Probiotic fermentation equipment for feed additive production

By introducing a heating mechanism into the probiotic fermentation equipment, and using a heat-conducting oil tank and heat exchange pipelines to heat the probiotics in the tank, the problem of unsatisfactory fermentation effect caused by the simple structure of existing devices is solved, and faster fermentation speed and higher product quality are achieved.

CN223852605UActive Publication Date: 2026-01-30CHONGQING GAOXIN BIOTECHNOLOGY CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520281961.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-01-30
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

Existing probiotic feed additive fermentation devices have simple structures and lack heating devices, resulting in unsatisfactory fermentation effects.

Method used

A probiotic fermentation device including a tank, a top cover, and a heating mechanism was designed. By combining a heat transfer oil tank, a pump, a delivery pipe, and a heat exchange pipeline, the heated heat transfer oil is used to heat the probiotics in the tank, thereby improving the fermentation effect.

Benefits of technology

It improved the fermentation speed and product quality of probiotics and enhanced the heating effect of the fermentation device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223852605U_ABST
    Figure CN223852605U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of fermentation devices, in particular to probiotic fermentation equipment for feed additive production, which comprises a tank body, an upper cover and a heating mechanism, the heating mechanism comprises a mounting rack, a heat conduction oil tank, a pump body, a delivery pipe, a heat exchange pipeline and a return pipe, and the input end of the pump body is positioned inside the heat conduction oil tank; the output end of the pump body is connected with the conveying pipe, the end, away from the heat exchange pipeline, of the backflow pipe is connected with a backflow opening of the heat conduction oil tank, heat conduction oil in the heat conduction oil tank is heated through the multiple heating rods, the pump body is started, and the heated heat conduction oil is conveyed into the heat exchange pipeline through the conveying pipe. Due to the fact that the heat exchange pipeline is arranged between the heat preservation outer shell and the heat conduction inner shell and tightly attached to the outer side wall of the heat conduction inner shell, the heat exchange pipeline heats the heat conduction inner shell through heat dissipated by heated heat conduction oil, and the fermentation effect of probiotics in the heat conduction inner shell is better.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to fermentation device technical field especially relates to a probiotic fermentation equipment for feed additive production. BACKGROUND

[0002] When people raise poultry, usually give poultry to feed the feed of adding probiotics, to keep poultry healthy growth, but the existing probiotic fermentation tank internal structure is relatively simple, when fermenting probiotics, the fermentation rate is slow, and the product quality of fermentation is poor, thereby the quality of feed additive is affected.

[0003] In order to solve the above problems, in the patent file with the publication number CN211620475U discloses a kind of fermentation device of probiotic feed additive, including jar body and upper cover, the upper cover pin shaft rotation is connected on the upper end surface of the jar body, the jar body with the mixing structure is arranged in the upper cover, the mixing structure mainly includes: driving motor, fixed base, round bar, slot, plug, screening part and stirring part, the driving motor is set on the upper end surface of the upper cover and output end passes through the surface of the upper cover, the fixed base is set in the bottom surface of the jar body, the round bar rotation is set in the fixed base, the slot is opened on the upper end surface of the round bar, the plug is set in the output end of the driving motor and inserts in the slot, the screening part is set in the round bar and the jar body, the stirring part is set in the jar body, this technical solution can screen raw materials, gradually add to fermentation tank, and can be quickly stirred, improve overall fermentation speed.

[0004] But the structure of the existing fermentation device of probiotic feed additive is relatively simple, without heating device, leading to the fermentation effect of probiotic is not ideal. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a kind of probiotic fermentation equipment for feed additive production, solve the structure of the existing fermentation device of probiotic feed additive is relatively simple, without heating device, leading to the fermentation effect of probiotic is not ideal Problem.

[0006] To achieve the above object, the utility model provides a kind of probiotic fermentation equipment for feed additive production, including jar body, upper cover and heating mechanism, the top of the jar body is equipped with the upper cover, the upper cover is provided with feed inlet, the bottom of the jar body is provided with discharge port;

[0007] The heating mechanism comprises a mounting frame, a heat-conducting oil tank, a pump body, a conveying pipe, a heat exchange pipeline and a backflow pipe, the tank body is composed of a heat-conducting inner shell and a heat-preservation outer shell, the heat-conducting inner shell is arranged in the heat-preservation outer shell, the heat exchange pipeline is arranged between the heat-preservation outer shell and the heat-conducting inner shell, the heat exchange pipeline is closely combined with the outer side wall of the heat-conducting inner shell, the top end of the heat exchange pipeline is provided with the backflow pipe, the bottom of the heat exchange pipeline is provided with the conveying pipe, the mounting frame is mounted on the outer side wall of the heat-preservation outer shell, the heat-conducting oil tank is arranged on the mounting frame, the pump body is arranged on the heat-conducting oil tank, the input end of the pump body is located in the heat-conducting oil tank, the output end of the pump body is connected with the conveying pipe, the end of the backflow pipe, which is away from the heat exchange pipeline, is connected with the backflow port of the heat-conducting oil tank, and a plurality of heating rods are arranged on the heat-conducting oil tank.

[0008] The heat exchange pipeline comprises a plurality of annular pipes and a plurality of communication pipes, the plurality of annular pipes are uniformly arranged outside the heat-conducting inner shell, and every two adjacent annular pipes are connected in communication through the communication pipes.

[0009] The mounting frame comprises a mounting arc plate and a placing plate, the mounting arc plate is detachably connected with the outer side wall of the heat-preservation outer shell, the top end of the mounting arc plate is provided with the placing plate, and the heat-conducting oil tank is mounted on the placing plate.

[0010] The mounting frame further comprises two inclined supporting rods, and the two sides of the mounting arc plate are provided with the inclined supporting rods, and the end, which is away from the mounting arc plate, of each inclined supporting rod is connected with the placing plate.

[0011] The heat-conducting oil tank is further provided with a temperature sensor, and the display end of the temperature sensor is located outside the heat-conducting oil tank.

[0012] The heat-conducting oil in the heat-conducting oil tank is heated through the plurality of heating rods, the pump body is started, the heated heat-conducting oil is conveyed into the heat exchange pipeline through the conveying pipe, the heat exchange pipeline is arranged between the heat-preservation outer shell and the heat-conducting inner shell and is closely combined with the outer side wall of the heat-conducting inner shell, the heat-conducting inner shell is heated by the heat generated by the heat exchange pipeline through the heated heat-conducting oil, and therefore the fermentation effect of the probiotics in the heat-conducting inner shell is better. BRIEF DESCRIPTION OF DRAWINGS

[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings required to be used in the embodiments or the prior art description will be briefly introduced.

[0014] Figure 1 is a structure schematic view of the probiotic fermentation equipment for feed additive production provided by the utility model.

[0015] Figure 2 is the utility model provides Figure 1 the partial structure enlarged view of A place of,

[0016] Figure 3 is the split structure schematic view of the heat preservation shell and the heat conduction inner shell provided by the utility model.

[0017] Figure 4 is the structure schematic view of the heat exchange pipeline.

[0018] 101 - upper cover, 102 - heat conduction oil tank, 103 - pump body, 104 - conveying pipe, 105 - backflow pipe, 106 - annular pipe, 107 - communication pipe, 108 - installation arc plate, 109 - placement plate, 110 - inclined support rod, 111 - feed inlet, 112 - discharge port, 113 - heat conduction inner shell, 114 - heat preservation shell, 115 - heating rod, 116 - temperature sensor. Specific implementation

[0019] The embodiments of the utility model are described in detail below, the examples of the embodiments are shown in the drawings, the embodiments described below by referring to the drawings are exemplary, and are intended to explain the utility model, and can not be understood as the limitation of the utility model.

[0020] Please refer to Figures 1 to 4 , wherein Figure 1 is the structure schematic view of the probiotic fermentation equipment for feed additive production, Figure 2 is Figure 1 the partial structure enlarged view of A place of, Figure 3 is the split structure schematic view of the heat preservation shell and the heat conduction inner shell, Figure 4 is the structure schematic view of the heat exchange pipeline.

[0021] The utility model provides a kind of probiotic fermentation equipment for feed additive production: including jar body, upper cover 101 and heating mechanism, the heating mechanism includes mounting bracket, heat conduction oil tank 102, pump body 103, conveying pipe 104, heat exchange pipeline and backflow pipe 105, the heat exchange pipeline includes multiple annular pipes 106 and multiple communication pipes 107, the mounting bracket includes installation arc plate 108, placement plate 109 and two inclined support rods 110.It is solved that the structure of the fermentation device of the existing probiotic feed additive is relatively simple by the foregoing scheme, without the device for heating, resulting in the fermentation effect of probiotic is not ideal enough problem, it can be understood that the foregoing scheme can be used on the structure of probiotic fermentation equipment for feed additive production.

[0022] For this specific embodiment, the top end of the tank body is provided with the upper cover 101, the upper cover 101 is provided with a feeding port 111, the bottom of the tank body is provided with a discharging port 112, the tank body is composed of a heat-conducting inner shell 113 and a heat-insulating outer shell 114, the heat-conducting inner shell 113 is arranged inside the heat-insulating outer shell 114, the heat-insulating outer shell 114 and the heat-conducting inner shell 113 are provided with the heat exchange pipeline, the heat exchange pipeline is closely attached to the outer side wall of the heat-conducting inner shell 113, the top end of the heat exchange pipeline is provided with the return pipe 105, the bottom of the heat exchange pipeline is provided with the conveying pipe 104, the outer side wall of the heat-insulating outer shell 114 is provided with the mounting bracket, the mounting bracket is provided with the heat-conducting oil tank 102, the heat-conducting oil tank 102 is provided with the pump body 103, the input end of the pump body 103 is located inside the heat-conducting oil tank 102, the output end of the pump body 103 is connected with the conveying pipe 104, the end of the return pipe 105 far away from the heat exchange pipeline is connected with the return port of the heat-conducting oil tank 102, the heat-conducting oil tank 102 is provided with a plurality of heating rods 115, the heat-conducting oil in the heat-conducting oil tank 102 is heated by the plurality of heating rods 115, the pump body 103 is started, and the heated heat-conducting oil is conveyed into the heat exchange pipeline through the conveying pipe 104, since the heat exchange pipeline is arranged between the heat-insulating outer shell 114 and the heat-conducting inner shell 113 and closely attached to the outer side wall of the heat-conducting inner shell 113, the heat-conducting inner shell 113 is heated by the heat generated by the heat exchange pipeline through the heated heat-conducting oil, so that the fermentation effect of the probiotics in the heat-conducting inner shell 113 is better.

[0023] Among them, a plurality of the annular pipes 106 are uniformly arranged outside the heat-conducting inner shell 113, and every two adjacent annular pipes 106 are connected through the communication pipe 107, a plurality of the communication pipes 107 are arranged in a staggered structure, the heat-conducting oil between a plurality of the annular pipes 106 is conveyed through the arrangement of a plurality of the communication pipes 107, and since a plurality of the communication pipes 107 are arranged in a staggered structure, the flowing time of the heated heat-conducting oil in the heat exchange pipeline is prolonged, so that the heating effect of the heat exchange pipeline on the heat-conducting inner shell 113 is better.

[0024] Secondly, the mounting arc plate 108 is detachably connected with the outer side wall of the heat-insulating outer shell 114, the top end of the mounting arc plate 108 is provided with the placement plate 109, the heat-conducting oil tank 102 is mounted on the placement plate 109, and the mounting arc plate 108 is fixed on the outer side wall of the heat-insulating outer shell 114 by screws, so as to complete the installation of the mounting bracket.

[0025] Meanwhile, the two sides of the mounting arc plate 108 are provided with the inclined support rods 110, and the ends of the inclined support rods 110 away from the mounting arc plate 108 are connected with the placing plate 109, so that the overall structure of the mounting frame is more stable.

[0026] In addition, the heat conducting oil tank 102 is also provided with a temperature sensor 116, and the display end of the temperature sensor 116 is located outside the heat conducting oil tank 102, so that the temperature of the heat conducting oil in the heat conducting oil tank 102 can be observed in real time through the display end of the temperature sensor 116, and the running power of the heating rod 115 can be controlled in real time.

[0027] When the probiotic fermentation equipment for feed additive production is used, the heat conducting oil in the heat conducting oil tank 102 is heated by the plurality of heating rods 115, the pump body 103 is started, and the heated heat conducting oil is conveyed into the heat exchange pipeline through the conveying pipe 104, the heat exchange pipeline is arranged between the heat preservation shell 114 and the heat conducting inner shell 113 and is tightly attached to the outer side wall of the heat conducting inner shell 113, the heat exchange pipeline heats the heat conducting inner shell 113 through the heat generated by the heat conducting oil after being heated, so that the fermentation effect of the probiotics in the heat conducting inner shell 113 is better, and the heat conducting oil between the plurality of annular pipes 106 is conveyed through the plurality of communication pipes 107, and the plurality of communication pipes 107 are staggered, so that the time of the heat conducting oil after being heated flowing in the heat exchange pipeline is prolonged, and the heating effect of the heat exchange pipeline on the heat conducting inner shell 113 is better.

[0028] The above only discloses one or more preferred embodiments of the present application, and cannot limit the scope of the rights of the present application. Those skilled in the art can understand that all or part of the above-mentioned embodiments can be implemented, and equivalent changes made according to the claims of the present application still belong to the scope covered by the present application.

Claims

1. A probiotic fermentation equipment for feed additive production, comprising a tank body and an upper cover, the upper cover being installed at the top end of the tank body, the upper cover being provided with a feeding port, and the bottom of the tank body being provided with a discharging port, characterized in that, it further comprises a heating mechanism: the heating mechanism comprises a mounting frame, a heat-conducting oil tank, a pump body, a conveying pipe, a heat exchange pipeline and a backflow pipe, the tank body is composed of a heat-conducting inner shell and a heat-preservation outer shell, the heat-conducting inner shell is arranged inside the heat-preservation outer shell, the heat exchange pipeline is arranged between the heat-preservation outer shell and the heat-conducting inner shell, the heat exchange pipeline is tightly attached to the outer side wall of the heat-conducting inner shell, the top end of the heat exchange pipeline is provided with the backflow pipe, the bottom of the heat exchange pipeline is provided with the conveying pipe, the outer side wall of the heat-preservation outer shell is provided with the mounting frame, the mounting frame is provided with the heat-conducting oil tank, the heat-conducting oil tank is provided with the pump body, the input end of the pump body is located inside the heat-conducting oil tank, the output end of the pump body is connected with the conveying pipe, the end of the backflow pipe away from the heat exchange pipeline is connected with the backflow port of the heat-conducting oil tank, and a plurality of heating rods are arranged on the heat-conducting oil tank.

2. The probiotic fermentation equipment for feed additive production according to claim 1, characterized in that, the heat exchange pipeline comprises a plurality of annular pipes and a plurality of communication pipes, the plurality of annular pipes are uniformly arranged outside the heat-conducting inner shell, every two adjacent annular pipes are connected in communication through the communication pipes, and the plurality of communication pipes are arranged in a staggered structure.

3. The probiotic fermentation equipment for feed additive production according to claim 2, characterized in that, the mounting frame comprises a mounting arc plate and a placing plate, the mounting arc plate is detachably connected with the outer side wall of the heat-preservation outer shell, the top end of the mounting arc plate is provided with the placing plate, and the heat-conducting oil tank is mounted on the placing plate.

4. The probiotic fermentation equipment for feed additive production according to claim 3, characterized in that, the mounting frame further comprises two inclined supporting rods, the two sides of the mounting arc plate are provided with the inclined supporting rods, and the end of each inclined supporting rod away from the mounting arc plate is connected with the placing plate.

5. The probiotic fermentation equipment for feed additive production according to claim 4, characterized in that, a temperature sensor is further arranged on the heat-conducting oil tank, and the display end of the temperature sensor is located outside the heat-conducting oil tank.

Citation Information

Patent Citations

  • Fermentation device of probiotic feed additive

    CN211620475U