Quenching and tempering device

By designing the conditioner shell as a reversible structure and using the connecting plate to drive the main shaft to rotate, the problem of residual material in the conditioner being difficult to clean is solved, the convenience of quick cleaning and maintenance is achieved, and the production quality is improved.

CN223454063UActive Publication Date: 2025-10-21ZHANJIANG HENGRUN MASCH CO LTD
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Patent Information

Application Number
CN202422958697.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-10-21
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

In the process of conditioning aquatic feed, the residual materials in the existing conditioner are difficult to clean, resulting in waste and cross infection, affecting production quality.

Method used

A tempering device is designed, in which the conditioner shell is divided into a reversible upper shell and a lower shell, and the main shaft is driven to rotate by a rotatable connecting plate to achieve separation of the shell and the main shaft, which is convenient for cleaning residual materials.

Benefits of technology

It achieves rapid and thorough cleaning of residual materials, improves maintenance performance, avoids material waste and cross infection, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223454063U_ABST
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Abstract

The utility model discloses a hardening and tempering device which comprises a base, one end of the conditioner main shaft is in driving connection with a motor; the conditioner comprises a conditioner lower shell and a conditioner upper shell which can be buckled on the conditioner lower shell in a turnover mode, and a cavity used for containing a conditioner main shaft is formed between the conditioner lower shell and the conditioner upper shell. The connecting plates are rotatably connected to the base, and the two connecting plates are arranged at the two ends of the main shaft respectively. The conditioner shell is divided into the upper shell and the lower shell which can be overturned to be mutually buckled / separated, and the rotatable connecting plate is arranged, so that after the upper shell is overturned to leave the lower shell, the main shaft is driven by the connecting plate to rotate so as to be separated from the lower shell, and therefore, residual materials in the upper shell, the lower shell, the main shaft and the main shaft blades are thoroughly cleaned; moreover, the blades are convenient to replace or the angles of the blades are convenient to adjust, and the maintainability of the hardening and tempering device is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of conditioning equipment, especially points to a conditioning device. BACKGROUND

[0002] The existing conditioner is widely applied to the material conditioning process, steam is added to the inside of the conditioner in the material conditioning process, a high-temperature and high-humidity internal conditioning environment is formed, so that the material reaches the gelatinization state, in order to make the material can be more quickly conditioned or the conditioning degree meets the requirement, excessive steam is often added to the inside of the conditioner during use.

[0003] Especially in the conditioning process of aquatic feed, the internal temperature is higher than 95 DEG C, the internal positive pressure is as high as 0.01 Mpa, at this time, the high-temperature and high-humidity material is extremely easy to adhere on the conditioner cylinder wall and the main shaft paddle, and residual material is formed.Aiming at the residual material, the internal structure of the conditioner is complex, due to the small space in the conditioner cylinder, manual cleaning of residual material is not only time-consuming and laborious, and the cleaning effect is not ideal, and the residual material causes waste on the one hand, and the feed types processed by the conditioner are different, and the residual material is easy to cross infection, which seriously affects the production quality of the feed processed by the conditioner.

[0004] Therefore, how to propose a conditioning device that can conveniently and quickly clean residual material has become a technical problem to be solved in the industry. INVENTION CONTENTS

[0005] The utility model discloses a conditioning device that can conveniently and quickly clean residual material.

[0006] Technical scheme: a conditioning device, comprising:

[0007] A base;

[0008] A conditioner main shaft, both ends of the conditioner main shaft are provided with bearings, and one end of the conditioner main shaft is drivingly connected with a motor;

[0009] A conditioner lower shell and a conditioner upper shell that can be reversibly buckled on the conditioner lower shell, a cavity for accommodating the conditioner main shaft is arranged between the conditioner lower shell and the conditioner upper shell, and both ends of the cavity are detachably connected with the bearings;

[0010] A connecting plate rotatably connected to the base, the connecting plate is configured as two and arranged at both ends of the conditioner main shaft respectively, and the connecting plate is connected to the bearing.

[0011] Further, the two connecting plates are connected through a support connecting rod.

[0012] Further, the bearing is sleeved in a bearing seat, and the bearing seat is fixedly connected to the connecting plate.

[0013] Further, end covers are arranged on the bearing seat to close both ends of the cavity, and sealing grooves are arranged on both ends of the conditioner upper shell and the conditioner lower shell to accommodate the end covers.

[0014] Further, one side of the conditioner upper shell and the conditioner lower shell is hingedly connected, and the other side is detachably connected through a connecting hinge buckle, and the connecting plate is arranged on the side close to the connecting hinge buckle.

[0015] Further, the base comprises:

[0016] Two turnover fixing plates arranged below both ends of the conditioner lower shell and a plurality of support fixing rods used to connect the two turnover fixing plates, the turnover fixing plate is hingedly connected to the connecting plate, and the support fixing rods are provided with support plates arranged vertically upward, and the support plates are used to form the bottom of the conditioner lower shell.

[0017] Further, the turnover fixing plate is provided with a first pin hole, the connecting plate is provided with a second pin hole, when the connecting plate is turned to a predetermined position, the first pin hole and the second pin hole are coincided, and the fixing between the connecting plate and the turnover fixing plate can be realized through a fixed pin shaft connection.

[0018] Beneficial effects: the conditioner of the utility model, by setting the conditioner shell into the upper shell and the lower shell which can be turned and mutually buckled / separated, and through the setting of the rotatable connecting plate, after the upper shell is turned away from the lower shell, the main shaft is rotated by the connecting plate to be separated from the lower shell, so that the residual materials in the upper shell, the lower shell, the main shaft and the main shaft paddle can be completely cleaned, the paddle can be conveniently replaced or the paddle angle can be adjusted, and the maintainability of the conditioner is improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] ATTACHED Figure 1 It is a three-dimensional structure schematic view of an embodiment of the conditioner of the utility model;

[0020] ATTACHED Figure 2 It is Figure 1 It is an open state schematic view of the conditioner shown in the figure;

[0021] ATTACHED Figure 3 It is Figure 2 It is a three-dimensional schematic view of another angle of the conditioner shown in the figure;

[0022] ATTACHED Figure 4 It is Figure 1 It is a partial three-dimensional schematic view of the conditioner shown in the figure, in which the conditioner main shaft, the conditioner upper shell and the conditioner lower shell are removed.

[0023] attached Figure 5 for Figure 2 enlarged schematic view of the tempering device B is shown. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and not to limit the utility model. Based on the examples in the utility model, all other examples obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0025] It should be noted that the technical schemes of various examples can be combined with each other, but must be based on the realization of those skilled in the art, and when the combination of technical schemes appears contradictory or unachievable, it should be considered that the combination of technical schemes does not exist and is not within the protection scope required by the utility model.

[0026] Referring to Figures 1-5 An embodiment of the tempering device of the utility model is shown, comprising: a base and a tempering device main shaft 4 arranged above the base. Both ends of the tempering device main shaft 4 are provided with bearings (not shown in the figure), a plurality of paddles 42 for stirring materials are arranged on the tempering device main shaft 4, and one end of the tempering device main shaft 4 is drivingly connected with a motor 41 for driving the tempering device main shaft 4 to rotate, thereby stirring the materials.

[0027] It also comprises a tempering device lower shell 2 and a tempering device upper shell 3 which can be reversibly buckled on the tempering device lower shell 2, the tempering device upper shell 3 is provided with a nozzle structure 31 for accommodating steam passing through and a feeding port 32, a cavity 20 for accommodating the tempering device main shaft 4 is arranged between the tempering device lower shell 2 and the tempering device upper shell 3, both ends of the cavity 20 are detachably connected with the bearings. A connecting plate 5 which can be rotatably connected to the base is also provided, the connecting plate 5 is configured as two, respectively arranged at both ends of the tempering device main shaft 4, and the connecting plate 5 is connected to the bearings.

[0028] In the working state, the external steam generator releases steam into the cavity 20 through the nozzle structure 31, and the motor 41 drives the conditioner spindle 4 to rotate, thereby driving the paddle 42 to rotate and conditioning the material in the cavity 20. When the conditioner spindle 4, the paddle 42, or the inside of the cavity 20 needs to be cleaned and maintained, the conditioner upper shell 3 is flipped to separate it from the conditioner lower shell 2, and then the connecting plate 5 is rotated to drive the spindle to rotate and move away from the conditioner lower shell 2. By dividing the conditioner shell into a flipable and detachable upper shell and lower shell, and by providing a rotatable connecting plate 5, after the conditioner upper shell 3 is flipped away from the conditioner lower shell 2, the connecting plate 5 is used to drive the conditioner spindle 4 to rotate and move out of the conditioner lower shell 2, thereby thoroughly cleaning the remaining material in the upper shell, the lower shell, the conditioner spindle 4, and the spindle paddle 42, and facilitating the replacement or angle adjustment of the paddle 42, thereby improving the maintainability of the conditioning device.

[0029] In some preferred embodiments, the two connecting plates 5 are connected by a support link 51, so that the rotation of the two connecting plates 5 can be synchronized through the support link 51, avoiding the phenomenon of the conditioner spindle 4 bending when the connecting plates 5 are rotated out of sync. Moreover, the support link 51 can also function as a handheld part, facilitating the rotation process for the operator.

[0030] In some preferred embodiments, the bearing is sleeved in the bearing seat 43, and the bearing seat 43 is fixedly connected to the connecting plate 5. By providing the bearing seat 43, the bearing is provided with certain protection performance to avoid contamination.

[0031] In some preferred embodiments, the bearing seat 43 is further provided with an end cover 44 to close the two ends of the cavity 20, and the conditioner upper shell 3 and the conditioner lower shell 2 are both provided with a sealing groove 22 to accommodate the end cover 44. In this way, the sealing performance of the cavity 20 is improved, and the conditioning efficiency is improved. Moreover, by removing / assemblying the end cover 44 as a whole, the structure is simpler and easier to manufacture.

[0032] In some preferred embodiments, one side of the conditioner upper shell 3 and the conditioner lower shell 2 is hingedly connected, and the other side is detachably connected through a connecting hinge 21, and the connecting plate 5 is arranged on the side close to the connecting hinge. In this way, the rotation direction of the conditioner upper shell 3 and the rotation direction of the conditioner spindle 4 are separated, thereby avoiding interference and facilitating simultaneous cleaning and maintenance of the spindle and the conditioner upper shell 3, thereby improving the working efficiency.

[0033] In some preferred embodiments, the base comprises:

[0034] Two turnover fixed plates 11 are arranged below both ends of the lower shell 2 of the conditioner, the top of the turnover fixed plate 11 is hinged to the connecting plate 5, a plurality of support fixed rods 12 are arranged to connect the two turnover fixed plates 11, support plates 13 are arranged between the support fixed rods 12 and are arranged vertically upward, and the support plates 13 are used to make the bottom of the lower shell 2 of the conditioner. In this way, the support stability of the lower shell 2 of the conditioner is improved.

[0035] The first pin hole 61 is arranged on the turnover fixed plate 11, the second pin hole 52 is arranged on the connecting plate 5, when the connecting plate 5 is turned to a predetermined position, the first pin hole 61 and the second pin hole 52 are coincided, and the fixing between the connecting plate 5 and the turnover fixed plate 11 can be realized through the fixed pin shaft 6. In this way, the problem that the main shaft 4 of the conditioner cannot be fixed during cleaning is avoided, so that the stability of the cleaning and maintenance process is ensured.

[0036] The above is only the preferred embodiment of the present application, and it should be pointed out that for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, and these improvements and refinements should be considered as the protection scope of the present application.

Claims

1. A tempering device, characterized in that The utility model relates to a kind of adjustable qualityer, including: Base; Tempering spindle, both ends of the tempering spindle are provided with bearing, and one end of the tempering spindle is drivenly connected with motor; Tempering lower shell and tempering upper shell that can be reversely buckled on the tempering lower shell, cavity for accommodating the tempering spindle is equipped between the tempering lower shell and the tempering upper shell, and both ends of the cavity are detachably connected with the bearing; Connecting plate rotatably connected to the base, the connecting plate is configured as two, respectively at both ends of the tempering spindle, and the connecting plate is connected to the bearing.

2. The tempering device of claim 1, wherein: Two connecting plates are connected by support connecting rod.

3. The tempering device of claim 1, wherein: The bearing is sleeved in bearing seat, and the bearing seat is fixedly connected with the connecting plate.

4. The tempering device of claim 3, wherein: End cover for closing both ends of the cavity is further provided on the bearing seat, and corresponding sealing groove for accommodating the end cover is provided at both ends of the tempering upper shell and the tempering lower shell.

5. The tempering device of claim 1, wherein: The tempering upper shell and the tempering lower shell are hinged on one side and detachably connected by connecting hinge on the other side, and the connecting plate is arranged on the side close to the connecting hinge.

6. The tempering device of claim 1, wherein: The base includes: Two flip fixing plates separately provided below both ends of the tempering lower shell and a plurality of support fixing rods for connecting the two flip fixing plates, the top of the flip fixing plate is hinged with the connecting plate, and support plate vertically upward is provided between the support fixing rods, and the support plate is used to make the bottom of the tempering lower shell.

7. The tempering device of claim 6, wherein: First pin hole is provided on the flip fixing plate, and second pin hole is provided on the connecting plate, when the connecting plate is flipped to predetermined position, the first pin hole and the second pin hole coincide, and the fixing between the connecting plate and the flip fixing plate can be realized by fixed pin shaft connection.