Grease carburetor
By designing a support frame and cutting components on the hot water warming cabinet, the shortening is cut into multiple pieces, solving the problem of slow melting speed of shortening and achieving a rapid melting effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 泰安金冠宏油脂工业有限公司
- Filing Date
- 2025-05-16
- Publication Date
- 2026-04-14
AI Technical Summary
In existing technologies, the melting method of shortening takes a long time, mainly because the contact area between the shortening and the container is small, resulting in a slow melting speed.
An oil carburizer was designed, including a support frame and a cutting assembly. The cutting assembly consists of a vertical adjustment plate and a telescopic device. The cutting blade can cut block-shaped shortening in the horizontal direction to divide it into multiple pieces, increasing the contact area with the carburizing pan. The support frame can slide to accommodate shortening in different positions. Auxiliary baffles and baffles are used for limiting and preventing slippage.
By increasing the contact area between the shortening and the melting pan, the melting speed of the shortening is significantly improved. The design of the support frame and cutting components facilitates cleaning and use and accommodates shortening blocks of different sizes.
Smart Images

Figure CN224112056U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of carburizing devices, specifically to a grease carburetor. Background Technology
[0002] In the food processing industry, especially in the production of baked and fried foods, shortening is widely used due to its good plasticity and stability. However, since shortening is usually stored in large frozen blocks, it needs to be melted before use to meet processing requirements.
[0003] Currently, the most common method for melting shortening is the water bath method, which involves placing the shortening block in a container kept warm with hot water to melt it slowly. However, this method results in a small contact area between the shortening and the warm container, leading to a longer melting time. Utility Model Content
[0004] To address the technical problems existing in the background art, this utility model provides an oil carburetor.
[0005] The technical solution of this utility model is as follows:
[0006] A grease carburetor is installed on a hot water warming cabinet. The hot water warming cabinet includes a heating frame and a grease carburetor basin installed thereon. The grease carburetor includes a support frame located above the grease carburetor basin. The support frame is slidably connected to the heating frame in the direction of the length of the heating frame.
[0007] The support frame is equipped with a cutting component on the side near the carburetor.
[0008] The cutting assembly includes a vertically arranged vertical adjustment plate and a telescopic device located at its lower part. The vertical adjustment plate is located on one side of the support frame and is detachably connected to it. The vertical adjustment plate is adjustable in position along the vertical direction. The telescopic device is located below the support frame and has an extension end arranged in the horizontal direction. The extension end is provided with a multi-bladed cutting blade.
[0009] The specific structure of the aforementioned cutting knife is as follows: the cutting knife is a cross-shaped cutting knife, including a horizontal blade and a vertical blade. When the block of shortening is located between the cutting knife and one side of the melting basin, the cutting knife is pushed by the telescopic device to cut the block of shortening in the horizontal direction. One cut makes the block of shortening into at least four pieces, increasing the contact area between the block of shortening and the melting basin and improving the melting speed.
[0010] Shortening blocks are typically laid flat in a melting pan, with the width of the blocks horizontal. The width of the blocks is generally greater than its thickness. Therefore, the length of the horizontal blades is greater than the length of the vertical blades to facilitate cutting the flat blocks of shortening.
[0011] Regarding the specific structure of the support frame, the support frame includes a horizontal bar and vertical bars set at both ends of the horizontal bar. The vertical bars are slidably connected to the heating frame body, and the horizontal bar has through holes adapted to the vertical adjustment plate.
[0012] Preferably, one of the vertical rods is provided with a top clamping plate, one end of which is slidably connected to the vertical rod in the vertical direction, and the other end is pushed against the side of the vertical adjustment plate away from the extension direction of the telescopic device.
[0013] The connection structure between the vertical adjustment plate and the horizontal bar is as follows: the vertical adjustment plate has multiple first adjustment holes along its length, the horizontal bar has a first insertion hole corresponding to the first adjustment hole, a first insertion rod is inserted into the first insertion hole, and the vertical adjustment plate is connected to the horizontal bar through the first insertion rod.
[0014] Preferably, an auxiliary stop bar is provided on the side of the support frame away from the vertical adjustment plate. The auxiliary stop bar is vertically arranged, with its upper end slidingly connected to the horizontal bar along the length of the horizontal bar and its position adjustable along the length of the horizontal bar. Its lower end extends towards the lower part of the carburetor.
[0015] Furthermore, the auxiliary stop includes a hinged upper stop and a lower stop, with the lower stop rotating towards the cutting blade and the rotation angle ranging from 0° to 180°.
[0016] To facilitate the movement of the auxiliary baffle to the side of the heating frame with the support frame when not in use, so as not to delay the use of the carburetor, the horizontal plane of the hinge point between the lower baffle and the upper baffle is higher than the horizontal plane of the upper end of the carburetor.
[0017] To facilitate holding the block of shortening between the cutting blade and the auxiliary baffle, and to reduce the phenomenon of the block of shortening sliding to one side during cutting, making it easier to cut with the cutting blade, the lower baffle is provided with an auxiliary baffle on the side near the cutting blade, and the auxiliary baffle has multiple anti-slip protrusions on the side near the cutting blade.
[0018] The beneficial effects of this utility model are as follows:
[0019] The heating frame uses a water bath insulation method, and it contains a water storage container and a heating element for heating the water. The melting pan is installed inside the container, and the container conducts heat to the melting pan, thereby melting the block of shortening inside the melting pan. To accelerate the melting of the block of shortening, a support frame is provided on the heating frame. The support frame is connected to a horizontally retractable cutting blade via a vertical adjustment plate. The cutting blade can be adjusted to be inside the melting pan and located on one side of the block of shortening. By extending and retracting the cutting blade, the block of shortening is cut into multiple pieces in one go. Depending on the size and position of the block of shortening, it can be cut repeatedly. Cutting the block of shortening into multiple pieces increases the contact area with the melting pan, which facilitates the improvement of the melting speed of the shortening.
[0020] The support frame can slide along the length of the heating frame. After cutting the shortening in one mortar, the support frame can be moved by adjusting the cutting components and auxiliary baffles upwards. This moves the cutting components, auxiliary baffles, and top plate to an adjacent mortar containing chunks of shortening for cutting, thus increasing the melting speed of the shortening. When the cutting components are not in use, the support frame and its cutting components and auxiliary baffles can be moved to one side of the heating frame without affecting the use and cleaning of the heating frame and mortar.
[0021] The auxiliary stop bar and its auxiliary baffle can limit the block of shortening to be cut on the opposite side of the cutting blade, preventing the block of shortening from sliding to one side when the cutting blade is cutting. The position of the auxiliary stop bar on the crossbar can also be adjusted according to the size of the block of shortening, which is suitable for limiting block of shortening of different sizes. Attached Figure Description
[0022] In the attached diagram:
[0023] Figure 1 This is a schematic diagram of the first structure;
[0024] Figure 2 for Figure 1 Enlarged structural diagram at point A in the middle;
[0025] Figure 3 for Figure 1 Enlarged structural diagram at point B;
[0026] Figure 4 This is a top view;
[0027] Figure 5 This is a schematic diagram of the second structure;
[0028] Figure 6 for Figure 5 Enlarged structural diagram at point C;
[0029] The components represented by the various reference numerals in the diagram are:
[0030] 1. Heating frame; 101. Slide rail; 2. Carburetor; 3. Support frame; 301. Horizontal bar; 3011. Through hole; 3012. Second adjustment hole; 3013. First insertion hole; 302. Vertical bar; 4. Vertical adjustment plate; 401. First adjustment hole; 5. Telescopic device; 6. Cutting blade; 601. Horizontal blade; 602. Longitudinal blade; 7. Top plate; 8. First insertion rod; 9. Second insertion rod; 10. Upper stop bar; 11. Sliding sleeve; 12. Lower stop bar; 13. Auxiliary baffle; 14. Anti-slip protrusion; 15. Hinge. Detailed Implementation
[0031] See Figure 1 , Figure 4 and Figure 5 As shown, an oil melter is installed on a hot water warming cabinet. The hot water warming cabinet includes a heating frame 1 and a melter basin 2 installed on it. The heating frame 1 is a water bath heat preservation method, and it is equipped with a water storage container and a heating element for heating the water. The melter basin 2 is installed in the container, and the container conducts heat to the melter basin 2, thereby melting the block shortening in the melter basin 2. In order to accelerate the melting of the block shortening, a support frame 3 is provided on the heating frame 1. The support frame 3 is located above the melter basin 2 and is slidably connected to the heating frame 1 in the length direction of the heating frame 1.
[0032] See Figure 2 As shown, the support frame 3 includes a horizontal bar 301 and vertical bars 302 vertically arranged at both ends of the horizontal bar 301. The vertical bars 302 are slidably connected to the heating frame body 1. The horizontal bar 301 has through holes 3011 adapted to the vertical adjustment plate 4. Slide rails 101 are provided on both sides of the upper end surface of the heating frame body 1. The lower ends of the two vertical bars 302 are slidably connected to the slide rails 101, so that the support frame 3 can move along the length direction of the heating frame body 1 and adjust its position.
[0033] See Figure 3 As shown, a cutting assembly is provided on the side of the support frame 3 near the melter 2. The cutting assembly includes a vertically arranged vertical adjustment plate 4 and a telescopic device 5 located at its lower part. The vertical adjustment plate 4 is located on one side of the support frame 3 and is detachably connected to it. The vertical adjustment plate 4 is adjustable in the vertical direction. The telescopic device 5 is located below the support frame 3 and has an extension end arranged in the horizontal direction. The extension end is provided with a multi-bladed cutting blade 6. The telescopic device 5 in this embodiment is prior art and can be an electric push rod, an electric pneumatic push rod, or an electric hydraulic push rod. It can drive the cutting blade to continuously and repeatedly push and cut the block of shortening, or it can use an electric hydraulic push rod to slowly push and cut the block of shortening. In this embodiment, the cutting blade 6 and the telescopic device 5 are used before the block of shortening is melted. There is no need to consider the liquid level of the melted shortening in the melter 2. The cutting blade 6 and the telescopic device 5 are both located on the melted shortening liquid surface and will not affect the cutting blade 6 and the telescopic device 5.
[0034] The cutting blade 6 is a cross-shaped blade, comprising a horizontal blade 601 and a vertical blade 602. When the block of shortening is located between the cutting blade 6 and one side of the melter 2, the cutting blade 6 is pushed by the telescopic device 5 to cut the block of shortening horizontally. Each cut divides the block of shortening into at least four pieces, increasing the contact area between the block of shortening and the melter 2. Depending on the size and position of the block of shortening, it can be cut repeatedly. Cutting the block of shortening into multiple pieces increases the contact area with the melter 2 and improves the melting speed of the shortening.
[0035] The block of shortening is usually placed flat in the grease pan 2, so that the width of the block of shortening is horizontal. The width of the block of shortening is generally greater than its thickness. Therefore, the length of the horizontal blade 601 is set to be greater than the length of the vertical blade 602, so as to facilitate the cutting of the flat block of shortening.
[0036] The telescopic device 5 is horizontally positioned, with its side away from the extended end connected to the vertical adjustment plate 4. To prevent the telescopic device 5 from causing excessive thrust and breakage to the vertical adjustment plate 4 during use, a tightening plate 7 is installed on the side of the telescopic device 5 away from the extended end. The tightening plate 7 tightens the telescopic device 5 and increases its stability during use. Specifically, one of the vertical rods 302 is equipped with a tightening plate 7. One end of the tightening plate 7 slides vertically against the vertical rod 302, while the other end presses against the side of the vertical adjustment plate 4 opposite to the extended direction of the telescopic device 5.
[0037] The connection structure between the vertical adjustment plate 4 and the horizontal bar 301 is as follows: the vertical adjustment plate 4 has a plurality of first adjustment holes 401 along its length direction, the horizontal bar 301 has a first insertion hole 3013 corresponding to the first adjustment hole 401, a first insertion rod 8 is inserted into the first insertion hole 3013, and the vertical adjustment plate 4 is connected to the horizontal bar 301 through the first insertion rod 8.
[0038] See Figure 3 and Figure 6 As shown, an auxiliary stop bar is provided on the side of the support frame 3 away from the vertical adjustment plate 4. The auxiliary stop bar is vertically arranged, with its upper end slidingly connected to the horizontal bar 301 along its length and its position adjustable along the length of the horizontal bar 301. Its lower end extends towards the lower part of the carburetor 2. The auxiliary stop bar includes a hinged upper stop bar 10 and a lower stop bar 12, which can be hinged by a hinge 15 or other hinge components. The rotation direction of the lower stop bar 12 is towards the cutting blade 6, and the rotation angle range is 0°-180°. To facilitate the movement of the auxiliary stop bar to the side of the heating frame 1 with the support frame 3 when not in use, without delaying the use of the carburetor 2, the horizontal plane of the hinge point between the lower stop bar 12 and the upper stop bar 10 is higher than the horizontal plane of the upper end surface of the carburetor 2. In this embodiment, the lower stop bar 12 can only rotate towards the side closer to the cutting blade 6, and the rotation trajectory is located in the vertical plane of the horizontal bar 301, which serves to limit the position of the block of shortening.
[0039] See Figure 3 and Figure 6As shown, the upper end of the upper stop bar 10 is provided with a sliding sleeve 11, which is sleeved on the crossbar 301, so that the upper stop bar 10 can move along the length direction of the crossbar 301. The crossbar 301 is also provided with a plurality of second adjustment holes 3012 along the length direction. The sliding sleeve 11 is provided with a second insertion hole that matches the second adjustment hole 3012. A second insertion rod 9 is provided in the second insertion hole. The second insertion rod 9 passes through the second insertion hole and the corresponding second adjustment hole 3012 in sequence, which can realize the position adjustment and limiting function of the upper stop bar 10, and facilitate the adjustment of the position of the lower stop bar 12 according to different sizes of shortening.
[0040] See Figure 6 As shown, in order to facilitate holding the block of shortening between the cutting blade 6 and the auxiliary baffle, and to reduce the phenomenon of the block of shortening sliding to one side during cutting, and to facilitate cutting with the cutting blade 6, the lower baffle 12 is provided with an auxiliary baffle 13 on the side near the cutting blade 6. The auxiliary baffle 13 is provided with multiple anti-slip protrusions 14 on the side near the cutting blade 6. The anti-slip protrusions 14 are conical in structure. When the block of shortening approaches the anti-slip protrusions 14, the anti-slip protrusions 14 can penetrate into the block of shortening, preventing the block of shortening from sliding to one side.
Claims
1. A grease carburettor provided on a hot water holding cabinet, said hot water holding cabinet comprising a heating frame body (1) and a grease pan (2) provided thereon, characterized in that, The oil grease carburetor comprises a support frame (3) above the fuel bowl (2), which is slidably connected with the heating frame body (1) in the length direction of the heating frame body (1); The support frame (3) is provided with a cutting assembly near one side of the fuel bowl (2); The cutting assembly comprises a vertical adjusting plate (4) arranged vertically and a telescopic device (5) arranged below the vertical adjusting plate (4), the vertical adjusting plate (4) is arranged on one side of the support frame (3) and detachably connected with the support frame (3), the vertical adjusting plate (4) is adjustable in the vertical direction, and the telescopic device (5) is arranged below the support frame (3) and has an extending end arranged in the horizontal direction, and the extending end is provided with a multi-blade cutting knife (6).
2. The oil-fuelled carburettor according to claim 1, wherein The cutting knife (6) is a cross-shaped cutting knife (6) comprising a horizontal knife body (601) and a vertical knife body (602).
3. The oil-fuelled carburettor of claim 2, wherein The length of the horizontal knife body (601) is greater than the length of the vertical knife body (602).
4. The oil-fuelled carburettor according to claim 1, wherein The support frame (3) comprises a horizontal rod (301) and vertical rods (302) vertically arranged at both ends of the horizontal rod (301), the vertical rods (302) are slidably connected with the heating frame body (1), and the horizontal rod (301) is provided with a through hole (3011) matched with the vertical adjusting plate (4).
5. The oil-fuelled carburettor of claim 4, wherein One of the vertical rods (302) is provided with a pressing plate (7), one end of the pressing plate (7) is slidably connected with the vertical rod (302) in the vertical direction, and the other end of the pressing plate (7) is pressed to one side of the vertical adjusting plate (4) away from the extending direction of the telescopic device (5).
6. The oil-fuelled carburettor of claim 1, wherein A plurality of first adjusting holes (401) are arranged in the length direction of the vertical adjusting plate (4), a first insertion hole (3013) corresponding to the first adjusting hole (401) is arranged on the horizontal rod (301), a first insertion rod (8) is arranged in the first insertion hole (3013), and the vertical adjusting plate (4) is connected with the horizontal rod (301) through the first insertion rod (8).
7. The oil-fuelled carburettor of claim 4, wherein An auxiliary stop strip is arranged on the side of the support frame (3) away from the vertical adjusting plate (4), the auxiliary stop strip is vertically arranged, the upper end of the auxiliary stop strip is slidably connected with the horizontal rod (301) in the length direction of the horizontal rod (301) and is adjustable in the length direction of the horizontal rod (301), and the lower end of the auxiliary stop strip extends to the lower part of the fuel bowl (2).
8. The oil-fuelled carburettor of claim 7, wherein The auxiliary stop strip comprises a hinged upper stop strip (10) and a lower stop strip (12), the rotating direction of the lower stop strip (12) is towards the cutting knife (6), and the rotating angle range of the lower stop strip (12) is 0°-180°.
9. A carburettor according to claim 8, wherein the float chamber is defined by a wall of the float bowl and a wall of the main body. The horizontal plane where the hinged point of the lower stop strip (12) and the upper stop strip (10) is located is higher than the horizontal plane where the upper end surface of the fuel bowl (2) is located.
10. The oil-fuelled carburettor of claim 9, wherein The lower stop strip (12) is provided with an auxiliary stop plate (13) near one side of the cutting knife (6), and the auxiliary stop plate (13) is provided with a plurality of anti-skid protrusions (14) on the side close to the cutting knife (6).