Garlic paste processor
By designing a garlic mincer with a handle, support assembly, and elastic element, the problems of inconvenient observation and garlic splattering in existing garlic crushers are solved, achieving efficient garlic crushing and environmentally friendly use. The structure is simple and materials are saved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- 王少玉
- Filing Date
- 2020-06-01
- Publication Date
- 2026-07-24
AI Technical Summary
Existing garlic presses are inconvenient to use because the top cover prevents garlic splattering, making it impossible to observe the progress of the pressing process. Additionally, the garlic splatters when crushed, and the separate pressing rod from the container is not environmentally friendly.
A garlic mincing device was designed, comprising a handle, a support assembly, a tamping hammer, and an elastic element. A sleeve covers the garlic to form a closed chamber, and the hammer is used to pound the garlic in the chamber with the support of the bottom of the container. Combined with the energy storage function of the elastic element, efficient garlic mincing is achieved.
It effectively prevents garlic splattering, improves garlic pounding efficiency, saves materials, has a simple structure, is easy to use, and can be replaced by household containers, making it environmentally friendly and efficient.
Smart Images

Figure CN113749505B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to kitchen utensils, particularly a garlic mincing machine. Background Technology
[0002] The anti-splash garlic pounder with announcement number CN201536974U has a structure including a garlic pounder body and a pounding rod. The upper part of the garlic pounder body is provided with a top cover with an opening in the middle to prevent garlic splattering. However, after adding the top cover, it is impossible to observe the progress of garlic pounding and add garlic during the garlic pounding process. The device is inconvenient to use. When the pounding rod hits the garlic, the garlic breaks and splashes, decomposing useful energy at the same time. Summary of the Invention
[0003] To address the aforementioned shortcomings, this invention provides a garlic mincing device. The technical solution of this invention is a garlic mincing device comprising a handle, a support assembly, a tamping hammer, and an elastic element. The support assembly includes a sleeve, a barrel, and two L-shaped connecting rods; one end of the sleeve is connected to both sides of the L-shaped connecting rods in a U-shape; the lower end of the U-shape is perpendicularly connected to the washer plane at the upper end of the barrel; the lower end of the washer is connected to the upper port of the barrel; the sleeve, barrel, and two L-shaped connecting rods are integrally formed; the tamping hammer includes a hammer rod and a hammer head; the hammer rod and hammer head are detachably connected; the support assembly is sleeved with the tamping hammer, wherein the sleeve is sleeved with the hammer rod, the sleeve is positioned on the upper end of a positioning block fixed to the hammer rod, and the upper end of the hammer rod extends from the sleeve end and is detachably connected to the top of the hammer rod with a handle; the barrel is sleeved with the hammer head, the hammer head is positioned directly below the positioning block; the middle of the sleeve and barrel is fixedly connected by symmetrical L-shaped connecting rods; the inner walls at both ends of the support assembly are slidably connected to the outer walls of the hammer rod and hammer head, respectively.
[0004] Preferably, the hammer head is in the shape of a stepped shaft, comprising a shaft and a circular hammer face. One end of the shaft is fixedly connected to the circular face, and the center of the other end of the shaft is provided with an external thread and connected to the internal thread at the bottom of the hammer rod. The circular face is 0.6-0.8 mm thick, and the shoulder of the shaft is 2-3 mm wide.
[0005] Preferably, one end of the cylindrical handle is provided with a hand guard and the other end is provided with a through hole. The handle is fitted with the hammer. The through hole at the upper end of the handle is fastened to the internal thread at the top of the hammer rod by an eye bolt. The elastic element is set on the hammer rod inside the handle. One end of the elastic element is connected to the inside of the handle, and the other end is connected to the sleeve end of the bracket assembly sleeved on the hammer rod. The other end of the sleeve extends outward from the inside of the cylindrical handle.
[0006] Preferably, the sleeve is 18-20mm high, the sleeve is cylindrical and has an opening at one end, and the opening has a circular cutting edge. The other end of the sleeve is fixedly connected to the bottom of the washer. The connection point has equally spaced semi-circular or V-shaped windows, and the opening end faces the bottom of the washer. The windows are located on the side of the sleeve, the windows are 3-5mm high, and the sleeve wall thickness is 0.3-0.5mm.
[0007] Preferably, the shaft end of the stepped shaft extends upward into the gate-shaped structure through the through hole of the washer, and can move up and down within the gate-shaped structure.
[0008] Preferably, the clearance fit between the washer through hole diameter at the top of the sleeve and the shaft diameter of the stepped shaft of the hammer head is smaller than the clearance fit between the inner diameter of the sleeve and the shoulder diameter of the stepped shaft of the hammer head.
[0009] Preferably, the bottom surface of the hammer head is parallel to the lower opening of the sleeve, which is the lower stop point of the hammer body, and the point where the shoulder of the hammer head tightly abuts against the bottom of the sleeve washer is the upper stop point of the hammer body.
[0010] Preferably, the sleeve and hammer are both made of 304 stainless steel.
[0011] When using the device, hold the handle and strike the garlic in the bowl or container vertically. The lower end of the sleeve chops and trims the garlic. The lower end of the sleeve snaps shut with the bottom surface, enclosing the garlic inside the sleeve to form a closed chamber. With the support of the bottom surface, the handle moves downward due to inertia, compressing the elastic element and storing energy. Simultaneously, the handle drives the hammer to move along the central axis of the support assembly. The hammer head strikes the garlic enclosed in the sleeve, lifting it to open the seal. The elastic element returns to its original shape, resetting the hammer. At the same time, the shoulder of the shaft tightly abuts against the bottom surface of the retaining ring at the top of the sleeve, squeezing the garlic paste flowing back to the shoulder and discharging it from the window of the sleeve. When processing garlic, crush one clove at a time; adding too many will cause them to collide. Different degrees of paste can be made as needed. After completion, the hammer head can be removed from the frame space by rotating counterclockwise for cleaning.
[0012] The beneficial effects of this invention are as follows: First, existing technologies include a garlic press body and a pounding rod. To prevent garlic splattering, the garlic press body is equipped with a lid. This invention's garlic pounder uses a sleeve to cover the garlic in the container, and the bottom of the container seals the sleeve port to form a closed chamber. The hammer performs the garlic pounding operation within this closed chamber, preventing the decomposition of useful energy and avoiding garlic splattering. Simultaneously, the utilization rate of useful energy is greatly improved, and the raw materials for making the lid are saved. Second, in existing technologies, the garlic press body and pounding rod are complementary tools. This invention's garlic pounder can be used independently. The garlic press body can be replaced by a common household bowl or container and can be directly used as a container for garlic pounding. This saves on the raw materials for making the garlic press body, is environmentally friendly, more convenient to use, and has a simpler structure. Attached Figure Description
[0013] Figure 1 1. Structural diagram of the garlic paste processor of the present invention;
[0014] Figure 1-1 1. Operation diagram of the garlic paste processor of this invention;
[0015] Figure 2 Hammer head front view and top view;
[0016] Figure 3 Hammer rod front view and top view;
[0017] Figure 4 1. Hammer combination diagram ( Figure 2 , Figure 3 );
[0018] Figure 5 Front view, left view, and top view of the bracket assembly;
[0019] Figure 6 Handle front view and top view;
[0020] Figure 7 Main view of the elastic component.
[0021] Based on the attached diagram, the following labels are given:
[0022] 43-Hammer rod, 431-Positioning block, 42-Hammer head, 421-Shaft, 422-Circular piece, 4-Tamming hammer, 5-Bracket assembly, 51-Sleeve, 52-L-type connecting rod, 53-Sleeve, 531-Washer, 532-Window, 533-Cylinder, 6-Handle, 61-Hand guard, 7-Elastic element, 8-Eye bolt M5X10X1 (piece). Detailed Implementation
[0023] See Figure 1 , Figure 1-1 See also: Figures 2 to 7 :
[0024] A garlic mincing device includes a handle 6, a support assembly 5, a tamping hammer 4, and an elastic element 7. The support assembly 5 includes a sleeve 51, a sleeve 53, and two L-shaped connecting rods 52. One end of the sleeve 51 is connected to the two sides of the L-shaped connecting rods 52 in a U-shape. The lower end of the U-shape is perpendicularly connected to the plane of the washer 531 at the upper end of the sleeve 53. The lower end of the washer 531 is connected to the upper port of the cylinder 533. The sleeve 51, the sleeve 53, and the two L-shaped connecting rods 52 are integrally formed. The tamping hammer 4 includes a hammer rod 43 and a hammer head 42, which are detachably connected. The support assembly 5 is sleeved with the tamping hammer 4, wherein a sleeve 51 is sleeved with the hammer rod 43, and the sleeve 51 is located on the upper end of a positioning block 431 fixed to the hammer rod 43. One end of the hammer rod 43 extends out of the sleeve 51 and is detachably connected to a handle 6. The sleeve 53 is sleeved with the hammer head 42, which is located directly below the positioning block 431. The sleeve 51 and the sleeve 53 are fixedly connected by symmetrical L-shaped connecting rods 52 in the middle. The inner walls of both ends of the support assembly 5 are slidably connected to the outer walls of the hammer rod 43 and the hammer head 42, respectively, and can move up and down.
[0025] Preferably, the hammer head 42 is a stepped shaft shape, comprising a shaft 421 and a circular hammer face 422. One end of the shaft 421 is fixedly connected to the circular hammer face 422, and the center of the other end of the shaft 421 is provided with an external thread and connected to the internal thread at the bottom of the hammer rod 43. The circular hammer face 422 is 0.6-0.8 mm thick, and the shoulder is 2-3 mm wide. The circular hammer face 422 minimizes the contact area with the inner wall of the sleeve 53. The shoulder design allows for the removal of garlic paste on the reverse flow through reciprocating motion and prevents garlic splatter caused by air impact from the piston effect of the hammer head 42.
[0026] Preferably, one end of the cylindrical handle has a hand guard 61, and the other end has a through hole. An eye bolt 8 is threadedly connected to the top of the hammer rod 43 inside the handle through the through hole. The elastic element 7 is disposed inside the handle 6 and sleeved with the hammer rod 43 inside the handle 6. One end of the elastic element 7 is connected to the inside of the handle 6, and the other end is connected to the sleeve 51 end of the bracket assembly sleeved on the hammer rod 43. The other end of the sleeve 51 extends outward from inside the cylindrical tube of the handle 6. The eye bolt 8 serves both a connecting function and allows for convenient hanging on a shelf. The elastic element 7, located inside the handle 6, enhances safety during operation, and the hand guard prevents the hand holding the handle from sliding downwards.
[0027] Preferably, the sleeve 53 is 18-20mm high, cylindrical in shape, with an opening at one end and a circular cutting edge at the opening. The other end of the sleeve 53 is fixedly connected to the washer 531. This connection point has equally spaced semi-circular or V-shaped windows 532, with the opening facing the bottom of the washer. The windows 532 are located on the side of the sleeve and are 3-5mm high. The sleeve 53 has a wall thickness of 0.3-0.5mm. The circular cutting edge of the sleeve 53 is used to chop and trim the garlic, covering the garlic cloves within a circular radius within the sleeve 53. The sleeve 53 prevents garlic paste from splashing in.
[0028] Preferably, the shaft 421 end of the stepped shaft extends upward into the U-shaped frame through the through hole of the washer 531, and can move up and down within the U-shaped frame. This frame space facilitates the assembly and disassembly of the hammer head 42.
[0029] Preferably, the clearance fit between the through hole diameter of the washer 531 at the top of the sleeve 53 and the shaft diameter 421 of the stepped shaft of the hammer head 42 is smaller than the clearance fit between the inner diameter of the sleeve 53 and the shoulder diameter of the stepped shaft of the hammer head 42. This smaller clearance fit can reduce the amount of garlic paste that may escape upwards from the gap between the through hole and the shaft 421.
[0030] Preferably, the bottom surface of the hammer head 42 is parallel to the lower opening of the sleeve 53, which is the lower stop point of the hammer body, and the point where the shoulder of the hammer head 42 tightly abuts against the bottom of the washer 531 of the sleeve 53 is the upper stop point of the hammer body.
[0031] Preferably, the sleeve 53 and the hammer 42 are both made of 304 stainless steel.
[0032] The above description is only a preferred embodiment of the present invention. It should be noted that those skilled in the art can make several modifications and improvements without departing from the inventive concept of the present invention, and these all fall within the protection scope of the present invention.
[0033] Note: Figure 1 The structural diagram of the garlic mincer is attached to the abstract. Figure 5 , Figure 6 Sectional view; Figure 4 Use outlines to draw.
Claims
1. A garlic mincing device, comprising a handle, a support assembly, a tamping hammer, and an elastic element; the support assembly includes a sleeve, a sleeve, and two L-shaped connecting rods, one end of the sleeve being connected to both sides of the L-shaped connecting rods in a U-shape, the lower end of the U-shape being perpendicularly connected to the plane of a washer at the upper end of the sleeve, and the lower end of the washer being connected to the upper port of the sleeve; the sleeve, sleeve, and two L-shaped connecting rods are integrally formed; the tamping hammer includes a hammer rod and a hammer head, the hammer rod and hammer head being detachably connected; the support assembly is sleeved with the tamping hammer, wherein the sleeve is sleeved with the hammer rod, the sleeve being disposed on the upper end of a positioning block fixedly connected to the hammer rod, the upper end of the hammer rod extending from the end of the sleeve, and a handle being detachably connected to the top of the hammer rod; the sleeve is sleeved with the hammer head, the hammer head being disposed directly below the positioning block; the sleeve and sleeve are fixedly connected in the middle by symmetrical L-shaped connecting rods, and the inner walls at both ends of the support assembly are slidably connected to the outer walls of the hammer rod and the hammer head, respectively. The elastic element is disposed on the hammer rod inside the handle. One end of the elastic element is connected to the inside of the handle, and the other end is connected to the sleeve end of the support assembly sleeved on the hammer rod. The other end of the sleeve extends outward from the round tube of the handle. The hammerhead is a stepped shaft, comprising a shaft and a circular hammer face. One end of the shaft is fixedly connected to the circular face, and the center of the other end of the shaft has an external thread that connects to the internal thread at the bottom of the hammer rod. The circular face is 0.6-0.8 mm thick, and the width between the shafts is 2-3 mm. The stepped shaft extends upward through the through-hole of the washer into the U-shaped frame, and can move up and down within the U-shaped frame. One end of the cylindrical handle is provided with a hand guard, and the other end is provided with a through hole. The handle and the through hole at the upper end of the tamping hammer assembly handle are fastened to the internal thread of the top of the hammer rod by eye bolts. The elastic element is set on the hammer rod inside the handle. One end of the elastic element is connected to the inside of the handle, and the other end is connected to the sleeve end of the bracket assembly mounted on the hammer rod. The other end of the sleeve extends outward from the inside of the cylindrical handle.