Additives for frozen hamburger production
Patent Information
- Application Number
- CN202521817902.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-08-26
AI Technical Summary
[0002]汉堡是常见的食物,将其冷冻后便于储存的同时能好吃较新鲜的口感,在其生产时需经过烘焙等工序,烘焙之前需将辅料(例如油和芝麻)添加到面团的表面,现有的添加机构是直接将辅料洒在面团上,由于面团处于运动的状态,辅料与面团之间具有速度差,有很多辅料撒在面团之外的地方,造成浪费
[0010]本实用新型的有益效果是:通过转筒的作用,可抵消辅料与面团之间的速度差,避免辅料撒在面团之外,避免浪费;
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Figure CN224722595U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of frozen hamburger production technology, and more specifically, to an auxiliary material addition mechanism for frozen hamburger production. Background Technology
[0002] Hamburgers are a common food. Freezing them makes them easier to store and gives them a fresher taste. During their production, they need to go through baking and other processes. Before baking, toppings (such as oil and sesame seeds) need to be added to the surface of the dough. The existing toppings are sprinkled directly on the dough. Because the dough is in motion, there is a speed difference between the toppings and the dough, and a lot of toppings are sprinkled outside the dough, resulting in waste. Utility Model Content
[0003] To address the above deficiencies, this utility model provides an ingredient addition mechanism for frozen hamburger production, thus solving the aforementioned problems.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: A topping addition system for frozen hamburger production includes toppings, trays, and dough. The toppings are categorized into granular and oily toppings. Rotating drum, with auxiliary materials located inside; The discharge valve rotates with the drum. When the discharge valve moves to the bottom, the auxiliary material is discharged from the discharge valve.
[0005] Furthermore, it also includes a support frame, with a bearing at the upper end of the support frame, a hollow tube installed in the inner ring of the bearing, the hollow tube being open at both ends, the two ends of the rotating drum being connected to the hollow tube and in a state of communication, and a support tube installed on the side wall of the rotating drum, the support tube being connected to the rotating drum.
[0006] Furthermore, the discharge valve is a nozzle, and a rotary sealing valve is installed inside the hollow tube. One end of the rotary sealing valve is connected to the external oil auxiliary material, and the other end of the rotary sealing valve is connected to a conveying pipe. A flexible hose is installed between the conveying pipe and the support pipe. The nozzle is connected to the flexible hose, and the oil auxiliary material is discharged through the conveying pipe, the flexible hose, and the nozzle.
[0007] Furthermore, the discharge valve is an electronic valve, the granular auxiliary material is located inside the rotating drum, and an electric slip ring is installed at one end of the hollow tube for connecting the electronic valve to power. The electronic valve is installed at one end of the support tube, and the granular auxiliary material accumulates near the dough under the action of gravity.
[0008] Furthermore, a drive belt is installed on the hollow tube at one end of the rotating drum, and a driven wheel is installed on the hollow tube at the other end of the rotating drum. The driven wheel is driven to rotate by an external power source.
[0009] Furthermore, the pallet's moving speed is the same as the linear speed of the discharge valve.
[0010] The beneficial effects of this utility model are: by using the action of the rotating drum, the speed difference between the auxiliary materials and the dough can be offset, avoiding the auxiliary materials from being spilled outside the dough and avoiding waste; The system is equipped with two rotating drums. The oil-based auxiliary material can be sprayed first, followed by the granular auxiliary material. The oil-based auxiliary material can adhere to the granular auxiliary material, further preventing it from spilling. Attached Figure Description
[0011] Figure 1 This is a top view of the auxiliary material addition mechanism for frozen hamburger production described in this utility model; Figure 2 This is a side view of the rotating drum; Figure 3 This is a top view of the tray; In the diagram, 1. Auxiliary material; 2. Tray; 3. Dough; 4. Rotary drum; 5. Discharge valve; 6. Support; 61. Bearing; 62. Hollow tube; 63. Support tube; 51. Nozzle; 621. Rotary sealing valve; 622. Feeding pipe; 623. Hose; 52. Electronic valve; 631. Electric slip ring; 41. Drive belt; 42. Driven wheel; 11. Granular auxiliary material; 12. Oily auxiliary material. Detailed Implementation
[0012] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.
[0013] This application provides a feed additive mechanism for frozen hamburger production; please refer to [reference needed]. Figures 1-3 It includes auxiliary materials 1, tray 2, and dough 3. Auxiliary materials 1 are divided into granular auxiliary materials 11 and oily auxiliary materials 12, and also includes... Rotating drum 4, auxiliary material 1 is located inside rotating drum 4; The discharge valve 5 rotates with the rotating drum 4. When the discharge valve 5 moves to the bottom, the auxiliary material 1 is discharged from the discharge valve 5.
[0014] In practical applications, dough 3 is placed in tray 2. Through the movement of the external conveying structure, tray 2 and dough 3 move from left to right. Rotating drum 4 also rotates, moving to the lowest point so that it moves at the same speed as dough 3. Oily auxiliary material 12 is discharged from discharge valve 5 through pipeline. Granular auxiliary material 11 is stored in rotating drum 4 and discharged intermittently through control valve.
[0015] Reference Figure 1 , Figure 2 , Figure 3It also includes a bracket 6, with a bearing 61 at the upper end of the bracket 6. A hollow tube 62 is installed in the inner ring of the bearing 61. The hollow tube 62 is open at both ends. The two ends of the rotating drum 4 are connected to the hollow tube 62 and are in a state of communication. A support tube 63 is installed on the side wall of the rotating drum 4 and is connected to the rotating drum 4.
[0016] In practical applications, the support 6 positions the rotating drum 4 above the external conveyor belt, the bearing 61 ensures stable rotation of the drum 4, the hollow tube 62 provides material 1 for passage, and the support tube 63 extends the discharge valve 5.
[0017] Reference Figure 1 , Figure 2 , Figure 3 The discharge valve 5 is the nozzle 51. A rotary sealing valve 621 is installed inside the hollow tube 62. One end of the rotary sealing valve 621 is connected to the external oil auxiliary material 12, and the other end of the rotary sealing valve 621 is connected to the conveying pipe 622. A hose 623 is installed between the conveying pipe 622 and the support pipe 63. The nozzle 51 is connected to the hose 623. The oil auxiliary material 12 is discharged through the conveying pipe 622, the hose 623 and the nozzle 51.
[0018] In practical applications, the oily auxiliary material 12 is delivered to one end of the rotary sealing valve 621 by an external oil pump. The rotary sealing valve 621 rotates while the material is being delivered. The oily auxiliary material 12 is sprayed out through the delivery pipe 622, the hose 623 and the nozzle 51. The spraying time of the nozzle 51 can be controlled by an external controller. The nozzle 51 can spray the oily auxiliary material 12 onto the dough 3 at close range.
[0019] Reference Figure 1 , Figure 2 , Figure 3 The discharge valve 5 is an electronic valve 52. The granular auxiliary material 11 is located inside the rotating drum 4. An electric slip ring 631 is installed at one end of the hollow tube 62 for connecting the electronic valve 52 to power. The electronic valve 52 is installed at one end of the support tube 63. The granular auxiliary material 11 accumulates near the dough 3 under the action of gravity.
[0020] In practical applications, the granular auxiliary material 11 accumulates near the dough 3 under the action of gravity. When the electronic valve 52 moves to be closest to the dough 3, the electronic valve 52 is opened, so that the granular auxiliary material 11 falls onto the surface of the dough 3 under the action of gravity.
[0021] Reference Figure 1 , Figure 2 , Figure 3 A drive belt 41 is installed on the hollow tube 62 at one end of the rotating drum 4, and a driven wheel 42 is installed on the hollow tube 62 at the other end of the rotating drum 4. The driven wheel 42 is driven to rotate by an external power source.
[0022] In practical applications, two drums 4 can be set up to release oily auxiliary material 12 and granular auxiliary material 11 respectively. An external power source drives the driven wheel 42 to rotate, and one of the drums 4 rotates. The two drums 4 rotate synchronously through the transmission belt 41.
[0023] Reference Figure 1 , Figure 2 , Figure 3 The moving speed of tray 2 is the same as the linear speed of discharge valve 5.
[0024] In practical applications, by setting the moving speed of tray 2 to be the same as the linear speed of discharge valve 5, the auxiliary material 1 can be stably dropped onto the surface of dough 3.
Claims
1. A topping addition mechanism for frozen hamburger production, comprising toppings (1), a tray (2), and dough (3), wherein the toppings (1) are divided into granular toppings (11) and oily toppings (12), characterized in that, It also includes, Rotating drum (4), auxiliary material (1) is located inside rotating drum (4); The discharge valve (5) rotates with the rotating drum (4). When the discharge valve (5) moves to the bottom, the auxiliary material (1) is discharged from the discharge valve (5). It also includes a bracket (6), a bearing (61) is provided at the upper end of the bracket (6), a hollow tube (62) is installed in the inner ring of the bearing (61), the hollow tube (62) is open at both ends, the two ends of the rotating drum (4) are connected to the hollow tube (62) and are in a state of mutual communication, a support tube (63) is installed on the side wall of the rotating drum (4), and the support tube (63) is connected to the rotating drum (4); The discharge valve (5) is a nozzle (51). A rotary sealing valve (621) is installed inside the hollow tube (62). One end of the rotary sealing valve (621) is connected to the external oil auxiliary material (12). The other end of the rotary sealing valve (621) is connected to a conveying pipe (622). A hose (623) is installed between the conveying pipe (622) and the support pipe (63). The nozzle (51) is connected to the hose (623). The oil auxiliary material (12) is discharged through the conveying pipe (622), the hose (623) and the nozzle (51).
2. An ingredient adding mechanism for frozen hamburger production according to claim 1, characterized by, Alternatively, the discharge valve (5) is an electronic valve (52), the granular auxiliary material (11) is located inside the rotating drum (4), and an electric slip ring (631) is installed at one end of the hollow tube (62) for connecting the electronic valve (52) to power. The electronic valve (52) is installed at one end of the support tube (63), and the granular auxiliary material (11) accumulates near the dough (3) under the action of gravity.
3. An ingredient adding mechanism for frozen hamburger production according to claim 2, characterized by, A drive belt (41) is installed on the hollow tube (62) at one end of the drum (4), and a driven wheel (42) is installed on the hollow tube (62) at the other end of the drum (4). The driven wheel (42) is driven to rotate by an external power source.
4. The binder addition mechanism for frozen hamburger production according to claim 3, characterized by, The moving speed of the tray (2) is the same as the linear speed of the discharge valve (5).