Homogenizer pump body

By setting up staggered insulation medium flow channels in the homogenizer pump body, the problem of material temperature rise is solved, and the stable control of material temperature is achieved to meet different process needs.

CN223082597UActive Publication Date: 2025-07-11SHANGHAI SAMRO HOMOGENIZER
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Patent Information

Application Number
CN202421954258.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-13
Publication Date
2025-07-11
Estimated Expiration
2034-08-13

AI Technical Summary

Technical Problem

The temperature of the material in the homogenizer pump body is prone to rise during the flow of the material, resulting in a change in the properties of the material, especially on temperature-sensitive materials.

Method used

The insulating medium circulation channel is set up in the homogenizer pump body, and the insulating medium circulation channel is formed through the staggered channels of horizontal, longitudinal and vertical directions. The medium and material channels are arranged staggered, and the medium temperature is controlled through the medium circulation equipment to keep the material temperature within the process requirements.

Benefits of technology

The uniform insulation effect of materials is achieved, the frictional heating is avoided when materials flow, the material temperature is kept stable, and the different process needs are met.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a homogenizer pump body which comprises a homogenizer pump body main body (1), a medium inlet joint (3), a medium outlet joint (4), an inlet medium pipeline (5) and an outlet medium pipeline (6), a heat preservation medium circulation channel is formed in the homogenizer pump body main body (1), and the heat preservation medium circulation channel and a material channel in the homogenizer pump body main body (1) are arranged in a staggered mode. An inlet of the heat preservation medium circulation channel is communicated with one end of an inlet medium pipeline (5) through a medium inlet connector (3), an outlet of the heat preservation medium circulation channel is communicated with one end of an outlet medium pipeline (6) through a medium outlet connector (4), and the other end of the inlet medium pipeline (5) and the other end of the outlet medium pipeline (6) are externally connected to medium circulation equipment. And a heat-insulating medium loop is formed. The utility model relates to the technical field of homogenizer accessories, and can solve the problem that the temperature of materials is easy to rise after the materials flow through a homogenizer pump body in the prior art.
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Description

Technical Field

[0001] The utility model relates to the technical field of homogenizer accessories, in particular to a homogenizer pump body. Background Art

[0002] The pump body of the homogenizer is internally installed with two sets of upper and lower one-way valves, limit sleeves, springs and other parts. The flow channel inside the homogenizer pump body is narrow, and the material flow rate is fast. When the material passes through the narrow flow channel, high-speed friction and impact occur between the material and the flow channel hole wall, which easily generates heat, resulting in a certain increase in material temperature from the time the material enters the homogenizer pump body to the time it is discharged from the homogenizer pump body. For some materials that are sensitive to temperature, large temperature changes will cause changes in the properties of the material. Therefore, it is necessary to provide a homogenizer pump body that can solve the problem in the prior art that the temperature of the material is easily increased after flowing through the homogenizer pump body. Summary of the invention

[0003] The utility model aims to provide a homogenizer pump body, which can solve the problem in the prior art that the temperature of materials is easily increased after flowing through the homogenizer pump body.

[0004] The utility model is achieved in this way:

[0005] A homogenizer pump body comprises a homogenizer pump body main body, a medium inlet joint, a medium outlet joint, an inlet medium pipeline and an outlet medium pipeline; a heat preservation medium circulation channel is formed inside the homogenizer pump body main body, and the heat preservation medium circulation channel is staggered with the material channel in the homogenizer pump body main body; the inlet of the heat preservation medium circulation channel is connected with one end of the inlet medium pipeline through the medium inlet joint, the outlet of the heat preservation medium circulation channel is connected with one end of the outlet medium pipeline through the medium outlet joint, and the other end of the inlet medium pipeline and the other end of the outlet medium pipeline are externally connected to a medium circulation device to form a heat preservation medium loop.

[0006] The heat-insulating medium circulation channel includes a plurality of transverse channels arranged along the transverse direction of the homogenizer pump body, a plurality of longitudinal channels arranged along the longitudinal direction of the homogenizer pump body, and a plurality of vertical channels arranged along the vertical direction of the homogenizer pump body. The transverse channels, longitudinal channels, and vertical channels are crisscrossed in the homogenizer pump body and connected to form a heat-insulating medium circulation channel.

[0007] The transverse channel penetrates the homogenizer pump body in the transverse direction, the longitudinal channel penetrates the homogenizer pump body in the longitudinal direction, and the vertical channel penetrates the homogenizer pump body in the vertical direction. The ports where the transverse channel and the vertical channel penetrate the homogenizer pump body are closed by plugs.

[0008] A plurality of the horizontal channels and a plurality of the vertical channels penetrate through the inner wall of the port of the homogenizer pump body main body, and internal threads are formed thereon. One end of the plug is formed with external threads, so that the plug is screwed onto the homogenizer pump body main body in a matching manner.

[0009] There are two longitudinal channels, and a medium inlet joint and a medium outlet joint are respectively installed on the ports of the two longitudinal channels that penetrate through the homogenizer pump body main body.

[0010] Compared with the prior art, the present invention has the following beneficial effects:

[0011] 1. Since the present invention is provided with a heat preservation medium circulation channel, under the condition of ensuring the structural strength of the homogenizer pump body, by opening a heat preservation medium circulation channel and circulating the heat preservation medium, it exchanges heat with the material in the material channel, and the temperature change of the material can be controlled by the temperature of the heat preservation medium, so as to achieve the heat preservation effect on the material, and thus the temperature of the material can be maintained within the range required by the process.

[0012] 2. Since the present invention is provided with vertical channels, longitudinal channels and horizontal channels, the vertical channels, longitudinal channels and horizontal channels intersect and communicate with each other to form a heat preservation medium circulation channel, so that the heat preservation medium circulation channel can basically cover the entire homogenizer pump body main body, thereby providing a uniform heat exchange and heat preservation effect for the material, and avoiding the frictional temperature rise and property change of the material during flow to the greatest extent. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is the front view cross-sectional view of the homogenizer pump body of the present invention;

[0014] Figure 2 is the top view cross-sectional view of the homogenizer pump body of the present invention;

[0015] Figure 3 is the side test cross-sectional view of the homogenizer pump body of the present invention.

[0016] In the figure, 1 is the homogenizer pump body main body, 2 is the plug, 3 is the medium inlet joint, 4 is the medium outlet joint, 5 is the inlet medium pipeline, 6 is the outlet medium pipeline, 7 is the vertical channel, 8 is the longitudinal channel, and 9 is the horizontal channel. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] The present invention will be further described below with reference to the drawings and specific embodiments.

[0018] Please refer to Att Figure 1 to Att Figure 3A homogenizer pump body comprises a homogenizer pump body main body 1, a medium inlet joint 3, a medium outlet joint 4, an inlet medium pipeline 5 and an outlet medium pipeline 6; a heat preservation medium circulation channel is formed inside the homogenizer pump body main body 1, and the heat preservation medium circulation channel is staggered with the material channel in the homogenizer pump body main body 1; the inlet of the heat preservation medium circulation channel is connected with one end of the inlet medium pipeline 5 through the medium inlet joint 3, the outlet of the heat preservation medium circulation channel is connected with one end of the outlet medium pipeline 6 through the medium outlet joint 4, and the other end of the inlet medium pipeline 5 and the other end of the outlet medium pipeline 6 are externally connected to the medium circulation equipment to form a heat preservation medium loop.

[0019] Under the condition of ensuring the structural strength of the homogenizer pump body 1, a heat preservation medium circulation channel is opened in the homogenizer pump body 1, and the medium circulation device inputs the heat preservation medium into the heat preservation medium circulation channel through the inlet medium pipeline 5 and the medium inlet joint 3. The heat preservation medium exchanges heat with the material in the material channel during the process of flowing through the heat preservation medium circulation channel, thereby keeping the material warm. After heat exchange, the heat preservation material in the heat preservation medium circulation channel flows out to the medium circulation device through the medium outlet joint 4 and the outlet medium pipeline 6.

[0020] Usually, when the material flows through the material channel, the temperature of the insulation medium can be lower than the temperature of the material due to friction, so that the material temperature is kept within the process requirements. The temperature of the insulation medium can be adaptively set according to the actual insulation requirements. The insulation medium is circulated and pumped in the insulation medium loop through the medium circulation equipment and maintained at the corresponding temperature to continuously provide insulation for the material.

[0021] Please see attached Figure 1 To Attachment Figure 3 The heat-insulating medium circulation channel includes a plurality of transverse channels 9 arranged along the transverse direction of the homogenizer pump body 1, a plurality of longitudinal channels 8 arranged along the longitudinal direction of the homogenizer pump body 1, and a plurality of vertical channels 7 arranged along the vertical direction of the homogenizer pump body 1. The transverse channels 9, the longitudinal channels 8, and the vertical channels 7 are crisscrossed in the homogenizer pump body 1 and connected to form a heat-insulating medium circulation channel.

[0022] The number and arrangement of the transverse channels 9, longitudinal channels 8 and vertical channels 7 can be adaptively adjusted according to the size of the homogenizer pump body 1 and the position of the material channel to ensure that the formed insulation medium flow channel can basically cover the entire homogenizer pump body 1, thereby providing a uniform insulation effect for the material in the material channel.

[0023] Preferably, six vertical channels 7 are spacedly opened at the lower part of the main body 1 of the homogenizer pump body, two horizontal channels 9 are respectively opened at the lower left side and the upper right side of the main body 1 of the homogenizer pump body, and two longitudinal channels 8 are opened at the front part of the main body 1 of the homogenizer pump body. Among them, the two longitudinal channels 8 penetrate through the main body 1 of the homogenizer pump body and communicate with the two horizontal channels 9 at the upper right side, and the two horizontal channels 9 at the lower left side and the upper right side are communicated through the six vertical channels 7, forming an overall communication and a heat preservation medium circulation channel that basically covers the entire interior of the main body 1 of the homogenizer pump body.

[0024] Please refer to Appendix Figure 1 to Appendix Figure 3 , the said horizontal channel 9 penetrates through the main body 1 of the homogenizer pump body horizontally, the longitudinal channel 8 penetrates through the main body 1 of the homogenizer pump body longitudinally, the vertical channel 7 penetrates through the main body 1 of the homogenizer pump body vertically, and the ports of the horizontal channel 9 and the vertical channel 7 penetrating through the main body 1 of the homogenizer pump body are closed by plugs 2.

[0025] The six vertical channels 7 penetrate downward through the bottom surface of the main body 1 of the homogenizer pump body, the two horizontal channels 9 at the lower left side penetrate through the left side surface of the main body 1 of the homogenizer pump body, the two horizontal channels 9 at the upper right side penetrate through the right side surface of the main body 1 of the homogenizer pump body, and the two longitudinal channels 8 penetrate through the front end surface of the main body 1 of the homogenizer pump body. The six vertical channels 7 and the four horizontal channels 9 are hermetically sealed by plugs 2 to prevent the heat preservation medium from leaking out.

[0026] Please refer to Appendix Figure 1 and Appendix Figure 2 , internal threads are formed on the inner wall of the ports of the main body 1 of the homogenizer pump body through which the several horizontal channels 9 and the several vertical channels 7 penetrate, and external threads are formed at one end of the plug 2, so that the plug 2 is screwed onto the main body 1 of the homogenizer pump body in a matching manner.

[0027] The plug 2 ensures reliable sealing of the several horizontal channels 9 and the several vertical channels 7 through the matching screwing and engagement of the internal and external threads, preventing the heat preservation medium from leaking out, and the screwing connection method makes disassembly, cleaning more convenient.

[0028] Please refer to Appendix Figure 3 , there are two longitudinal channels 8, and a medium inlet joint 3 and a medium outlet joint 4 are respectively installed on the ports of the main body 1 of the homogenizer pump body through which the two longitudinal channels 8 penetrate.

[0029] After the two longitudinal channels 8 penetrate through the front end surface of the main body 1 of the homogenizer pump body, they are connected to the inlet medium pipeline 5 through the medium inlet joint 3 and connected to the outlet medium pipeline 6 through the medium outlet joint 4, which is convenient for the input and return of the heat preservation medium.

[0030] The installation method and use method of the main body 1 of the homogenizer pump body of the present utility model are the same as those of the homogenizer pump body of the prior art, and will not be elaborated here.

[0031] Please refer to the attached Figure 1 to the attached Figure 3 To improve the heat preservation effect of the material flowing through the homogenizer pump body, a plurality of channels are drilled in the main body 1 of the homogenizer pump body in the transverse, longitudinal and vertical directions, namely the transverse channel 9, the longitudinal channel 8 and the vertical channel 7, and the plurality of channels communicate to form a heat preservation medium circulation channel. The heat preservation medium is input through the inlet medium pipeline 5 and the medium inlet joint 3 at the inlet of the heat preservation medium circulation channel. During the process of the heat preservation medium flowing through the heat preservation medium circulation channel, heat exchange and heat preservation are carried out on the material in the material channel, and then it flows out of the outlet of the heat preservation medium circulation channel and returns to the medium circulation equipment through the medium outlet joint 4 and the outlet medium pipeline 6 to form a heat preservation medium loop.

[0032] After the heat preservation medium returns to the medium circulation equipment, it is cooled or heated to the heat preservation temperature required by the process, and then the next cycle is carried out. The medium circulation equipment is used to control the circulating flow of the heat preservation medium in the heat preservation medium loop to achieve the continuous heat preservation effect on the material.

[0033] The above is only the preferred embodiment of the present invention and is not used to limit the protection scope of the present invention. Therefore, any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A homogenizer pump body, characterized in that: The invention comprises a homogenizer pump body (1), a medium inlet joint (3), a medium outlet joint (4), an inlet medium pipeline (5) and an outlet medium pipeline (6); a heat preservation medium circulation channel is formed inside the homogenizer pump body (1), and the heat preservation medium circulation channel is staggered with the material channel inside the homogenizer pump body (1); the inlet of the heat preservation medium circulation channel is connected to one end of the inlet medium pipeline (5) through the medium inlet joint (3), the outlet of the heat preservation medium circulation channel is connected to one end of the outlet medium pipeline (6) through the medium outlet joint (4), and the other end of the inlet medium pipeline (5) and the other end of the outlet medium pipeline (6) are externally connected to a medium circulation device to form a heat preservation medium loop.

2. The homogenizer pump body according to claim 1, characterized in that: The heat-insulating medium circulation channel comprises a plurality of transverse channels (9) arranged along the transverse direction of the homogenizer pump body (1), a plurality of longitudinal channels (8) arranged along the longitudinal direction of the homogenizer pump body (1), and a plurality of vertical channels (7) arranged along the vertical direction of the homogenizer pump body (1). The transverse channels (9), the longitudinal channels (8), and the vertical channels (7) are arranged in a crisscross manner in the homogenizer pump body (1) and are connected to form a heat-insulating medium circulation channel.

3. The homogenizer pump body according to claim 2, characterized in that: The transverse channel (9) penetrates the homogenizer pump body (1) in the transverse direction, the longitudinal channel (8) penetrates the homogenizer pump body (1) in the longitudinal direction, and the vertical channel (7) penetrates the homogenizer pump body (1) in the vertical direction. The ports through which the transverse channel (9) and the vertical channel (7) penetrate the homogenizer pump body (1) are closed by plugs (2).

4. The homogenizer pump body according to claim 3, characterized in that: The plurality of transverse channels (9) and the plurality of vertical channels (7) penetrate the homogenizer pump body (1) and form internal threads on the inner wall of the port. One end of the plug (2) forms an external thread so that the plug (2) can be screwed onto the homogenizer pump body (1) in a matching manner.

5. The homogenizer pump body according to claim 3, characterized in that: The longitudinal channels (8) are provided with two, and the ports of the two longitudinal channels (8) penetrating the homogenizer pump body (1) are respectively provided with a medium inlet joint (3) and a medium outlet joint (4).