CN112889942A - Tealeaves parch dehumidification equipment with humidity detects - Google Patents

Tealeaves parch dehumidification equipment with humidity detects Download PDF

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Publication number
CN112889942A
CN112889942A CN202110202155.3A CN202110202155A CN112889942A CN 112889942 A CN112889942 A CN 112889942A CN 202110202155 A CN202110202155 A CN 202110202155A CN 112889942 A CN112889942 A CN 112889942A
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cavity
wall
block
drying
opening
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Chinese (zh)
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陈盼盼
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Nanjing Gloria Trading Co ltd
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Nanjing Gloria Trading Co ltd
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Priority to CN202110202155.3A priority Critical patent/CN112889942A/en
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23FCOFFEE; TEA; THEIR SUBSTITUTES; MANUFACTURE, PREPARATION, OR INFUSION THEREOF
    • A23F3/00Tea; Tea substitutes; Preparations thereof
    • A23F3/06Treating tea before extraction; Preparations produced thereby
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N5/00Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid
    • G01N5/02Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid by absorbing or adsorbing components of a material and determining change of weight of the adsorbent, e.g. determining moisture content
    • G01N5/025Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid by absorbing or adsorbing components of a material and determining change of weight of the adsorbent, e.g. determining moisture content for determining moisture content

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Drying Of Solid Materials (AREA)

Abstract

The invention discloses a tea leaf baking and dehumidifying device with humidity detection, which comprises a base, wherein a tea leaf water content detection mechanism for detecting the humidity of tea leaves is arranged at the upper right side of the base, the device realizes the comprehensive overturning and drying of the tea leaves through a drying ball which can rotate and has an automatic overturning and frying function, the tea leaf drying efficiency is greatly improved, water vapor generated by drying the tea leaves is discharged from a drying chamber under the driving of wind power and is adsorbed by a lime layer, the water vapor content detection is realized through the phenomenon that the weight of the water vapor adsorbed by the lime can increase, a lime plate can be automatically replaced when detecting the water vapor, the water vapor absorption efficiency and the water vapor absorption comprehensiveness are greatly improved, the detection efficiency is improved, finally, the water content of the tea leaves can be obtained by combining the weight of the tea leaves, the aim of obtaining the water content of the tea leaves in the tea leaf baking and frying process is fulfilled, when the tea, the tea leaves are discharged by the aid of a rotating device and a tea leaf drying mechanism.

Description

Tealeaves parch dehumidification equipment with humidity detects
Technical Field
The invention relates to the field of dehumidifiers, in particular to tea leaf stir-frying and dehumidifying equipment with humidity detection.
Background
Tea is a common crop product, tea needs to be stir-fried and dried before being made into a beverage by using tea to remove water vapor in the tea, so that the tea is convenient to brew and drink, and the water content of the tea often needs to be detected when the tea is purchased to purchase the tea with less water content.
At the present stage, when purchasing tealeaves and obtaining the water content of tealeaves, generally all carry out simple snatching through the manual work, not only can not accurately obtain the water content of tealeaves more can not detach the water yield in the tealeaves when detecting the tealeaves water content.
Disclosure of Invention
The invention aims to provide tea leaf roasting and dehumidifying equipment with humidity detection, and solves the problems that the water content of tea leaves cannot be obtained while the tea leaves are dried.
The invention is realized by the following technical scheme.
The tea leaf roasting and dehumidifying equipment with humidity detection comprises a base, wherein a tea leaf drying mechanism for roasting and pouring out tea leaves is arranged at the left end in the base, and a tea leaf water content detection mechanism for detecting the humidity of the tea leaves is arranged at the upper right side of the base;
the tea water content detection mechanism comprises a rotating block positioned on the upper side of the base, a drying cavity is arranged at the left end in the rotating block, a drying ball capable of rotating in the drying cavity is arranged in the drying cavity, a dehumidifying cavity is arranged in the drying ball, a fixing rod with the right end extending into the left end in the dehumidifying cavity is fixed on the left inner wall of the drying cavity, a rotating shaft is rotated between the upper inner walls of the dehumidifying cavity, a driving bevel gear is arranged in the middle of the rotating shaft, a fixing bevel gear meshed with the driving bevel gear is arranged at the right end of the fixing rod, three stirring plates are fixed at the upper end and the lower end of the rotating shaft at equal intervals, an annular rack is fixed on the outer wall of the fixing rod in the vertical direction, a rotating cavity with an upward opening is arranged in the lower inner wall of the drying cavity, a transmission cavity is arranged on the right side of the rotating cavity, a motor is arranged in the right inner wall of the transmission cavity, and, the left end of the transmission shaft is provided with a rotating gear which can be meshed with the outer wall of the annular rack, the right inner wall of the drying cavity is internally provided with a gas outlet with the right end communicated with the external space, the upper inner wall and the lower inner wall of the left end of the gas outlet are internally provided with the same replacing cavity with the upper end communicated with the external space, the replacing cavity is internally provided with three water absorbing blocks, the middle part of each water absorbing block is provided with a lime board for absorbing water, the upper end surface and the lower end surface of each water absorbing block are respectively fixed with a fixed block, the lowest water absorbing block is just positioned in the gas outlet, the right inner wall of the replacing cavity is internally provided with a limiting cavity which is positioned at the upper side of the gas outlet and has a left opening, the limiting cavity is internally provided with a limiting block which can move left and right, a connecting spring is connected between the right end surface of the, an opening cavity which is positioned at the lower side of the air outlet and has a leftward opening is arranged in the right inner wall of the replacing cavity, a retractable plate which can move left and right and has a left end extending into the replacing cavity is arranged in the opening cavity, a pressure cavity with an upward opening is arranged at the left end of the retractable plate, a through cavity with a rightward opening is arranged at the lower end of the right inner wall of the pressure cavity, a pressing block which can move up and down is arranged in the pressure cavity, a movable cavity which is communicated left and right is arranged in the right inner wall of the opening cavity, a pressing rod with a right end extending into the movable cavity and positioned in an external space is fixed on the lower end surface of the pressing rod, a retractable spring is connected between the lower end surface of the left end of the pressing rod and the lower inner wall of the pressure cavity, an elastic spring is connected between the right end surface of the retractable plate and, the inner wall of the upper opening cavity is internally provided with an ejector block cavity with a downward opening, an ejector block capable of moving up and down is arranged in the ejector block cavity, the upper end face of the ejector block and the inner wall of the upper ejector block cavity are connected with two elastic springs, and the right end face of the ejector block is connected with the other end of the pull rope penetrating out of the inner wall of the right ejector block cavity.
Further, be equipped with the downward slip chamber of opening in the middle of the depression bar, the slip intracavity is equipped with the sliding block that can the horizontal slip, be equipped with the ascending connection chamber of opening in the lower inner wall of activity chamber left end, the terminal surface is fixed with one under the sliding block can connect the intracavity connecting plate that stretches out and draws back from top to bottom, under the connecting plate terminal surface with be connected with pressure spring under the connection chamber between the inner wall, the terminal surface is connected with the follow under the connecting plate connect and wear out in the chamber inner wall the one end of depression bar.
Furthermore, a moving cavity with a leftward opening is arranged in the right inner wall of the lower end of the transmission cavity, a moving block capable of moving left and right is arranged in the moving cavity, a compression spring is connected between the right end face of the moving block and the right inner wall of the moving cavity, the right end face of the moving block is connected with the other end of the hemp rope penetrating out of the right inner wall of the moving cavity, the left end of the moving block is rotatably connected with a driven shaft, the left end of the driven shaft can extend into the left inner wall of the transmission cavity, a driven gear is arranged at the left end of the driven shaft, a reel is arranged at the right end of the driven shaft, one end of the water content detection mechanism penetrating out of the lower inner wall of the transmission cavity is wound on the reel, a bearing plate capable of moving up and down is arranged at the lower end of the replacement cavity, a supporting spring is connected between the lower end face of, the right end face of the supporting spring is fixedly provided with a pointer with the right end extending into the display cavity, and the right end face of the rotating block is provided with scales located on the rear end face of the display cavity.
Further, tealeaves stoving mechanism is including being located the ascending slide chamber of left end and opening in the base, the slide intracavity is equipped with can the gliding slide of slide intracavity, slide upper right end face with terminal surface fixed connection under the rotatory piece left side, be equipped with the opening in the lower inner wall of arc chamber left end and upwards just be located the drive chamber on slide chamber right side, be equipped with the motor in the inner wall behind the drive chamber, motor front end power is connected with the drive shaft, be equipped with on the connection chamber can terminal surface meshing's drive gear under the rotatory piece.
Further, the upper and lower both ends of dehumidification chamber left side inner wall all be equipped with one with the intercommunication mouth of stoving chamber intercommunication, be fixed with on the stoving chamber left side inner wall one with the solid fixed ring of stoving ball outer wall in close contact with, be equipped with the drain hole of an opening intercommunication external space in the stoving chamber upper left side inner wall, the drain hole orientation the one end in the stoving intracavity is run through gu fixed ring can with the upside the intercommunication mouth intercommunication, be equipped with the lower extreme in the drain hole can be with the upside last dog that the intercommunication mouth was closed, it is fixed with a pull rod that stretches into external space to go up the dog up the terminal surface.
Furthermore, an air inlet communicated with the outside space is arranged in the left inner wall of the lower end of the drying cavity, an air heater is arranged at the left end in the air inlet, an open slot with an upward opening is arranged in the lower inner wall of the right end of the air inlet, a trapezoidal block capable of moving up and down is arranged in the open slot, a linear spring is connected between the lower end surface of the trapezoidal block and the lower inner wall of the open slot, a lower stop block cavity with an upper end penetrating through the lower end of the fixing ring is arranged in the left lower inner wall of the drying cavity, a lower stop block capable of extending and retracting in the lower stop block cavity is arranged in the lower stop block cavity, a return spring is connected between the lower end surface of the lower stop block and the lower end surface of the lower stop block cavity, the lower end surface of the trapezoidal block is connected with one end penetrating out of the lower inner wall of the open, the lower inner wall of arc chamber left end is connected with the one end of connecting the rope, be connected with on the lower terminal surface of lower dog right-hand member follow the inner wall is worn out down in the lower dog chamber the other end of connecting the rope, open slot right side inner wall with the intercommunication is equipped with the intercommunication chamber between the lower dog chamber.
The invention has the beneficial effects that: this equipment realizes drying the comprehensive upset of tealeaves through can the rotation with having the automatic ball of drying who turns over the stir-fry function, the efficiency that tealeaves was dried has been improved greatly, the steam that stoving tealeaves produced is discharged from the drying chamber under the drive of wind-force and is adsorbed by the lime layer, the phenomenon that can weight up through lime absorption steam weight realizes detecting steam content, the lime-wash board can be changed automatically when detecting steam, the efficiency of absorbing steam and the comprehensive nature of absorbing steam have been improved greatly, so as to improve detection efficiency, combine the weight of tealeaves alright obtain the water content of tealeaves at last, realized turning over the purpose that the in-process of stir-fry tealeaves obtained tealeaves water content, when taking out tealeaves, through the supplementary tealeaves of the mechanism of rotating equipment and stoving tealeaves.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a schematic structural diagram at A-A in FIG. 1 according to an embodiment of the present invention;
FIG. 3 is a schematic structural diagram at B-B in FIG. 1 according to an embodiment of the present invention;
FIG. 4 is a schematic structural diagram at C-C in FIG. 1 according to an embodiment of the present invention;
FIG. 5 is a schematic structural diagram at D-D in FIG. 1 according to an embodiment of the present invention;
fig. 6 is a schematic structural diagram at E in fig. 1 according to the embodiment of the present invention.
Detailed Description
The invention will now be described in detail with reference to fig. 1-6, wherein for ease of description the orientations described hereinafter are now defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
With reference to fig. 1-6, the tea leaf parching and dehumidifying device with humidity detection includes a base 10, a tea leaf drying mechanism 35 for parching and pouring out tea leaves is disposed at the left end of the base 10, a tea leaf moisture content detecting mechanism 34 for detecting tea leaf humidity is disposed at the upper right side of the base 10, the tea leaf moisture content detecting mechanism 34 includes a rotating block 52 located at the upper side of the base 10, a drying cavity 46 is disposed at the left end of the rotating block 52, a drying ball 47 capable of rotating in the drying cavity 46 is disposed in the drying cavity 46, a dehumidifying cavity 59 is disposed in the drying ball 47, a fixing rod 36 with a right end extending into the left end of the dehumidifying cavity 59 is fixed on the left inner wall of the drying cavity 46, a rotating shaft 44 is rotated between the upper inner walls of the dehumidifying cavity 59, a driving bevel gear 38 is disposed in the middle of the rotating shaft 44, a fixing bevel gear 37 engaged with the driving bevel gear 38 is disposed at the right end of the fixing rod 36, the upper end and the lower end of the rotating shaft 44 are fixed with three stirring plates 39 at equal intervals, the outer wall of the fixed rod 36 in the vertical direction is fixed with an annular rack 45, the lower inner wall of the drying cavity 46 is provided with a rotating cavity 20 with an upward opening, the right side of the rotating cavity 20 is provided with a transmission cavity 19, the right inner wall of the transmission cavity 19 is provided with a motor 66, the left end of the motor 66 is in power connection with a transmission shaft 63 with a left end rotatably connected with the left inner wall of the rotating cavity 20, the left end of the transmission shaft 63 is provided with a rotating gear 21 capable of being meshed with the outer wall of the annular rack 45, the right inner wall of the drying cavity 46 is provided with a gas outlet 57 with a right end communicated with the external space, the upper inner wall and the lower inner wall of the left end of the gas outlet 57 are provided with a same replacing cavity 51 with an upper end communicated with the external space, three, the upper end surface and the lower end surface of the water absorption block 49 are both fixed with a fixed block 50, the lowest water absorption block 49 is just positioned in the air outlet 57, the right inner wall of the replacement cavity 51 is internally provided with a limiting cavity 55 which is positioned at the upper side of the air outlet 57 and has a leftward opening, the limiting cavity 55 is internally provided with a limiting block 53 which can move left and right, a connecting spring 54 is connected between the right end surface of the limiting block 53 and the right inner wall of the limiting cavity 55, the right end surface of the limiting block 53 is connected with one end of a pull rope 56 which penetrates out of the right inner wall of the limiting cavity 55, the right inner wall of the replacement cavity 51 is internally provided with an opening cavity 75 which is positioned at the lower side of the air outlet 57 and has a leftward opening, the opening cavity 75 is internally provided with an expansion plate 33 which can move left and right and has a left end extending into the replacement cavity 51, the left end of the expansion plate 33 is provided, a pressing block 70 capable of moving up and down is arranged in the pressure cavity 68, a movable cavity 78 communicated left and right is arranged in the right inner wall of the opening cavity 75, a pressure lever 69 with the right end extending into the movable cavity 78 and located in the external space is fixed on the lower end surface of the pressure block 70, an extension spring 86 is connected between the lower end surface of the left end of the pressure rod 69 and the lower inner wall of the pressure cavity 68, an elastic spring 84 is connected between the right end surface of the expansion plate 33 and the right inner wall of the open cavity 75, the right end face of the expansion plate 33 is connected with one end of a water content detection mechanism 34 which penetrates out of the right inner wall of the opening cavity 75, an ejecting block cavity 72 with a downward opening is arranged in the upper inner wall of the opening cavity 75, an ejecting block 73 capable of moving up and down is arranged in the ejecting block cavity 72, two elastic springs 71 are connected between the upper end surface of the top block 73 and the upper inner wall of the top block cavity 72, the right end face of the top block 73 is connected with the other end of the pull rope 56 which penetrates out of the right inner wall of the top block cavity 72.
Beneficially, a sliding cavity 83 with a downward opening is arranged in the middle of the pressure rod 69, a sliding block 77 capable of sliding left and right is arranged in the sliding cavity 83, a connecting cavity 80 with an upward opening is arranged in the lower inner wall of the left end of the movable cavity 78, a connecting plate 79 capable of extending and retracting up and down in the connecting cavity 80 is fixed on the lower end face of the sliding block 77, a pressure spring 82 is connected between the lower end face of the connecting plate 79 and the lower inner wall of the connecting cavity 80, and one end of the pressure rod 69 penetrating out of the lower inner wall of the connecting cavity 80 is connected to the lower end face of the connecting plate 79.
Beneficially, a moving cavity 11 with a leftward opening is arranged in the right inner wall of the lower end of the transmission cavity 19, a moving block 13 capable of moving left and right is arranged in the moving cavity 11, a compression spring 12 is connected between the right end face of the moving block 13 and the right inner wall of the moving cavity 11, the right end face of the moving block 13 is connected with the other end of the hemp rope 67 penetrating out of the right inner wall of the moving cavity 11, the left end of the moving block 13 is rotatably connected with a driven shaft 17 with the left end capable of extending into the left inner wall of the transmission cavity 19, the left end of the driven shaft 17 is provided with a driven gear 15, the right end of the driven shaft 17 is provided with a reel 14, one end of the water content detection mechanism 34 penetrating out of the lower inner wall of the transmission cavity 19 is wound on the reel 14, a bearing plate 60 capable of moving up and down is arranged at the lower end of the replacement cavity 51, and a, the display cavity 30 communicated with the external space is arranged in the right inner wall of the lower end of the replacement cavity 51, a pointer 61 with the right end extending into the display cavity 30 is fixed on the right end face of the supporting spring 62, and scales 91 located on the rear end face of the display cavity 30 are arranged on the right end face of the rotating block 52.
Beneficially, the tea leaf drying mechanism 35 includes a sliding plate cavity 24 located at the inner left end of the base 10 and having an upward opening, a sliding plate 23 capable of sliding in the sliding plate cavity 24 is located in the sliding plate cavity 24, the upper right end surface of the sliding plate 23 is fixedly connected with the lower left end surface of the rotating block 52, a driving cavity 88 having an upward opening and located at the right side of the sliding plate cavity 24 is located in the lower inner wall at the left end of the arc-shaped cavity 64, a motor 87 is located in the inner rear wall of the driving cavity 88, a driving shaft 90 is dynamically connected to the front end of the motor 87, and a driving gear 89 capable of meshing with the lower end surface of the rotating block 52 is located on the connecting.
Beneficially, the upper end and the lower end of the left inner wall of the dehumidifying cavity 59 are both provided with a communicating port 40 communicated with the drying cavity 46, the left inner wall of the drying cavity 46 is fixed with a fixing ring 76 which is in close contact with the outer wall of the drying ball 47, the upper left inner wall of the drying cavity 46 is provided with a discharge port 41 with an opening communicated with the external space, the discharge port 41 faces towards one end in the drying cavity 46 and penetrates through the fixing ring 76 and the communicating port 40 on the upper side, the upper baffle block 43 with the lower end capable of closing the communicating port 40 on the upper side is arranged in the discharge port 41, and the upper end face of the upper baffle block 43 is fixed with a pull rod 42 extending into the external space.
Beneficially, an air inlet 27 communicated with the outside space is arranged in the left inner wall of the lower end of the drying cavity 46, an air heater 94 is arranged at the left end in the air inlet 27, an open slot 93 with an upward opening is arranged in the lower inner wall of the right end of the air inlet 27, a trapezoidal block 26 capable of moving up and down is arranged in the open slot 93, a linear spring 92 is connected between the lower end surface of the trapezoidal block 26 and the lower inner wall of the open slot 93, a lower block cavity 31 with an upper end penetrating through the lower end of the fixing ring 76 is arranged in the left lower inner wall of the drying cavity 46, a lower block 29 capable of extending and retracting in the lower block cavity 31 is arranged in the lower block cavity 31, a return spring 32 is connected between the lower end surface of the lower block 29 and the lower end surface of the lower block cavity 31, the lower end surface of the trapezoidal block 26 is connected with one end of the 74 penetrating through the lower inner wall of the open slot 93, the lower inner wall of arc chamber 64 left end is connected with the one end of connecting rope 25, be connected with on the lower terminal surface of dog 29 right-hand member follow the inner wall is worn out down in dog chamber 31 connect the other end of rope 25, open slot 93 right side inner wall with it is equipped with intercommunication chamber 28 to communicate between the dog chamber 31 down.
In the initial state, the rotating block 52 keeps the annular rack 45 on the drying ball 47 in the vertical direction under the driving action of the driving gear 89, the middle water absorbing block 49 is blocked by the limiting block 53 and is located on the upper side of the limiting block 53, and the annular rack 45 keeps the communication port 40 on the upper side in communication with the discharge port 41 under the driving action of the rotating gear 21.
Manually pulling out the upper block 43 through the pull rod 42 and the discharge hole 41, pouring a fixed amount of tea leaves to be dried and detected into the dehumidifying cavity 59 through the discharge hole 41 and the communication port 40, putting the upper block 43 into the discharge hole 41 again to seal the communication port 40, switching on the power supply of the motor 66 and the air heater 94, blowing hot air into the dehumidifying cavity 59 through the air inlet 27 by the air heater 94 to provide the temperature required for drying and frying the tea leaves and the wind power required for removing water vapor, driving the transmission shaft 63 and the rotating gear 21 on the transmission shaft 63 to rotate by the motor 66, driving the annular rack 45 engaged with the rotating gear 21 to rotate by the rotating gear 21, driving the drying ball 47 to rotate by the annular rack 45, thereby driving the drying ball 47 to rotate around the fixed rod 36, thereby turning the tea leaves up and down in the dehumidifying cavity 59, driving the driving bevel gear 38 to rotate around the fixed bevel gear 37 engaged with the driving bevel gear 38 by the rotating shaft 44, the fixed bevel gear 37 rotates to drive the rotating shaft 44 to rotate, so that the six stirring plates 39 are driven to rotate to stir the tea leaves in the dehumidifying cavity 59 left and right, and the tea leaves in the dehumidifying cavity 59 are overturned and dried comprehensively;
the air flow with the water vapor is discharged through the air outlet 57, when the air flow passes through the lime board 48 in the air outlet 57, the water vapor is absorbed by the lime board 48, the water vapor absorbed by the lime board 48 in the air outlet 57 is increased, the weight of the lime board 48 is increased, the water absorption capacity is weaker as the water vapor absorbed by the lime board 48 is more, when the weight of the lime board 48 is increased and the pressing block 70 is pressed downwards after absorbing the water vapor, the pressing block 70 moves downwards to drive the pressing rod 69 and the connecting plate 79 on the pressing rod 69 to move downwards, the pressing rod 69 is released after the connecting plate 79 moves downwards, the tension of the hemp rope 67 is lost by the moving block 13 and the moving block moves leftwards under the elastic force of the compression spring 12, so that the driven gear 15 on the driven shaft 17 is driven to move leftwards to be meshed with the sector gear 18, when the sector gear 18 rotates to be meshed with the driven gear, the reel 14 rotates to tighten the water content detection mechanism 34, the expansion plate 33 moves rightwards under the tension of the water content detection mechanism 34, so that the pressing block 70 is driven to move rightwards and is abutted against the lower end face of the top block 73, the lime plate 48 which is not limited by the expansion plate 33 falls downwards on the bearing plate 60, the top block 73 moves upwards under the extrusion action of the pressing block 70 to tighten the pull rope 56, the limiting block 53 moves rightwards under the tension of the pull rope 56 and leaves from the lower end face of the middle water absorption block 49, the water absorption block 49 which is not limited by the limiting block 53 falls downwards under the self gravity to enter the air outlet 57, the water absorption block 49 on the upper side moves downwards under the self gravity, at the moment, when the sector gear 18 rotates to be disengaged with the driven gear 15, the reel 14 stops tightening the water content detection mechanism 34, the expansion plate 33 moves leftwards under the elastic force of the elastic spring 84 to reset, at this time, the water absorption block 49 falling down from the upper side into the air inlet 57 is positioned on the upper side of the expansion plate 33, the top block 73 loses the extrusion of the pressing block 70 and moves downwards under the elastic force of the elastic spring 71 to loosen the pull rope 56, the limiting block 53 loses the pulling force of the pull rope 56 and blocks the water absorption block 49 under the elastic force of the connecting spring 54, so that the water absorption block 49 in the air outlet 57 is replaced, the pressing block 70, the pressing rod 69 and the connecting plate 79 lose the extrusion of the gravity of the lime plate 48 absorbing moisture, the pressing block 70, the pressing rod 69 and the connecting plate 79 move upwards under the elastic force of the pressure spring 82 and the expansion spring 86 to reset the hemp rope 67 again, the moving block 13 moves rightwards under the pulling force of the hemp rope 67 to reset, the driven gear 15 is disengaged with the sector gear 18, and when the lime plate 48 in the next air outlet 57 absorbs more moisture, the lime board 48 can still be replaced through the gravity change of the lime board 48 in the air outlet 57, after the tea frying is finished, the bearing board 60 moves downwards under the action of the gravity of the moisture-absorbing water absorption block 49 and drives the pointer 61 to move downwards, the gravity of the three moisture-non-absorbing water absorption blocks 49 just presses the pointer 61 to point to zero scale, the three moisture-absorbing water absorption blocks 49 move downwards after absorbing moisture to point to a new scale, so that the moisture content can be obtained and the moisture content of the tea can be obtained by combining the weight of the tea, if the moisture-non-absorbing water absorption blocks 49 still exist in the replacement cavity 51, how to drive the expansion board 33 to move rightwards to enter the opening cavity 75 by pulling the manual rod 58 rightwards can drive the expansion board 33 to move rightwards to enter the opening cavity 75, so that the three moisture-absorbing blocks 49 can fall downwards on the bearing board 60 to obtain a test result, and the tested moisture-absorbing block 49 can be taken out again through the rear inner wall at, so as to replace the lime boards 48 in the water absorption block 49;
when tea leaves need to be taken out after the baking and frying test is finished, a power supply of the motor 87 is connected to start the motor 87, the motor 87 works to drive the driving shaft 90 and the driving gear 89 on the driving shaft 90 to rotate, the driving gear 89 rotates to drive the rotating block 52 meshed with the driving gear to rotate anticlockwise to drive the lower block cavity 31 on the lower side to be located at a vertical position, the communicating pipeline 22 is communicated with the blanking port 16, the motor 87 is closed at the moment, the connecting rope 25 is tensioned when the rotating block 52 rotates, the lower block 29 moves downwards under the tension of the connecting rope 25 and opens the communicating port 40 on the lower side, the lower block 29 moves downwards to loosen the lower block 74, the trapezoidal block 26 loses the tension of the lower block 74 and moves upwards under the elastic force of the linear spring 92 to enter the air inlet 27, so that the hot air blower 94 is closed and the open slot 93, the tea leaves in the dehumidifying cavity 59 fall downwards into the upper end of the lower block cavity 31 under the self gravity and the stirring action The tea leaves entering the lower blocking piece cavity 31 are blown into the communication pipeline 22 and the blanking port 16, so that the tea leaves in the dehumidifying cavity 59 are taken out.
The above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (6)

1. The utility model provides a tealeaves parch dehumidification equipment with humidity detects, includes the base, its characterized in that: a tea leaf drying mechanism for drying, frying and pouring out tea leaves is arranged at the left end in the base, and a tea leaf drying mechanism for detecting the humidity of the tea leaves is arranged at the upper right side of the base;
the tea water content detection mechanism comprises a rotating block positioned on the upper side of the base, a drying cavity is arranged at the left end in the rotating block, a drying ball capable of rotating in the drying cavity is arranged in the drying cavity, a dehumidifying cavity is arranged in the drying ball, a fixing rod with the right end extending into the left end in the dehumidifying cavity is fixed on the left inner wall of the drying cavity, a rotating shaft is rotated between the upper inner walls of the dehumidifying cavity, a driving bevel gear is arranged in the middle of the rotating shaft, a fixing bevel gear meshed with the driving bevel gear is arranged at the right end of the fixing rod, three stirring plates are fixed at the upper end and the lower end of the rotating shaft at equal intervals, an annular rack is fixed on the outer wall of the fixing rod in the vertical direction, a rotating cavity with an upward opening is arranged in the lower inner wall of the drying cavity, a transmission cavity is arranged on the right side of the rotating cavity, a motor is arranged in the right inner wall of the transmission cavity, and, the left end of the transmission shaft is provided with a rotating gear which can be meshed with the outer wall of the annular rack, the right inner wall of the drying cavity is internally provided with a gas outlet with the right end communicated with the external space, the upper inner wall and the lower inner wall of the left end of the gas outlet are internally provided with the same replacing cavity with the upper end communicated with the external space, the replacing cavity is internally provided with three water absorbing blocks, the middle part of each water absorbing block is provided with a lime board for absorbing water, the upper end surface and the lower end surface of each water absorbing block are respectively fixed with a fixed block, the lowest water absorbing block is just positioned in the gas outlet, the right inner wall of the replacing cavity is internally provided with a limiting cavity which is positioned at the upper side of the gas outlet and has a left opening, the limiting cavity is internally provided with a limiting block which can move left and right, a connecting spring is connected between the right end surface of the, an opening cavity which is positioned at the lower side of the air outlet and has a leftward opening is arranged in the right inner wall of the replacing cavity, a retractable plate which can move left and right and has a left end extending into the replacing cavity is arranged in the opening cavity, a pressure cavity with an upward opening is arranged at the left end of the retractable plate, a through cavity with a rightward opening is arranged at the lower end of the right inner wall of the pressure cavity, a pressing block which can move up and down is arranged in the pressure cavity, a movable cavity which is communicated left and right is arranged in the right inner wall of the opening cavity, a pressing rod with a right end extending into the movable cavity and positioned in an external space is fixed on the lower end surface of the pressing rod, a retractable spring is connected between the lower end surface of the left end of the pressing rod and the lower inner wall of the pressure cavity, an elastic spring is connected between the right end surface of the retractable plate and, the inner wall of the upper opening cavity is internally provided with an ejector block cavity with a downward opening, an ejector block capable of moving up and down is arranged in the ejector block cavity, the upper end face of the ejector block and the inner wall of the upper ejector block cavity are connected with two elastic springs, and the right end face of the ejector block is connected with the other end of the pull rope penetrating out of the inner wall of the right ejector block cavity.
2. The tea leaf stir-frying dehumidification device with humidity detection as claimed in claim 1, wherein: be equipped with the decurrent slip chamber of opening in the middle of the depression bar, the slip intracavity is equipped with the sliding block that can the horizontal slip, be equipped with the ascending connection chamber of opening in the lower inner wall of activity chamber left end, the terminal surface is fixed with one under the sliding block can connect the intracavity flexible connecting plate from top to bottom, terminal surface under the connecting plate with be connected with pressure spring under the connection chamber between the inner wall, the terminal surface is connected with the follow under the connecting plate connect and wear out in the chamber inner wall the one end of depression bar.
3. The tea leaf stir-frying dehumidification device with humidity detection as claimed in claim 1, wherein: a moving cavity with a leftward opening is arranged in the right inner wall of the lower end of the transmission cavity, a moving block capable of moving left and right is arranged in the moving cavity, a compression spring is connected between the right end face of the moving block and the right inner wall of the moving cavity, the right end face of the moving block is connected with the other end of the hemp rope penetrating out of the right inner wall of the moving cavity, the left end of the moving block is rotatably connected with a driven shaft with the left end capable of extending into the left inner wall of the transmission cavity, the left end of the driven shaft is provided with a driven gear, the right end of the driven shaft is provided with a reel, one end of the water content detection mechanism penetrating out of the lower inner wall of the transmission cavity is wound on the reel, the lower end of the replacement cavity is provided with a bearing plate capable of moving up and down, a supporting spring is connected between the lower end face of the, the right end face of the supporting spring is fixedly provided with a pointer with the right end extending into the display cavity, and the right end face of the rotating block is provided with scales located on the rear end face of the display cavity.
4. The tea leaf stir-frying dehumidification device with humidity detection as claimed in claim 1, wherein: tealeaves stoving mechanism is including being located the ascending slide chamber of left end and opening in the base, the slide intracavity is equipped with can the gliding slide of slide intracavity, slide upper right end face with terminal surface fixed connection under the rotatory piece left side, be equipped with the opening in the lower inner wall of arc chamber left end and upwards just be located the drive chamber on slide chamber right side, be equipped with the motor in the inner wall behind the drive chamber, motor front end power connection has the drive shaft, be equipped with on the connection chamber can terminal surface meshing's drive gear under the rotatory piece.
5. The tea leaf stir-frying dehumidification device with humidity detection as claimed in claim 4, wherein: the upper and lower both ends of dehumidification chamber left side inner wall all be equipped with one with the intercommunication mouth of stoving chamber intercommunication, be fixed with on the stoving chamber left side inner wall one with the solid fixed ring of stoving ball outer wall in close contact with, be equipped with the drain hole of an opening intercommunication external space in the stoving chamber upper left side inner wall, the drain hole orientation the one end in the stoving intracavity is run through gu fixed ring can with the upside the intercommunication mouth intercommunication, be equipped with the lower extreme in the drain hole can be with the upside the last dog that the intercommunication mouth was closed, it is fixed with a pull rod that stretches into external space to go up the dog up end.
6. The tea leaf stir-frying dehumidification device with humidity detection as claimed in claim 4, wherein: an air inlet communicated with the external space is arranged in the left inner wall of the lower end of the drying cavity, an air heater is arranged at the left end in the air inlet, an open slot with an upward opening is arranged in the lower inner wall of the right end of the air inlet, a trapezoidal block capable of moving up and down is arranged in the open slot, a linear spring is connected between the lower end surface of the trapezoidal block and the lower inner wall of the open slot, a lower block cavity with the upper end penetrating through the lower end of the fixing ring is arranged in the left lower inner wall of the drying cavity, a lower block capable of extending and retracting in the lower block cavity is arranged in the lower block cavity, a return spring is connected between the lower end surface of the lower block and the lower end surface of the lower block cavity, the lower end surface of the trapezoidal block is connected with one end penetrating out of the lower inner wall of the open slot, the lower end surface of the lower block is connected with the other end penetrating out, the lower end face of the right end of the lower stop block is connected with the other end of the connecting rope, which penetrates out of the lower inner wall of the lower stop block cavity, and a communicating cavity is communicated between the right inner wall of the open slot and the lower stop block cavity.
CN202110202155.3A 2021-02-23 2021-02-23 Tealeaves parch dehumidification equipment with humidity detects Withdrawn CN112889942A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110202155.3A CN112889942A (en) 2021-02-23 2021-02-23 Tealeaves parch dehumidification equipment with humidity detects

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110202155.3A CN112889942A (en) 2021-02-23 2021-02-23 Tealeaves parch dehumidification equipment with humidity detects

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Publication Number Publication Date
CN112889942A true CN112889942A (en) 2021-06-04

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202110202155.3A Withdrawn CN112889942A (en) 2021-02-23 2021-02-23 Tealeaves parch dehumidification equipment with humidity detects

Country Status (1)

Country Link
CN (1) CN112889942A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113197276A (en) * 2021-06-08 2021-08-03 四川合合谷食品有限公司 Hot pot seasoning stir-frying device convenient for detecting moisture content

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113197276A (en) * 2021-06-08 2021-08-03 四川合合谷食品有限公司 Hot pot seasoning stir-frying device convenient for detecting moisture content

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Application publication date: 20210604

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