A packing device for kerosene systems
By designing a packing device for kerosene systems, the problem of time-consuming and labor-intensive manual feeding of coal-fired boilers was solved, realizing automated fuel addition and improving operational efficiency and safety.
Patent Information
- Application Number
- CN202520251982.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2035-02-18
AI Technical Summary
The current method of feeding coal-fired furnaces requires real-time manual observation, which is time-consuming, labor-intensive, and prone to oversights that could lead to malfunctions.
Design a filling device for a kerosene system, including a furnace shell, a flip-open front door, a positioning bracket, a drive unit, and a conveying assembly. Through the cooperation of the front door with the guide and feed inclined shell, automated filling is achieved. Combined with the height adjustment of the drive unit and the conveying assembly, fuel is stably fed into the furnace shell.
It achieves automated fuel addition, reduces manual operation, improves filling efficiency and safety, and avoids processing problems caused by human negligence.
Smart Images

Figure CN223610157U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a filling device technical field, especially in kerosene system filling device. BACKGROUND
[0002] The hot kerosene system is a kind of through hot coal stove heating heat transfer oil, and the circulation of heat transfer oil heating system is realized by heat transfer circulating pump, and the heated high-temperature heat transfer oil is heated in user heat exchange equipment with heat working medium (for example, crude oil) to realize the heating of heat working medium, and the heat transfer oil after heat exchange is returned to hot coal stove to be heated again, to realize continuous heating of heat transfer oil, and hot coal stove as important component in system, needs to be filled in real time to ensure combustion effect.
[0003] For the related technology in the above, it is found that the existing hot coal stove needs artificial real-time observation to fill when filling, not only time-consuming and laborious operation, but also prone to hot coal stove unable to normal processing due to personnel negligence. UTILITY MODEL CONTENT
[0004] The utility model solves the problem in the related art, and provides a filling device for kerosene system.
[0005] To solve the above technical problems, the utility model is realized by the following technical schemes:
[0006] A kind of filling device for kerosene system, including furnace shell, the furnace shell includes main shell body and the front door that can be reversed and opened, the front door installation main shell body front end surface, the main shell body one side is equipped with positioning bracket, the positioning bracket is slidably connected with main shell body, and drive member for adjusting the height of positioning bracket is also installed on furnace shell, the upper end surface of positioning bracket is fixedly installed with filling shell, the filling shell is equipped with material conveying assembly, and filling shell side is equipped with discharge port matched with front door.
[0007] As preferred scheme, the main shell body outer side is provided with the limiting slide rail for the sliding installation of positioning bracket, and four corners of the lower end surface of main shell body are equipped with moving wheel group, and the limiting slide rail and moving wheel group are fixedly connected with main shell body.
[0008] As preferred scheme, the positioning bracket includes frame plate and vertical threaded sleeve, the frame plate is slidably installed on limiting slide rail, and the vertical threaded sleeve is fixedly installed on the lower end surface of frame plate.
[0009] As preferred scheme, the drive member includes driving motor and threaded rod matched with vertical threaded sleeve, the driving motor is fixedly installed on the upper end surface of main shell body, the threaded rod is rotatably installed on the outer side of main shell body, and the head of threaded rod is connected with driving motor.
[0010] As a preferred scheme, the filler shell comprises a protection shell and a discharge inclined shell, the discharge inclined shell is installed at the front end surface of the protection shell, and the discharge inclined shell is integrally formed with the protection shell.
[0011] As a preferred scheme, the outer side surface of the front door is installed with a flow guide shell corresponding to the discharge inclined shell, and the inner side surface of the front door is installed with an inlet inclined shell connected with the flow guide shell, and the flow guide shell and the inlet inclined shell are fixedly connected with the front door.
[0012] As a preferred scheme, the material conveying assembly comprises a frame, a first belt roller, a second belt roller and a transmission belt, the frame comprises a middle plate and two groups of side plates, the two groups of side plates are fixedly installed at the two sides of the middle plate, the first belt roller and the second belt roller are rotatably installed between the two groups of side plates, and the two ends of the transmission belt are sleeved on the first belt roller and the second belt roller respectively, and the outer side surface of the protection shell is fixedly installed with a motor set for driving the first belt roller to rotate.
[0013] Compared with the prior art, the application has the beneficial effects that: the front door is arranged on the furnace shell, the flow guide shell and the inlet inclined shell are arranged on the front door, so that the fuel can be stably fed into the furnace shell in cooperation with the filler shell during use, the automatic filling is ensured by the arrangement of the filler shell and the material conveying assembly, the use is more convenient, and the filler shell and the material conveying assembly can be adjusted in height by the arrangement of the driving member, so that the feeding is more convenient during use, and the application has the advantages of easy and convenient automatic filling. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is the overall structure of the utility model;
[0015] Figure 2 is Figure 1 the front view of the device shown;
[0016] Figure 3 is Figure 1 the left view of the device shown;
[0017] Figure 4 is Figure 1 the right view of the device shown;
[0018] Figure 5 is the three-dimensional view of the material conveying assembly in the embodiment of the utility model;
[0019] Figure 6 is the exploded structural schematic view of the material conveying assembly in the embodiment of the utility model.
[0020] In the figure: 1, furnace shell; 11, main shell; 111, limit slide rail; 112, moving wheel set; 12, front door; 121, flow guide shell; 122, feeding inclined shell; 2, positioning bracket; 21, frame plate; 22, vertical threaded sleeve; 3, driving piece; 31, driving motor; 32, threaded rod; 4, filler shell; 40, discharge port; 41, protective shell; 42, discharging inclined shell; 5, material conveying assembly; 51, frame; 511, middle plate; 512, side plate; 52, first belt roller; 53, second belt roller; 54, transmission belt; 55, motor set. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. The description of the at least one exemplary embodiment is actually only illustrative, but not as any limitation on the present application and its application or use. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0022] It should be noted that the terms used herein are only intended to describe specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form, unless the context clearly indicates otherwise, and it should also be understood that when the terms "comprise" and / or "include" are used in the specification, there is a reference to the presence of a feature, step, operation, device, component and / or combinations thereof.
[0023] Unless specifically stated otherwise, the relative arrangement of components and steps, numerical expressions, and numerical values set forth in the various embodiments described herein are not limiting. Also, it should be understood that the dimensions of the various parts shown in the drawings are not necessarily to scale. Techniques, methods, and devices known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered as part of the description of the present application. In all examples shown and discussed herein, any specific value should be interpreted as merely an example, and not as a limitation. Thus, other examples of the exemplary embodiments can have different values. It should be noted that like reference numerals and letters refer to like items in the following drawings, and thus, once an item is defined in one drawing, it need not be discussed further in subsequent drawings.
[0024] In the description of the utility model, need understanding is, the orientation word such as " before, after, top, bottom, left, right " " horizontal, vertical, perpendicular, horizontal " and " top, bottom " and so on indicated orientation or positional relationship usually is based on the orientation or positional relationship shown in drawing, just is for the convenience of describing the utility model and simplifying description, under the condition without making opposite statement, these orientation words do not indicate and suggest the device or element indicated must have specific orientation or with specific orientation structure and operation, therefore can not be understood as the restriction of the protection scope of the utility model;The orientation word " inside, outside " refers to the inside and outside relative to the contour of each component.
[0025] For the convenience of description, spatial relative terms can be used herein, such as "over", "above", "upper surface", "upper" and the like, to describe the spatial position relationship of one device or feature with other devices or features as shown in the figure. It should be understood that the spatial relative terms are intended to include different orientations in use or operation in addition to the orientation of the device described in the figure. For example, if the device in the drawing is inverted, the device described as "above" or "over" other devices or structures will be positioned "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below". The device can also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein are interpreted accordingly.
[0026] In addition, it should be noted that the use of "first", "second" and the like to limit parts is only for the convenience of distinguishing the corresponding parts, and the above words have no special meaning unless otherwise stated, and therefore cannot be understood as the restriction of the protection scope of the utility model.
[0027] Referring to Figure 1 , Figure 2 and Figure 3As shown, a kind of kerosene system filler device, including furnace shell 1, furnace shell 1 includes main shell 11 and the front door 12 of reversible opening, front door 12 is installed the front end surface of main shell 11, the side of main shell 11 is equipped with positioning bracket 2, positioning bracket 2 is connected with the longitudinal sliding of main shell 11, and drive piece 3 for adjusting the height of positioning bracket 2 is also installed on furnace shell 1, the upper end surface of positioning bracket 2 is fixedly installed with filler shell 4, filler shell 4 is equipped with feed assembly 5, and filler shell 4 side is equipped with the discharge port 40 matched with front door 12. By the design of furnace shell 1 into the structure of main shell 11 and front door 12 cooperation, easy to use when can be through front door 12 to guarantee to fill fuel use, and by the side of main shell 11 installation can be adjusted the positioning bracket 2 of lifting, it is convenient to use when can be through positioning bracket 2 to fixedly install filler shell 4, so in use time can be through drive piece 3 to adjust the use height of filler shell 4, so when needing to add fuel in filler shell 4 can be lowered, it is convenient to better add operation, after adding, it can be raised to the specified height to cooperate with front door 12 and fill fuel to main shell 11 in real time, and by installing feed assembly 5 in filler shell 4, guarantee the fuel to be filled is placed on feed assembly 5, it is convenient to be through feed assembly 5 to in real time the fuel of timing and be sent into furnace shell 1. The outer side of main shell 11 is provided with the limiting slide rail 111 for the sliding installation of positioning bracket 2, and the lower end surface of main shell 11 is equipped with four corner mobile wheel groups 112, and limiting slide rail 111 and mobile wheel group 112 are all fixedly connected with main shell 11. By setting limiting slide rail 111 on the outer side of main shell 11, it is guaranteed that positioning bracket 2 is stably installed through limiting slide rail 111, so that positioning bracket 2 can be flexibly slid and lifted when in use, and by installing mobile wheel group 112 on the lower end surface of main shell 11, it is guaranteed that the equipment is stably supported on the ground for use.
[0028] Reference Figure 2 and Figure 4As shown, the positioning bracket 2 comprises a frame plate 21 and a vertical threaded sleeve 22, the frame plate 21 is slidingly installed on the limiting slide rail 111, and the vertical threaded sleeve 22 is fixedly installed on the lower end surface of the frame plate 21. By designing the positioning bracket 2 as a structure that the frame plate 21 and the vertical threaded sleeve 22 cooperate, the filler shell 4 can be stably installed through the frame plate 21 when in use, and the vertical threaded sleeve 22 is arranged on the lower end of the frame plate 21 to facilitate the cooperation and connection of the vertical threaded sleeve 22 and the driving member 3. The driving member 3 comprises a driving motor 31 and a threaded rod 32 cooperating with the vertical threaded sleeve 22, the driving motor 31 is fixedly installed on the upper end surface of the main shell 11, the threaded rod 32 is rotatably installed on the outer side surface of the main shell 11, and the head of the threaded rod 32 is connected with the driving motor 31. By designing the driving member 3 as a structure that the driving motor 31 and the threaded rod 32 cooperate, the lifting adjustment can be realized through the cooperation of the vertical threaded sleeve 22 and the threaded rod 32 when in use.
[0029] Referring to Figure 1 and Figure 3 As shown, the filler shell 4 comprises a protective shell 41 and a discharge inclined shell 42, the discharge inclined shell 42 is installed on the front end surface of the protective shell 41, and the discharge inclined shell 42 is integrally formed with the protective shell 41. By designing the filler shell 4 as a structure that the protective shell 41 and the discharge inclined shell 42 cooperate, the material conveying assembly 5 can be stably installed through the protective shell 41 when in use, and the cooperation with the front door 12 is ensured by installing the discharge inclined shell 42 on the front end of the protective shell 41, so that the fuel can stably flow into the furnace shell 1. The outer side surface of the front door 12 is provided with a flow guide shell 121 corresponding to the discharge inclined shell 42, and the inner side surface of the front door 12 is provided with an inlet inclined shell 122 connected with the flow guide shell 121, and the flow guide shell 121 and the inlet inclined shell 122 are fixedly connected with the front door 12. By arranging the flow guide shell 121 and the inlet inclined shell 122 on the front door 12, the fuel on the discharge inclined shell 42 can flow into the inlet inclined shell 122 through the flow guide shell 121, and the fuel can be stably introduced into the combustion chamber through the inlet inclined shell 122.
[0030] Referring to Figure 5 and Figure 6As shown, the material feeding assembly 5 comprises a frame 51, a first belt roller 52, a second belt roller 53 and a transmission belt 54, the frame 51 comprises a middle plate 511 and two groups of side plates 512 fixedly installed on the two sides of the middle plate 511, the first belt roller 52 and the second belt roller 53 are rotatably installed between the two groups of side plates 512, and the two ends of the transmission belt 54 are sleeved on the first belt roller 52 and the second belt roller 53 respectively, and the outer side of the protective shell 41 is fixedly installed with a motor set 55 for driving the first belt roller 52 to rotate. By designing the material feeding assembly 5 into the structure that the frame 51, the first belt roller 52, the second belt roller 53 and the transmission belt 54 cooperate, it is ensured that the first belt roller 52 and the second belt roller 53 are supported and installed by the frame 51 during use, and then the transmission belt 54 can be supported by the first belt roller 52 and the second belt roller 53, so that the fuel can be placed on the transmission belt 54 during use, and the fuel can be conveniently discharged onto the discharge inclined shell 42 in real time. By designing the frame 51 into the structure that the middle plate 511 and the two groups of side plates 512 cooperate, it is ensured that the first belt roller 52 and the second belt roller 53 can be stably installed by the two groups of side plates 512 during use, and the middle plate 511 is provided to assist the support of the transmission belt 54, so that the transmission belt 54 will not deform when the fuel is placed thereon. The motor set 55 is provided as the power for driving the transmission belt 54 to rotate, so that the fuel can be stably transmitted for use.
[0031] In the embodiment, during actual use, the positioning bracket 2 and the filler shell 4 are first lowered to the lowermost end by the driving member 3, so that the operator can stably place a plurality of fuels on the material feeding assembly 5. After the placement is completed, the filler shell 4 is raised to the specified position by the driving member 3, so that the discharge inclined shell 42 can cooperate with the inlet inclined shell 122. Then, the motor set 55 is started to drive the transmission belt 54 to rotate. The starting can be set to be timed, so that the filling can be performed at intervals. When the fuel is completely filled, an alarm is given to remind the operator to add fuel.
[0032] The above is the preferred embodiment of the present application, and the person skilled in the art of the present application can also change and modify the above embodiment. Therefore, the present application is not limited to the above specific embodiments, and any obvious improvement, replacement or modification made by the person skilled in the art on the basis of the present application shall fall within the protection scope of the present application.
Claims
1. A packing device for kerosene systems, comprising a furnace shell (1), characterized in that: The furnace shell (1) comprises a main shell (11) and a front door (12) which can be opened reversibly, the front door (12) is installed on the front end surface of the main shell (11), one side of the main shell (11) is provided with a positioning bracket (2), the positioning bracket (2) is in longitudinal sliding connection with the main shell (11), and the furnace shell (1) is further provided with a driving piece (3) for adjusting the height of the positioning bracket (2), the upper end surface of the positioning bracket (2) is fixedly provided with a filler shell (4), the filler shell (4) is provided with a feeding assembly (5), and one side of the filler shell (4) is provided with a discharge port (40) matched with the front door (12).
2. A packing device for a kerosene system according to claim 1, characterized in that: The outer side surface of the main shell (11) is provided with a limiting sliding rail (111) for sliding installation of the positioning bracket (2), and the lower end surface of the main shell (11) is provided with four groups of moving wheels (112).
3. A packing device for a kerosene system according to claim 2, characterized in that: The positioning bracket (2) comprises a frame plate (21) and a vertical threaded sleeve (22), the frame plate (21) is slidingly installed on the limiting sliding rail (111), and the vertical threaded sleeve (22) is fixedly installed on the lower end surface of the frame plate (21).
4. A packing device for a kerosene system according to claim 3, characterized in that: The driving piece (3) comprises a driving motor (31) and a threaded rod (32) matched with the vertical threaded sleeve (22), the driving motor (31) is fixedly installed on the upper end surface of the main shell (11), and the threaded rod (32) is rotatably installed on the outer side surface of the main shell (11) and connected with the driving motor (31).
5. A packing device for a kerosene system according to claim 4, characterized in that: The filler shell (4) comprises a protection shell (41) and a discharge inclined shell (42), the discharge inclined shell (42) is installed on the front end surface of the protection shell (41), and the discharge inclined shell (42) is integrally formed with the protection shell (41).
6. A packing device for a kerosene system according to claim 5, characterized in that: The outer side surface of the front door (12) is provided with a flow guide shell (121) corresponding to the discharge inclined shell (42), and the inner side surface of the front door (12) is provided with an inlet inclined shell (122) connected with the flow guide shell (121), and the flow guide shell (121) and the inlet inclined shell (122) are fixedly connected with the front door (12).
7. A packing device for a kerosene system according to claim 6, characterized in that: The feeding assembly (5) comprises a frame (51), a first belt roller (52), a second belt roller (53) and a transmission belt (54), the frame (51) comprises a middle plate (511) and two groups of side plates (512), the two groups of side plates (512) are fixedly installed on the two sides of the middle plate (511), the first belt roller (52) and the second belt roller (53) are rotatably installed between the two groups of side plates (512), and the two ends of the transmission belt (54) are respectively sleeved on the first belt roller (52) and the second belt roller (53), and the outer side surface of the protection shell (41) is fixedly provided with a motor set (55) for driving the first belt roller (52) to rotate.