Walnut shell filter material conveying device

By designing a walnut shell filter material conveying device, the problems of loss, pollution and manual handling of filter material conveying in oil field production are solved, and the automatic transportation and accurate delivery of filter material is realized, and the production efficiency and safety are improved.

CN120039488APending Publication Date: 2025-05-27PETROCHINA CO LTD
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Patent Information

Application Number
CN202311596658.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-11-27
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

During the oil field production process, the filter material transport of the walnut shell filtration device is lost and contaminated, resulting in the water, oil, machine and other impurities exceeding the standard after filtration, and the filter material needs to be manually transported, which has high labor intensity, low production efficiency, and poses safety hazards.

Method used

A walnut shell filter material conveying device is designed, including filter material import bin, filter material push component and filter material transportation component. The filter material push ladder transports the bagged filter material to the filter material import warehouse. The packaging rupture parts cut the packaging bag, the filter material enters the conveying pipeline, and the driving components drive the filter material to be transported to the filter material can port and delivered.

Benefits of technology

The automatic conveying and accurate delivery of filter materials is realized, the labor intensity of staff is reduced, production efficiency is improved, manpower investment is reduced, and safety hazards are avoided.

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Abstract

The invention provides a walnut shell filter material conveying device. The walnut shell filter material conveying device comprises a filter material inlet bin; one end of the filter material pushing part is connected with the inlet end of the filter material inlet bin, the filter material pushing part comprises a filter material pushing ladder and a packaging opening breaking part, the filter material pushing ladder is connected with the top end of the filter material inlet bin, and the packaging opening breaking part is arranged at the position, close to the filter material inlet bin, of the filter material pushing ladder; the filter material conveying component comprises a filter material conveying pipeline, a filter material conveying component and a first driving component, one end of the filter material conveying pipeline is communicated with the outlet end of the filter material inlet bin, the filter material conveying component is arranged in the filter material conveying pipeline, the first driving component is connected with the filter material conveying component, and the other end of the filter material conveying pipeline is provided with a filter material discharging component; and the filter material discharging part corresponds to the filter material tank. The walnut shell filter material conveying device can automatically convey walnut shell filter materials and can align at the filter material tank opening to feed the filter materials, the working intensity of workers is reduced, and the working efficiency is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of oil extraction, and more particularly, to a walnut shell filter media conveying device. Background Art

[0002] During the oilfield production process, walnut shell filtration devices are commonly used for filtering produced water in oilfields. The internal filtration material is granular walnut shells made in accordance with certain specifications. According to production requirements, the walnut shells are backwashed daily, resulting in the loss and pollution of the walnut shell filter media. As a result, the oil, machine and other impurities in the filtered water exceed the standards. To ensure the quality of the filtered produced water, it is necessary to regularly supplement the filtration material. The added filter media is calculated by the ton. The filter media is stored in fiber woven bags and needs to be manually carried and pushed to the designated location for standby by a manual tricycle.

[0003] The filter media tank opening is relatively high from the ground and cannot be directly lifted and added (the weight of a single bag is 40 kg). Only the filter media can be stacked into a temporary lifting platform, and 4-5 workers are required to cooperate simultaneously for lifting, disassembly, and unloading operations. A paper cutter is used to cut the material belt and pour it into the filter media tank. The labor intensity of workers is high, the production efficiency is low, and there are safety hazards. Summary of the Invention

[0004] The present invention provides a walnut shell filter media conveying device, which can automatically transport the walnut shell filter media and can align with the filter media tank opening to put the filter media, reducing the working intensity of the staff and improving the working efficiency.

[0005] In view of this, the present invention proposes a walnut shell filter media conveying device, including: a filter media inlet bin, the top and bottom of the filter media inlet bin are respectively an inlet end and an outlet end; a filter media pushing component, one end of which is connected to the top of the filter media inlet bin. The filter media pushing component includes a filter media pushing ladder and a packaging breaking component. The filter media pushing ladder is connected to the top of the filter media inlet bin, and the packaging breaking component is arranged at a position where the filter media pushing ladder is close to the filter media inlet bin; a filter media transporting component, including a filter media conveying pipeline, a filter media conveying component and a first driving component. One end of the filter media conveying pipeline is communicated with the outlet end of the filter media inlet bin. The filter media conveying component is arranged inside the filter media conveying pipeline. The first driving component is connected to the filter media conveying component. The other end of the filter media conveying pipeline is provided with a filter media discharging component, and the filter media discharging component corresponds to the filter media tank.

[0006] In some alternative embodiments, a filter media emptying port is arranged at a position where the filter media conveying pipeline is close to the filter media inlet bin, and the filter media inlet bin further includes a blocking component, and the blocking component can buckle the filter media emptying port.

[0007] In some alternative embodiments, the blocking member includes a baffle and a handle. The baffle is disposed inside the filter media conveying pipeline. The filter media conveying pipeline is provided with a sliding groove, and the handle penetrates through the sliding groove and is connected to the baffle. Or,

[0008] The baffle is disposed outside the filter media conveying pipeline. One side of the baffle is hingedly connected to one side of the filter media discharge opening surrounded by the filter media conveying pipeline, and the other side of the baffle is snap-connected to the other side of the filter media discharge opening surrounded by the filter media conveying pipeline.

[0009] In some alternative embodiments, it further includes a housing body. The filter media inlet bin and the filter media pushing member are disposed in the housing body, and rolling members are provided at the bottom of the housing body.

[0010] In some alternative embodiments, the filter media pushing ladder includes a ladder frame, a plurality of rolling members, a conveying member, and a second driving member. The second driving member is disposed on the ladder frame. The plurality of rolling members are arranged in an array in the length direction of the ladder frame. The conveying member connects the plurality of rolling members, and the second driving member is connected to one of the rolling members.

[0011] In some alternative embodiments, the rolling member includes a rolling shaft, a roller, a bearing, and a transmission gear. The roller is sleeved on the rolling shaft. The rolling shaft is connected to the ladder frame through the bearing. One end of the rolling shaft is provided with the transmission gear, and the transmission gear is connected to the conveying member.

[0012] In some alternative embodiments, the rolling shaft and the gear are connected by a key.

[0013] In some alternative embodiments, the packaging breaking member is a blade.

[0014] In some alternative embodiments, the filter media conveying member includes a rotating shaft and a spiral blade. The spiral blade spirals around the axial direction of the rotating shaft.

[0015] In some alternative embodiments, the first driving member includes a first motor and a first reducer. The first reducer connects the first motor and the rotating shaft.

[0016] The present invention has the following technical effects compared with the prior art:

[0017] The present invention provides a walnut shell filter media conveying device. The walnut shell filter media conveying device includes a filter media inlet bin, a filter media pushing component, and a filter media transporting component. The top and bottom ends of the filter media inlet bin are an inlet end and an outlet end respectively. One end of the filter media pushing component is connected to the top end of the filter media inlet bin. The filter media pushing component includes a filter media pushing ladder and a packaging breaking component. The filter media pushing ladder is connected to the top end of the filter media inlet bin, and the packaging breaking component is arranged at a position on the filter media pushing ladder close to the filter media inlet bin. The filter media transporting component includes a filter media conveying pipeline, a filter media conveying component, and a first driving component. One end of the filter media conveying pipeline is communicated with the outlet end of the filter media inlet bin. The filter media conveying component is arranged inside the filter media conveying pipeline, and the first driving component is connected to the filter media conveying component. The other end of the filter media conveying pipeline is provided with a filter media discharging component, and the filter media discharging component corresponds to a filter media tank. During use, the filter media pushing ladder can transport the bagged filter media from the ground to the inlet end of the filter media inlet bin. The packaging breaking component is arranged at a position on the filter media pushing ladder close to the filter media inlet bin. When the bagged filter media passes through the packaging breaking component, the packaging breaking component will cut the packaging bag, and the filter media leaks from the break of the packaging bag to the inlet end of the filter media inlet bin. Then, the filter media is output from the outlet end of the filter media inlet bin, enters the filter media conveying pipeline, the first driving component drives the filter media conveying component to rotate, the filter media conveying component drives the filter media to move to the filter media discharging component, and the filter media discharging component aligns with the filter media tank opening to discharge the filter media. During this period, no staff is required to carry it, saving manpower and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The above and / or additional aspects and advantages of the present invention will become obvious and easy to understand from the following description of the embodiments in conjunction with the accompanying drawings, in which:

[0019] Figure 1 is a schematic structural diagram of the walnut shell filter media conveying device provided by an embodiment of the present invention;

[0020] Figure 2 is Figure 1 a schematic structural diagram of the filter media pushing component of the provided embodiment;

[0021] Figure 3 is Figure 1 a schematic structural diagram of the filter media transporting component of the provided embodiment;

[0022] Figure 4 is Figure 1 a schematic structural diagram of the filter media conveying pipeline of the provided embodiment;

[0023] Figure 5 is Figure 1 a schematic structural diagram of the blocking component of the provided embodiment.

[0024] Wherein, Figures 1 to 5 the corresponding relationship between the reference numerals in the drawings and the component names is:

[0025] 1 - Filter media inlet bin; 11 - Filter media vent; 12 - Blocking component; 13 - Sliding groove; 14 - Control switch; 2 - Filter media pushing component; 21 - Filter media pushing ladder; 211 - Ladder frame; 212 - Rolling component; 22 - Packaging break component; 3 - Filter media transportation component; 31 - Filter media conveying pipeline; 32 - Filter media conveying component; 321 - Rotating shaft; 322 - Spiral blade; 33 - First driving component; 331 - First motor; 332 - First reducer; 34 - Filter media discharging component; 4 - Shell body; 5 - Rolling wheel. Detailed implementation mode

[0026] In order to more clearly understand the above - mentioned objects, features and advantages of the present invention, the present invention will be further described in detail below with reference to the drawings and specific implementation modes. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.

[0027] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the protection scope of the present invention is not limited by the specific embodiments disclosed below.

[0028] During the oil - field production process, walnut shell filtration devices are generally used for filtering produced water in oil fields. The internal filtration raw material is granular walnut shells made according to certain specifications. According to production requirements, the walnut shells are back - washed daily, resulting in the loss and pollution of the walnut shell filter media. As a result, the oil, machine and other impurities in the filtered water exceed the standards. To ensure the filtration quality of the produced water, it is necessary to regularly supplement the filtration raw material. The added weight of the filter media is calculated in tons. The filter media is stored in fiber woven bags and needs to be manually carried and pushed to the designated position for standby by a manual tricycle.

[0029] The filter media tank opening is relatively high from the ground and cannot be directly lifted and added (the weight of a single bag is 40 kg). Only the filter media can be stacked into a temporary lifting platform, and 4 - 5 workers need to cooperate simultaneously for lifting, disassembly, unloading and placing operations; use a paper cutter to cut the material belt and pour it into the filter media tank. The labor intensity of workers is high, the production efficiency is low, and there are safety hazards.

[0030] The present invention provides a walnut shell filter media conveying device, which can automatically transport the walnut shell filter media and can align with the filter media tank opening to put the filter media, reducing the work intensity of workers and improving work efficiency.

[0031] The present invention provides a conveying device for walnut shell filter media. The conveying device for walnut shell filter media includes: a filter media inlet bin 1, the top end and the bottom end of the filter media inlet bin 1 being an inlet end and an outlet end respectively; a filter media pushing component 2, one end of which is connected to the top end of the filter media inlet bin 1. The filter media pushing component 2 includes a filter media pushing ladder 21 and a packaging breaking component 22. The filter media pushing ladder 21 is connected to the top end of the filter media inlet bin 1, and the packaging breaking component 22 is arranged at a position on the filter media pushing ladder 21 close to the filter media inlet bin 1; a filter media transporting component 3, including a filter media conveying pipeline 31, a filter media conveying component 32 and a first driving component 33. One end of the filter media conveying pipeline 31 is communicated with the outlet end of the filter media inlet bin 1. The filter media conveying component 32 is arranged inside the filter media conveying pipeline 31, and the first driving component 33 is connected to the filter media conveying component 32. A filter media discharging component 34 is arranged at the other end of the filter media conveying pipeline 31, and the filter media discharging component 34 corresponds to a filter media tank.

[0032] Specifically, the conveying device for walnut shell filter media includes a filter media inlet bin 1, a filter media pushing component 2 and a filter media transporting component 3. The top end and the bottom end of the filter media inlet bin 1 are an inlet end and an outlet end respectively. One end of the filter media pushing component 2 is connected to the top end of the filter media inlet bin 1. The filter media pushing component 2 includes a filter media pushing ladder 21 and a packaging breaking component 22. The filter media pushing ladder 21 is connected to the top end of the filter media inlet bin 1, and the packaging breaking component 22 is arranged at a position on the filter media pushing ladder 21 close to the filter media inlet bin 1. The filter media transporting component 3 includes a filter media conveying pipeline 31, a filter media conveying component 32 and a first driving component 33. One end of the filter media conveying pipeline 31 is communicated with the outlet end of the filter media inlet bin 1. The filter media conveying component 32 is arranged inside the filter media conveying pipeline 31, and the first driving component 33 is connected to the filter media conveying component 32. A filter media discharging component 34 is arranged at the other end of the filter media conveying pipeline 31, and the filter media discharging component 34 corresponds to a filter media tank. During use, the filter media pushing ladder 21 can transport the bagged filter media from the ground to the inlet end of the filter media inlet bin 1. The packaging breaking component 22 is arranged at a position on the filter media pushing ladder 21 close to the filter media inlet bin 1. When the bagged filter media passes through the packaging breaking component 22, the packaging breaking component 22 will cut open the packaging bag, and the filter media leaks from the break of the packaging bag to the inlet end of the filter media inlet bin 1. Then, the filter media is output from the outlet end of the filter media inlet bin 1. The filter media enters the filter media conveying pipeline 31. The first driving component 33 drives the filter media conveying component 32 to rotate. The filter media conveying component 32 drives the filter media to move to the filter media discharging component 34. The filter media discharging component 34 aligns with the filter media tank opening to discharge the filter media. During this period, there is no need for staff to carry, saving manpower and improving work efficiency.

[0033] The walnut shell filter media conveying device mentioned in the present invention enables the walnut shell filter media to quickly slide from the ground to the inlet end of the filter media inlet bin 1 through the filter media pushing ladder 21. Due to inertia and the weight of the filter media itself, after the bagged walnut shell filter media is broken through the packaging breakage component 22, it is quickly unloaded and enters the filter media inlet bin 1. Compared with traditional manual handling, it can achieve 5 bags per minute, with a rate increase of 300%. At the same time, the filter media pushing ladder 21 can be placed in any direction and adjusted according to the placement position of the walnut shell filter media.

[0034] Further, the filter media inlet bin 1 includes a top end and a bottom end arranged oppositely in its height direction. The top end of the filter media inlet bin 1 is provided with an inlet end, and the bottom end of the filter media inlet bin 1 is provided with an outlet end. The inlet end and the outlet end of the filter media inlet bin 1 are communicated. The inlet end is used for putting in the filter media, and the outlet end is used for outputting the filter media. The opening of the inlet end of the filter media inlet bin 1 is larger than the opening of the outlet end, which is convenient for the bagged filter media to be put into the filter media inlet bin 1 after being broken. The filter media inlet bin 1 is composed of two parts. One part is a polygonal column, and the other part is a polygonal frustum. One end of the polygonal column is connected to one end of the polygonal frustum to form the filter media inlet bin 1. The filter media inlet bin 1 is provided with a control switch 14. The control switch 14 is a start switch, and the control switch 14 includes an opening and closing switch for the first motor 331 and an opening and closing switch for the second motor.

[0035] In some alternative embodiments, a filter media emptying port 11 is provided at a position where the filter media conveying pipeline 31 is close to the filter media inlet bin 1. The filter media inlet bin 1 further includes a blocking component 12, and the blocking component 12 can buckle the filter media emptying port 11.

[0036] Specifically, a filter media emptying port 11 is provided at a position where the filter media conveying pipeline 31 is close to the filter media inlet bin 1, which can be emptied in time after the addition of the walnut shell filter media to prevent the filter media from caking and blocking the inlet end of the filter media conveying pipeline 31. When the filter media becomes caked and blocked, the blocking component 12 can be moved to expose the filter media emptying port 11 for timely emptying of the filter media. When the filter media can be used normally, the blocking component 12 buckles on the filter media emptying port 11 without affecting the normal use of the filter media conveying pipeline 31.

[0037] In some alternative embodiments, the blocking component 12 includes a baffle and a handle. The baffle is arranged inside the filter media conveying pipeline 31, and the filter media conveying pipeline 31 is provided with a sliding groove 13. The handle passes through the sliding groove 13 and is connected to the baffle; alternatively, the baffle is arranged outside the filter media conveying pipeline 31. One side of the baffle is hinge-connected to one side of the filter media conveying pipeline 31 that encloses the filter media emptying port 11, and the other side of the baffle is snap-connected to the other side of the filter media conveying pipeline 31 that encloses the filter media emptying port 11.

[0038] Specifically, the baffle is an arc-shaped plate. The handle is in an "L" shape. The sliding groove 13 is used to limit the blocking component 12. The handle passes through the sliding groove 13 and is connected to the baffle. During use, the baffle is moved by moving the handle, thereby controlling whether the filter media discharge port 11 is exposed.

[0039] In some alternative embodiments, the walnut shell filter media conveying device further includes a shell body 4. The filter media inlet bin 1 and a part of the filter media transportation components 3 are arranged in the shell body 4, and rolling components 212 are arranged at the bottom of the shell body 4.

[0040] Specifically, the universal wheels installed at the bottom of the shell body 4 can move continuously with the addition position, and can move over long distances without being restricted by space and site.

[0041] In some alternative embodiments, the filter media pushing ladder 21 includes a ladder frame 211, a plurality of rolling components 212, a conveying component, and a second driving component. The second driving component is arranged on the ladder frame 211. The plurality of rolling components 212 are arranged in an array along the length direction of the ladder frame 211. The conveying component is connected to the plurality of rolling components 212, and the second driving component is connected to one of the rolling components 212.

[0042] Specifically, both ends of the rolling component 212 penetrate through the ladder frame 211 respectively, and the end of the rolling component 212 is connected to the ladder frame 211 through a bearing, so that the rolling component 212 can rotate around itself. The second driving component is arranged on the ladder frame 211. The second driving component can drive the rolling component 212 to rotate. During the rotation of the rolling component 212, the conveying component can be driven to move. Since the other rolling components 212 are respectively connected to the conveying component, the conveying component can drive the other rolling components 212 to rotate around itself. The bagged filter media is placed on the plurality of rolling components 212, and the rolling components 212 can drive the bagged filter media to move. When the bagged filter media passes through the packaging breakage component 22, the packaging breakage component 22 will cut the packaging bag, and the filter media leaks from the break of the packaging bag to the inlet end of the filter media inlet bin 1. After that, the filter media is output from the outlet end of the filter media inlet bin 1. The filter media enters the filter media conveying pipeline 31. The first driving component 33 drives the filter media conveying component 32 to rotate, and the filter media conveying component 32 drives the filter media to move to the filter media discharging component 34. The filter media discharging component 34 aligns with the filter media tank opening to discharge the filter media. During this period, no staff is required to carry it, saving manpower and improving work efficiency.

[0043] Furthermore, the conveying component is a transmission chain.

[0044] In some alternative embodiments, the rolling component 212 includes a rolling shaft, a roller, a bearing, and a transmission gear. The roller is sleeved on the rolling shaft. The rolling shaft is connected to the ladder frame 211 through a bearing. A transmission gear is arranged at one end of the rolling shaft, and the transmission gear is connected to the conveying component.

[0045] Specifically, the roller is sleeved on the rolling shaft. Optionally, the roller and the rolling shaft are connected by a key, and the roller and the rolling shaft cannot displace. Both ends of the rolling shaft are respectively connected to the ladder frame 211 through bearings. A transmission gear is arranged at one end of the rolling shaft. The rolling member 212 meshes with the transmission chain through the transmission gear. The second driving component includes a second motor and a second speed reducer. The output shaft of the second motor is connected to the second speed reducer. The second speed reducer is connected to the rolling shaft of one of the rolling members 212. The second motor can drive the rolling member 212 to rotate. During the rotation of the rolling member 212, the transmission gear is driven to rotate. During the rotation of the transmission gear, it meshes with the transmission chain, thereby driving the transmission chain to rotate. The transmission chain drives the other rolling members 212 to rotate, thus realizing the rotation of the rolling members 212.

[0046] During use, the filter media pushing ladder 21 can transport the bagged filter media from the ground to the inlet end of the filter media inlet bin 1. The packaging breakage component 22 is arranged at a position of the filter media pushing ladder 21 close to the filter media inlet bin 1. When the bagged filter media passes through the packaging breakage component 22, the packaging breakage component 22 will cut open the packaging bag, and the filter media leaks from the break of the packaging bag to the inlet end of the filter media inlet bin 1. After that, the filter media is output from the outlet end of the filter media inlet bin 1. The filter media enters the filter media conveying pipeline 31. The first driving component 33 drives the filter media conveying component 32 to rotate. The filter media conveying component 32 drives the filter media to move to the filter media discharging component 34. The filter media discharging component 34 aligns with the filter media tank opening to discharge the filter media. During this period, no staff is required to carry it, saving manpower and improving work efficiency.

[0047] In some alternative embodiments, the rolling shaft and the gear are connected by a key.

[0048] Specifically, the rolling shaft and the gear are connected by a key, with a simple structure and high connection strength.

[0049] In some alternative embodiments, the packaging breakage component 22 is a blade.

[0050] Specifically, the bagged filter media is placed on the ladder frame 211. The rolling member 212 can drive the bagged filter media to move. When the bagged filter media passes through the packaging breakage component 22, the packaging breakage component 22 will cut open the packaging bag, and the filter media leaks from the break of the packaging bag to the inlet end of the filter media inlet bin 1. After that, the filter media is output from the outlet end of the filter media inlet bin 1. The filter media enters the filter media conveying pipeline 31. The first driving component 33 drives the filter media conveying component 32 to rotate. The filter media conveying component 32 drives the filter media to move to the filter media discharging component 34. The filter media discharging component 34 aligns with the filter media tank opening to discharge the filter media. During this period, no staff is required to carry it, saving manpower and improving work efficiency.

[0051] In some alternative embodiments, the filter media conveying member 32 includes a rotating shaft 321 and a spiral blade 322, and the spiral blade 322 spirals in the axial direction of the rotating shaft 321.

[0052] Specifically, the filter media transportation member 3 includes a filter media conveying pipe 31, a filter media conveying member 32, and a first driving member 33. One end of the filter media conveying pipe 31 communicates with the outlet end of the filter media inlet bin 1. The filter media conveying member 32 is disposed inside the filter media conveying pipe 31. The first driving member 33 is connected to the rotating shaft 321 through a first speed reducer 332. During rotation, the rotating shaft 321 can drive the spiral blade 322 to rotate, so as to convey the filter media at one end of the filter media conveying pipe 31 to the other end, and discharge it to the corresponding filter media tank through the filter media discharging member 34.

[0053] During use, the filter media pushing ladder 21 can transport the bagged filter media from the ground to the inlet end of the filter media inlet bin 1. The packaging breakage member 22 is disposed at a position where the filter media pushing ladder 21 is close to the filter media inlet bin 1. When the bagged filter media passes through the packaging breakage member 22, the packaging breakage member 22 will cut open the packaging bag, and the filter media leaks from the break of the packaging bag to the inlet end of the filter media inlet bin 1. Then, the filter media is output from the outlet end of the filter media inlet bin 1. The filter media enters the filter media conveying pipe 31. The first driving member 33 drives the filter media conveying member 32 to rotate, and the filter media conveying member 32 drives the filter media to move to the filter media discharging member 34. The filter media discharging member 34 aligns with the filter media tank opening to discharge the filter media. During this period, there is no need for staff to carry, saving labor and improving work efficiency.

[0054] In some alternative embodiments, the first driving member 33 includes a first motor 331 and a first speed reducer 332, and the first speed reducer 332 connects the first motor 331 and the rotating shaft 321.

[0055] Specifically, the walnut shell filter media conveying device includes a filter media inlet bin 1, a filter media pushing component 2, and a filter media transporting component 3. The top and bottom ends of the filter media inlet bin 1 are an inlet end and an outlet end respectively. One end of the filter media pushing component 2 is connected to the top end of the filter media inlet bin 1. The filter media pushing component 2 includes a filter media pushing ladder 21 and a packaging breaking component 22. The filter media pushing ladder 21 is connected to the top end of the filter media inlet bin 1. The packaging breaking component 22 is arranged at a position on the filter media pushing ladder 21 close to the filter media inlet bin 1. The filter media transporting component 3 includes a filter media conveying pipeline 31, a filter media conveying component 32, and a first driving component 33. One end of the filter media conveying pipeline 31 is communicated with the outlet end of the filter media inlet bin 1. The filter media conveying component 32 is arranged inside the filter media conveying pipeline 31. The first driving component 33 is connected to the filter media conveying component 32. The other end of the filter media conveying pipeline 31 is provided with a filter media discharging component 34, and the filter media discharging component 34 corresponds to the filter media tank. During use, the filter media pushing ladder 21 can transport the bagged filter media from the ground to the inlet end of the filter media inlet bin 1. The packaging breaking component 22 is arranged at a position on the filter media pushing ladder 21 close to the filter media inlet bin 1. When the bagged filter media passes through the packaging breaking component 22, the packaging breaking component 22 will cut open the packaging bag, and the filter media leaks from the break of the packaging bag to the inlet end of the filter media inlet bin 1. After that, the filter media is output from the outlet end of the filter media inlet bin 1, and the filter media enters the filter media conveying pipeline 31. The first driving component 33 drives the rotating shaft 321 to rotate through the first speed reducer 332, and the rotating shaft 321 drives the spiral blade 322 to rotate, so as to move the filter media from the bottom of the filter media conveying pipeline 31 to the filter media discharging component 34. The filter media discharging component 34 aligns with the filter media tank opening to discharge the filter media. During this period, it does not require manual handling by staff, saving manpower and improving work efficiency.

[0056] In the present invention, the term "a plurality of" means at least two or more than two, unless otherwise clearly defined. Terms such as "installation", "connection", "connection", "fixation" and the like should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "connection" can be a direct connection or an indirect connection through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0057] In the description of this specification, the descriptions of terms such as "one embodiment", "some embodiments", "specific embodiments" and the like mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0058] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A walnut shell filter media conveying device, characterized in that, it includes: A filter media inlet bin (1), the top and bottom of the filter media inlet bin (1) are respectively an inlet end and an outlet end; A filter media pushing component (2), one end of which is connected to the top of the filter media inlet bin (1), the filter media pushing component (2) includes a filter media pushing ladder (21) and a packaging breaking component (22), the filter media pushing ladder (21) is connected to the top of the filter media inlet bin (1), and the packaging breaking component (22) is arranged at a position where the filter media pushing ladder (21) is close to the filter media inlet bin (1); A filter media transporting component (3), including a filter media conveying pipeline (31), a filter media conveying component (32) and a first driving component (33), one end of the filter media conveying pipeline (31) is communicated with the outlet end of the filter media inlet bin (1), the filter media conveying component (32) is arranged inside the filter media conveying pipeline (31), the first driving component (33) is connected to the filter media conveying component (32), the other end of the filter media conveying pipeline (31) is provided with a filter media discharging component (34), and the filter media discharging component (34) corresponds to a filter media tank.

2. The walnut shell filter media conveying device according to claim 1, characterized in that, A filter media vent (11) is arranged at a position where the filter media conveying pipeline (31) is close to the filter media inlet bin (1), and the filter media inlet bin (1) further includes a blocking component (12), and the blocking component (12) can fasten the filter media vent (11).

3. The walnut shell filter media conveying device according to claim 2, characterized in that, The blocking component (12) includes a baffle and a handle, the baffle is arranged inside the filter media conveying pipeline (31), the filter media conveying pipeline (31) is provided with a sliding groove (13), and the handle penetrates through the sliding groove (13) and is connected to the baffle; or, The baffle is arranged outside the filter media conveying pipeline (31), one side of the baffle is hingedly connected to one side of the filter media conveying pipeline (31) surrounding the filter media vent (11), and the other side of the baffle is snap-connected to the other side of the filter media conveying pipeline (31) surrounding the filter media vent (11).

4. The walnut shell filter media conveying device according to claim 1, characterized in that, It further includes a shell body (4), the filter media inlet bin (1) and part of the filter media transporting component (3) are arranged in the shell body (4), and rolling wheels (5) are arranged at the bottom of the shell body (4).

5. The walnut shell filter media conveying device according to claim 1, characterized in that, The filter media pushing ladder (21) includes a ladder frame (211), a plurality of rolling components (212), a conveying component and a second driving component, the second driving component is arranged on the ladder frame (211), a plurality of the rolling components (212) are arranged in an array in the length direction of the ladder frame (211), the conveying component connects the plurality of rolling components (212), and the second driving component is connected to one of the rolling components (212).

6. The walnut shell filter media conveying device according to claim 5, characterized in that, the rolling member (212) includes a rolling shaft, rollers, bearings and a transmission gear. The rollers are sleeved on the rolling shaft. The rolling shaft is connected to the ladder frame (211) through the bearings. A transmission gear is arranged at one end of the rolling shaft, and the transmission gear is connected to the conveying member.

7. The walnut shell filter media conveying device according to claim 6, characterized in that, the rolling shaft and the gear are connected by a key.

8. The walnut shell filter media conveying device according to claim 1, characterized in that, the packaging breakage member (22) is a blade.

9. The walnut shell filter media conveying device according to claim 1, characterized in that, the filter media conveying member (32) includes a rotating shaft (321) and a spiral blade (322), and the spiral blade (322) spirals in the axial direction of the rotating shaft (321).

10. The walnut shell filter media conveying device according to claim 9, characterized in that, the first driving member (33) includes a first motor (331) and a first speed reducer (332), and the first speed reducer (332) connects the first motor (331) and the rotating shaft (321).