Transmission mechanism for carbonization equipment
By adding a mixing component and a transmission component to the carbonization equipment and using a driven mechanism to drive the mixing component to rotate, the problem of concentrated accumulation of materials during discharge is solved, and the uniform distribution of materials and the improvement of energy utilization rate are achieved.
Patent Information
- Application Number
- CN202422636871.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-30
AI Technical Summary
The active mechanism and driven mechanism of the existing carbonization equipment are only used to rotate the furnace body and are not fully utilized, which causes the material to easily accumulate during discharge, affecting the material filling.
A mixing assembly and a transmission assembly are added to the other horizontal end of the carbonization chamber of the carbonization equipment. The carbonization chamber is driven to rotate by an active mechanism, and the driven mechanism is connected to the transmission assembly. The rotation of the driven mechanism drives the mixing assembly to rotate, thereby achieving the dispersion and distribution of the carbonized material to avoid concentrated accumulation.
Without the need for additional drive equipment, uniform distribution of materials can be achieved, energy utilization efficiency can be improved, and material accumulation affecting material filling can be avoided.
Smart Images

Figure CN223304392U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of carbonization equipment, in particular to a transmission mechanism for carbonization equipment. Background Art
[0002] The horizontal carbonization furnace on the market is a type of carbonization equipment. It mainly includes a furnace body, heating system, exhaust duct, cooling system, and control system. The biomass material to be carbonized is placed inside the furnace body, and the furnace body is heated by the external heating system. The biomass material is carbonized at high temperature to produce biochar. During the heating process, the active mechanism and the driven mechanism cooperate to enable the furnace body to rotate along its axis. Currently, the active mechanism and the driven mechanism are only used to rotate the furnace body and are not fully utilized. Utility Model Content
[0003] In view of this, an object of the present invention is to provide a transmission mechanism for carbonization equipment.
[0004] In order to achieve the above purpose, the technical solution adopted by the utility model is:
[0005] A transmission mechanism for carbonization equipment, the carbonization equipment includes a horizontal carbonization chamber, an active mechanism arranged at one horizontal end of the carbonization chamber and a driven mechanism arranged at the other horizontal end of the carbonization chamber, the other horizontal end of the carbonization chamber is provided with a discharge port, and a mixing component and a transmission component are provided at the other horizontal end of the carbonization chamber, one end of the transmission component is transmission-connected to the driven mechanism, and the other end of the transmission component is transmission-connected to the mixing component, and the mixing component is arranged at a position corresponding to below the discharge port.
[0006] Furthermore, the driven mechanism includes a driven wheel, the transmission assembly includes two bevel gears meshing with each other, and the central axes of the two bevel gears are vertically arranged, one of the two bevel gears is coaxial with the driven wheel and fixedly connected, and the other bevel gear of the two bevel gears is transmission-connected to the leveling assembly.
[0007] Furthermore, the mixing assembly includes a vertically arranged rotating shaft, the upper end of the rotating shaft is fixedly connected to the other bevel gear of the two bevel gears, and the lower end of the rotating shaft is provided with a plurality of evenly distributed paddles along the circumference.
[0008] Furthermore, it also includes a material receiving box, which is located below the discharge port, and the paddle on the rotating shaft extends into the material receiving box.
[0009] Furthermore, the number of the paddles is three, and the paddles are arranged in parallel along the axial direction of the rotation shaft.
[0010] Furthermore, the number of the paddles is three, and the paddles are spirally arranged along the axial direction of the rotating shaft.
[0011] Furthermore, there are two driven wheels, each driven wheel is equipped with a leveling assembly, there is a distance between the two leveling assemblies, and the two rotating axes are arranged parallel to each other and symmetrically distributed with the discharge port as the symmetry center.
[0012] The beneficial effects of the utility model are:
[0013] The utility model provides a transmission mechanism for carbonization equipment, in which a mixing component and a transmission component are added at the other horizontal end of the carbonization chamber, and one end of the transmission component is connected to the driven mechanism, and the other end of the transmission component is connected to the mixing component. The mixing component is arranged at a position below the discharge port. When the carbonization cavity of the carbonization equipment is used for carbonization processing, the active mechanism is required to drive the entire carbonization cavity to rotate, thereby also driving the rotation of the driven mechanism. The rotation of the driven mechanism is then used to drive the mixing component to rotate through the transmission component, so as to facilitate the dispersion and distribution of the carbonized material coming out of the discharge port, avoiding concentrated accumulation and affecting the filling of the material. Through the above method, it can be achieved without the need for additional driving equipment, thereby improving energy utilization. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 Shown is a schematic structural diagram of a transmission mechanism for carbonization equipment of the present invention;
[0015] Figure 2 Shown Figure 1 The main view;
[0016] Figure 3 Shown Figure 1 A top view of
[0017] Figure 4 Shown Figure 1 Side view of;
[0018] Figure 5 The figure shows a schematic structural diagram of a transmission assembly and a smoothing assembly of a transmission mechanism for a carbonization device according to the present invention;
[0019] Description of Figure Numbers:
[0020] 1-carbonization chamber; 11-discharge port; 2-active mechanism; 3-driven mechanism; 31-driven wheel; 4-material receiving box; 5-mixing assembly; 51-rotating shaft; 52-paddle; 6-transmission assembly; 61-bevel gear. DETAILED DESCRIPTION
[0021] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0022] like Figure 1-Figure 5 As shown, the utility model provides a transmission mechanism for carbonization equipment, the carbonization equipment includes a horizontal carbonization chamber, an active mechanism arranged at one horizontal end of the carbonization chamber and a driven mechanism arranged at the other horizontal end of the carbonization chamber, the other horizontal end of the carbonization chamber is provided with a discharge port, and a mixing component and a transmission component are provided at the other horizontal end of the carbonization chamber, one end of the transmission component is transmission-connected to the driven mechanism, and the other end of the transmission component is transmission-connected to the mixing component, and the mixing component is arranged at a position below the discharge port.
[0023] From the above description, it can be seen that the present invention has the following beneficial effects:
[0024] The utility model provides a transmission mechanism for carbonization equipment, in which a mixing component and a transmission component are added at the other horizontal end of the carbonization chamber, and one end of the transmission component is connected to the driven mechanism, and the other end of the transmission component is connected to the mixing component. The mixing component is arranged at a position below the discharge port. When the carbonization cavity of the carbonization equipment is used for carbonization processing, the active mechanism is required to drive the entire carbonization cavity to rotate, thereby also driving the rotation of the driven mechanism. The rotation of the driven mechanism is then used to drive the mixing component to rotate through the transmission component, so as to facilitate the dispersion and distribution of the carbonized material coming out of the discharge port, avoiding concentrated accumulation and affecting the filling of the material. Through the above method, it can be achieved without the need for additional driving equipment, thereby improving energy utilization.
[0025] Furthermore, the driven mechanism includes a driven wheel, the transmission assembly includes two bevel gears meshing with each other, and the central axes of the two bevel gears are vertically arranged, one of the two bevel gears is coaxial with the driven wheel and fixedly connected, and the other bevel gear of the two bevel gears is transmission-connected to the leveling assembly.
[0026] From the above description, it can be seen that through the above specific structural design, the transmission assembly is composed of two mutually meshing bevel gears, which can transmit the power from the driven wheel to the leveling assembly, so that the driven wheel can drive the leveling assembly to move.
[0027] Furthermore, the mixing assembly includes a vertically arranged rotating shaft, the upper end of the rotating shaft is fixedly connected to the other bevel gear of the two bevel gears, and the lower end of the rotating shaft is provided with a plurality of evenly distributed paddles along the circumference.
[0028] From the above description, it can be seen that through the above specific structural design, the rotating shaft drives the paddle to rotate along the axial direction of the rotating shaft, so as to disperse and distribute the carbonized material coming out of the discharge port, avoiding concentrated accumulation and affecting material filling.
[0029] Furthermore, it also includes a material receiving box, which is located below the discharge port, and the paddle on the rotating shaft extends into the material receiving box.
[0030] From the above description, it can be seen that the materials can be evenly dispersed in the material receiving box through the above specific structural design.
[0031] Furthermore, the number of the paddles is three, and the paddles are arranged in parallel along the axial direction of the rotation shaft.
[0032] It can be seen from the above description that through the above specific structural design, the rotation of the paddle can evenly disperse the material.
[0033] Furthermore, the number of the paddles is three, and the paddles are spirally arranged along the axial direction of the rotating shaft.
[0034] As can be seen from the above description, through the above specific structural design, the paddle is in oblique contact with the material, which can achieve the effect of evenly dispersing the material while saving effort.
[0035] Furthermore, there are two driven wheels, each driven wheel is equipped with a leveling assembly, there is a distance between the two leveling assemblies, and the two rotating axes are arranged parallel to each other and symmetrically distributed with the discharge port as the symmetry center.
[0036] From the above description, it can be seen that through the above specific structural design, the reasonable distribution of the two leveling components can meet actual needs.
[0037] Several preferred embodiments or application examples are listed below to help those skilled in the art better understand the technical content of the present invention and the technical contribution made by the present invention relative to the prior art:
[0038] Preferred embodiment one:
[0039] like Figures 1 to 5 As shown, the utility model provides a transmission mechanism for carbonization equipment, the carbonization equipment includes a horizontal carbonization chamber 1, an active mechanism 2 arranged at one horizontal end of the carbonization chamber, a driven mechanism 3 and a material receiving box 4 arranged at the other horizontal end of the carbonization chamber, the other horizontal end of the carbonization chamber 1 is provided with a discharge port 11, and a mixing component 5 and a transmission component 6 are provided at the other horizontal end of the carbonization chamber, one end of the transmission component 6 is transmission-connected to the driven mechanism 3, and the other end of the transmission component 6 is transmission-connected to the mixing component 5, the mixing component 5 is arranged at a position corresponding to the bottom of the discharge port 11, and the material receiving box 4 is located below the discharge port 11.
[0040] The driven mechanism 3 includes a driven wheel 31. The transmission assembly 6 is sealed in a sealed box and comprises two intermeshing bevel gears 61, the central axes of which are arranged perpendicularly. One of the bevel gears is coaxial with and fixedly connected to the driven wheel, while the other is in transmission connection with the leveling assembly. The transmission assembly, comprising the two intermeshing bevel gears, transmits power from the driven wheel to the leveling assembly, enabling the driven wheel to drive the leveling assembly to move.
[0041] The mixing assembly 5 includes a vertically arranged rotating shaft 51, the upper end of which is fixedly connected to the other of the two bevel gears. The lower end of the rotating shaft is provided with a plurality of evenly distributed paddles 52 along the circumference. The rotating shaft drives the paddles to rotate along the axial direction of the rotating shaft, thereby breaking up and distributing the carbonized material exiting the discharge port, avoiding concentrated accumulation that affects material filling. The paddles on the rotating shaft extend into the material receiving box. There are three paddles, which are arranged in parallel or spirally along the axial direction of the rotating shaft.
[0042] There are two driven wheels, each equipped with a mixing assembly, a spacing between the two mixing assemblies, and two rotating axes arranged parallel to each other and symmetrically distributed with the discharge port as the symmetry center. The reasonable distribution of the two mixing assemblies can meet actual needs.
[0043] The present invention has been described with reference to the above embodiments and accompanying drawings. However, the above embodiments are merely exemplary embodiments of the present invention. It should be noted that the disclosed embodiments do not limit the scope of the present invention. On the contrary, modifications and equivalents falling within the spirit and scope of the claims are intended to be within the scope of the present invention.
Claims
1. A transmission mechanism for a carbonization device, comprising a horizontal carbonization chamber, an active mechanism disposed at one horizontal end of the carbonization chamber, and a driven mechanism disposed at the other horizontal end of the carbonization chamber, wherein the other horizontal end of the carbonization chamber is provided with a discharge port, characterized in that: A mixing assembly and a transmission assembly are provided at the other horizontal end of the carbonization cavity. One end of the transmission assembly is connected to the driven mechanism, and the other end of the transmission assembly is connected to the mixing assembly. The mixing assembly is arranged below the discharge port.
2. The transmission mechanism for carbonization equipment according to claim 1, characterized in that: The driven mechanism includes a driven wheel, the transmission assembly includes two bevel gears meshing with each other, and the central axes of the two bevel gears are vertically arranged, one of the two bevel gears is coaxial with the driven wheel and fixedly connected, and the other of the two bevel gears is transmission-connected to the leveling assembly.
3. The transmission mechanism for carbonization equipment according to claim 2, characterized in that: The mixing assembly includes a vertically arranged rotating shaft, the upper end of the rotating shaft is fixedly connected to the other bevel gear of the two bevel gears, and the lower end of the rotating shaft is provided with a plurality of evenly distributed paddles along the circumference.
4. The transmission mechanism for carbonization equipment according to claim 3, characterized in that: It also includes a material receiving box, which is located below the discharge port, and the paddle on the rotating shaft extends into the material receiving box.
5. The transmission mechanism for carbonization equipment according to claim 3, characterized in that: The number of the paddles is three, and the paddles are arranged in parallel along the axial direction of the rotating shaft.
6. The transmission mechanism for carbonization equipment according to claim 3, characterized in that: The number of the paddles is three, and the paddles are spirally arranged along the axial direction of the rotating shaft.
7. The transmission mechanism for carbonization equipment according to claim 2, characterized in that: There are two driven wheels, each driven wheel is equipped with a leveling assembly, there is a distance between the two leveling assemblies, and the two rotating axes are arranged parallel to each other and symmetrically distributed with the discharge port as the symmetry center.