A raw material mixing device for processing purple sweet potato glutinous rice balls
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-26
- Publication Date
- 2026-08-14
AI Technical Summary
紫薯、糯米粉在混合之后,产物较为粘稠,不仅容易粘附在搅拌罐的内壁中,还可能在排出时堵塞排料管,粘附在内壁上的残留物会给工作人员的清理工作造成不便,而排料管被堵塞,则会使得生产中断,需要停机清理或维修,增加生产成本和停机时间
本实用新型搅拌箱作为原料混合的主要空间,容纳待混合的紫薯糯米球加工原料,为搅拌组件提供工作场所,搅拌组件用于对搅拌箱内的原料进行搅拌,加快其混合效率,排料组件用于控制原料排出的时机,同时能够防止原料残留在内壁,防堵组件用于防止原料在排出过程中在排料斗内发生堵塞,以便原料顺畅的排出。
Smart Images

Figure CN224628923U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mixing devices, specifically a raw material mixing device for processing purple sweet potato glutinous rice balls. Background Technology
[0002] Purple sweet potato glutinous rice balls are a unique snack that combines purple sweet potatoes and glutinous rice flour. They are widely loved for their unique taste and rich nutritional value. In the process of making purple sweet potato glutinous rice balls, mixing is an important part of the process. Efficient and uniform mixing can ensure that the purple sweet potatoes, glutinous rice flour and other additives are fully integrated, providing a high-quality raw material base for subsequent shaping, steaming and cooking processes. After purple sweet potato and glutinous rice flour are mixed, the product is quite viscous. It not only easily adheres to the inner wall of the mixing tank, but may also block the discharge pipe when discharged. The residue adhering to the inner wall will cause inconvenience to the staff's cleaning work, and the blockage of the discharge pipe will cause production to be interrupted, requiring the machine to be stopped for cleaning or maintenance, which will increase production costs and downtime.
[0003] In summary, this utility model provides a raw material mixing device for processing purple sweet potato glutinous rice balls to solve the above problems. Utility Model Content
[0004] To solve the above-mentioned technical problems, this utility model provides the following technical solution: A raw material mixing device for processing purple sweet potato glutinous rice balls, comprising, A mixing unit includes a support frame, a mixing box disposed on the top of the support frame, a mixing assembly disposed in the inner cavity of the mixing box, hollow columns fixedly connected to both sides of the support frame, the end of the hollow column away from the support frame being fixedly connected to the mixing box, and a feeding hopper fixedly connected to the top of the mixing box. The discharge unit includes a discharge port at the bottom of the mixing tank, a discharge hopper fixedly connected to the bottom of the mixing tank, a discharge assembly disposed in the inner cavity of the mixing tank, and an anti-clogging assembly disposed in the inner cavity of the discharge hopper.
[0005] Furthermore, in this utility model, the stirring assembly includes a transmission rod movably connected to the inner cavity of the stirring tank via bearings, both ends of the transmission rod being movably connected to the support frame via bearings, stirring blades fixedly connected to the upper and lower ends of the transmission rod surface, and a motor fixedly connected to the left side of the support frame, the output shaft of the motor passing through the support frame and being connected to the transmission rod for transmission.
[0006] Furthermore, in this invention, the stirring assembly also includes a fixing ring fixedly connected to both sides of the transmission rod surface, and a scraper fixedly connected to the top of the fixing ring.
[0007] Furthermore, in this utility model, the discharge assembly includes a receiving groove opened on the left side of the discharge port cavity, a baffle slidably connected to the cavity of the receiving groove, and a pulling frame disposed at the bottom of the mixing tank, the top of the pulling frame penetrating into the cavity of the receiving groove and fixedly connected to the baffle.
[0008] Furthermore, in this utility model, the discharge assembly also includes a fixing block fixedly connected to the bottom of the mixing tank, a stainless steel spring fixedly connected between the pulling frame and the fixing block, a slot opened on the right side of the baffle, and a positioning plate fixedly connected to the right side of the discharge port cavity, the left side of the positioning plate extending into the cavity of the slot and into its cavity.
[0009] Furthermore, in this utility model, the anti-blocking component includes a rotating column movably connected to the inner cavity of the discharge hopper via a bearing, an agitator fixedly connected to the top and bottom of the rotating column, and a rotating block disposed on the front of the discharge hopper. The front end of the rotating column penetrates the discharge hopper and is fixedly connected to the rotating block.
[0010] Beneficial effects: This utility model has the following beneficial effects: This utility model's mixing box serves as the main space for mixing raw materials, accommodating the raw materials for processing purple sweet potato glutinous rice balls, and providing a workspace for the mixing components. The mixing components are used to stir the raw materials in the mixing box, accelerating their mixing efficiency. The discharge components are used to control the timing of raw material discharge and prevent raw materials from remaining on the inner wall. The anti-blocking components are used to prevent the raw materials from clogging in the discharge hopper during the discharge process, so that the raw materials can be discharged smoothly. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the main structure of this utility model; Figure 2 This is a schematic diagram of the front view of the mixing tank of this utility model; Figure 3 This is a schematic diagram of the main structure of the discharge hopper of this utility model; Figure 4 This is a schematic diagram of the separated state structure of the discharge port and discharge assembly of this utility model; Figure 5 This is a schematic diagram of the main structure of the anti-blocking component of this utility model.
[0012] In the picture: 1. Mixing unit; 101. Support frame; 102. Mixing box; 103. Mixing assembly; 1031. Transmission rod; 1032. Mixing blade; 1033. Motor; 1034. Fixing ring; 1035. Scraper frame; 104. Hollow column; 105. Feeding hopper; 2. Discharge unit; 201. Discharge port; 202. Discharge hopper; 203. Discharge assembly; 2031. Receiving tank; 2032. Baffle; 2033. Pulling frame; 2034. Fixing block; 2035. Stainless steel spring; 2036. Slot; 2037. Positioning plate; 204. Anti-blocking assembly; 2041. Rotating column; 2042. Stirring frame; 2043. Rotating block. Detailed Implementation
[0013] To better understand the technical content of this utility model, specific embodiments are described below in conjunction with the accompanying drawings. Various aspects of this utility model are described in this disclosure with reference to the accompanying drawings, which illustrate numerous illustrative embodiments. The embodiments of this disclosure are not necessarily defined to include all aspects of this utility model. It should be understood that the various concepts and embodiments described above, as well as those described in more detail below, can be implemented in any of many ways, because the concepts and embodiments disclosed in this utility model are not limited to any particular implementation. Furthermore, some aspects of this utility model can be used alone or in any suitable combination with other aspects disclosed in this utility model.
[0014] Example 1 like Figure 1-5 The image shown is the first embodiment of this utility model. This embodiment provides a raw material mixing device for processing purple sweet potato glutinous rice balls, comprising: The mixing unit 1 includes a support frame 101, a mixing tank 102 disposed on the top of the support frame 101, a mixing assembly 103 disposed in the inner cavity of the mixing tank 102, hollow columns 104 fixedly connected to both sides of the support frame 101, one end of the hollow column 104 away from the support frame 101 being fixedly connected to the mixing tank 102, and a feeding hopper 105 fixedly connected to the top of the mixing tank 102. The discharge unit 2 includes a discharge port 201 opened at the bottom of the mixing tank 102, a discharge hopper 202 fixedly connected to the bottom of the mixing tank 102, a discharge assembly 203 disposed in the inner cavity of the mixing tank 102, and an anti-blocking assembly 204 disposed in the inner cavity of the discharge hopper 202.
[0015] like Figure 1-5As shown, the support frame 101 provides a stable support structure for the entire equipment, ensuring that components such as the mixing tank 102 can be securely installed and guaranteeing the stability of the device during operation. The mixing tank 102, as the main space for raw material mixing, contains the raw materials for processing purple sweet potato glutinous rice balls to be mixed and provides a working place for the mixing assembly 103. The mixing assembly 103 is used to mix the raw materials in the mixing tank 102, accelerating its mixing efficiency. The hollow column 104 connects the support frame 101 and the mixing tank 102, playing a supporting and reinforcing role, strengthening the mixing tank 102. The connection stability between 02 and support frame 101 is ensured. The feeding hopper 105 facilitates the addition of raw materials for processing purple sweet potato glutinous rice balls into the mixing tank 102. The discharge port 201 is the channel for the raw materials to be discharged from the mixing tank 102. The discharge hopper 202 is used to guide the raw materials discharged from the discharge port 201 so that they can flow accurately to subsequent processing equipment or containers. The discharge component 203 is used to control the timing of raw material discharge. The anti-blocking component 204 is used to prevent the raw materials from being blocked in the discharge hopper 202 during the discharge process so that the raw materials can be discharged smoothly.
[0016] Example 2 Reference Figure 1 and 2 This is the second embodiment of the present invention, which is based on the previous embodiment.
[0017] In this embodiment, the stirring assembly 103 includes a transmission rod 1031 movably connected to the inner cavity of the stirring tank 102 via bearings, both ends of the transmission rod 1031 being movably connected to the support frame 101 via bearings, stirring blades 1032 being fixedly connected to the upper and lower ends of the surface of the transmission rod 1031, and a motor 1033 being fixedly connected to the left side of the support frame 101. The output shaft of the motor 1033 passes through the support frame 101 and is connected to the transmission rod 1031 in a transmission connection.
[0018] The stirring assembly 103 further includes a fixing ring 1034 fixedly connected to both sides of the surface of the transmission rod 1031, and a scraper 1035 fixedly connected to the top of the fixing ring 1034.
[0019] like Figure 1 and 2 As shown, the transmission rod 1031 rotates under the drive of the motor 1033, which drives the stirring blade 1032 to stir the raw materials. The motor 1033 provides power for the rotation of the transmission rod 1031. The scraper 1035 can scrape the raw materials adhering to the inner wall of the mixing box 102 during the stirring process to avoid waste of raw materials and ensure sufficient stirring. The fixing ring 1034 provides a stable installation position for the scraper 1035.
[0020] Example 3 Reference Figure 4 and 5This is the third embodiment of the present invention, which is based on the first two embodiments.
[0021] In this embodiment, the discharge assembly 203 includes a receiving groove 2031 opened on the left side of the inner cavity of the discharge port 201, a baffle 2032 slidably connected to the inner cavity of the receiving groove 2031, and a pulling frame 2033 disposed at the bottom of the mixing tank 102. The top of the pulling frame 2033 extends through the inner cavity of the receiving groove 2031 and is fixedly connected to the baffle 2032.
[0022] The discharge assembly 203 also includes a fixing block 2034 fixedly connected to the bottom of the mixing tank 102, a stainless steel spring 2035 fixedly connected between the pulling frame 2033 and the fixing block 2034, a slot 2036 opened on the right side of the baffle 2032, and a positioning plate 2037 fixedly connected to the right side of the inner cavity of the discharge port 201. The left side of the positioning plate 2037 extends into the inner cavity of the slot 2036 and is connected to its inner cavity.
[0023] The anti-blocking component 204 includes a rotating column 2041 movably connected to the inner cavity of the discharge hopper 202 via a bearing, an agitator 2042 fixedly connected to the top and bottom of the rotating column 2041, and a rotating block 2043 disposed on the front side of the discharge hopper 202. The front end of the rotating column 2041 penetrates the discharge hopper 202 and is fixedly connected to the rotating block 2043.
[0024] like Figure 4 and 5 As shown, the receiving groove 2031 allows the baffle 2032 to slide smoothly, achieving precise control of the opening of the discharge port 201. The baffle 2032 can flexibly adjust the discharge speed according to actual needs. When rapid discharge is required, the opening of the discharge port 201 is increased; when the discharge volume needs to be controlled, the opening of the discharge port 201 is decreased, improving the versatility and flexibility of the device. The pulling frame 2033 provides an operating component for the sliding of the baffle 2032, making operation convenient and facilitating control of the opening of the discharge port 201. The fixing block 2034 ensures the stability of the stainless steel spring 2035 installation, enabling it to function properly. Spring 2035 is used to push baffle 2032 to reset. The slot 2036 and positioning plate 2037 cooperate to position baffle 2032, ensuring the accuracy and stability of baffle 2032 during sliding, avoiding wobbling or displacement of baffle 2032, and improving the accuracy of discharge control. Rotating column 2041 can drive agitator 2042 to agitate the raw material in discharge hopper 202, preventing raw material from clogging discharge hopper 202. Rotating block 2043 provides an operating component for the rotation of rotating column 2041, making it easy for operators to control anti-clogging component 204 and prevent discharge hopper 202 from clogging in time.
[0025] In use, raw materials are added into the mixing tank 102 through the feeding hopper 105. After addition, the motor 1033 is started. The output shaft of the motor 1033 drives the transmission rod 1031 and the stirring blade 1032 to rotate. When the stirring blade 1032 rotates, it can stir the raw materials inside the mixing tank 102, accelerating the mixing speed. During the stirring process, the fixing ring 1034 can drive the scraper 1035 to rotate. When the scraper 1035 rotates, it can perform all-round scraping operation on the inner wall of the mixing tank 102, thereby preventing raw material residue. After the raw materials are mixed... Then, turn off the motor 1033 and move the pull frame 2033 forward. The pull frame 2033 drives the baffle 2032 to move to the left in the inner cavity of the receiving tank 2031. After the baffle 2032 moves, the blocking effect on the discharge port 201 disappears. At this time, the raw material can be discharged through the discharge port 201 and the discharge hopper 202. If a blockage occurs during the discharge process, the rotating block 2043 can be rotated to drive the rotating column 2041 to rotate. The rotating column 2041 then drives the stirring frame 2042 to rotate. When the stirring frame 2042 rotates, it can relieve the blockage so that the raw material can be discharged fully.
[0026] All standard parts used in this application can be purchased from the market, and can be customized according to the description and drawings. The specific connection methods of each part adopt conventional methods such as bolts, rivets, and welding that are mature in the prior art. The machinery, parts and equipment adopt conventional models in the prior art. The control method is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art and is common knowledge in the field. Since this application is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail in this application.
[0027] Although the present invention has been disclosed above with reference to preferred embodiments, it is not intended to limit the present invention. Those skilled in the art to which this invention pertains can make various modifications and refinements without departing from the spirit and scope of the present invention. Therefore, the scope of protection of this invention shall be determined by the claims.
Claims
1. A raw material mixing device for processing purple sweet potato glutinous rice balls, characterized in that: include, The mixing unit (1) includes a support frame (101), a mixing tank (102) disposed on the top of the support frame (101), a mixing assembly (103) disposed in the inner cavity of the mixing tank (102), hollow columns (104) fixedly connected to both sides of the support frame (101), one end of the hollow column (104) away from the support frame (101) being fixedly connected to the mixing tank (102), and a feeding hopper (105) fixedly connected to the top of the mixing tank (102). The stirring assembly (103) includes a transmission rod (1031) movably connected to the inner cavity of the stirring tank (102) via bearings. Both ends of the transmission rod (1031) are movably connected to the support frame (101) via bearings. Stirring blades (1032) are fixedly connected to the upper and lower ends of the surface of the transmission rod (1031). A motor (1033) is fixedly connected to the left side of the support frame (101). The output shaft of the motor (1033) passes through the support frame (101) and is connected to the transmission rod (1031) in a transmission connection. The stirring assembly (103) also includes a fixing ring (1034) fixedly connected to both sides of the surface of the transmission rod (1031), and a scraper (1035) fixedly connected to the top of the fixing ring (1034). The discharge unit (2) includes a discharge port (201) opened at the bottom of the mixing tank (102), a discharge hopper (202) fixedly connected to the bottom of the mixing tank (102), a discharge assembly (203) disposed in the inner cavity of the mixing tank (102), and an anti-blocking assembly (204) disposed in the inner cavity of the discharge hopper (202). The anti-blocking component (204) includes a rotating column (2041) movably connected to the inner cavity of the discharge hopper (202) via a bearing, an agitator (2042) fixedly connected to the top and bottom of the rotating column (2041), and a rotating block (2043) disposed on the front side of the discharge hopper (202). The front end of the rotating column (2041) penetrates the discharge hopper (202) and is fixedly connected to the rotating block (2043).
2. The raw material mixing device for processing purple sweet potato glutinous rice balls according to claim 1, characterized in that: The discharge assembly (203) includes a receiving groove (2031) opened on the left side of the inner cavity of the discharge port (201), a baffle (2032) slidably connected to the inner cavity of the receiving groove (2031), and a pulling frame (2033) set at the bottom of the mixing tank (102). The top of the pulling frame (2033) extends through the inner cavity of the receiving groove (2031) and is fixedly connected to the baffle (2032).
3. The raw material mixing device for processing purple sweet potato glutinous rice balls according to claim 2, characterized in that: The discharge assembly (203) further includes a fixing block (2034) fixedly connected to the bottom of the mixing tank (102), a stainless steel spring (2035) fixedly connected between the pulling frame (2033) and the fixing block (2034), a slot (2036) opened on the right side of the baffle (2032), and a positioning plate (2037) fixedly connected to the right side of the inner cavity of the discharge port (201). The left side of the positioning plate (2037) extends into the inner cavity of the slot (2036) and is connected to its inner cavity.