CN210148220U - Balanced sliding installation structure of spiral cutting machine for cutting plants at uniform distance - Google Patents

Balanced sliding installation structure of spiral cutting machine for cutting plants at uniform distance Download PDF

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Publication number
CN210148220U
CN210148220U CN201920606740.8U CN201920606740U CN210148220U CN 210148220 U CN210148220 U CN 210148220U CN 201920606740 U CN201920606740 U CN 201920606740U CN 210148220 U CN210148220 U CN 210148220U
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Prior art keywords
rod
top extension
frame
groove sliding
screw
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CN201920606740.8U
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Chinese (zh)
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罗达明
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Luo Daming
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Individual
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Abstract

The utility model discloses a balanced sliding installation structure of a spiral cutting machine for cutting plants with uniform distance, which comprises a top extension screw rod, a single-groove sliding rod, a top extension liner and a top extension frame; the jacking screw rod and the single-groove sliding rod are arranged in parallel; the top extension frame is sleeved on the single-groove sliding rod and moves back and forth along the single-groove sliding rod, the top extension frame pushes the top extension liner to move forward axially, the top extension frame is screwed with the top extension screw rod, and the top extension screw rod drives the top extension frame to move back and forth axially; the plant cutting machine is characterized in that a balance rod is further arranged on the rack of the plant cutting machine, the balance rod is located beside the single-groove sliding rod and is arranged in parallel with the single-groove sliding rod, and the top extension frame is sleeved on the balance rod. The balance rod is arranged on the frame of the plant cutting machine, penetrates through the top extension frame and is parallel to the single-groove sliding rod and the top extension screw rod, and the balance rod, the single-groove sliding rod and the top extension screw rod are matched with each other, so that the top extension frame is more smooth and easier to slide.

Description

Balanced sliding installation structure of spiral cutting machine for cutting plants at uniform distance
Technical Field
The utility model belongs to the technical field of the vegetation cutting machine technique and specifically relates to indicate a balanced sliding installation structure with the even spiral helicine cutting machine of distance of vegetation cutting.
Background
China is the country where potatoes are produced most in the world, and the planting area and the total yield of the potatoes are the first in the world. Potato chips are one of the popular food products worldwide, but at present, the potato chips are mainly imported, and besides most production equipment cannot meet the requirements of the potato chips, no proper potato chip cutting equipment is also an important limiting factor.
Most of the potato chips in fast food restaurants are cut by pure manual operation or a simple manual slicer, so that the cutting size of the potato chips is not uniform, and the pollution to a certain degree is easily caused, particularly when the potato chips are made into potato tower strings, the potato tower strings need to be strung manually one by one, the labor intensity is high, the working efficiency is low, the production requirements of modernized assembly lines and quick and short-cut production are difficult to meet, and the manually strung potato tower strings are not attractive in appearance, so that the sales volume is influenced.
Follow the development of market, also there are a small part producer to make some potato automatic cutout machines, be provided with in the automatic cutout machine and be used for promoting the bamboo let that the cluster had established the plant to the top that cutting tool stretched the mechanism, and the top is stretched the mechanism and is stretched the frame including the top, and traditional top is stretched the frame and is stretched under the effect of self weight, when slideing, appears rocking easily and slides the phenomenon that is not smooth and easy relatively when slideing.
SUMMERY OF THE UTILITY MODEL
In view of this, the present invention provides a balanced sliding installation structure of a cutting machine for cutting plants at a uniform distance spirally, which effectively solves the problem that the existing top-extending frame is prone to shaking and sliding.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a balanced sliding installation structure of a spiral cutting machine for cutting plants at uniform distance comprises a top extension screw rod, a single-groove sliding rod, a top extension liner and a top extension frame; the top extension screw rod and the single-groove sliding rod are both rotatably arranged on a frame of the plant cutting machine, the top extension screw rod and the single-groove sliding rod are arranged in parallel, and the top extension liner is arranged in the single-groove sliding rod and moves back and forth along the single-groove sliding rod axially; the top extension frame is sleeved on the single-groove sliding rod and moves back and forth along the single-groove sliding rod, the top extension frame pushes the top extension liner to move forward axially, the top extension frame is screwed with the top extension screw rod, and the top extension screw rod drives the top extension frame to move back and forth axially; the plant cutting machine is characterized in that a balance rod is further arranged on the rack of the plant cutting machine, the balance rod is located beside the single-groove sliding rod and is arranged in parallel with the single-groove sliding rod, and the top extension frame is sleeved on the balance rod.
As a preferable scheme, a sliding hole penetrates through the position, corresponding to the single-groove sliding rod, of the top-extending frame.
As a preferred scheme, a screw sleeve is arranged on the top extension frame corresponding to the top extension screw.
As a preferable scheme, a balance rod sleeve hole penetrates through the position, corresponding to the balance rod, of the top-extending frame.
As a preferred scheme, a screw clamp is arranged on the top stretching frame, the screw clamp is fixedly locked on the top stretching frame through a screw, correspondingly, a screw hole is formed in the top stretching frame, and a spring is connected between the screw clamp and the top stretching frame.
As a preferable scheme, the single-groove sliding rod is positioned right above the top-extending screw rod, the screw is positioned between the single-groove sliding rod and the top-extending screw rod, the balancing rod is positioned right above the single-groove sliding rod, and the four are positioned on the same vertical line.
Compared with the prior art, the utility model obvious advantage and beneficial effect have, particularly, can know by above-mentioned technical scheme:
the balance rod penetrates through the top extension frame and is parallel to the single-groove sliding rod and the top extension screw rod, and the balance rod is matched with the single-groove sliding rod and the top extension screw rod, so that the top extension frame is smoother and easier to slide.
And (II) the balancing rod, the single-groove sliding rod, the top extension screw rod and the screw are positioned on the same vertical line, so that the top extension frame slides more stably and smoothly.
To illustrate the structural features and functions of the present invention more clearly, the present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
Drawings
FIG. 1 is an assembled perspective view of the whole apparatus according to the preferred embodiment of the present invention;
FIG. 2 is an exploded view of the overall apparatus of the preferred embodiment of the present invention;
FIG. 3 is another exploded perspective view of the overall apparatus of the preferred embodiment of the present invention
FIG. 4 is a cross-sectional view of the apparatus of the preferred embodiment of the present invention;
FIG. 5 is a partial assembly view of the overall apparatus according to the preferred embodiment of the present invention;
fig. 6 is a perspective view of the top-extended frame in the preferred embodiment of the present invention.
The attached drawings indicate the following:
10. top extension screw 20, single groove slide rod
30. Top extension liner 40 and top extension frame
401. Screw sleeve 402, slide hole
403. Balance bar sleeve hole 404, screw hole
41. Screw clamp 42 and screw
43. Spring
50. Balancing rod 61, cutting tool
62. Sliding bracket 63 and gear lever
64. A drive device.
Detailed Description
Referring to fig. 1 to 6, the detailed structure of the preferred embodiment of the present invention is shown, which includes a top-extended screw 10, a single-groove sliding rod 20, a top-extended bladder 30 and a top-extended frame 40.
The top-extending screw rod 10 and the single-groove sliding rod 20 are both rotatably arranged on a frame of the plant cutting machine, and the top-extending screw rod 10 and the single-groove sliding rod 20 are arranged in parallel with each other.
The top-extension bladder 30 is arranged in the single-groove slide rod 20 and moves back and forth along the axial direction of the single-groove slide rod 20. The top extension frame 40 is sleeved on the single-groove sliding rod 20 and moves back and forth along the single-groove sliding rod 20, the top extension frame 40 pushes the top extension liner 30 to move forward axially, the top extension frame 40 is in threaded connection with the top extension screw 10, and the top extension screw 10 drives the top extension frame 40 to move back and forth axially.
The frame of the plant cutting machine is further provided with a balance rod 50, the balance rod 50 is positioned beside the single-groove sliding rod 20 and arranged in parallel with the single-groove sliding rod 20, the top stretching frame 40 is sleeved on the balance rod 50, and the balance rod 50 is arranged for balancing the gravity of the top stretching frame 40 so as to enable the top stretching frame to slide more easily.
The top extension frame 40 is provided with a screw clamp 41, the screw clamp 41 is fixedly locked on the top extension frame 40 through a screw 42, correspondingly, the top extension frame 40 is provided with a screw hole 404, and a spring 43 is connected between the screw clamp 42 and the top extension frame 40.
A sliding hole 402 is formed on the top-extending frame 40 at a position corresponding to the single-slot sliding rod 20. A screw sleeve 401 is arranged on the top-extending frame 40 corresponding to the top-extending screw 10. A balance bar sleeve hole 403 penetrates through the position of the jacking frame corresponding to the balance bar 50. The single-groove sliding rod 20 is located right above the top-extending screw rod 10, the screw 42 is located between the single-groove sliding rod 20 and the top-extending screw rod 10, the balancing rod 50 is located right above the single-groove sliding rod 20, and the four balancing rods are located on the same vertical line, so that the top-extending frame 50 can slide more easily and smoothly.
Detailed description the working principle of this implementation is as follows:
when the bamboo stick is used, a bamboo stick penetrates through root plants (such as potatoes, sweet potatoes, radishes, taros and the like), one end of the bamboo stick is inserted into the single-groove sliding rod 20, and the other end of the bamboo stick penetrates through a knife edge center hole of the cutting tool 61 and then is supported on the sliding bracket 62. After the gear lever 63 is hung, the device is started, the driving device 64 drives the top-extending screw 10 to rotate (or the manual rocking handle can drive the top-extending screw 10 to rotate), so that the top-extending frame 40 is driven to move forwards on the single-groove sliding rod 20, the top-extending frame 40 drives the top-extending liner 30 to move forwards in the single-groove sliding rod 20, so that bamboo sticks are driven to move forwards, and plants are cut into equidistant spiral shapes by the knife edge of the cutting tool 60. In the process of sliding the top-extending frame 40 again, the balancing rod 50 balances the gravity of the top-extending frame 40, so that the top-extending frame 40 slides more smoothly.
The utility model discloses a design focus lies in: firstly, a balancing rod is arranged on a rack of the plant cutting machine, penetrates through the top extension frame and is parallel to the single-groove sliding rod and the top extension screw rod, and the balancing rod is matched with the single-groove sliding rod and the top extension screw rod, so that the top extension frame is smoother and easier to slide. And secondly, the balance rod, the single-groove sliding rod and the top extension screw rod are positioned on the same vertical line, so that the top extension frame slides more stably and smoothly.
The above description is only a preferred embodiment of the present invention, and is not intended to limit the technical scope of the present invention, so that any slight modifications, equivalent changes and modifications made by the technical spirit of the present invention to the above embodiments are all within the scope of the technical solution of the present invention.

Claims (6)

1. A balanced sliding installation structure of a spiral cutting machine for cutting plants at uniform distance comprises a top extension screw rod, a single-groove sliding rod, a top extension liner and a top extension frame; the top extension screw rod and the single-groove sliding rod are both rotatably arranged on a frame of the plant cutting machine, the top extension screw rod and the single-groove sliding rod are arranged in parallel, and the top extension liner is arranged in the single-groove sliding rod and moves back and forth along the single-groove sliding rod axially; the top extension frame is sleeved on the single-groove sliding rod and moves back and forth along the single-groove sliding rod, the top extension frame pushes the top extension liner to move forward axially, the top extension frame is screwed with the top extension screw rod, and the top extension screw rod drives the top extension frame to move back and forth axially; the method is characterized in that: the frame of the plant cutting machine is further provided with a balance rod, the balance rod is positioned beside the single-groove sliding rod and arranged in parallel with the single-groove sliding rod, and the top extension frame is sleeved on the balance rod.
2. The balanced sliding installation structure of a cutter for cutting vegetation in a spiral shape with a uniform distance according to claim 1, wherein: sliding holes are arranged on the top extending frame corresponding to the single-groove sliding rods in a penetrating mode.
3. The balanced sliding installation structure of a cutter for cutting vegetation in a spiral shape with a uniform distance according to claim 1, wherein: and a screw sleeve is arranged on the top stretching frame corresponding to the top stretching screw.
4. The balanced sliding installation structure of a cutter for cutting vegetation in a spiral shape with a uniform distance according to claim 1, wherein: and a balance rod sleeve hole penetrates through the position, corresponding to the balance rod, of the top-extending frame.
5. The balanced sliding installation structure of a cutter for cutting vegetation in a spiral shape with a uniform distance according to claim 1, wherein: the top stretching frame is provided with a screw clamp, the screw clamp is fixedly locked on the top stretching frame through a screw, correspondingly, the top stretching frame is provided with a screw hole, and a spring is connected between the screw clamp and the top stretching frame.
6. The balanced sliding installation structure of a cutter for cutting vegetation in a spiral shape with a uniform distance according to claim 5, wherein: the single-groove sliding rod is positioned right above the top-extending screw rod, the screw is positioned between the single-groove sliding rod and the top-extending screw rod, the balancing rod is positioned right above the single-groove sliding rod, and the balancing rod and the top-extending screw rod are positioned on the same vertical line.
CN201920606740.8U 2019-04-29 2019-04-29 Balanced sliding installation structure of spiral cutting machine for cutting plants at uniform distance Active CN210148220U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920606740.8U CN210148220U (en) 2019-04-29 2019-04-29 Balanced sliding installation structure of spiral cutting machine for cutting plants at uniform distance

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920606740.8U CN210148220U (en) 2019-04-29 2019-04-29 Balanced sliding installation structure of spiral cutting machine for cutting plants at uniform distance

Publications (1)

Publication Number Publication Date
CN210148220U true CN210148220U (en) 2020-03-17

Family

ID=69757933

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920606740.8U Active CN210148220U (en) 2019-04-29 2019-04-29 Balanced sliding installation structure of spiral cutting machine for cutting plants at uniform distance

Country Status (1)

Country Link
CN (1) CN210148220U (en)

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Address after: Room 1020, Lei Wah Building, Lei On Estate, Ma On Shan, Sha Tin, Hong Kong, China

Patentee after: Luo Daming

Country or region after: Hong-Kong

Address before: Room 1020, Lihua Building, Ma On Shan Lei On Estate, Sha Tin, Hong Kong, China

Patentee before: Luo Daming

Country or region before: Hong-Kong

CP03 Change of name, title or address