CN107606724B - Movement for adjusting indoor temperature - Google Patents

Movement for adjusting indoor temperature Download PDF

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Publication number
CN107606724B
CN107606724B CN201710691478.7A CN201710691478A CN107606724B CN 107606724 B CN107606724 B CN 107606724B CN 201710691478 A CN201710691478 A CN 201710691478A CN 107606724 B CN107606724 B CN 107606724B
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temperature
clamping plate
sheet
regulating
water
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CN201710691478.7A
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CN107606724A (en
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马天才
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Abstract

The invention discloses a movement for adjusting indoor temperature, which comprises a machine body, wherein a shell is arranged on the machine body, a water inlet and a water outlet are arranged on the shell, a plurality of temperature adjusting sheets which are sequentially arranged are arranged in the shell, each temperature adjusting sheet is provided with a drainage water channel and a first drainage hole, an intermediate sheet is arranged between two adjacent temperature adjusting sheets, and a plurality of turbulence holes are arranged on the intermediate sheet. The water is drained to the turbulent flow holes on the middle sheet through the drainage water channel on the temperature regulating sheet, and the water is discharged in time, so that the water is not easy to scale on the temperature regulating sheet; the fluidity of water can be promoted, so that the flow rate of water is improved, and meanwhile, the middle sheet is used as an auxiliary temperature regulating sheet, so that the heating area is increased, and the heating efficiency is further improved.

Description

Movement for adjusting indoor temperature
Technical Field
The invention belongs to the technical field of temperature regulating devices, and relates to a movement for regulating indoor temperature.
Background
The electricity is an energy source commonly used in our daily life, and the discovery and application of the electricity greatly saves the manual labor and the mental labor of human beings. The main working principle of the movement for adjusting the indoor temperature is as follows: the water is heated or cooled by the temperature regulating sheet, and the heated or cooled water transfers heat into the room. However, the existing movement for adjusting indoor temperature has a simple structure, causes short contact time between water and a temperature adjusting sheet, causes slow heating or cooling and high power consumption, and in addition, because the temperature adjusting sheet is provided with a water flow dead angle, water in the dead angle does not flow for a long time, so that the water is easy to scale on the surface of the temperature adjusting sheet.
Disclosure of Invention
The invention aims to provide a movement for adjusting indoor temperature, which solves the problem that the surface of a temperature adjusting sheet in an electric heater is easy to scale in the prior art.
The invention adopts the technical scheme that the machine core for adjusting indoor temperature comprises a machine body, wherein a shell is arranged on the machine body, a water inlet and a water outlet are arranged on the shell, a plurality of temperature adjusting sheets which are sequentially arranged are arranged in the shell, each temperature adjusting sheet is provided with a drainage water channel and a first drainage hole, a middle sheet is arranged between two adjacent temperature adjusting sheets, and a plurality of turbulence holes are arranged on the middle sheet.
The present invention is also characterized in that,
the middle position inside the temperature regulating sheet is provided with a temperature control element, and the position of the temperature control element corresponds to the position of the drainage water channel.
The temperature control element is a cable coil or a refrigerant pipe.
The shell comprises a front clamping plate and a rear clamping plate, and the water inlet and the water outlet are both arranged on the front clamping plate.
The two first diversion holes are symmetrically arranged at two ends of the temperature regulating sheet and are respectively communicated with the water inlet and the water outlet; the middle piece is provided with a second diversion hole which is communicated with the first diversion hole.
The shell comprises a front clamping plate and a rear clamping plate, the water inlet is arranged on the front clamping plate, and the water outlet is arranged on the rear clamping plate.
The first diversion holes are arranged on two adjacent temperature regulating sheets in a diagonal way, the first diversion holes on the temperature regulating sheets adjacent to the front clamping plate are communicated with the water inlet, and the first diversion holes on the temperature regulating sheets adjacent to the rear clamping plate are communicated with the water outlet; second diversion holes are formed in the four corners of the middle piece, and the second diversion holes are semicircular in shape.
The drainage water channel is a plurality of S-shaped shapes which are connected in sequence, each turbulence hole corresponds to the corner of the drainage water channel, and the number of the turbulence holes is equal to the number of the corners of the drainage water channel.
A sealing ring is arranged along one circle of the temperature regulating sheet, and the middle sheet is positioned in the sealing ring.
The front clamping plate, the temperature adjusting sheet and the rear clamping plate are fixed on the machine body through bolts.
The invention has the beneficial effects that:
the movement for adjusting indoor temperature is formed by overlapping a plurality of temperature adjusting sheets, so that the heating area can be enlarged, and the enough contact time between water and the temperature adjusting sheets is ensured; according to the machine core for adjusting indoor temperature, the water is drained to the turbulent flow holes on the middle piece through the drainage water channel on the temperature adjusting piece, and the water is discharged in time, so that the water is not easy to scale on the temperature adjusting piece; the movement for adjusting indoor temperature can promote the fluidity of water, so that the flow rate of water is improved, and meanwhile, the middle piece is used as a secondary temperature adjusting piece, so that the heating area is increased, and the heating efficiency is further improved; the movement for adjusting indoor temperature has low cost and is suitable for mass production.
Drawings
FIG. 1 is a schematic view of the movement for regulating indoor temperature according to the present invention;
FIG. 2 is a schematic view of the structure of the metal sheet in the movement for adjusting the indoor temperature according to the present invention;
FIG. 3 is a schematic view of the temperature regulating sheet in the movement for regulating indoor temperature according to the present invention;
FIG. 4 is a schematic diagram of the parallel arrangement of the movement for regulating indoor temperature of the present invention;
fig. 5 is a schematic structural view of a serial arrangement of the movement for regulating indoor temperature of the present invention.
In the figure, a machine body 1, a shell 2, a water inlet 3, a water outlet 4, a temperature regulating sheet 5, a drainage channel 6, a first diversion hole 7, a middle sheet 8, a turbulence hole 9, a temperature control element 10, a front clamping plate 11, a rear clamping plate 12, a second diversion hole 13, a sealing ring 14, a bolt 15, a metal sheet 16 and a groove 17.
Detailed Description
The invention will be described in detail below with reference to the drawings and the detailed description.
The invention is used for regulating the movement of the indoor temperature, as shown in figure 1, including fuselage 1, there are shells 2 on the fuselage 1, there are water inlets 3 and water outlets 4 on the shell 2; the shell 2 is internally provided with a plurality of temperature regulating sheets 5 which are sequentially arranged, as shown in fig. 2, each temperature regulating sheet 5 comprises a pair of metal sheets 16 which are easy to deform, one surface of each metal sheet 16 is pressed with a groove 17 by a die, the groove 17 is in a plurality of S-shaped sequentially connected shapes, the temperature control element 10 is placed in the groove 17, the temperature control element 10 is one of a cable coil and a refrigerant pipe, the cable coil can heat water, and the refrigerant pipe can reduce the water temperature. The other surface of each metal sheet 16 is correspondingly provided with a drainage water channel 6, one surfaces of the two metal sheets 16 provided with grooves 17 are welded with each other, and each temperature regulating sheet 5 is provided with a first drainage hole 7; as shown in fig. 3, an intermediate piece 8 is arranged between two adjacent temperature regulating pieces 5, a plurality of turbulence holes 9 are arranged on the intermediate piece 8, each turbulence hole 9 corresponds to the corners of the drainage water channel 6, the number of the turbulence holes 9 is equal to that of the corners of the drainage water channel 6, the drainage water channel 6 is used for preventing the water flow at dead angles from flowing for a long time to cause scaling on the temperature regulating pieces 5 in the movement, the water is guided into the turbulence holes 9 through the drainage water channel 6, and the turbulence holes 9 can accelerate the speed of the water flow.
A sealing ring 14 is arranged along one circle of the temperature regulating sheet 5, and the middle sheet 8 is positioned in the sealing ring 14.
Example 1
The temperature control element 10 is a cable coil, as shown in fig. 4, the shell 2 comprises a front clamping plate 11 and a rear clamping plate 12, the water inlet 3 is arranged at one end of the front clamping plate 11 close to the ground, and the water outlet 4 is arranged at the other end of the front clamping plate 11 symmetrical to the water inlet 3; the two first diversion holes 7 are respectively communicated with the water inlet 3 and the water outlet 4; the intermediate sheet 8 is provided at both ends thereof with second deflector holes 13 communicating with the first deflector holes 7, respectively. The first diversion holes 7 are arranged in parallel, and the device is suitable for equipment with large water flow.
The front clamping plate 11, the temperature adjusting plate 5 and the rear clamping plate 12 are fixed on the machine body 1 through bolts 15.
Example 2
The temperature control element 10 is a cable coil, as shown in fig. 5, the shell 2 comprises a front clamping plate 11 and a rear clamping plate 12, the water inlet 3 is arranged on the front clamping plate 11, the water outlet 4 is arranged on the rear clamping plate 12, and the water inlet 3 and the water outlet 4 are arranged in a diagonal line; the first diversion holes 7 are arranged on two adjacent temperature regulating plates 5 in a diagonal way, the first diversion holes 7 on the temperature regulating plates adjacent to the front clamping plate 11 are communicated with the water inlet 3, and the first diversion holes 7 on the temperature regulating plates adjacent to the rear clamping plate 12 are communicated with the water outlet 4; the middle piece 8 is provided with second diversion holes 13 at four corners, and the second diversion holes 13 are semicircular in shape. The first diversion holes 7 are arranged in series, and the device is suitable for equipment with small water flow.
The front clamping plate 11, the temperature adjusting plate 5 and the rear clamping plate 12 are fixed on the machine body 1 through bolts 15.
Example 3
The temperature control element 10 is a refrigerant pipe, as shown in fig. 4, the shell 2 comprises a front clamping plate 11 and a rear clamping plate 12, the water inlet 3 is arranged at one end of the front clamping plate 11 close to the ground, and the water outlet 4 is arranged at the other end of the front clamping plate 11 symmetrical to the water inlet 3; the two first diversion holes 7 are respectively communicated with the water inlet 3 and the water outlet 4; the intermediate sheet 8 is provided at both ends thereof with second deflector holes 13 communicating with the first deflector holes 7, respectively. The first diversion holes 7 are arranged in parallel, and the device is suitable for equipment with large water flow.
The front clamping plate 11, the temperature adjusting plate 5 and the rear clamping plate 12 are fixed on the machine body 1 through bolts 15.
Example 4
The temperature control element 10 is a refrigerant pipe, as shown in fig. 5, the shell 2 comprises a front clamping plate 11 and a rear clamping plate 12, the water inlet 3 is arranged on the front clamping plate 11, the water outlet 4 is arranged on the rear clamping plate 12, and the water inlet 3 and the water outlet 4 are arranged in a diagonal line; the first diversion holes 7 are arranged on two adjacent temperature regulating plates 5 in a diagonal way, the first diversion holes 7 on the temperature regulating plates adjacent to the front clamping plate 11 are communicated with the water inlet 3, and the first diversion holes 7 on the temperature regulating plates adjacent to the rear clamping plate 12 are communicated with the water outlet 4; the middle piece 8 is provided with second diversion holes 13 at four corners, and the second diversion holes 13 are semicircular in shape. The first diversion holes 7 are arranged in series, and the device is suitable for equipment with small water flow.
The front clamping plate 11, the temperature adjusting plate 5 and the rear clamping plate 12 are fixed on the machine body 1 through bolts 15.
The use process of the movement for adjusting the indoor temperature is as follows:
the invention arranged in parallel, when in use: the water flows through the water inlet 3 sequentially through the first diversion holes 7 at one end of each temperature regulating plate 5 close to the ground and the second diversion holes 13 on the communicated middle plates 8, then flows are distributed through the turbulence holes 9 at the corresponding end, each flow after distribution passes through the diversion water channel 6 on the temperature regulating plate 5, the temperature-regulated water flows into the turbulence holes 9 at the other end of the middle plates 8, then enters the corresponding second diversion holes 13 and the communicated first diversion holes 7, and the water flows out of the water outlet 4.
The invention arranged in series, when in use: the water flows into the first diversion holes 7 on the communicated temperature regulating plates 5 through the water inlets 3, flows through the second diversion holes 13 on the middle plates 8 and communicated with the first diversion holes 7, then flows into the turbulence holes 9 at the corresponding ends to distribute the water flow, each water flow after distribution passes through the diversion water channel 6 on the temperature regulating plates 5, the water flow after temperature regulation flows into the turbulence holes 9 at the other ends of the middle plates 8, then enters the first diversion holes 7 on the next temperature regulating plates 5, is subjected to gradual temperature regulation as described above, and finally flows out of the water outlets 4.
Through the mode, the movement for adjusting indoor temperature is formed by overlapping the plurality of temperature adjusting sheets, so that the heated area can be enlarged, and the enough contact time between water and the temperature adjusting sheets is ensured; according to the movement for adjusting indoor temperature, water is drained to the turbulence holes on the middle piece through the drainage water channel on the temperature adjusting piece, and the water is discharged in time, so that the water is not easy to scale on the temperature adjusting piece; the movement for adjusting indoor temperature can promote the fluidity of water, so that the flow rate of water is improved, and meanwhile, the middle piece is used as a secondary temperature adjusting piece, so that the heating area is increased, and the heating efficiency is further improved; the movement for adjusting indoor temperature has low cost and is suitable for mass production.

Claims (8)

1. The machine core for adjusting indoor temperature is characterized by comprising a machine body (1), wherein a shell (2) is arranged on the machine body (1), a water inlet (3) and a water outlet (4) are arranged on the shell (2), a plurality of temperature adjusting sheets (5) which are sequentially arranged are arranged in the shell (2), a drainage water channel (6) and a first diversion hole (7) are arranged on each temperature adjusting sheet (5), an intermediate sheet (8) is arranged between every two adjacent temperature adjusting sheets (5), and a plurality of turbulence holes (9) are arranged on the intermediate sheet (8);
the shell (2) comprises a front clamping plate (11) and a rear clamping plate (12), and the water inlet (3) and the water outlet (4) are both arranged on the front clamping plate (11);
the two first diversion holes (7) are symmetrically arranged at two ends of the temperature regulating sheet (5), and the two first diversion holes (7) are respectively communicated with the water inlet (3) and the water outlet (4); the middle piece (8) is provided with a second diversion hole (13), and the second diversion hole (13) is communicated with the first diversion hole (7); the drainage water channel (6) is in a plurality of S-shaped sequentially connected shapes, each turbulence hole (9) corresponds to the corners of the drainage water channel (6), and the number of the turbulence holes (9) is equal to the number of the corners of the drainage water channel (6);
a sealing ring (14) is arranged along one circle of the temperature regulating sheet (5), and the middle sheet (8) is positioned in the sealing ring (14).
2. Movement for regulating the indoor temperature according to claim 1, characterized in that the temperature regulating piece (5) is internally provided with a temperature control element (10) in a middle position, the position of the temperature control element (10) corresponding to the position of the drainage channel (6).
3. Movement for regulating the temperature in a room according to claim 2, characterized in that said temperature control element (10) is a cable drum or a refrigerant tube.
4. Movement for regulating the temperature in a room according to claim 1, characterized in that said front (11), temperature regulating plate (5) and rear (12) plates are fixed to the fuselage (1) by means of bolts (15).
5. The machine core for adjusting indoor temperature is characterized by comprising a machine body (1), wherein a shell (2) is arranged on the machine body (1), a water inlet (3) and a water outlet (4) are arranged on the shell (2), a plurality of temperature adjusting sheets (5) which are sequentially arranged are arranged in the shell (2), a drainage water channel (6) and a first diversion hole (7) are arranged on each temperature adjusting sheet (5), an intermediate sheet (8) is arranged between every two adjacent temperature adjusting sheets (5), and a plurality of turbulence holes (9) are arranged on the intermediate sheet (8); the drainage water channel (6) is in a plurality of S-shaped sequentially connected shapes, each turbulence hole (9) corresponds to the corners of the drainage water channel (6), and the number of the turbulence holes (9) is equal to the number of the corners of the drainage water channel (6); a sealing ring (14) is arranged along one circle of the temperature regulating sheet (5), and the middle sheet (8) is positioned in the sealing ring (14);
the shell (2) comprises a front clamping plate (11) and a rear clamping plate (12), the water inlet (3) is arranged on the front clamping plate (11), and the water outlet (4) is arranged on the rear clamping plate (12);
the first diversion holes (7) are arranged on two adjacent temperature regulating plates (5) in a diagonal way, the first diversion holes (7) on the temperature regulating plates adjacent to the front clamping plate (11) are communicated with the water inlet (3), and the first diversion holes (7) on the temperature regulating plates adjacent to the rear clamping plate (12) are communicated with the water outlet (4); second diversion holes (13) are formed in four corners of the middle piece (8), and the second diversion holes (13) are semicircular.
6. Movement for regulating the indoor temperature according to claim 5, characterized in that said temperature regulating piece (5) is internally provided in a central position with a temperature control element (10), the position of said temperature control element (10) corresponding to the position of the drainage channel (6).
7. Movement for regulating the temperature in a room according to claim 6, characterized in that said temperature control element (10) is a cable drum or a refrigerant tube.
8. Movement for regulating the temperature in a room according to claim 5, characterized in that said front clamping plate (11), temperature regulating plate (5) and rear clamping plate (12) are fixed to the fuselage (1) by means of bolts (15).
CN201710691478.7A 2017-08-14 2017-08-14 Movement for adjusting indoor temperature Active CN107606724B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710691478.7A CN107606724B (en) 2017-08-14 2017-08-14 Movement for adjusting indoor temperature

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710691478.7A CN107606724B (en) 2017-08-14 2017-08-14 Movement for adjusting indoor temperature

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Publication Number Publication Date
CN107606724A CN107606724A (en) 2018-01-19
CN107606724B true CN107606724B (en) 2023-12-05

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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR970024737U (en) * 1995-11-09 1997-06-20 삼성전자주식회사 Air conditioner
CN101055149A (en) * 2006-09-29 2007-10-17 曹爱国 Heat-conducting water box for air conditioner and its making process
CN101216713A (en) * 2008-01-15 2008-07-09 朱英年 Adjusting temperature controller
CN201229828Y (en) * 2008-06-18 2009-04-29 张宝魁 Aluminum channel type parallel water-cooling heat radiating system
KR20090130989A (en) * 2008-06-17 2009-12-28 린나이코리아 주식회사 Heat exchanger
KR100958353B1 (en) * 2009-10-20 2010-05-17 김칠영 Warm water adjusting valve assembly
CN105423775A (en) * 2015-12-18 2016-03-23 山西云端水环境科技有限公司 Anti-scale type temperature adjusting water cooler
CN106051898A (en) * 2016-07-20 2016-10-26 马天才 Instant heating and heat exchange core
CN106196562A (en) * 2016-07-20 2016-12-07 马天才 Instantaneous heat heating movement

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100126612A1 (en) * 2008-11-25 2010-05-27 Globe Union Industrial Corp. Water flow temperature control system

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR970024737U (en) * 1995-11-09 1997-06-20 삼성전자주식회사 Air conditioner
CN101055149A (en) * 2006-09-29 2007-10-17 曹爱国 Heat-conducting water box for air conditioner and its making process
CN101216713A (en) * 2008-01-15 2008-07-09 朱英年 Adjusting temperature controller
KR20090130989A (en) * 2008-06-17 2009-12-28 린나이코리아 주식회사 Heat exchanger
CN201229828Y (en) * 2008-06-18 2009-04-29 张宝魁 Aluminum channel type parallel water-cooling heat radiating system
KR100958353B1 (en) * 2009-10-20 2010-05-17 김칠영 Warm water adjusting valve assembly
CN105423775A (en) * 2015-12-18 2016-03-23 山西云端水环境科技有限公司 Anti-scale type temperature adjusting water cooler
CN106051898A (en) * 2016-07-20 2016-10-26 马天才 Instant heating and heat exchange core
CN106196562A (en) * 2016-07-20 2016-12-07 马天才 Instantaneous heat heating movement

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