CN215975864U - Instant heating equipment of syrup - Google Patents

Instant heating equipment of syrup Download PDF

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Publication number
CN215975864U
CN215975864U CN202122467753.1U CN202122467753U CN215975864U CN 215975864 U CN215975864 U CN 215975864U CN 202122467753 U CN202122467753 U CN 202122467753U CN 215975864 U CN215975864 U CN 215975864U
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China
Prior art keywords
syrup
heating
shell
connecting pipe
stirring
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CN202122467753.1U
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Chinese (zh)
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郭建平
郭宇操
郭豪俊
许小端
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Zhangzhou Fengfeng Food Co ltd
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Zhangzhou Fengfeng Food Co ltd
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Abstract

The utility model relates to the field of sugar making equipment, in particular to syrup instantaneous heating equipment. The heating device comprises a shell, a slide way and a heating cavity, wherein a partition plate is arranged in the shell, the partition plate enables the interior of the shell to form the heating cavity at intervals, and the slide way is obliquely fixed in the heating cavity. In operation, after the syrup is poured into the heating chamber along the feeding pipe above the shell, the syrup slides downwards and slides out of the heating chamber along the slide way. In this process, can introduce the heating intracavity with steam through the intake pipe of casing top, simultaneously through stirring vane on the puddler of stirring subassembly can carry out abundant stirring to the syrup, makes abundant and steam contact back outflow again to this reaches the instant heating of syrup in order to carry out the sterile purpose of disinfecting. Therefore, the utility model can finish the sterilization and disinfection of the syrup only by pouring the syrup into the shell and then catching and collecting the syrup flowing out of the slide way, and can effectively improve the production efficiency of the syrup.

Description

Instant heating equipment of syrup
Technical Field
The utility model relates to the field of sugar making equipment, in particular to syrup instantaneous heating equipment.
Background
Syrups are viscous, highly concentrated sugar-containing solutions made by cooking or other techniques. The raw material for making syrup may be sugar water, sugar cane juice, fruit juice or other plant juice, etc. Because the sugar content of the syrup is very high, the syrup can be stored for a long time without refrigeration in a sealed state, and only the syrup generally needs to be sterilized before storage, and currently, high-temperature instant mold equipment is generally adopted in the industry for sterilization.
Although the types and the structural types of the existing high-temperature instant sterilizing device are very many, the existing high-temperature instant sterilizing device still has the problems of inconvenient operation and the like, and is not beneficial to improving the production efficiency of syrup.
Disclosure of Invention
In view of the above-mentioned deficiencies of the prior art, the present invention provides an instant syrup heating apparatus.
The utility model adopts the following technical scheme:
an instantaneous syrup heating apparatus, characterized in that it comprises:
the heating device comprises a shell, wherein a partition plate is arranged in the shell and divides the interior of the shell into heating cavities;
the slideway is obliquely fixed in the heating cavity, the upper end of the slideway is connected with a feed pipe, the feed pipe penetrates out of the shell and is used for pouring syrup into the slideway from the outside of the shell, and the lower end of the slideway extends out of the shell;
the stirring assembly comprises a plurality of stirring rods, each stirring rod is provided with a stirring blade, and the stirring rods are connected with the slide way side by side and rotate, so that the stirring blades are positioned in the slide way to rotate;
heating device, heating device is including intake pipe and blast pipe, the blast pipe sets up the bottom of casing, the intake pipe sets up on the casing, and correspond the top of slide makes steam follow the intake pipe gets into can via behind the heating intracavity behind the slide, by the blast pipe is discharged.
As a further improvement, the stirring assembly further comprises a driving motor, a driving chain and driving chain wheels, wherein the partition plate is connected with the two rotatable driving chain wheels at one side back to the heating cavity, the two driving chain wheels are respectively corresponding to two ends of the slide way, the driving chain wheels bypass the two driving chain wheels and are meshed with the two driving chain wheels, and the driving motor is fixed in the shell and drives one of the driving chain wheels to rotate; one end of each stirring rod penetrates through the partition plate and then is fixedly connected with a transmission chain wheel, and each transmission chain wheel is meshed with the driving chain.
As a further improvement, the heating assembly further comprises a first connecting pipe, a second connecting pipe and a third connecting pipe, wherein a plurality of air inlet pipes are connected to the upper part outside the housing, each air inlet pipe is connected to the first connecting pipe, a plurality of exhaust pipes are connected to the lower end outside the housing, each exhaust pipe is connected to the second connecting pipe, the first connecting pipe and the second connecting pipe are connected to the third connecting pipe, and the third connecting pipe is connected to a hot air source.
As a further improvement, the heating assembly further comprises an oven and a fan, wherein a plurality of heating pipes are distributed in the oven, and two ends of the oven are respectively connected to the third connecting pipe and an air outlet of the fan.
From the above description of the structure of the present invention, compared with the prior art, the present invention has the following advantages: when the device works, after the syrup is poured into the device along the feeding pipe above the shell, the syrup slides downwards in the shell along the slide way and slides out. In this process, through the intake pipe can be introduced hot gas the heating intracavity, simultaneously through the stirring subassembly the stirring vane of puddler can carry out abundant stirring to the syrup, make abundant and hot gas contact the back and flow out downwards to this reaches the instant heating of syrup in order to carry out the sterile purpose of disinfecting. Therefore, the utility model can finish the sterilization and disinfection of the syrup only by pouring the syrup into the shell and then catching and collecting the syrup flowing out of the slide way, is very convenient and can effectively improve the production efficiency of the syrup.
Drawings
FIG. 1 is a schematic side view of the present invention.
FIG. 2 is a schematic view of the forward internal structure of the present invention.
Fig. 3 is a schematic perspective view of the slide and the stirring rod connected in the slide.
FIG. 4 is a schematic view of the engagement of the drive sprocket with the drive sprockets on the sides of the ramps.
Detailed Description
The following describes embodiments of the present invention with reference to the drawings.
As shown in fig. 1 and 2, an instantaneous heating device for syrup comprises a casing 1, a slide 2, a stirring assembly and a heating device. Wherein, be equipped with baffle 11 in the casing 1, this baffle 11 will the inside interval of casing 1 forms heating chamber 101, slide 2 can be through the fixed slope setting of support to in the heating chamber 101.
As shown in fig. 3, the cross section of the slide way 2 forms a U shape, so that the upper part of the slide way 2 is open. Referring to fig. 1 again, the upper end of the chute 2 is connected with a feeding pipe 21, the feeding pipe 21 penetrates out of the casing 1 upwards and is used for pouring syrup into the chute 2 from outside of the casing 1, preferably, a transparent observation window (not shown in the drawing) made of high temperature resistant glass can be arranged above or on the side surface of the casing 1 and is used for penetrating the amount of syrup poured into the chute 2 to prevent the syrup from overflowing out of the chute 2. The lower end of the slide way 2 extends out of the shell 1 and is used for enabling the heated syrup to flow out downwards, preferably, the length of the lower end of the slide way 2 extending out of the shell 1 can be properly prolonged by 4-5 meters so as to serve as a cooling section of the heated syrup.
The stirring assembly comprises a plurality of stirring rods 41, and a driving motor 46, a driving chain 45 and a driving chain wheel 44 which drive the stirring rods 41 to rotate. What puddler 41 surface commuted is fixed with a plurality of stirring vane 42, and is a plurality of puddler 41 side by side connects slide 2 rotates, specifically as shown in fig. 3, can slide 2 outer both ends fixed bearing frame, the both ends of puddler 41 all extend slide 2 outer joint bearing frame, so that puddler 41 connects at slide 2 and stirring vane 42 is located the slide 2 internal rotation. Referring to fig. 2 and 4 again, the partition 11 is connected to two rotatable driving sprockets 44 at a side facing away from the heating cavity 101, the two driving sprockets 44 are respectively corresponding to two ends of the slide rail 2, the driving chain 45 bypasses the two driving sprockets 44 and is engaged with the two driving sprockets 44, and the driving motor 46 is fixed in the housing 1 to drive one of the driving sprockets 44 to rotate. One end of each stirring rod 41 penetrates through the partition plate 11 and then is fixedly connected with a transmission chain wheel 43, each transmission chain wheel 43 is meshed with the driving chain 45, and when the stirring device works, the driving motor 46 drives the transmission chain wheel 43 to rotate to drive the driving chain 45 to rotate, and can simultaneously drive each transmission chain wheel 43 meshed with the driving chain 45 to rotate, so that each stirring rod 41 is driven to rotate.
As shown in fig. 2, the heating device includes an air inlet pipe 34, an air outlet pipe 35, a first connecting pipe 31, a second connecting pipe 32, and a third connecting pipe 33, and a fan 38 and an oven 37 for supplying heat. A plurality of air inlet pipes 34 are connected to the upper portion outside the housing 1, and each air inlet pipe 34 is connected to the first connecting pipe 31. The lower end of the outside of the casing 1 is connected with a plurality of exhaust pipes 35, and each exhaust pipe 35 is connected to the second connection pipe 32. The first connection pipe 31 and the second connection pipe 32 are both connected to the third connection pipe 33. The oven 37 is a heat-insulating box body, a plurality of heating pipes are distributed in the oven 37, two ends of the oven 37 are respectively connected to the third connecting pipe 33 and an air outlet 381 of the fan 38, and a filter screen is arranged at the air inlet of the fan 38, so that air entering the heating cavity 101 through the oven 37 is cleaner. In addition, a check valve 36 is disposed at a position of the third connection pipe 33 connected to the oven 37, and the check valve 36 conducts the second connection pipe 32 to the first connection pipe 31.
In addition, the present invention may be adapted with a control system (not shown in the drawings), which may be a PLC controller, for controlling the operation of the heating device and the stirring assembly. Specifically, after the syrup is fed into the chute 2 along the feeding pipe 21, when the heating device is in operation, the fan 38 introduces outside air into the oven 37, the air is heated by the heating pipe in the oven 37 to form a hot air source, and flows into the third connecting pipe 33, and the hot air flows into the heating chamber 101 through the first connecting pipe 31 and each air inlet pipe 34 in the third connecting pipe 33 in an upward sequence, and after the heating chamber 101 is filled with hot air, the hot air is discharged downward through each air outlet pipe 35 and flows back to the third connecting pipe 33 through the second connecting pipe 32, so that a circulating flow of the hot air is formed, which is beneficial to reducing loss of heat energy. Meanwhile, the stirring components work synchronously, so that the stirring rod 41 rotates and simultaneously drives each stirring blade 42 to rotate, and syrup sliding downwards in the slideway 2 is stirred, and in the process, the heating cavity 101 is filled with hot air flowing downwards, so that the surface and the inside of the syrup can be sufficiently heated, and the aim of instantaneous heating for sterilization and disinfection is fulfilled.
In summary, in the present invention, after the syrup is poured into the casing 1 along the feeding pipe 21, the syrup slides downwards and out of the casing 1 along the chute 2. In the process, hot air can be introduced into the heating cavity 101 through the air inlet pipe 34, and meanwhile syrup can be sufficiently stirred through the stirring blades 42 of the stirring rods 41 of the stirring assembly, so that the syrup can fully contact with the hot air and then flows downwards, and the aim of instantly heating the syrup for sterilization and disinfection is fulfilled. Therefore, the syrup can be sterilized and disinfected conveniently only by pouring the syrup into the shell 1 and then catching and collecting the syrup flowing out of the slide way 2.
The above description is only an embodiment of the present invention, but the design concept of the present invention is not limited thereto, and any insubstantial modifications made by using the design concept should fall within the scope of infringing the present invention.

Claims (4)

1. An instantaneous syrup heating apparatus, characterized in that it comprises:
the heating device comprises a shell, wherein a partition plate is arranged in the shell and divides the interior of the shell into heating cavities;
the slideway is obliquely fixed in the heating cavity, the upper end of the slideway is connected with a feed pipe, the feed pipe penetrates out of the shell and is used for pouring syrup into the slideway from the outside of the shell, and the lower end of the slideway extends out of the shell;
the stirring assembly comprises a plurality of stirring rods, each stirring rod is provided with a stirring blade, and the stirring rods are connected with the slide way side by side and rotate, so that the stirring blades are positioned in the slide way to rotate;
heating device, heating device is including intake pipe and blast pipe, the blast pipe sets up the bottom of casing, the intake pipe sets up on the casing, and correspond the top of slide makes steam follow the intake pipe gets into can via behind the heating intracavity behind the slide, by the blast pipe is discharged.
2. An instant heating device for syrup according to claim 1, characterized in that: the stirring assembly further comprises a driving motor, a driving chain and driving chain wheels, wherein the partition plate is connected with the two rotatable driving chain wheels on one side back to the heating cavity, the two driving chain wheels are respectively corresponding to two ends of the slide way, the driving chain wheels bypass the two driving chain wheels and are meshed with the two driving chain wheels, and the driving motor is fixed in the shell and drives one of the driving chain wheels to rotate; one end of each stirring rod penetrates through the partition plate and then is fixedly connected with a transmission chain wheel, and each transmission chain wheel is meshed with the driving chain.
3. An instant heating device for syrup according to claim 1, characterized in that: the heating assembly further comprises a first connecting pipe, a second connecting pipe and a third connecting pipe, a plurality of air inlet pipes are connected to the upper portion of the outer portion of the shell, the air inlet pipes are connected to the first connecting pipe, the lower end of the outer portion of the shell is connected with a plurality of exhaust pipes, the exhaust pipes are connected to the second connecting pipe, the first connecting pipe and the second connecting pipe are connected to the third connecting pipe, and the third connecting pipe is connected to a hot air source.
4. An instant syrup heating apparatus as claimed in claim 3, wherein: the heating assembly further comprises an oven and a fan, a plurality of heating pipes are distributed in the oven, and two ends of the oven are respectively connected to the third connecting pipe and an air outlet of the fan.
CN202122467753.1U 2021-10-14 2021-10-14 Instant heating equipment of syrup Active CN215975864U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122467753.1U CN215975864U (en) 2021-10-14 2021-10-14 Instant heating equipment of syrup

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122467753.1U CN215975864U (en) 2021-10-14 2021-10-14 Instant heating equipment of syrup

Publications (1)

Publication Number Publication Date
CN215975864U true CN215975864U (en) 2022-03-08

Family

ID=80507912

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122467753.1U Active CN215975864U (en) 2021-10-14 2021-10-14 Instant heating equipment of syrup

Country Status (1)

Country Link
CN (1) CN215975864U (en)

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