CN112903115B - Incoming temperature detection equipment for epidemic situation protection of high-speed railway - Google Patents

Incoming temperature detection equipment for epidemic situation protection of high-speed railway Download PDF

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Publication number
CN112903115B
CN112903115B CN202110196465.9A CN202110196465A CN112903115B CN 112903115 B CN112903115 B CN 112903115B CN 202110196465 A CN202110196465 A CN 202110196465A CN 112903115 B CN112903115 B CN 112903115B
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support frame
sliding
blocks
supporting
spring
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CN202110196465.9A
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CN112903115A (en
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刘莉文
陈希泉
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Jiangxi Normal University
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Jiangxi Normal University
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J5/00Radiation pyrometry, e.g. infrared or optical thermometry
    • G01J5/0022Radiation pyrometry, e.g. infrared or optical thermometry for sensing the radiation of moving bodies
    • G01J5/0025Living bodies

Abstract

The invention relates to detection equipment, in particular to inbound temperature detection equipment for high-speed railway epidemic situation protection. The invention aims to provide the station-entering temperature detection equipment for the epidemic situation protection of the high-speed railway, which has high detection precision and can avoid the occurrence of net-leaking fishes. The technical scheme is as follows: an incoming station temperature detection device for high-speed railway epidemic situation protection comprises a bottom plate and a first support frame, wherein the first support frame is connected to one side of the top of the bottom plate; the buzzer is mounted on the upper portion of one side of the first support frame. The temperature detection device can detect the body temperature of the wrist and the forehead of a person through the action of the first temperature sensor and the second temperature sensor, improves the detection precision, avoids fish missing, and can convey luggage of the person through the matching of the transportation assembly and the driving assembly.

Description

Incoming temperature detection equipment for epidemic situation protection of high-speed railway
Technical Field
The invention relates to detection equipment, in particular to inbound temperature detection equipment for high-speed railway epidemic situation protection.
Background
The high-speed railway is called high-speed railway for short, and is a railway system capable of enabling a train to safely run at high speed, people can go out more conveniently due to the appearance of the high-speed railway, the body temperature needs to be measured when the high-speed railway enters a station of the high-speed railway due to epidemic situations, and the human flow in the station of the high-speed railway is large.
When people got into high-speed railway station, generally be that the handheld thermoscope of staff carries out the body temperature to the people who enters the station and detect, the staff generally only carries out the body temperature and detects on the forehead, and it is not accurate enough to detect the precision, may appear some fishes of leaking the net, has reduced the protective effect to the epidemic situation.
Therefore, it is necessary to design a device with high detection precision and capable of avoiding the appearance of the fish with net leakage.
Disclosure of Invention
In order to overcome the defects that workers only detect the forehead generally, the detection precision is not accurate enough, and some net-leaking fishes may appear, the invention aims to provide the station-entering temperature detection equipment for the high-speed railway epidemic situation protection, which has high detection precision and can avoid the occurrence of the net-leaking fishes.
The technical scheme is as follows: an incoming station temperature detection device for high-speed railway epidemic situation protection comprises a bottom plate and a first support frame, wherein the first support frame is connected to one side of the top of the bottom plate; the upper part of one side of the first support frame is provided with a buzzer; the lower part of the first support frame is provided with a pedal assembly; the lower part of one side of the first support frame is provided with a pressing component; the first temperature sensor is arranged on the pressing component; the guardrail component is installed on one side of the first support frame.
In addition, particularly preferably, the pedal assembly comprises a first support block, and the first support block is connected to two sides of the first support block; the first supporting blocks are internally provided with sliding blocks in a sliding manner; the pedals are connected between the sliding blocks; and a first spring is arranged between the first supporting block and the sliding block.
In addition, it is particularly preferable that the pressing assembly comprises a first guide block, and the first guide block is mounted on both sides of the first support frame; the first guide blocks are all provided with a pressing rod in a sliding mode, and the pressing rods are in contact with the pedals; the compression bars are sleeved with second springs, and two ends of each second spring are respectively connected with the first guide block and the compression bar; the fixing shaft is connected to two sides of the first support frame; the first connecting rods are rotatably connected to the fixed shaft, and the first temperature sensors are mounted on the first connecting rods; and the joint of the first connecting rod and the fixed shaft is provided with the torsion spring.
In addition, it is particularly preferable that the guardrail component comprises a second supporting block, and the second supporting block is connected to both sides of the first supporting block; the first gears are rotatably mounted on the second supporting blocks; the two sides of the first support frame are connected with at least two third support blocks; the first rotating shaft is rotatably arranged between the third supporting blocks on the same side; the first rotating shafts are all provided with first bevel gears, the first bevel gears are also arranged on the first gears, and the first bevel gears on the same side are meshed with each other; the first baffle is connected to the first rotating shaft.
In addition, particularly preferably, the turnover device further comprises a turnover assembly, wherein the turnover assembly comprises a second support frame, and the middle part of the upper side of the first support frame is connected with the second support frame; the second support frame is provided with an electric push rod; the telescopic rod of the electric push rod is connected with a first rack, and the first rack is meshed with the first gear; and the two sides of the first support frame are both connected with second guide blocks, and the second guide blocks are in sliding connection with the first racks.
In addition, particularly preferably, the detection device further comprises a detection assembly, wherein the detection assembly comprises a fourth supporting block, and at least two fourth supporting blocks are connected to the upper part of one side of the first supporting frame; the grooved drum is rotatably connected between the fourth supporting blocks; the groove drum is provided with a second connecting rod; the two sides of the first support frame are connected with at least two guide rods; the first sliding rod is arranged between the guide rods on the same side in a sliding manner and is matched with the grooved drum in a sliding manner; each guide rod is sleeved with a third spring, and two ends of each third spring are respectively connected with the guide rod and the first sliding rod; and the lower part of the second connecting rod is provided with a second temperature sensor.
In addition, particularly preferably, the transportation device further comprises a transportation assembly, wherein the transportation assembly comprises fifth supporting blocks, and at least two fifth supporting blocks are connected to two sides of the top of the bottom plate; the driving wheel is rotatably arranged between the fifth supporting blocks on the same lateral side; the conveying belts are wound among the driving wheels; the driving wheel on one side of the second rotating shaft is connected with the second rotating shaft; the third supporting frame is connected between the fifth supporting blocks on the same longitudinal side; and a second baffle is connected between the third support frames.
In addition, particularly preferably, the device further comprises a driving assembly, wherein the driving assembly comprises a sixth supporting block, and the sixth supporting block is connected to one side of the first supporting frame; the sixth supporting block is provided with a second sliding rod in a sliding manner, and the second sliding rod is in contact with the first sliding rod on one side; a fourth spring is connected between the second sliding rod and the sixth supporting block; the lower part of the second sliding rod is provided with a ratchet bar in a sliding way; a fifth spring is arranged between the ratchet bar and the second sliding rod; one side of the top of the bottom plate is connected with a seventh supporting block; the seventh supporting block is rotatably connected with a ratchet gear, and the ratchet gear is meshed with the ratchet bar; and the second rotating shaft is provided with a second bevel gear, the ratchet gear is also provided with a second bevel gear, and the two second bevel gears are meshed.
In addition, it is especially preferred that the temperature control device further comprises a control box, the control box is connected to the upper portion of one side of the first support frame, a power module, a control module and a switching power supply are installed in the control box, the switching power supply supplies power to the whole device, the output end of the switching power supply is electrically connected with the power module, the power module is connected with a power main switch through a circuit, the control module is electrically connected with the power module, the control module is connected with a DS1302 clock circuit and a 24C02 circuit, the buzzer, the first temperature sensor and the second temperature sensor are electrically connected with the control module, and the electric push rod is connected with the control module through a peripheral circuit.
The invention has the following advantages:
1. the invention can detect the body temperature at the wrist and forehead of people through the action of the first temperature sensor and the second temperature sensor, thereby improving the detection precision and avoiding the appearance of fish missing from the net.
2. The first baffle plate can be automatically controlled to be opened and closed through the overturning assembly, and the use is convenient.
3. According to the invention, through the matching of the transportation assembly and the driving assembly, the luggage of people can be conveyed out.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of another perspective structure according to the present invention.
FIG. 3 is a schematic diagram of a first partial structure according to the present invention.
FIG. 4 is a second partial structure diagram of the present invention.
FIG. 5 is a third partial structural diagram of the present invention.
FIG. 6 is a schematic diagram of a fourth partial structure of the present invention.
FIG. 7 is a schematic diagram of a fifth partial structure according to the present invention.
FIG. 8 is a schematic diagram of a sixth partial structure according to the present invention.
FIG. 9 is a schematic diagram of a seventh partial structure according to the present invention.
Fig. 10 is a circuit block diagram of the present invention.
Fig. 11 is a schematic circuit diagram of the present invention.
Wherein the figures include the following reference numerals: 1. a bottom plate, 2, a first support frame, 3, a control box, 4, a buzzer, 5, a first temperature sensor, 7, a pedal assembly, 701, a first support block, 702, a slide block, 703, a pedal, 704, a first spring, 8, a pressing assembly, 801, a first guide block, 802, a compression bar, 803, a second spring, 804, a fixed shaft, 805, a torsion spring, 806, a first connecting rod, 9, a guardrail assembly, 901, a second support block, 902, a first gear, 903, a first bevel gear, 904, a third support block, 905, a first rotating shaft, 906, a first baffle, 10, a turnover assembly, 1001, a second support frame, 1002, an electric push rod, 1003, a second guide block, 1004, a first rack, 11, a detection assembly, 1101, a fourth support block, 1102, a groove barrel, 1103, a second connecting rod, 1104, a guide rod, 1105, a first slide rod, 1106, a third spring, 1107, a second temperature sensor, 12. transport assembly 1201, fifth support block 1202, driving wheel 1203, transport belt 1204, second rotation axis 1205, third support frame 1206, second flap 13, driving assembly 1301, sixth support block 1302, second slide bar 1303, fourth spring 1304, ratchet bar 1305, fifth spring 1306, seventh support block 1307, ratchet wheel 1308, second bevel gear.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
The utility model provides a high-speed railway epidemic situation protection is with temperature-detecting equipment that enters station, as shown in figure 1, figure 2, figure 3, figure 4 and figure 5 show, including bottom plate 1, first support frame 2, bee calling organ 4, first temperature sensor 5, pedal subassembly 7, push down subassembly 8 and guardrail subassembly 9, bottom plate 1 top left side is connected with first support frame 2, install bee calling organ 4 in the middle of 2 front sides upper portions of first support frame, pedal subassembly 7 is installed to 2 lower parts of first support frame, push down subassembly 8 is installed to 2 front sides lower parts of first support frame, push down and install two first temperature sensor 5 on the subassembly 8, guardrail subassembly 9 is installed to 2 rear sides of first support frame.
The pedal assembly 7 comprises first supporting blocks 701, sliding blocks 702, pedals 703 and first springs 704, the left side and the right side of the lower portion of the first supporting frame 2 are connected with the first supporting blocks 701, the sliding blocks 702 are arranged in the two first supporting blocks 701 in a sliding mode, the pedals 703 are connected between the two sliding blocks 702, and the first springs 704 are connected between the first supporting blocks 701 and the sliding blocks 702.
The pressing component 8 comprises a first guide block 801, pressing rods 802, second springs 803, fixing shafts 804, torsion springs 805 and first connecting rods 806, the first guide blocks 801 are mounted on the left side and the right side of the lower portion of the front side of the first support frame 2, the pressing rods 802 are arranged on the two first guide blocks 801 in a sliding mode, the two pressing rods 802 are in contact with the bottom of the pedal 703, the second springs 803 are sleeved on the two pressing rods 802, two ends of the second springs 803 are respectively connected with the first guide blocks 801 and the pressing rods 802, the fixing shafts 804 are connected to the left side and the right side of the middle portion of the front side of the first support frame 2, the first connecting rods 806 are rotatably connected to the two fixing shafts 804, the two first temperature sensors 5 are respectively mounted on the two first connecting rods 806, and the torsion springs 805 are arranged at the joints of the first connecting rods 806 and the fixing shafts 804.
The guardrail component 9 comprises second supporting blocks 901, first gears 902, first bevel gears 903, third supporting blocks 904, first rotating shafts 905 and first baffle plates 906, the left side and the right side of the middle of the first supporting block 2 are connected with the second supporting blocks 901, the first gears 902 are installed on the two second supporting blocks 901 in an equal rotating mode, the left side and the right side of the lower portion of the rear side of the first supporting block 2 are connected with the two third supporting blocks 904, the first rotating shafts 905 are installed between the two third supporting blocks 904 on the same side in a rotating mode, the first bevel gears 903 are installed on the two first rotating shafts 905, the first bevel gears 903 are also installed on the two first gears 902, the two first bevel gears 903 on the same side are meshed, and the first baffle plates 906 are connected to the two first rotating shafts 905.
The working personnel presses a power supply main switch to electrify the whole equipment, the control module controls the first temperature sensor 5 to work, people stand on the pedal 703, the pedal 703 moves downwards, the pedal 703 drives the sliding block 702 to move downwards, the first spring 704 is compressed, the pedal 703 drives the pressing rod 802 to move downwards, the second spring 803 is compressed, the pressing rod 802 drives the first connecting rod 806 to swing downwards, the torsion spring 805 is twisted, the first connecting rod 806 drives the first temperature sensor 5 to move downwards, the first temperature sensor 5 is in contact with the wrist of people, the first temperature sensor 5 can detect the body temperature of people, if the detected body temperature is higher than the rated value in the control module, the control module controls the buzzer 4 to sound for three times, if the detected body temperature is lower than the rated value in the control module, the buzzer 4 does not sound, people can push the first baffle 906 open, then, when the user enters the station, the sliding block 702 and the pedal 703 are reset upwards under the action of the first spring 704, the pressing rod 802 is reset upwards under the action of the second spring 803, the first connecting rod 806 swings upwards under the action of the torsion spring 805, the first connecting rod 806 drives the first temperature sensor 5 to reset downwards, the first temperature sensor 5 is not in contact with the wrist of the user, the power main switch is pressed again, and the whole device is powered off.
Example 2
On the basis of embodiment 1, as shown in fig. 1, 2, 6, 7, 8 and 9, the turnover device further includes a turnover assembly 10, the turnover assembly 10 includes a second support frame 1001, an electric push rod 1002, a second guide block 1003 and a first rack 1004, the second support frame 1001 is connected to the middle of the top of the first support frame 2, the electric push rod 1002 is mounted on the second support frame 1001, two first racks 1004 are connected to an expansion link of the electric push rod 1002, the two first racks 1004 are respectively engaged with the two first gears 902, the second guide block 1003 is connected to both sides of the middle of the first support frame 2, the second guide block 1003 is located above the second support block 901, and the second guide block 1003 is slidably connected to the first racks 1004.
If the detected body temperature is higher than the rated value in the control module, the control module does not control the electric push rod 1002 to work, if the detected body temperature is lower than the rated value in the control module, the control module controls the electric push rod 1002 to extend for 3 seconds, the electric push rod 1002 drives the first rack 1004 to move downwards, the first rack 1004 drives the first gear 902 to rotate, the first gear 902 drives the first rotating shaft 905 to rotate through the first bevel gear 903, the first rotating shaft 905 drives the first baffle 906 to swing outwards, the first baffle 906 is opened, after 3 seconds, the control module controls the electric push rod 1002 to stay for 4 seconds, so that people have enough time to enter the station, after 4 seconds, the control module controls the electric push rod 1002 to shorten for 3 seconds, the electric push rod 1002 drives the first rack 1004 to move upwards, the first rack 1004 drives the first gear 902 to rotate in the reverse direction, the first gear drives the first rotating shaft 905 to rotate in the reverse direction through the first bevel gear 903, the first rotating shaft 905 drives the first baffle 906 to swing inwards to close the first baffle 906, so that the first baffle 906 can be automatically controlled to be opened and closed, and the use is convenient.
The detection device comprises a detection assembly 11, the detection assembly 11 comprises fourth supporting blocks 1101, a groove barrel 1102, second connecting rods 1103, guide rods 1104, first sliding rods 1105, third springs 1106 and second temperature sensors 1107, the upper portion of the rear side of the first supporting frame 2 is connected with the two fourth supporting blocks 1101, the groove barrel 1102 is rotatably connected between the two fourth supporting blocks 1101, the second connecting rods 1103 are installed in the middle of the bottom of the groove barrel 1102, the second temperature sensors 1107 are installed at the lower portions of the second connecting rods 1103, the left side and the right side of the first supporting frame 2 are both connected with the two guide rods 1104, the first sliding rods 1105 are slidably arranged between the two guide rods 1104 on the same side, the two first sliding rods 1105 are both slidably matched with the groove barrel 1102, each guide rod 1104 is sleeved with a third spring 1106, and two ends of the third spring 1106 are respectively connected with the guide rods 1104 and the first sliding rods 1105.
After the whole device is powered on, the control module controls the second temperature sensor 1107 to work, when people stand on the pedal 703, the second temperature sensor 1107 is in contact with the forehead of people, the second temperature sensor 1107 can detect the body temperature of people, the detection precision is improved, the occurrence of fish with net leakage is avoided, if the detected body temperature is higher than a rated value in the control module, the control module controls the buzzer 4 to sound three times, the control module cannot control the electric push rod 1002 to work, if the detected body temperature is lower than the rated value in the control module, the buzzer 4 does not sound, meanwhile, the control module controls the electric push rod 1002 to work, the first baffle 906 is opened, the first baffle 906 pushes the first sliding rod 1105 to move outwards, the third spring 1106 is compressed, the first sliding rod 1105 drives the grooved cylinder 1102 to rotate, the grooved cylinder 1102 drives the second connecting rod 1103 to swing upwards, the second connecting rod 1103 drives the second temperature sensor 1107 to move upwards, move away second temperature sensor 1107, second temperature sensor 1107 is not in contact with people's forehead, second temperature sensor 1107 no longer blocks people, when first baffle 906 inwards swings and closes, first slide bar 1105 inwards moves under the effect of third spring 1106, first slide bar 1105 drives grooved drum 1102 reverse rotation, grooved drum 1102 drives second connecting rod 1103 downwards swing, second connecting rod 1103 drives second temperature sensor 1107 downwards and moves, when this equipment cuts off the power supply, second temperature sensor 1107 closes.
Still including transporting the subassembly 12, transporting the subassembly 12 including the fifth supporting shoe 1201, the drive wheel 1202, the transportation area 1203, the second rotation axis 1204, third support frame 1205 and second baffle 1206, both sides all are connected with two fifth supporting shoes 1201 around bottom plate 1 top right side, the drive wheel 1202 is installed to the rotary type between two fifth supporting shoes 1201 of horizontal homonymy, around having transportation area 1203 between two drive wheels 1202, the drive wheel 1202 left end of rear side is connected with second rotation axis 1204, be connected with third support frame 1205 between two fifth supporting shoes 1201 of vertical homonymy, be connected with second baffle 1206 between two third support frames 1205.
The device also comprises a driving assembly 13, the driving assembly 13 comprises a sixth supporting block 1301, a second sliding rod 1302, a fourth spring 1303, a ratchet bar 1304, a fifth spring 1305, a seventh supporting block 1306, a ratchet gear 1307 and a second bevel gear 1308, the right side of the lower part of the first supporting frame 2 is connected with the sixth supporting block 1301, the sixth supporting block 1301 is provided with the second sliding rod 1302 in a sliding way, the second sliding rod 1302 is contacted with the first sliding rod 1105 on the right side, the fourth spring 1303 is connected between the second sliding rod 1302 and the sixth supporting block 1301, the lower parts of the two second sliding rods 1302 are provided with the ratchet bar 1304 in a sliding way, two fifth springs 1305 are connected between the ratchet bar 1304 and the second sliding rod 1302, the seventh supporting block 1306 is connected with the top of the bottom plate 1 in a rotating way, the ratchet gear 1307 is connected with the seventh supporting block 1306 in a rotating way, the ratchet gear 1307 is meshed with the ratchet bar 1304, the second bevel gear 1308 is installed on the second rotating shaft, the ratchet gear 1307 is also installed with the second bevel gear 1308, the two second bevel gears 1308 mesh.
When the first sliding bar 1105 moves outwards, the right first sliding bar 1105 pushes the second sliding bar 1302 to move rightwards, the fourth spring 1303 is compressed, the second sliding bar 1302 drives the ratchet bar 1304 to move rightwards, the ratchet bar 1304 drives the ratchet 1307 to rotate, the ratchet 1307 drives the second rotating shaft 1204 to rotate through the second bevel gear 1308, the second rotating shaft 1204 drives the rear driving wheel 1202 to rotate, the driving wheel 1202 drives the conveying belt 1203 to rotate, the conveying belt 1203 conveys the luggage backwards, the second baffle 1206 can block the luggage, the first sliding bar 1105 moves inwards, the right first sliding bar 1105 no longer pushes the second sliding bar 1302, the second sliding bar 1302 resets leftwards under the action of the fourth spring 1303, the second sliding bar 1302 drives the ratchet 1304 to reset leftwards, and the ratchet 1307 cannot rotate under the action of the fifth spring 1305.
As shown in fig. 1, fig. 10 and fig. 11, the temperature control device further comprises a control box 3, the control box 3 is connected to the upper middle of the front side of the first support frame 2, the control box 3 is located below the buzzer 4, a power module is installed in the control box 3, the control module and a switching power supply are installed in the control box 3, the switching power supply supplies power to the whole device, the output end of the switching power supply is electrically connected with the power module, the power module is connected with a power master switch through a circuit, the control module and the power module are electrically connected, the control module is connected with a DS1302 clock circuit and a 24C02 circuit, the buzzer 4, the first temperature sensor 5 and the second temperature sensor 1107 are electrically connected with the control module, and the electric push rod 1002 and the control module are connected through a peripheral circuit.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention.

Claims (2)

1. The utility model provides a high-speed railway epidemic situation protection is with temperature check out test set that enters station which characterized in that, including:
the device comprises a bottom plate (1) and a first support frame (2), wherein the first support frame (2) is connected to one side of the top of the bottom plate (1);
the buzzer (4) is mounted on the upper part of one side of the first support frame (2);
the lower part of the first support frame (2) is provided with a pedal component (7);
the lower part of one side of the first support frame (2) is provided with a pressing component (8);
the first temperature sensor (5) is mounted on the pressing component (8);
the guardrail component (9) is mounted on one side of the first support frame (2);
the pedal assembly (7) comprises:
the two sides of the first support frame (2) are connected with the first support blocks (701);
the sliding blocks (702) are arranged in the first supporting blocks (701) in a sliding manner;
the pedals (703) are connected between the sliding blocks (702);
a first spring (704), wherein the first spring (704) is arranged between the first supporting block (701) and the sliding block (702);
the pressing component (8) comprises:
the first guide blocks (801), wherein the first guide blocks (801) are mounted on two sides of the first support frame (2);
the pressing rods (802) are arranged on the first guide blocks (801) in a sliding mode, and the pressing rods (802) are in contact with the pedals (703);
the second springs (803) are sleeved on the pressure rods (802), and two ends of each second spring (803) are respectively connected with the first guide block (801) and the pressure rod (802);
the fixing shaft (804) is connected to two sides of the first support frame (2);
the first connecting rods (806) are rotatably connected to the fixed shafts (804), and the first temperature sensors (5) are mounted on the first connecting rods (806);
a torsion spring (805), wherein the torsion spring (805) is arranged at the joint of the first connecting rod (806) and the fixed shaft (804);
guardrail subassembly (9) including:
the two sides of the first support frame (2) are connected with the second support block (901);
the first gears (902) are rotatably mounted on the second supporting blocks (901);
the two sides of the first support frame (2) are connected with at least two third support blocks (904);
the first rotating shaft (905) is rotatably installed between the third supporting blocks (904) on the same side;
the first bevel gears (903) are mounted on the first rotating shafts (905), the first bevel gears (903) are also mounted on the first gear (902), and the first bevel gears (903) on the same side are meshed;
the first baffle plates (906) are connected to the first rotating shafts (905);
still including upset subassembly (10), upset subassembly (10) including:
the middle part of the upper side of the first support frame (2) is connected with a second support frame (1001);
the electric push rod (1002), the electric push rod (1002) is installed on the second supporting frame (1001);
the first rack (1004) is connected to the telescopic rod of the electric push rod (1002), and the first rack (1004) is meshed with the first gear (902);
the two sides of the first support frame (2) are connected with second guide blocks (1003), and the second guide blocks (1003) are connected with the first rack (1004) in a sliding mode;
still including detection element (11), detection element (11) including:
the upper part of one side of the first support frame (2) is connected with at least two fourth support blocks (1101);
the grooved drum (1102) is rotatably connected between the fourth supporting blocks (1101);
the second connecting rod (1103) is mounted on the grooved drum (1102);
the two sides of the first support frame (2) are connected with at least two guide rods (1104);
the first sliding rod (1105) is arranged between the guide rods (1104) on the same side in a sliding manner, and the first sliding rod (1105) is matched with the grooved drum (1102) in a sliding manner;
each guide rod (1104) is sleeved with a third spring (1106), and two ends of each third spring (1106) are respectively connected with the guide rod (1104) and the first sliding rod (1105);
a second temperature sensor (1107), wherein the second temperature sensor (1107) is arranged at the lower part of the second connecting rod (1103);
still including transportation subassembly (12), transportation subassembly (12) including:
the two sides of the top of the bottom plate (1) are connected with at least two fifth supporting blocks (1201);
the driving wheel (1202) is rotatably arranged between the fifth supporting blocks (1201) on the same transverse side;
a conveying belt (1203), wherein the conveying belt (1203) is wound between the transmission wheels (1202);
a second rotating shaft (1204), wherein the second rotating shaft (1204) is connected to the driving wheel (1202) on one side;
a third supporting frame (1205), wherein the third supporting frame (1205) is connected between the fifth supporting blocks (1201) on the same longitudinal side;
the second baffle plate (1206) is connected between the third supporting frames (1205);
still including drive assembly (13), drive assembly (13) including:
a sixth supporting block (1301), wherein one side of the first supporting frame (2) is connected with the sixth supporting block (1301);
a second slide bar (1302), the sixth support block (1301) is provided with the second slide bar (1302) in a sliding manner, and the second slide bar (1302) is in contact with the first slide bar (1105) on one side;
a fourth spring (1303), wherein the fourth spring (1303) is connected between the second sliding rod (1302) and the sixth supporting block (1301);
the lower part of the second sliding rod (1302) is provided with a ratchet bar (1304) in a sliding way;
a fifth spring (1305), wherein the fifth spring (1305) is arranged between the ratchet bar (1304) and the second sliding bar (1302);
a seventh supporting block (1306), wherein one side of the top of the bottom plate (1) is connected with the seventh supporting block (1306);
a ratchet gear (1307), wherein the ratchet gear (1307) is rotatably connected to the seventh supporting block (1306), and the ratchet gear (1307) is meshed with the ratchet bar (1304);
a second bevel gear (1308), wherein the second bevel gear (1308) is arranged on the second rotating shaft (1204), the second bevel gear (1308) is also arranged on the ratchet gear (1307), and the two second bevel gears (1308) are meshed.
2. The inbound temperature detection device for high-speed railway epidemic situation protection as claimed in claim 1, further comprising a control box (3), the control box (3) is connected to one side upper portion of the first support frame (2), a power module, a control module and a switch power supply are installed in the control box (3), the switch power supply supplies power to the whole device, the output end of the switch power supply is electrically connected with the power module, the power module is connected with a power master switch through a circuit, the control module is electrically connected with the power module, the control module is connected with a DS1302 clock circuit and a 24C02 circuit, the buzzer (4), the first temperature sensor (5) and the second temperature sensor (1107) are electrically connected with the control module, and the electric push rod (1002) is connected with the control module through a peripheral circuit.
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