Flower cake filling device

By designing the grouting cylinder and extrusion components in combination, the problem of inconsistent cream quantity when manually pressing the force rod was solved, achieving quantitative control of the grouting of flower cakes and improving their aesthetics.

CN224022751UActive Publication Date: 2026-03-24CHONGQING MASTER FOOD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-16
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Manually pressing the lever makes it difficult to ensure that the amount of cream squeezed out each time is consistent, which affects the appearance of the flower cake.

Method used

A flower cake grouting device was designed, including a grouting cylinder and an extrusion assembly. By holding the cylinder and pressing the plate, the grout is extruded quantitatively using the cooperation of the push block and connecting rod, ensuring the consistency of the extrusion amount each time.

Benefits of technology

This ensures a consistent amount of paste is extruded each time, enhancing the aesthetic appeal of the flower cake.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a fresh flower cake filling device in the technical field of cake filling. When grouting is conducted, a cylinder is held by hand, a thumb pushes a pressing plate upwards, the pressing plate moves to the upper end of a groove cavity of a sliding groove, then the pressing plate is pressed towards the grouting cylinder, a moving block drives a pushing block to be inserted into a groove cavity of a clamping groove, a bevel edge abuts against the lower wall of the groove cavity of the clamping groove, and a first connecting rod is driven to move downwards; the pressing state of the pressing plate is kept, the moving block slides downwards, the lower wall of the moving block abuts against the lower wall of the groove cavity of the sliding groove, the first connecting rod is synchronously driven to move downwards, and when the first connecting rod moves downwards, the push rod is synchronously driven to move downwards in the cavity of the storage chamber, so that the slurry in the storage chamber is extruded out; therefore, the amount of the extruded slurry is kept consistent every time.
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Description

Technical Field

[0001] This utility model relates to the field of cake filling technology, and in particular to a flower cake filling device. Background Technology

[0002] Cakes come in many varieties, among which flower cakes are decorated with fresh flowers, requiring a filling process during cake making. For example, Chinese patent application CN201721819455.1 discloses a flower cake filling device, the specific details of which are as follows: In use, the cream required for the flower cake is first filled into the filling chamber, then the filling extrusion plate is inserted into the filling chamber. The operator holds the main body of the filling device, ensuring their palm is in contact with the rubber friction point, and then presses their thumb on the flower filling force rod. With the flower cake piping nozzle facing downwards and aligned with the desired piping position on the flower cake, the operator presses down on the flower filling force rod. This pushes the filling extrusion plate along the inner wall of the filling chamber, squeezing the cream downwards. The squeezed cream is then extruded through the filling extrusion hole to the outside of the flower cake piping nozzle, forming the decoration. However, this device has the following technical problems:

[0003] When filling the piping, the force bar needs to be pressed manually. However, in actual operation, it is difficult to ensure that the amount of cream squeezed out each time is consistent, resulting in inconsistent sizes of piping and affecting the appearance. Utility Model Content

[0004] To address the problem mentioned in the background art that it is difficult to ensure a consistent amount of cream is squeezed out each time by manually pressing the force rod, this utility model provides the following technical solution:

[0005] A flower cake grouting device, comprising a grouting cylinder;

[0006] A pressing component for pushing grout is installed in the middle of the grouting cylinder, and a pushing component for controlling the downward movement of the pressing component is installed on one side of the grouting cylinder.

[0007] The extrusion assembly includes a first connecting rod, and a plurality of slots are provided at the middle of one end of the first connecting rod.

[0008] The pushing assembly includes a push block for cooperating with the slot to control the downward movement of the first connecting rod, and one end of the push block is equipped with a moving block for controlling the push block to move closer to the grouting cylinder.

[0009] Furthermore, the grouting cylinder includes a cylinder body, the inside of which is provided with a storage chamber for placing grout, and a grouting head is installed at the lower end of the cylinder body.

[0010] Furthermore, an arc-shaped plate is installed on the outer wall of the cylinder, a sliding groove is provided at the lower end of the arc-shaped plate, and side plates are installed at the upper and lower ends of the arc-shaped plate. A limiting groove for limiting the first connecting rod is provided in the middle of the side plate.

[0011] Furthermore, the extrusion assembly includes a push rod for limiting the first connecting rod, and a push plate for pushing the slurry is mounted on the lower end of the push rod.

[0012] Furthermore, a pressing plate is installed at one end of the movable block, a sliding plate is sleeved in the middle of the movable block, a spring for controlling the push block to reset is sleeved at one end of the movable block, a slot is opened at one end of the movable block, and a magnetic block is installed inside the movable block.

[0013] Furthermore, one end of the push block is machined into a bevel, and a connecting plate is installed on one end of the push block. A second connecting rod is installed on one end of the connecting plate to limit the push block in conjunction with the slot. A second magnetic block is installed inside the second connecting rod to magnetically attract the first magnetic block.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] During grouting, the cylinder is held by hand, and the thumb pushes the pressing plate upward, causing the pressing plate to move to the upper end of the groove cavity. The pressing plate is then pressed towards the grouting cylinder, causing the moving block to drive the push block to insert into the groove cavity. The inclined side abuts against the lower wall of the groove cavity, and the first connecting rod moves downward, maintaining the pressing state on the pressing plate. The moving block is slid downward, causing the lower wall of the moving block to abut against the lower wall of the groove cavity, and the first connecting rod moves downward simultaneously. When the first connecting rod moves downward, the push rod simultaneously drives the push rod to move downward in the cavity of the storage chamber, so as to squeeze out the grout in the storage chamber, thereby ensuring that the amount of grout squeezed out each time is consistent. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the grouting cylinder of this utility model;

[0018] Figure 3 This is a schematic diagram of the extrusion assembly of this utility model;

[0019] Figure 4 This is a schematic diagram of the structure of the driving component of this utility model;

[0020] Figure 5 This is a schematic diagram of the installation of the moving block and the pushing block of this utility model.

[0021] The following is a list of component names represented by the reference numerals in the attached figures:

[0022] 100-Grouting cylinder, 110-Cylinder body, 111-Storage chamber, 112-Grouting head, 120-Arc plate, 121-Slide groove, 122-Side plate, 123-Limiting groove;

[0023] 200-Extrusion assembly, 210-Push rod, 211-Push plate, 220-First connecting rod, 221-Slot;

[0024] 300-Push component, 310-Moving block, 311-Pressing plate, 312-Slide plate, 313-Spring, 314-Slot, 315-Magnetic block one, 320-Push block, 321-Bevel, 322-Connecting plate, 323-Second connecting rod, 324-Magnetic block two. Detailed Implementation

[0025] The preferred embodiments of this utility model are described in detail below, and a clear and complete explanation is given in conjunction with the accompanying drawings.

[0026] Please see Figures 1-5 This utility model provides a flower cake grouting device, including a grouting cylinder 100, which includes a cylinder body 110. The cylinder body 110 has a storage chamber 111 for placing grout inside, and a grouting head 112 is installed at the lower end of the cylinder body 110. An arc-shaped plate 120 is fixedly installed on the outer wall of the cylinder body 110, and a sliding groove 121 is provided at the lower end of the arc-shaped plate 120.

[0027] A pressing assembly 200 for pushing grout is installed in the middle of the grouting cylinder 100. The pressing assembly 200 includes a first connecting rod 220. Side plates 122 are installed at the upper and lower ends of the arc-shaped plate 120. The side plates 122 can be snapped into the arc-shaped plate 120 by means of a snap-fit. A limiting groove 123 is opened in the middle of the side plate 122 to limit the first connecting rod 220. The limiting groove 123 limits the first connecting rod 220 so that the first connecting rod 220 can only move up and down.

[0028] The first connecting rod 220 has multiple slots 221 at the middle of one end. The first connecting rod 220 includes a horizontal bar and a vertical bar, and the slots 221 are formed on the vertical bar of the first connecting rod 220. The vertical bar of the first connecting rod 220 is inserted into the limiting slot 123. The extrusion assembly 200 includes a push rod 210 for limiting the first connecting rod 220. The horizontal bar of the first connecting rod 220 is fixedly installed on the upper end of the push rod 210. A push plate 211 for pushing the slurry is fixedly installed on the lower end of the push rod 210.

[0029] Grout for grouting is poured into storage chamber 111, and the horizontal height of the grout is lower than the bottom of the arc plate 120. Then, the slot 221 is inserted into storage chamber 111, and the vertical rod of the first connecting rod 220 is simultaneously inserted into the cavity of the limiting groove 123, so as to control the push plate 211 to move downward and push the grout.

[0030] A pushing component 300 for controlling the downward movement of the extrusion component 200 is installed on one side of the grouting cylinder 100, and the pushing component 300 is mounted on the arc plate 120. The pushing component 300 includes a push block 320 for cooperating with the slot 221 to control the downward movement of the first connecting rod 220, and the upper end of the push block 320 is longer than the lower end of the moving block 310. A moving block 310 is installed at one end of the push block 320 for controlling the push block 320 to move closer to the grouting cylinder 100. 10, and the movable block 310 is installed in the cavity of the slide 121. When the movable block 310 and the upper wall of the cavity of the slide 121 abut, the upper end of the push block 320 is at the lower end of the cavity of the slot 221, so that when the push block 320 moves toward the grouting cylinder 100, the push block 320 pushes the first connecting rod 220 downward. When the movable block 310 and the lower wall of the cavity of the slide 121 abut, the lower end of the push block 320 abuts against the lower wall of the slot 221.

[0031] A baffle is provided between adjacent slots 221, and when the moving block 310 slides down from the upper end of the groove 121, it drives the first connecting rod 220 to move down by the distance of one baffle, so that when the moving block 310 moves up, the push block 320 and the slot 221 can engage.

[0032] A pressing plate 311 is fixedly installed at one end of the movable block 310. A sliding plate 312 is fitted in the middle of the movable block 310. A spring 313 for controlling the reset of the push block 320 is fitted at one end of the movable block 310, and the spring 313 is located between the pressing plate 311 and the sliding plate 312. When the spring 313 is in its initial state, the sliding plate 312 is in contact with the outer wall of the slide groove 121, and the connecting plate 322 is in contact with the inner wall of the slide groove 121, so that the movable block 310 will not move away from the push block 320. A slot 314 is opened at one end of the movable block 310, and a magnet 315 is installed inside the movable block 310.

[0033] One end of the push block 320 is machined into a bevel 321 so that when the push block 320 moves toward the grouting cylinder 100, the connecting plate 322 moves downward under the guidance of the bevel 321. A connecting plate 322 is fixedly installed on one end of the push block 320, and a second connecting rod 323 is fixedly installed on one end of the connecting plate 322 for limiting the push block 320 in conjunction with the slot 314. The second connecting rod 323 can be inserted into the slot 314, and a second magnetic block 324 for magnetic attraction with the first magnetic block 315 is installed inside the second connecting rod 323.

[0034] When assembling the push assembly 300, pliers can be used to clamp the connecting plate 322, insert the push block 320 into the arc plate 120, and align the second connecting rod 323 toward the slide groove 121. Then, insert the moving block 310 into the groove of the slide groove 121, so that the second connecting rod 323 is inserted into the groove of the slot 314. When the second magnetic block 324 and the first magnetic block 315 are magnetically attracted, the assembly of the moving block 310 and the push block 320 is completed.

[0035] During grouting, by holding the cylinder 110, the thumb pushes the pressing plate 311 upwards, causing the pressing plate 311 to move to the upper end of the groove 121. Then, the pressing plate 311 is pressed towards the grouting cylinder 100, causing the moving block 310 to drive the push block 320 to insert into the groove 221. The inclined side 321 abuts against the lower wall of the groove 221, and drives the first connecting rod 220 downwards, maintaining the pressing state on the pressing plate 311, and sliding the moving block 310 downwards. The lower wall of the moving block 310 abuts against the lower wall of the groove 121, simultaneously driving the first connecting rod 220 to move downward. When the first connecting rod 220 moves downward, the push rod 210 simultaneously drives the push rod 210 to move downward in the cavity of the storage chamber 111 to squeeze out the slurry in the storage chamber 111, thereby ensuring that the amount of slurry squeezed out each time remains consistent. When the pressing plate 311 needs to be pressed, the spring 313 controls the pressing plate 311 to reset, and the push block 320 moves away from the first connecting rod 220.

[0036] Based on the above description and accompanying drawings, those skilled in the art can understand and implement this utility model. Furthermore, any non-creative modifications made to this utility model by those skilled in the art without inventive effort are still within the protection scope of this utility model.

Claims

1. A flower cake grouting device, comprising a grouting cylinder (100), characterized in that: The grouting cylinder (100) is equipped with an extrusion assembly (200) for pushing the grout, and a pushing assembly (300) for controlling the downward movement of the extrusion assembly (200) is installed on one side of the grouting cylinder (100). The extrusion assembly (200) includes a first connecting rod (220), and a plurality of slots (221) are provided at the middle of one end of the first connecting rod (220); The pushing assembly (300) includes a push block (320) for cooperating with the slot (221) to control the first connecting rod (220) to move downward, and a moving block (310) is installed at one end of the push block (320) for controlling the push block (320) to move closer to the grouting cylinder (100).

2. The flower cake filling device according to claim 1, characterized in that: The grouting cylinder (100) includes a cylinder body (110), the inside of which is provided with a storage chamber (111) for placing grout, and a grouting head (112) is installed at the lower end of the cylinder body (110).

3. The flower cake filling device according to claim 2, characterized in that: An arc-shaped plate (120) is installed on the outer wall of the cylinder (110). A sliding groove (121) is provided at the lower end of the arc-shaped plate (120). Side plates (122) are installed at the upper and lower ends of the arc-shaped plate (120). A limiting groove (123) for limiting the first connecting rod (220) is provided in the middle of the side plate (122).

4. The flower cake filling device according to claim 1, characterized in that: The extrusion assembly (200) includes a push rod (210) for limiting the first connecting rod (220), and a push plate (211) for pushing the slurry is mounted on the lower end of the push rod (210).

5. The flower cake filling device according to claim 1, characterized in that: A pressing plate (311) is installed at one end of the movable block (310), a sliding plate (312) is sleeved in the middle of the movable block (310), a spring (313) for controlling the reset of the push block (320) is sleeved at one end of the movable block (310), a slot (314) is opened at one end of the movable block (310), and a magnetic block (315) is installed inside the movable block (310).

6. The flower cake grouting device according to claim 5, characterized in that: One end of the push block (320) is machined into a bevel (321), and a connecting plate (322) is installed on one end of the push block (320). A second connecting rod (323) for limiting the push block (320) with the slot (314) is installed on one end of the connecting plate (322). A second magnetic block (324) for magnetic attraction with the first magnetic block (315) is installed inside the second connecting rod (323).

Citation Information

Patent Citations

  • Flower cake cementer

    CN207733539U