A fruit pulp sterilization apparatus and method

By designing the movable mounting section and alarm display section of the fruit pulp sterilization device, the problems of incorrect connection of temperature detection device and sensor damage were solved, realizing automatic connection and quick replacement, and improving the reliability and efficiency of temperature detection.

CN122429949APending Publication Date: 2026-07-21LINCANG BOTAI AGRI TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
LINCANG BOTAI AGRI TECH DEV CO LTD
Filing Date
2026-06-02
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In existing technologies, the temperature detection device fails to automatically alarm and indicate connection errors after the fruit pulp is heated, cannot be located and stored, and has low replacement efficiency when the temperature sensor is damaged.

Method used

A fruit pulp sterilization device was designed, comprising a movable mounting section, a temperature detection section, an alarm display section, a storage and positioning section, and an auxiliary replacement section. Automatic connection and positioning are achieved through a helical spring and an angle control rod. An alarm indicates connection errors, and assistance is provided for replacing damaged sensors.

Benefits of technology

It enables automatic connection and positioning of temperature detection devices, improves the efficiency of sensor replacement, and ensures the accuracy and reliability of temperature detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a fruit pulp sterilization device and method, relates to the technical field of fruit pulp sterilization temperature detection, and comprises a movable mounting part, a temperature detection part, an alarm prompt part, a storage positioning part and an auxiliary replacement part. The temperature detection part is provided with two groups, and the two groups of temperature detection parts are installed on the movable mounting part. The alarm prompt part is installed on the movable mounting part and the two groups of temperature detection parts. The storage positioning part is installed on the left end of the movable mounting part and is used for positioning the movable mounting part. The auxiliary replacement part is installed on the movable mounting part and is used for improving the maintenance efficiency of the two groups of temperature detection parts. The corresponding alarm of the application can emit an alarm sound to prompt the staff to connect another temperature sensor a with the fruit pulp heating pipe. The problem that the temperature detection device cannot automatically issue an alarm prompt when it is not accurately connected with the fruit pulp heating pipe and is not conducive to the reconnection of the staff is solved.
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Description

Technical Field

[0001] This invention belongs to the field of fruit pulp sterilization temperature detection technology, and more specifically, relates to a fruit pulp sterilization device and method. Background Technology

[0002] Monitoring the temperature of the fruit pulp after heating is crucial for ensuring its quality and safety. Only by reaching the sterilization temperature can harmful microorganisms such as mold and yeast be effectively killed, preventing the fruit pulp from fermenting and spoiling. It can also deactivate polyphenol oxidases, preventing browning and flavor deterioration of the fruit pulp.

[0003] Currently, the following problems exist when testing heated fruit pulp: 1. When the temperature detection device is not accurately connected to the fruit pulp heating tube, it cannot automatically issue an alarm, which is not conducive to the staff reconnecting it; 2. It cannot serve as a storage and positioning tool for the temperature detection device after use, which makes the temperature detection device easy to move; 3. When the temperature sensor is damaged, it cannot assist in replacing the damaged temperature sensor, which affects the replacement efficiency of the temperature sensor. Summary of the Invention

[0004] This disclosure relates to a fruit pulp sterilization device and method, which includes a movable mounting part, a temperature detection part, an alarm display part, a storage and positioning part, and an auxiliary replacement part. A corresponding alarm sounds, prompting the operator to connect another temperature sensor (a) to the fruit pulp heating tube. The storage and positioning base positions the rectangular mounting base. If temperature sensor a, whose temperature detection result deviates significantly from that of temperature sensor b, is damaged, the operator can quickly replace the damaged temperature sensor a based on the temperature detection result of temperature sensor b. This solves the problems of not automatically issuing an alarm when the temperature detection device is not accurately connected to the fruit pulp heating tube, not being able to store and position the used temperature detection device, and not being able to assist in replacing a damaged temperature sensor.

[0005] In a first aspect, this disclosure provides a fruit pulp sterilization device, comprising: a movable mounting section, a temperature detection section, an alarm display section, a storage and positioning section, and an auxiliary replacement section; the temperature detection section comprises two sets, both sets of which are mounted on the movable mounting section, and are used to detect the fluid temperature in the fruit pulp heating tube; the alarm display section is mounted on the movable mounting section and the two sets of temperature detection sections, and is used to prompt the operator to accurately install the two sets of temperature detection sections; the storage and positioning section is mounted on the left end of the movable mounting section, and is used to position the movable mounting section; the auxiliary replacement section is mounted on the movable mounting section, and is used to improve the maintenance efficiency of the two sets of temperature detection sections.

[0006] In at least some embodiments, the movable mounting part includes: a rectangular mounting base, a circular guide shaft, and a movable mounting block; the rectangular mounting base has two arc-shaped positioning grooves inside; the circular guide shaft is fixedly mounted on the right side of the rectangular mounting base, and a spiral guide groove is provided on the circular guide shaft; the movable mounting block is slidably mounted on the outside of the circular guide shaft.

[0007] In at least some embodiments, the movable mounting part further includes: a circular limiting plate, an angle control rod, and a helical spring a; the circular limiting plate is fixedly mounted on the right end of the circular guide shaft; the angle control rod is fixedly mounted on the movable mounting block, and the inner end of the angle control rod is inserted into the helical guide groove; the helical spring a is sleeved on the outside of the circular guide shaft, and the helical spring a is located between the movable mounting block and the circular limiting plate.

[0008] In at least some embodiments, the temperature detection unit includes: a temperature detection seat, a polygonal rod, and a movable connecting frame; the temperature detection seat is fixedly mounted on a rectangular mounting base or a movable mounting block; the polygonal rod is fixedly mounted on the temperature detection seat; there are two movable connecting frames, and the two movable connecting frames are slidably mounted on the polygonal rod, with the inner sides of the two movable connecting frames in contact.

[0009] In at least some embodiments, the temperature detection unit further includes: a helical spring b, a triangular guide frame, and a temperature sensor a; there are two helical springs b, which are sleeved on the outside of the polygonal rod and located on the outside of the two movable connecting frames; there are two triangular guide frames, which are fixedly installed on the two movable connecting frames; the temperature sensor a is fixedly installed on the movable connecting frame.

[0010] In at least some embodiments, the alarm notification unit includes: a lithium battery and an alarm; there are two lithium batteries, and the two lithium batteries are fixedly mounted on a rectangular mounting base and a movable mounting block; there are two alarms, and the two alarms are fixedly mounted on a rectangular mounting base and a movable mounting block.

[0011] In at least some embodiments, the alarm notification unit further includes: control switch a and control switch b; there are two control switches a, and the two control switches a are fixedly mounted on the rectangular mounting base, and the two control switches a can contact and be triggered by the movable mounting block; there are two control switches b, and the two control switches b are fixedly mounted on two movable connecting brackets; the lithium battery on the rectangular mounting base, the alarm on the rectangular mounting base, the upper control switch a and the control switch b on the rectangular mounting base are connected in series, and the lithium battery on the movable mounting block, the alarm on the movable mounting block, the lower control switch a and the control switch b on the movable mounting block are also connected in series.

[0012] In at least some embodiments, the storage and positioning part includes: a storage and positioning seat, a movable positioning block, a circular force-bearing frame, and a helical spring c; the storage and positioning seat is slidably mounted on the left end of the rectangular mounting base; there are two movable positioning blocks, which are slidably mounted on the storage and positioning seat, and the outer ends of the two movable positioning blocks are inserted into corresponding arc-shaped positioning grooves; there are two circular force-bearing frames, which are fixedly mounted on the outside of the two movable positioning blocks, and the two circular force-bearing frames are also in contact with the storage and positioning seat; the helical spring c is sleeved on the outside of the two movable positioning blocks, and the helical spring c is located between the two circular force-bearing frames.

[0013] In at least some embodiments, the auxiliary replacement part includes: a connecting bracket and a temperature sensor b; the connecting bracket is threaded onto a rectangular mounting base; the temperature sensor b is fixedly mounted on the connecting bracket, and the temperature sensor b has the same structure as the two temperature sensors a.

[0014] In another aspect, this disclosure provides a method for sterilizing fruit pulp, comprising the following steps: 1) Connect the storage positioning seat to the bracket on the fruit pulp sterilization device with bolts, and then connect the two temperature sensors a to the wiring on the fruit pulp sterilization device; 2) When the two temperature sensors a need to be connected to the fruit pulp heating tube, the operator pulls the rectangular mounting base outward to separate the rectangular mounting base from the storage positioning base, and then moves the movable mounting block to the right so that the angle control rod contacts the other end of the spiral guide groove. 3) Make contact between the four triangular guide frames and the fruit pulp heating pipe, and then the staff should move the rectangular mounting base and the movable mounting block with force; 4) When the temperature values ​​detected by the two temperature sensors a deviate significantly, the staff removes temperature sensor b with a wrench, then contacts temperature sensor b against the outer wall of the fruit pulp heating tube, and then connects temperature sensor b to the wiring on the fruit pulp sterilization device. 5) After the temperature detection is completed, the staff pulls the rectangular mounting base and the movable mounting block outward to separate the four movable connecting brackets from the fruit pulp heating tube. Then, the left end of the rectangular mounting base is slidably installed on the storage positioning base.

[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. The spiral spring a in this invention provides elastic positioning for the movable mounting block, so that the movable mounting block will only slide to the right after being pulled. When the movable mounting block slides to the right, the movable mounting block can change its angle under the action of the spiral guide groove and the angle control rod. When the angle control rod contacts the other end of the spiral guide groove, the movable mounting block rotates 180 degrees.

[0016] 2. When the two triangular guide frames come into contact with the fruit pulp heating tube, and the operator moves the rectangular mounting base and the movable mounting block, the two movable connecting frames automatically slide outward under the action of the two triangular guide frames, so that the two movable connecting frames come into contact with the fruit pulp heating tube; the setting of the two helical springs b enables the two movable connecting frames to be elastically connected with the fruit pulp heating tube, which avoids the fruit pulp heating tube from being pinched while ensuring the connection effect; In addition, when the two movable connecting brackets come into contact with the fruit pulp heating tube, temperature sensor a can automatically detect the fluid temperature in the fruit pulp heating tube; when the temperature values ​​detected by the two temperature sensors a differ significantly, the operator can remove temperature sensor b with a wrench, then contact temperature sensor b with the outer wall of the fruit pulp heating tube, and then connect temperature sensor b to the external circuit. Temperature sensor a, whose temperature detection result is basically the same as that of temperature sensor b, is not damaged, while temperature sensor a, whose temperature detection result deviates significantly from that of temperature sensor b, is damaged. The operator can quickly replace the damaged temperature sensor a based on the temperature detection result of temperature sensor b.

[0017] 3. In this invention, when one of the temperature sensors a is in contact with the fruit pulp heating tube, the corresponding control switch b is in the pressed state, and both control switches a are also in the pressed state. At this time, the corresponding alarm sounds, prompting the operator to connect the other temperature sensor a to the fruit pulp heating tube. When both temperature sensors a are in contact with the fruit pulp heating tube, both control switches b are in the pressed state, and both control switches a are not pressed. At this time, the two alarms cannot sound.

[0018] 4. The storage positioning seat of this invention plays a positioning role for the rectangular mounting seat; the two movable positioning blocks ensure that the rectangular mounting seat will only separate from the storage positioning seat when it is pulled outward, and the two movable positioning blocks can automatically slide inward when the storage positioning seat is connected or separated from the rectangular mounting seat. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0020] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0021] In the attached diagram: Figure 1 A three-dimensional structural schematic diagram of the present invention is shown; Figure 2 A schematic diagram of the structure of the movable mounting part of the present invention is shown; Figure 3 The present invention is shown. Figure 2A magnified schematic diagram of a portion of region A in the middle; Figure 4 The present invention is shown. Figure 1 A schematic diagram of the bottom view structure; Figure 5 A schematic diagram of the temperature detection unit of the present invention is shown; Figure 6 The present invention is shown. Figure 1 A schematic diagram of the transverse center section structure; Figure 7 The present invention is shown. Figure 6 A magnified schematic diagram of a portion of region B in the middle; Figure 8 The present invention is shown. Figure 1 A schematic diagram of the longitudinal center section structure; Figure 9 The present invention is shown. Figure 8 A magnified schematic diagram of the structure of region C in the middle.

[0022] List of reference numerals in the attached diagram: 100. Movable mounting section; 101. Rectangular mounting base; 1011. Arc-shaped positioning groove; 102. Circular guide shaft; 1021. Spiral guide groove; 103. Movable mounting block; 104. Circular limit plate; 105. Angle control rod; 106. Helical spring a; 200. Temperature detection unit; 201. Temperature detection base; 202. Polygonal rod; 203. Movable connecting frame; 204. Helical spring b; 205. Triangular guide frame; 206. Temperature sensor a; 300. Alarm notification unit; 301. Lithium battery; 302. Alarm device; 303. Control switch a; 304. Control switch b; 400. Storage and positioning part; 401. Storage and positioning base; 402. Movable positioning block; 403. Circular force-bearing frame; 404. Helical spring c; 500, Auxiliary replacement part; 501, Connecting bracket; 502, Temperature sensor b. Detailed Implementation

[0023] To make the objectives, solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Unless otherwise stated, the terms used herein have their ordinary meanings in the art. The same reference numerals in the drawings represent the same parts.

[0024] Example: Please refer to Figures 1 to 9As shown: This invention provides a fruit pulp sterilization device, comprising: a movable mounting part 100, a temperature detection part 200, an alarm prompting part 300, a storage and positioning part 400, and an auxiliary replacement part 500; two sets of temperature detection parts 200 are provided, and the two sets of temperature detection parts 200 are installed on the movable mounting part 100, and the two sets of temperature detection parts 200 are used to detect the fluid temperature in the fruit pulp heating tube; the alarm prompting part 300 is installed on the movable mounting part 100 and the two sets of temperature detection parts 200, and the alarm prompting part 300 is used to prompt the operator to accurately install the two sets of temperature detection parts 200; the storage and positioning part 400 is installed on the left end of the movable mounting part 100, and the storage and positioning part 400 is used to position the movable mounting part 100; the auxiliary replacement part 500 is installed on the movable mounting part 100, and the auxiliary replacement part 500 is used to improve the maintenance efficiency of the two sets of temperature detection parts 200.

[0025] In this embodiment of the disclosure, such as Figure 2 and Figure 3 As shown, the movable mounting part 100 includes: a rectangular mounting base 101, a circular guide shaft 102, and a movable mounting block 103; the rectangular mounting base 101 has two arc-shaped positioning grooves 1011 inside; the circular guide shaft 102 is fixedly mounted on the right side of the rectangular mounting base 101, and a spiral guide groove 1021 is provided on the circular guide shaft 102; the movable mounting block 103 is slidably mounted on the outside of the circular guide shaft 102; the movable mounting part 100 also includes: a circular limiting plate 104, an angle control rod 105, and a helical spring a106; the circular limiting plate 104 is fixedly mounted on the right end of the circular guide shaft 102; the angle control rod 105 is fixedly mounted on the movable mounting block 103, and the inner end of the angle control rod 105 is inserted into the spiral guide groove 1021; the helical spring a106 is sleeved on the outside of the circular guide shaft 102, and the helical spring a106 is located between the movable mounting block 103 and the circular limiting plate 104; Its specific function is as follows: Since the circular limiting plate 104 is fixedly installed on the right end of the circular guide shaft 102, and the helical spring a106 is sleeved on the outside of the circular guide shaft 102, and the helical spring a106 is located between the movable mounting block 103 and the circular limiting plate 104, it plays an elastic positioning role for the movable mounting block 103, so that the movable mounting block 103 will only slide to the right after being pulled; since the circular guide shaft 102 has a helical guide groove 1021, and the angle control rod 105 is fixedly installed on the movable mounting block 103, and the inner end of the angle control rod 105 is inserted into the helical guide groove 1021, when the movable mounting block 103 slides to the right, the movable mounting block 103 can change its angle under the action of the helical guide groove 1021 and the angle control rod 105. When the angle control rod 105 contacts the other end of the helical guide groove 1021, the movable mounting block 103 rotates 180 degrees.

[0026] In this embodiment of the disclosure, such as Figure 5 and Figure 9 As shown, the temperature detection unit 200 includes: a temperature detection seat 201, a polygonal rod 202, and a movable connecting frame 203; the temperature detection seat 201 is fixedly mounted on a rectangular mounting base 101 or a movable mounting block 103; the polygonal rod 202 is fixedly mounted on the temperature detection seat 201; two movable connecting frames 203 are provided, and the two movable connecting frames 203 are slidably mounted on the polygonal rod 202, with their inner sides in contact; the temperature detection unit 200 also includes: a helical spring b204, a triangular guide frame 205, and a temperature sensor a206; two helical springs b204 are provided, and the two helical springs b204 are sleeved on the outside of the polygonal rod 202, and the two helical springs b204 are located on the outside of the two movable connecting frames 203; two triangular guide frames 205 are provided, and the two triangular guide frames 205 are fixedly mounted on the two movable connecting frames 203; the temperature sensor a206 is fixedly mounted on the movable connecting frame 203; The auxiliary replacement unit 500 includes: a connecting bracket 501 and a temperature sensor b502; the connecting bracket 501 is threaded onto a rectangular mounting base 101; the temperature sensor b502 is fixedly mounted on the connecting bracket 501, and the temperature sensor b502 has the same structure as the two temperature sensors a206. Its specific function is as follows: Since the two movable connecting frames 203 are slidably installed on the polygonal rod 202, and the inner sides of the two movable connecting frames 203 are in contact, and the two triangular guide frames 205 are fixedly installed on the two movable connecting frames 203, when the two triangular guide frames 205 are in contact with the fruit pulp heating pipe, and the operator moves the rectangular mounting base 101 and the movable mounting block 103 with force, the two movable connecting frames 203 automatically slide outward under the action of the two triangular guide frames 205, so that the two movable connecting frames 203 are in contact with the fruit pulp heating pipe; and since the two helical springs b204 are sleeved on the outside of the polygonal rod 202, and the two helical springs b204 are located on the outside of the two movable connecting frames 203, the two movable connecting frames 203 can be elastically connected with the fruit pulp heating pipe, thus avoiding damage to the fruit pulp heating pipe while ensuring the connection effect. Furthermore, since temperature sensor a206 is fixedly mounted on movable connecting bracket 203, when the two movable connecting brackets 203 are in contact with the fruit pulp heating tube, temperature sensor a206 can automatically detect the fluid temperature in the fruit pulp heating tube. Also, since connecting bracket 501 is threaded onto rectangular mounting base 101, and temperature sensor b502 is fixedly mounted on connecting bracket 501, and temperature sensor b502 has the same structure as the two temperature sensors a206, when the temperature values ​​detected by the two temperature sensors a206 deviate significantly, the operator can remove temperature sensor b502 with a wrench, then contact temperature sensor b502 with the outer wall of the fruit pulp heating tube, and then connect temperature sensor b502 to the external circuit. Temperature sensor a206 with a temperature detection result basically the same as that of temperature sensor b502 is not damaged, while temperature sensor a206 with a larger temperature detection result deviates significantly from that of temperature sensor b502 and is damaged. The operator can quickly replace the damaged temperature sensor a206 based on the temperature detection result of temperature sensor b502.

[0027] In this embodiment of the disclosure, such as Figure 4 and Figure 7 As shown, the alarm notification unit 300 includes: a lithium battery 301 and an alarm 302; two lithium batteries 301 are provided, and the two lithium batteries 301 are respectively fixedly mounted on the rectangular mounting base 101 and the movable mounting block 103; two alarms 302 are provided, and the two alarms 302 are respectively fixedly mounted on the rectangular mounting base 101 and the movable mounting block 103; the alarm notification unit 300 also includes: a control switch a303 and a control switch b304; two control switches a303 are provided, and the two control switches a303 are fixedly mounted on the rectangular mounting base 101, and the two control switches... a303 can contact and trigger the movable mounting block 103; there are two control switches b304, and the two control switches b304 are fixedly mounted on the two movable connecting brackets 203; the lithium battery 301 on the rectangular mounting base 101, the alarm 302 on the rectangular mounting base 101, the upper control switch a303 and the control switch b304 on the rectangular mounting base 101 are connected in series, and the lithium battery 301 on the movable mounting block 103, the alarm 302 on the movable mounting block 103, the lower control switch a303 and the control switch b304 on the movable mounting block 103 are connected in series; Its specific function is as follows: Because the lithium battery 301 on the rectangular mounting base 101, the alarm 302 on the rectangular mounting base 101, the upper control switch a303, and the control switch b304 on the rectangular mounting base 101 are connected in series, and the lithium battery 301 on the movable mounting block 103, the alarm 302 on the movable mounting block 103, the lower control switch a303, and the control switch b304 on the movable mounting block 103 are also connected in series, when one of the temperature sensors a206 contacts the fruit pulp heating tube, the corresponding control switch b304 is in the pressed state, and both control switches... When control switch a303 is also pressed, the corresponding alarm 302 will sound an alarm, prompting the operator to connect the other temperature sensor a206 to the fruit pulp heating tube. Since the two control switches a303 are fixedly mounted on the rectangular mounting base 101 and are not always in contact with the movable mounting block 103, when the two temperature sensors a206 are in contact with the fruit pulp heating tube, the two control switches b304 are pressed and the two control switches a303 are not pressed. At this time, the two alarms 302 cannot sound an alarm.

[0028] In this embodiment of the disclosure, such as Figure 1 and Figure 9 As shown, the storage and positioning part 400 includes: a storage and positioning base 401, movable positioning blocks 402, circular force-bearing frames 403, and a helical spring c404; the storage and positioning base 401 is slidably mounted on the left end of the rectangular mounting base 101; there are two movable positioning blocks 402, which are slidably mounted on the storage and positioning base 401, and the outer ends of the two movable positioning blocks 402 are inserted into the corresponding arc-shaped positioning grooves 1011; there are two circular force-bearing frames 403, which are fixedly mounted on the outside of the two movable positioning blocks 402, and the two circular force-bearing frames 403 are also in contact with the storage and positioning base 401; the helical spring c404 is sleeved on the outside of the two movable positioning blocks 402, and the helical spring c404 is located between the two circular force-bearing frames 403; Its specific function is as follows: Since the storage positioning seat 401 is slidably installed on the left end of the rectangular mounting seat 101, it plays a positioning role for the rectangular mounting seat 101; since the rectangular mounting seat 101 has two arc-shaped positioning grooves 1011 inside, and two movable positioning blocks 402 are slidably installed on the storage positioning seat 401, and the outer ends of the two movable positioning blocks 402 are inserted into the corresponding arc-shaped positioning grooves 1011, the rectangular mounting seat 101 will only separate from the storage positioning seat 401 when it is pulled outward. When the storage positioning seat 401 is connected or separated from the rectangular mounting seat 101, the two movable positioning blocks 402 can automatically slide inward.

[0029] This invention provides a method for sterilizing fruit pulp, comprising the following steps: 1) Connect the storage positioning seat 401 to the bracket on the fruit pulp sterilization device with bolts, and then connect the two temperature sensors a206 to the wiring on the fruit pulp sterilization device; 2) When the two temperature sensors a206 need to be connected to the fruit pulp heating tube, the operator pulls the rectangular mounting base 101 outward to separate the rectangular mounting base 101 from the storage positioning base 401, and then moves the movable mounting block 103 to the right so that the angle control rod 105 contacts the other end of the spiral guide groove 1021. 3) Make the four triangular guide brackets 205 contact the fruit pulp heating pipe, and then the staff will move the rectangular mounting base 101 and the movable mounting block 103 with force; 4) When the temperature values ​​detected by the two temperature sensors a206 deviate significantly, the staff removes temperature sensor b502 with a wrench, then contacts temperature sensor b502 with the outer wall of the fruit pulp heating tube, and then connects temperature sensor b502 to the circuit on the fruit pulp sterilization device. 5) After the temperature detection is completed, the staff pulls the rectangular mounting base 101 and the movable mounting block 103 outward to separate the four movable connecting brackets 203 from the fruit pulp heating tube. Then, the left end of the rectangular mounting base 101 is slidably installed on the storage positioning base 401.

[0030] The specific usage and function of this embodiment are as follows: In use, the operator first connects the storage positioning seat 401 to the bracket on the fruit pulp sterilization device using bolts. Then, the two temperature sensors a206 are connected to the wiring on the fruit pulp sterilization device. When the two temperature sensors a206 need to be connected to the fruit pulp heating tube, the operator pulls the rectangular mounting seat 101 outwards, separating it from the storage positioning seat 401. When the storage positioning seat 401 is separated from the rectangular mounting seat 101, the two movable positioning blocks 402 can automatically slide inwards. Then, the movable mounting block 103 is moved to the right, causing the angle control rod 105 to contact the other end of the spiral guide groove 1021. When the angle control rod 105 contacts the other end of the spiral guide groove 1021, the movable... The movable mounting block 103 is rotated 180 degrees; then the four triangular guide brackets 205 are brought into contact with the fruit pulp heating tube. The operator then moves the rectangular mounting base 101 and the movable mounting block 103. At this time, the four movable connecting brackets 203 automatically slide outwards under the action of the four triangular guide brackets 205, bringing them into contact with the fruit pulp heating tube. When the four movable connecting brackets 203 are in contact with the fruit pulp heating tube, the two temperature sensors a206 automatically detect the fluid temperature in the fruit pulp heating tube. When the temperature values ​​detected by the two temperature sensors a206 deviate significantly, the operator removes the temperature sensor b502 using a wrench and then brings the temperature sensor b502 into contact with the outer wall of the fruit pulp heating tube. Next, temperature sensor B502 is connected to the circuit on the fruit pulp sterilization device. Temperature sensor A206, whose temperature detection result is basically the same as that of temperature sensor B502, is not damaged. Temperature sensor A206, whose temperature detection result deviates significantly from that of temperature sensor B502, is damaged. The operator can quickly replace the damaged temperature sensor A206 based on the temperature detection result of temperature sensor B502. When one of the temperature sensors A206 is in contact with the fruit pulp heating tube, the corresponding control switch B304 is pressed, and both control switches A303 are also pressed. At this time, the corresponding alarm 302 sounds an alarm, prompting the operator to replace the other temperature sensor A206. It is also connected to the fruit pulp heating tube; when the two temperature sensors a206 are in contact with the fruit pulp heating tube, the two control switches b304 are in the pressed state, and the two control switches a303 are in the unpressed state. At this time, the two alarms 302 cannot sound an alarm; after the temperature detection is completed, the staff pulls the rectangular mounting base 101 and the movable mounting block 103 outward to separate the four movable connecting brackets 203 from the fruit pulp heating tube. Then, the left end of the rectangular mounting base 101 is slidably installed on the storage positioning base 401, which plays a positioning role for the rectangular mounting base 101; the setting of the helical spring a106 plays an elastic positioning role for the movable mounting block 103, so that the movable mounting block 103 will only slide to the right after being pulled.

[0031] The following points should be noted in this article: 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.

[0032] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0033] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.

Claims

1. A fruit pulp sterilization device, comprising: The device comprises a movable installation section (100), a temperature detection section (200), an alarm prompting section (300), a storage and positioning section (400), and an auxiliary replacement section (500). The temperature detection section (200) consists of two sets, both installed on the movable installation section (100), used to detect the fluid temperature in the fruit pulp heating tube. The alarm prompting section (300) is installed on the movable installation section (100) and the two sets of temperature detection sections (200), used to prompt staff to accurately install the two sets of temperature detection sections (200). The storage and positioning section (400) is installed at the left end of the movable installation section (100), used to position the movable installation section (100). The auxiliary replacement section (500) is installed on the movable installation section (100), used to improve the maintenance efficiency of the two sets of temperature detection sections (200).

2. The fruit pulp sterilization device according to claim 1, characterized in that, The movable mounting part (100) includes: a rectangular mounting base (101), a circular guide shaft (102), and a movable mounting block (103); the rectangular mounting base (101) has two arc-shaped positioning grooves (1011) inside; the circular guide shaft (102) is fixedly mounted on the right side of the rectangular mounting base (101), and a spiral guide groove (1021) is provided on the circular guide shaft (102); the movable mounting block (103) is slidably mounted on the outside of the circular guide shaft (102).

3. The fruit pulp sterilization device according to claim 2, characterized in that, The movable mounting part (100) further includes: a circular limiting plate (104), an angle control rod (105), and a helical spring a (106); the circular limiting plate (104) is fixedly mounted on the right end of the circular guide shaft (102); the angle control rod (105) is fixedly mounted on the movable mounting block (103), and the inner end of the angle control rod (105) is inserted into the helical guide groove (1021); the helical spring a (106) is sleeved on the outside of the circular guide shaft (102), and the helical spring a (106) is located between the movable mounting block (103) and the circular limiting plate (104).

4. The fruit pulp sterilization device according to claim 3, characterized in that, The temperature detection unit (200) includes: a temperature detection seat (201), a polygonal rod (202), and a movable connecting frame (203); the temperature detection seat (201) is fixedly installed on a rectangular mounting base (101) or a movable mounting block (103); the polygonal rod (202) is fixedly installed on the temperature detection seat (201); there are two movable connecting frames (203), and the two movable connecting frames (203) are slidably installed on the polygonal rod (202), and the inner sides of the two movable connecting frames (203) are in contact.

5. The fruit pulp sterilization device according to claim 4, characterized in that, The temperature detection unit (200) further includes: a helical spring b (204), a triangular guide frame (205), and a temperature sensor a (206); there are two helical springs b (204), and the two helical springs b (204) are sleeved on the outside of the polygonal rod (202), and the two helical springs b (204) are located on the outside of the two movable connecting frames (203); there are two triangular guide frames (205), and the two triangular guide frames (205) are fixedly installed on the two movable connecting frames (203); the temperature sensor a (206) is fixedly installed on the movable connecting frame (203).

6. The fruit pulp sterilization device according to claim 4, characterized in that, The alarm notification unit (300) includes: a lithium battery (301) and an alarm (302); there are two lithium batteries (301), and the two lithium batteries (301) are fixedly installed on a rectangular mounting base (101) and a movable mounting block (103); there are two alarms (302), and the two alarms (302) are fixedly installed on a rectangular mounting base (101) and a movable mounting block (103).

7. The fruit pulp sterilization device according to claim 6, characterized in that, The alarm notification unit (300) further includes: control switch a (303) and control switch b (304); there are two control switches a (303), and the two control switches a (303) are fixedly installed on the rectangular mounting base (101), and the two control switches a (303) can contact and trigger the movable mounting block (103); there are two control switches b (304), and the two control switches b (304) are fixedly installed on two movable connecting brackets (203); the rectangular mounting base (101) is also equipped with two control switches a (303). The lithium battery (301) on the rectangular mounting base (101), the alarm (302) on the rectangular mounting base (101), the upper control switch a (303) and the control switch b (304) on the rectangular mounting base (101) are connected in series, and the lithium battery (301) on the movable mounting block (103), the alarm (302) on the movable mounting block (103), the lower control switch a (303) and the control switch b (304) on the movable mounting block (103) are connected in series.

8. The fruit pulp sterilization device according to claim 5, characterized in that, The storage and positioning part (400) includes: a storage and positioning seat (401), a movable positioning block (402), a circular force-bearing frame (403), and a helical spring c (404); the storage and positioning seat (401) is slidably installed on the left end of the rectangular mounting base (101); there are two movable positioning blocks (402), and the two movable positioning blocks (402) are slidably installed on the storage and positioning seat (401), and the outer ends of the two movable positioning blocks (402) are inserted into the corresponding arc-shaped positioning grooves (1011); there are two circular force-bearing frames (403), and the two circular force-bearing frames (403) are fixedly installed on the outside of the two movable positioning blocks (402), and the two circular force-bearing frames (403) are also in contact with the storage and positioning seat (401); the helical spring c (404) is sleeved on the outside of the two movable positioning blocks (402), and the helical spring c (404) is located between the two circular force-bearing frames (403).

9. A fruit pulp sterilization device according to claim 8, characterized in that, The auxiliary replacement unit (500) includes: a connecting bracket (501) and a temperature sensor b (502); the connecting bracket (501) is threaded onto a rectangular mounting base (101); the temperature sensor b (502) is fixedly mounted on the connecting bracket (501), and the temperature sensor b (502) has the same structure as the two temperature sensors a (206).

10. A method for sterilizing fruit pulp, using the fruit pulp sterilization apparatus as described in claim 9, characterized in that, The steps are as follows: 1) Connect the storage positioning seat (401) to the bracket on the fruit pulp sterilization device with bolts, and then connect the two temperature sensors a (206) to the wiring on the fruit pulp sterilization device; 2) When the two temperature sensors a (206) need to be connected to the fruit pulp heating tube, the staff pulls the rectangular mounting base (101) outward to separate the rectangular mounting base (101) from the storage positioning base (401), and then moves the movable mounting block (103) to the right so that the angle control rod (105) contacts the other end of the spiral guide groove (1021); 3) Make the four triangular guide brackets (205) contact the fruit pulp heating pipe, and then the staff forcefully move the rectangular mounting base (101) and the movable mounting block (103). 4) When the temperature values ​​detected by the two temperature sensors a (206) deviate significantly, the staff removes the temperature sensor b (502) with a wrench, then contacts the temperature sensor b (502) with the outer wall of the fruit pulp heating tube, and then connects the temperature sensor b (502) to the circuit on the fruit pulp sterilization device. 5) After the temperature detection is completed, the staff pulls the rectangular mounting base (101) and the movable mounting block (103) outward to separate the four movable connecting brackets (203) from the fruit pulp heating tube. Then, the left end of the rectangular mounting base (101) is slidably installed on the storage positioning base (401).