Fixation machine for processing safflower

By using a gas distribution component and a motor-driven rotating shaft structure in the safflower blanching device, the problems of safflower polymerization and uneven steam distribution were solved, achieving uniform heating and efficient blanching of safflower.

CN223726769UActive Publication Date: 2025-12-26YUNNAN YUHAI AGRI DEV CO LTD
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Patent Information

Application Number
CN202423252515.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-26
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

In traditional safflower blanching equipment, safflower tends to clump together, resulting in insufficient blanching and uneven steam distribution, leading to poor blanching effect and low efficiency.

Method used

A steam distribution component is used to evenly distribute steam inside the spherical blanching tank, and a motor drives the rotating shaft to rotate the blanching tank, thereby turning and agitating the safflower, preventing aggregation, and ensuring uniform heating.

Benefits of technology

This method ensures uniform heating of safflower, improves the efficiency of blanching, avoids insufficient blanching, and enhances the blanching effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a fixation machine for safflower processing, and belongs to the technical field of safflower processing. According to the utility model, the steam is conveyed into the spherical fixation tank through the gas distribution assembly, the safflower in the spherical fixation tank is heated for fixation, and the steam in the fixation tank can be uniformly distributed through the gas distribution pipe, so that the safflower is uniformly heated, and the fixation effect of the safflower is ensured; the motor is arranged to drive the rotating shaft to rotate to further drive the fixation tank to rotate so as to drive the safflower to turn over, and the gas distribution assembly can stir the safflower in the spherical fixation tank while dispersing steam, so that the situation that the safflower is easy to aggregate and insufficient in fixation is easy to occur is avoided, and the fixation efficiency of the safflower is further improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to safflower processing technical field, more particularly to a kind of fixation machine for safflower processing. BACKGROUND

[0002] Before the fresh safflower is dried and processed, usually need to heat fixation operation to safflower, the purpose of fixation to safflower is to break the oxidase activity in safflower by high temperature, prevent safflower from discoloration in subsequent drying process, also can prevent the nutrient components in safflower from losing in drying process, and first fixation to safflower can evaporate some moisture in safflower, it is advantageous to save the drying time and cost of subsequent safflower.

[0003] In the processing of safflower, steam fixation is usually used to fix the safflower. In the fixation process of traditional safflower fixation device, safflower is easy to aggregate into a group, and fixation is not sufficient, which needs repeated fixation several times to ensure fixation effect, and the work efficiency is low. Moreover, some fixation devices have the problem of uneven steam distribution, which leads to poor fixation effect. SUMMARY

[0004] In order to overcome the problem that in the fixation process of traditional safflower fixation device, safflower is easy to aggregate into a group, and fixation is not sufficient, which needs repeated fixation several times to ensure fixation effect, and the work efficiency is low, and some fixation devices have the problem of uneven steam distribution, which leads to poor fixation effect, the utility model provides a fixation machine for safflower processing. The steam is delivered into the spherical fixation tank by setting air distribution assembly, and the safflower in the spherical fixation tank is heated and fixed. The gas distribution pipe can make the steam in the fixation tank evenly distributed, so that the safflower is evenly heated, thereby ensuring the fixation effect of safflower. The motor drives the rotating shaft to rotate, further drives the fixation tank to rotate, thereby driving the safflower to turn over. Moreover, the air distribution assembly can stir the safflower in the spherical fixation tank while distributing steam, which avoids the safflower from aggregating into a group and fixation from being insufficient, and further improves the fixation efficiency of safflower.

[0005] To achieve the above objectives, this utility model is implemented through the following technical solution: A safflower processing blanching machine mainly includes a support frame, a spherical blanching tank, a heat-insulating barrel, a motor, an air distribution assembly, a connecting block, a rotating shaft, a connecting sleeve, a movable cover assembly, a mounting plate, a barrel cover, and a control panel. The heat-insulating barrel is mounted on the support frame, and a barrel cover is provided at the top of the heat-insulating barrel. A connecting sleeve is radially arranged on the outer wall of the spherical blanching tank. One end of the connecting sleeve penetrates the heat-insulating barrel and is mounted on the heat-insulating barrel through a bearing. The connecting sleeve communicates with the interior of the spherical blanching tank. A connecting... The block has a rotating shaft that passes through the insulation barrel and is mounted on the insulation barrel via a bearing. The rotating shaft and the connecting sleeve are coaxial. The rotating shaft is connected to the connecting block and fastened with bolts. An installation plate is provided on the outer wall of the insulation barrel, and the motor is mounted on the installation plate. The motor is connected to the rotating shaft for transmission. The spherical blanching tank is equipped with a steam distribution component for distributing steam. The spherical blanching tank has a feed inlet and an exhaust port for timely discharge of water vapor generated during the blanching process. A movable cover assembly is installed at the feed inlet. A control panel is installed on the outer wall of the insulation barrel and is electrically connected to the motor.

[0006] The gas distribution assembly includes a gas supply pipe, a five-way connector, and a gas distribution pipe. One end of the gas supply pipe passes through the connecting sleeve and extends into the spherical blanching tank. A five-way connector is installed at the end of the gas supply pipe, and a gas distribution pipe is installed on the five-way connector. The gas distribution pipe has vent holes for easy steam distribution. The other end of the gas supply pipe is connected to a steam generator.

[0007] The movable cover assembly includes a movable cover, a knob, a drive gear, a driven gear, an arc-shaped guide groove, a cross-shaped slide groove, a limiting slider, a limiting post, and a handle. The spherical blanching tank has a limiting groove evenly distributed along its circumference at the feed inlet. The movable cover has a cross-shaped slide groove at its bottom and a handle at its top. A limiting slider, which engages with the limiting groove, is slidably installed within the cross-shaped slide groove. A limiting post is located at the end of the limiting slider. The driven gear is installed at the bottom of the movable cover and is coaxial with the movable cover. Arc-shaped guide grooves, which engage with the limiting post, are evenly distributed along the circumference of the driven gear. The knob is installed on the movable cover, and its bottom end penetrates the movable cover and is connected to a drive gear that meshes with the driven gear.

[0008] The insulated bucket has a cone-shaped discharge hopper at the bottom, and a discharge port is opened at the bottom of the discharge hopper.

[0009] The beneficial effects of this utility model are:

[0010] The utility model discloses a cloth gas subassembly is set up and is transported to the steam into the spherical kill green jar, and the red safflower in the spherical kill green jar is heated and is killed green, and the gas distribution pipe can make the steam distribution of kill green jar even, makes the red safflower even heat, thereby guarantee the kill green effect of red safflower, through setting up motor drive shaft rotation, further drive kill green jar rotation, thereby drive red safflower to turn over, and, cloth gas subassembly spreads steam simultaneously, can agitate the red safflower in the spherical kill green jar, avoided the red safflower easy to aggregate into a group, easy to appear the situation of kill green not sufficient, further improved the kill green efficiency of red safflower. BRIEF DESCRIPTION OF DRAWINGS

[0011] Figure 1 It is the three-dimensional schematic diagram of the utility model.

[0012] Figure 2 It is the three-dimensional schematic diagram of the internal structure of the utility model.

[0013] Figure 3 It is Figure 2 The partial close-up view of A in Fig.

[0014] Figure 4 It is Figure 2 The partial close-up view of B in Fig.

[0015] Figure 5 It is Figure 2 The partial close-up view of C in Fig.

[0016] Figure 6 It is the three-dimensional schematic diagram of the spherical kill green jar.

[0017] Figure 7 It is the three-dimensional schematic diagram of the movable cover assembly Figure 1 .

[0018] Figure 8 It is the three-dimensional schematic diagram of the movable cover assembly Figure 2 . DETAILED DESCRIPTION

[0019] In order to make the purpose, technical scheme and beneficial effect of the utility model more clear, the preferred embodiment of the utility model will be explained in detail below, with the drawings, to facilitate the understanding of the technical personnel.

[0020] The utility model discloses a kind of sintering machines for safflower processing, the sintering machine for safflower processing mainly includes support frame 1, spherical sintering tank 2, heat preservation bucket 3, motor 4, air distribution assembly 5, connecting block 6, shaft 7, connecting sleeve 8, movable lid assembly 9, mounting plate 10, bucket cover 11, control panel 12, the heat preservation bucket 3 is installed on support frame 1, heat preservation bucket 3 top end is provided with bucket cover 11, the heat preservation bucket 3 bottom is equipped with the discharge hopper 13 of conical structure, discharge hopper 13 bottom is provided with discharge port 1301;Spherical sintering tank 2 outer wall is provided with connecting sleeve 8 along radial direction, connecting sleeve 8 one end penetrates heat preservation bucket 3 and is installed on heat preservation bucket 3 by bearing, and connecting sleeve 8 is communicated with spherical sintering tank 2 inside, connecting block 6 is provided on the spherical sintering tank 2 outer wall, shaft 7 one end penetrates heat preservation bucket 3 and is installed on heat preservation bucket 3 by bearing, and shaft 7 is coaxial with connecting sleeve 8, shaft 7 is connected with connecting block 6 and is fastened by bolt, mounting plate 10 is provided on the heat preservation bucket 3 outer wall, motor 4 is installed on mounting plate 10, and motor 4 is drivingly connected with shaft 7;The spherical sintering tank 2 inside is provided with air distribution assembly 5 for dispersing steam, and the air distribution assembly 5 includes gas supply pipe 501, five-way joint 502, gas distribution pipe 503, one end of the gas supply pipe 501 is arranged in connecting sleeve 8 and extends to the spherical sintering tank 2 inside, and five-way joint 502 is installed at the end of gas supply pipe 501, and gas distribution pipe 503 is installed on five-way joint 502, and gas distribution pipe 503 is provided with air hole 5031 for dispersing steam, and the other end of gas supply pipe 501 is connected with steam generator;Spherical sintering tank 2 is provided with feeding port 201 and exhaust hole 202 for discharging water vapor generated in sintering process in time, and movable lid assembly 9 is installed at feeding port 201;Control panel 12 is installed on the heat preservation bucket 3 outer wall, and control panel 12 is electrically connected with motor 4.

[0021] In use, the operator opens the bucket cover 11 and the movable cover assembly 9 in turn, puts the safflower to be killed into the spherical killing tank 2, then closes the movable cover assembly 9 and the bucket cover 11, starts the motor 4, the motor 4 drives the rotating shaft 7 to rotate, the rotating shaft 7 drives the spherical killing tank 2 to rotate through the connecting block 6, thereby driving the safflower to be turned over, at the same time, the steam generator is started, the steam is transported into the gas distribution pipe 503 through the gas supply pipe 501, and is diffused into the spherical killing tank 2 through the gas distribution pipe 503, so as to heat and kill the safflower in the spherical killing tank 2, the gas distribution pipe 503 can make the steam in the killing tank be uniformly distributed, so that the safflower is uniformly heated, thereby ensuring the killing effect of the safflower; and at the same time that the gas distribution pipe 503 diffuses the steam, the safflower in the spherical killing tank 2 can be stirred, so as to avoid the safflower from being easily aggregated into a group and the killing of the safflower from being insufficient, and further improve the killing efficiency of the safflower; after the safflower is killed, the operator opens the bucket cover 11 and the movable cover assembly 9, then rotates the spherical killing tank 2, so that the feeding port 201 on the spherical killing tank 2 is rotated to the discharge hopper 13, the killed safflower is discharged through the discharge port 1301, thereby completing the killing work of the safflower, and the taking of the safflower is convenient and fast.

[0022] The movable cover assembly 9 comprises a movable cover 901, a knob 902, a driving gear 903, a driven gear 904, an arc-shaped guide groove 905, a cross-shaped sliding groove 906, a limiting sliding block 907, a limiting column 908 and a handle 909, the limiting grooves 203 are uniformly arranged on the circumferential direction of the feeding port 201 of the spherical killing tank 2, the cross-shaped sliding groove 906 is arranged on the bottom of the movable cover 901, the handle 909 is arranged on the top of the movable cover 901, the limiting sliding block 907 is slidably arranged in the cross-shaped sliding groove 906 and is matched with the limiting grooves 203, the driven gear 904 is arranged on the bottom of the movable cover 901 and is coaxial with the movable cover 901, the arc-shaped guide grooves 905 are uniformly arranged on the circumferential direction of the driven gear 904 and are matched with the limiting columns 908, the knob 902 is arranged on the movable cover 901 and penetrates through the movable cover 901 and is connected with the driving gear 903 which is engaged with the driven gear 904; in use, the operator rotates the knob 902, drives the driving gear 903 to rotate through the knob 902, drives the driven gear 904 to rotate through the driving gear 903, and further drives the limiting sliding block 907 to move along the cross-shaped sliding groove 906 through the limiting column 908, so that the end of the limiting sliding block 907 is clamped into the limiting groove 203, thereby realizing the locking function of the movable cover 901 and avoiding the phenomenon that the movable cover 901 is separated in the working process, and the stability is improved.

[0023] Working process:

[0024] In use, the operator opens the bucket cover 11 and the movable cover assembly 9 in turn, puts the safflower to be killed into the spherical killing tank 2, then closes the movable cover assembly 9 and the bucket cover 11, starts the motor 4, the motor 4 drives the rotating shaft 7 to rotate, the rotating shaft 7 drives the spherical killing tank 2 to rotate through the connecting block 6, thereby driving the safflower to turn over, at the same time, the steam generator is started, the steam is transported into the gas distribution pipe 503 through the gas supply pipe 501, and is diffused into the spherical killing tank 2 through the gas distribution pipe 503, and the safflower in the spherical killing tank 2 is heated and killed, the gas distribution pipe 503 can make the steam in the killing tank distribute uniformly, so that the safflower is uniformly heated, thereby ensuring the killing effect of the safflower; and at the same time that the gas distribution pipe 503 diffuses the steam, the safflower in the spherical killing tank 2 can be stirred, so that the safflower is not easy to aggregate into a group, and the situation that the killing is not sufficient is avoided, and the killing efficiency of the safflower is further improved; after the safflower is killed, the operator opens the bucket cover 11 and the movable cover assembly 9, then rotates the spherical killing tank 2, so that the feeding port 201 on the spherical killing tank 2 is rotated to the discharge hopper 13, the safflower killed is discharged through the discharge port 1301, thereby completing the killing work of the safflower, and the taking of the safflower is convenient and fast.

[0025] Finally, it should be pointed out that the above preferred embodiments are only used to illustrate the technical solutions of the present application and are not limiting, although the present application has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made in form and details without departing from the scope defined by the claims of the present application.

Claims

1. A machine for the fixation of safflower, characterized in that: The spheroid deenzyme machine for safflower processing includes a support frame (1), a spheroid deenzyme tank (2), a heat preservation barrel (3), a motor (4), a gas distribution assembly (5), a connecting block (6), a rotating shaft (7), a connecting sleeve (8), a movable cover assembly (9), a mounting plate (10), a barrel cover (11), and a control panel (12). The heat preservation barrel (3) is mounted on the support frame (1), the heat preservation barrel (3) is provided with the barrel cover (11) at the top end, the spheroid deenzyme tank (2) is provided with the connecting sleeve (8) on the outer wall in the radial direction, one end of the connecting sleeve (8) penetrates through the heat preservation barrel (3) and is mounted on the heat preservation barrel (3) through a bearing, the connecting sleeve (8) is in communication with the inside of the spheroid deenzyme tank (2), the heat preservation barrel (3) is provided with the connecting block (6) on the outer wall, one end of the rotating shaft (7) penetrates through the heat preservation barrel (3) and is mounted on the heat preservation barrel (3) through a bearing, the rotating shaft (7) is coaxial with the connecting sleeve (8), the rotating shaft (7) is connected with the connecting block (6) and is fastened through bolts, the heat preservation barrel (3) is provided with the mounting plate (10) on the outer wall, the motor (4) is mounted on the mounting plate (10), and the motor (4) is in transmission connection with the rotating shaft (7).

2. A machine for the fixation of safflower as claimed in claim 1, characterized in that: The spheroid deenzyme tank (2) is provided with the gas distribution assembly (5) inside for distributing steam, the spheroid deenzyme tank (2) is provided with a feeding port (201) and an exhaust hole (202) for timely discharging water vapor generated in the deenzyme process, the movable cover assembly (9) is mounted at the feeding port (201), the heat preservation barrel (3) is provided with the control panel (12) on the outer wall, and the control panel (12) is in electrical connection with the motor (4). The gas distribution assembly (5) includes a gas supply pipe (501), a five-way joint (502), and a gas distribution pipe (503). One end of the gas supply pipe (501) penetrates the connecting sleeve (8) and extends into the spheroid deenzyme tank (2), the five-way joint (502) is mounted at the end of the gas supply pipe (501), the gas distribution pipe (503) is mounted on the five-way joint (502), the gas distribution pipe (503) is provided with air holes (5031) for facilitating the distribution of steam, and the other end of the gas supply pipe (501) is connected with a steam generator.

3. A machine for the fixation of safflower as claimed in claim 1 or 2, characterized in that: The movable cover assembly (9) comprises a movable cover (901), a knob (902), a driving gear (903), a driven gear (904), an arc-shaped guide groove (905), a cross-shaped sliding groove (906), a limiting sliding block (907), a limiting column (908) and a handle (909), the limiting grooves (203) are evenly formed in the circumferential direction at the feeding port (201) of the ball-shaped fixation tank (2), the cross-shaped sliding groove (906) is formed in the bottom of the movable cover (901), the handle (909) is arranged at the top of the movable cover (901), the limiting sliding block (907) is slidably arranged in the cross-shaped sliding groove (906) and is matched and clamped with the limiting grooves (203), the limiting column (908) is arranged at the end of the limiting sliding block (907), the driven gear (904) is arranged at the bottom of the movable cover (901) and is coaxial with the movable cover (901), the arc-shaped guide grooves (905) are evenly formed in the circumferential direction on the driven gear (904) and are matched and clamped with the limiting column (908), the knob (902) is arranged on the movable cover (901), the bottom end of the knob (902) penetrates through the movable cover (901) and is connected with the driving gear (903) which is engaged with the driven gear (904).

4. A machine for deactivating safflower as claimed in claim 1 or 2, characterized in that: The heat preservation barrel (3) is provided with the conical structure discharge hopper (13) at the bottom, and the discharge port (1301) is formed in the bottom of the discharge hopper (13).