineering according to claim 2, characterized in that: The outer protection mechanism (3) comprises a second transverse bar (31) installed in the middle of the end of the first access base (291); a purification fan (32) is provided on the surface of the second transverse bar (31); a second access base (33) is provided in the middle of the purification fan (32); a gas injection hole (34) is provided in the middle of the second access base (33); a square block (35) is provided in the middle of the top of the purification fan (32); a gas suction groove (36) is provided in the middle of the end of the square block (35); a first arc-shaped gasket (37) is fitted in the middle of the slot of the gas suction groove (36); and a wind speed regulator (38) is installed in the middle of the top of the first arc-shaped gasket (37).
4. The assembled cast iron radiator for heating engineering according to claim 3, characterized in that: The side wall of the purification fan (32) is further provided with a driving fan (321), and both ends of the driving fan (321) are installed with a protective frame (322), and a connecting gasket (323) is fitted in the middle of the protective frame (322), and the four corners of the connecting gasket (323) are provided with an adapter nail (324), and a trapezoidal support mechanism (4) is installed in the middle of the top of the protective frame (322), and the trapezoidal support mechanism (4) includes an arc-shaped support bracket (41) arranged in the middle of the protective frame (322), and the arc-shaped support bracket The four corners of (41) are all provided with first fastening screws (42), the end of the arc-shaped support bracket (41) is hinged with a first driving roller (43), the end of the first driving roller (43) is installed with a heat dissipation cover (44), the end of the heat dissipation cover (44) is provided with an air outlet (45), the inner wall of the air outlet (45) is hinged with a plurality of hinged side panels (46), the two ends of the plurality of hinged side panels (46) are respectively embedded in the end of the air outlet (45), and the back of the air outlet (45) is installed with a gas pressurizing mechanism (6).
5. The assembled cast iron radiator for heating engineering according to claim 4, characterized in that: The gas pressurizing mechanism (6) comprises a first strip block (61) mounted at the end of the heat dissipation cover (44); a heat dissipation plate (62) is mounted on the side wall of the first strip block (61); a wind cover (63) is mounted in the middle of the plate surface of the heat dissipation plate (62); a regulating cover (64) is mounted in the middle of the wind cover (63); a motor (65) is mounted in the middle of the regulating cover (64); an output end of the motor (65) is in transmission connection with a rotating blade (66) embedded in the middle of the regulating cover (64).
6. The assembled cast iron radiator for heating engineering according to claim 3, characterized in that: A heat exchange mechanism (7) is installed at the end of the second transverse strip (31), and the heat exchange mechanism (7) includes a mounting plate (71) mounted at the end of the protective frame (322), a second arc-shaped gasket (72) is mounted on the side wall of the mounting plate (71), an arc-shaped bonding plate (73) is mounted on the edge side wall of the second arc-shaped gasket (72), fixed bearings (74) are provided at both ends of the arc-shaped bonding plate (73), a second driving roller (75) is mounted in the middle of the fixed bearing (74), a wind mesh (76) is mounted in the middle of the top of the second driving roller (75), a pattern (77) is engraved on the surface of the wind mesh (76), a square slot (78) is opened at one end of the wind mesh (76), a wind mesh (79) is connected to one end of the square slot (78), and a coolant compression mechanism (8) is bonded to the bottom of the wind mesh (79).
7. The assembled cast iron radiator for heating engineering according to claim 6, characterized in that: The cooling liquid compression mechanism (8) includes a second heat dissipation side plate (81) mounted on the surface of the second arc-shaped gasket (72), and fastening nuts (82) are mounted on the four corners of the second heat dissipation side plate (81). A limit rod is mounted laterally on the end of the fastening nut (82), and a second connecting rod (83) is mounted on one end of the limit rod. A heat dissipation pipe (84) is mounted on the side wall surface of the second connecting rod (83), and the heat dissipation pipe (84) is U-shaped, and one end of the heat dissipation pipe (84) is connected to a liquid extraction pipe ( 85), the bottom end of the liquid extraction pipe (85) is connected to the liquid extraction pump (86), a storage tank (87) is installed on the side of the pump body of the liquid extraction pump (86), the end of the storage tank (87) is sleeved with a tank rack (88), the surface of the tank rack (88) is fitted with a fastening bolt (89), the middle part of the end of the fastening bolt (89) is installed with a sleeve bracket (891), the middle part of the sleeve bracket (891) is installed with a driving sleeve (892), and the end of the driving sleeve (892) is provided with a second fastening screw (893).
8. The assembled cast iron radiator for heating engineering according to claim 7, characterized in that: The other end of the second heat dissipation side plate (81) is provided with a return port (894), one end of the return port (894) is connected to an access connecting pipe (895), and one end of the access connecting pipe (895) is connected to the back end of the storage tank (87); The top side of the protection frame (322) is also hinged with a limit assembly mechanism (9), and the limit assembly mechanism (9) includes a second trapezoidal bracket (91) installed on the top side of the protection frame (322), and a fitting pad (92) is installed transversely on the top of the second trapezoidal bracket (91), and a plurality of heat dissipation strips (93) are sequentially provided on the surface of the fitting pad (92), and a second strip block (94) is also provided on the back of the plurality of heat dissipation strips (93).
9. The assembled cast iron radiator for heating engineering according to claim 8, characterized in that: A linkage sleeve (95) is obliquely installed on both sides of the back side of the top end of the second strip block (94); an assembly seat (96) is transversely installed at the end of the linkage sleeve (95); an "X" bracket (97) is installed at the end of the assembly seat (96); one end of the "X" bracket (97) is linked with a third access base (99); the end of the articulated roller shaft (991) is provided; one end of the articulated roller shaft (991) is hinged with a connecting rod (992); an adapter rod (993) is transversely installed between the connecting rods (992); an annular sleeve (994) is sleeved on the middle of the bottom end of the adapter rod (993); and a linkage roller shaft (995) is transversely installed between adjacent annular sleeves (994).
10. The assembled cast iron radiator for heating engineering according to claim 8, characterized in that: A regulating crossbar (996) is transversely mounted at the middle of the end of the second trapezoidal bracket (91), an air filter screen (997) is provided at the middle of the bottom end of the regulating crossbar (996), and a regulating slot (998) is mounted at one end of the air filter screen (997).
Citation Information
Patent Citations
Stable and efficient cast iron radiator
CN215489997U