CN220993047U - Frock structure of return bend line cutting - Google Patents

Frock structure of return bend line cutting Download PDF

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Publication number
CN220993047U
CN220993047U CN202322754430.XU CN202322754430U CN220993047U CN 220993047 U CN220993047 U CN 220993047U CN 202322754430 U CN202322754430 U CN 202322754430U CN 220993047 U CN220993047 U CN 220993047U
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China
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cutting
tray body
bent pipe
pipe
snake
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CN202322754430.XU
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Inventor
姚力军
潘杰
钟彩平
占卫君
鲍伟江
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Shanghai Ruisheng Semiconductor Technology Co ltd
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Shanghai Ruisheng Semiconductor Technology Co ltd
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Abstract

The utility model provides a tooling structure for cutting a bent pipe by a wire, which comprises a tray body, wherein an inlet pipe orifice and an outlet pipe orifice are arranged at one side edge of the tray body, a snake-shaped groove is arranged on one side surface of the tray body, the initial end of the snake-shaped groove is connected with the inlet pipe orifice, the termination end of the snake-shaped groove is connected with the outlet pipe orifice, and the inside of the snake-shaped groove is used for placing and fixing the bent pipe; the width of the serpentine groove is 4.6-6.6 mm. According to the utility model, the specific design of the tray body ensures that the bent pipe is stably installed, the cutting precision is high, the disassembly is easy, the flatness of the generated bent pipe product is high, the product cannot deform, the surface has no chromatic aberration, the structure is simple, the operability is strong, and the bent pipe product is suitable for popularization.

Description

Frock structure of return bend line cutting
Technical Field
The utility model belongs to the technical field of bent pipe cutting, and relates to a tool structure for bent pipe linear cutting.
Background
When the length of the numerical control bent pipe is inconsistent with the length required by a product, wire cutting is required to control the length of the bent pipe after the pipe is assembled.
The technical scheme discloses a return bend wire cutting processing frock for but the tube duct degree of depth holding a plurality of return bends between the daughter board through adjustment daughter board thickness, set up the baffle between a plurality of return bends and reduce the interact effort interference between the return bends, thereby realize the reliable cutting in the same time of a plurality of return bends.
The technical scheme also discloses a frock clamp for stainless steel return bend processing, including accepting the board, the socket, deflector and fixed establishment, when being fixed to stainless steel return bend processing, place the stainless steel return bend earlier on accepting the board and accepting the board, arc section and the horizontal segment to the stainless steel return bend are fixed successively through fixed establishment, prevent to take place to rock at the arc section of cutting in-process, arc section or the horizontal segment of stainless steel return bend when cutting the disconnection with the horizontal segment, influence the cutting planarization of stainless steel return bend cutting end, and when fixing the arc section of stainless steel return bend, through the cooperation of the rotatory roller of adjustment on arc clamp plate and the arc fagging and the adjustment group of pushing away, realize the fixed regulatory function to the stainless steel return bend.
The utility model also discloses a location frock for return bend, including the location base, the location base is the square plate of horizontal setting, be fixed with first locating rack on the top surface of location base, second locating rack, third locating rack and return bend gag lever post, first locating rack and third locating rack are fixed respectively in the adjacent both sides of location base, and the crossing angle of straight line at first locating rack and third locating rack symmetry axis place is the right angle, the return bend gag lever post is located first, on the straight line at third locating rack symmetry axis place's intersection, the second locating rack is parallel with first locating rack and is located one side that first locating rack orientation location base is inside.
However, in the prior art, the pipe bending precision is not high, products can be polluted, the pipe is easy to deform during disassembly, the pipe is deformed and then is assembled on the tray body, so that the tray body is slightly deformed, and the flatness cannot meet the requirement. Therefore, it is needed to design and develop a tooling structure for cutting bent pipe wire, which overcomes the defects of the prior art so as to meet the actual application requirements.
Disclosure of utility model
Aiming at the defects of the prior art, the utility model aims to provide a tooling structure for bent pipe linear cutting, in the tooling structure, through the specific design of a disc body, bent pipes are stably installed, the cutting precision is high, the disassembly is easy, the flatness of the generated bent pipe products is high, the products cannot deform, the surfaces have no chromatic aberration, the structure is simple, the operability is strong, and the tooling structure is suitable for popularization.
To achieve the purpose, the utility model adopts the following technical scheme:
The utility model provides a tooling structure for cutting a bent pipe by a wire, which comprises a tray body, wherein an inlet pipe orifice and an outlet pipe orifice are arranged at one side edge of the tray body, a snake-shaped groove is arranged on one side surface of the tray body, the initial end of the snake-shaped groove is connected with the inlet pipe orifice, the termination end of the snake-shaped groove is connected with the outlet pipe orifice, and the inside of the snake-shaped groove is used for placing and fixing the bent pipe; the width of the serpentine groove is 4.6-6.6 mm, for example 4.6mm、4.7mm、4.8mm、4.9mm、5mm、5.1mm、5.2mm、5.3mm、5.4mm、5.5mm、5.6mm、5.7mm、5.8mm、5.9mm、6mm、6.2mm、6.4mm、6.6mm mm, but is not limited to the recited values, and other non-recited values within the range are equally applicable.
According to the utility model, the specific design of the tray body ensures that the bent pipe is stably installed, the cutting precision is high, the disassembly is easy, the flatness of the generated bent pipe product is high, the product cannot deform, the surface has no chromatic aberration, the structure is simple, the operability is strong, and the bent pipe product is suitable for popularization.
The utility model is not limited in particular to the specific cross section size, flatness and the like of the disc body, and the person skilled in the art can adjust the disc body adaptively according to actual conditions.
It should be noted that when the precision is ensured in the conventional pipe bending cutting, products can be easily polluted, the pipe bending is easy to deform during disassembly, the plate body is damaged due to the fact that the plate body is assembled on the plate body after the pipe bending is deformed, and the flatness cannot meet the requirement.
The width of the serpentine groove is 4.6-6.6 mm, which is 0.6mm more than the width of the common bent pipe, so that the bent pipe can be prevented from being damaged and deformed in the serpentine groove, and the cutting precision of the bent pipe is further ensured.
The specific shape of the serpentine groove is not limited in the utility model, and at least three bending points can be ensured.
As a preferable technical scheme of the utility model, the tray body is a stainless steel tray body.
It should be noted that the tray body is a stainless steel tray body, and the tray body made of the material can enable the bent pipe to be fixed better, does not damage the flatness of the body and the bent pipe, and is more convenient to process.
In a preferred embodiment of the present utility model, the thickness of the tray is 1 to 1.5cm, for example, 1cm, 1.1cm, 1.2cm, 1.3cm, 1.4cm, 1.5cm, etc., but the thickness is not limited to the above-mentioned values, and other values not mentioned in the above-mentioned numerical range are equally applicable.
The thickness of the tray body is 1-1.5 cm, so that the bent pipe can be fixed more firmly within the range, and the flatness of the body and the bent pipe cannot be damaged.
As a preferable technical scheme of the utility model, the serpentine grooves are uniformly distributed on the surface of the tray body.
The utility model has the advantages that the serpentine grooves are uniformly distributed on the surface of the tray body, so that the pipe bending processing is more accurate, the pipe is not easy to bend, and the cutting precision and the planeness of the pipe are ensured.
In a preferred embodiment of the present utility model, the depth of the serpentine groove is 0.6 to 0.8mm, for example, 0.6mm, 0.62mm, 0.64mm, 0.66mm, 0.68mm, 0.7mm, 0.72mm, 0.74mm, 0.76mm, 0.78mm, 0.8mm, etc., but the present utility model is not limited to the above-mentioned values, and other values not mentioned in the above-mentioned numerical range are equally applicable.
The depth of the serpentine groove is 0.6-0.8 mm, and the pipe is easy to assemble and disassemble in the range, if the depth of the serpentine groove is not in the range, the pipe is difficult to disassemble, and the pipe is deformed or the pipe is not assembled.
As a preferred embodiment of the present utility model, the serpentine groove is provided with at least three inflection points, for example, 3, 4, 5, 6, 7, 10, 20, etc., but not limited to the recited values, and other non-recited values within the range of values are equally applicable.
In a preferred embodiment of the present utility model, the curvature of the serpentine groove at the inflection point is 3 to 5rad, for example, 3rad, 3.2rad, 3.4rad, 3.6rad, 3.8rad, 4rad, 4.2rad, 4.4rad, 4.6rad, 4.8rad, 5rad, etc., but the present utility model is not limited to the recited values, and other non-recited values within the range of values are equally applicable.
The serpentine groove is provided with at least three bending points, and the radian of the serpentine groove at each bending point is 3-5 rad, so that the bent pipe is easy to install in the range, and if the bent pipe is not in the range, the rebound quantity of the pipe after the bent pipe is larger, so that the subsequent normal use is influenced.
In a preferred embodiment of the present utility model, the connection radian between the start end of the serpentine groove and the inlet orifice is 4-5 rad, for example, 4rad, 4.1rad, 4.2rad, 4.3rad, 4.4rad, 4.5rad, 4.6rad, 4.7rad, 4.8rad, 4.9rad, 5rad, etc., but not limited to the recited values, and other non-recited values within the range of values are equally applicable.
In a preferred embodiment of the present utility model, the connection radian between the end of the serpentine groove and the outlet is 4-5 rad, for example, 4rad, 4.1rad, 4.2rad, 4.3rad, 4.4rad, 4.5rad, 4.6rad, 4.7rad, 4.8rad, 4.9rad, 5rad, etc., but the present utility model is not limited to the above-mentioned values, and other non-mentioned values are applicable in the above-mentioned range.
The connecting radian of the starting end of the snake-shaped groove and the pipe inlet is 4-5 rad, and the connecting radian of the ending end of the snake-shaped groove and the pipe outlet is 4-5 rad, so as to ensure easy connection with the bent pipe.
As a preferable technical scheme of the utility model, the lengths of the inlet pipe orifice and the outlet pipe orifice are the same.
It should be noted that the lengths of the inlet pipe opening and the outlet pipe opening are the same in the utility model, so as to ensure that the bent pipe can be assembled normally.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the specific design of the tray body ensures that the bent pipe is stably installed, the cutting precision is high, the disassembly is easy, the flatness of the generated bent pipe product is high, the product cannot deform, the surface has no chromatic aberration, the structure is simple, the operability is strong, and the bent pipe product is suitable for popularization.
Drawings
FIG. 1 is a schematic view of a tooling structure for cutting a bent pipe line according to an embodiment of the present utility model;
Wherein, 1-the tray body; 2-serpentine grooves; 3-bending points; 4-a pipe inlet; 5-pipe outlet.
Detailed Description
It is to be understood that in the description of the present utility model, the terms "center", "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on the drawings, are merely for convenience in describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus are not to be construed as limiting the present utility model. Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first", "a second", etc. may explicitly or implicitly include one or more such feature. In the description of the present utility model, unless otherwise indicated, the meaning of "a plurality" is two or more.
It should be noted that, in the description of the present utility model, unless explicitly specified and limited otherwise, the terms "disposed," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model can be understood by those of ordinary skill in the art in a specific case.
The technical scheme of the utility model is further described below by the specific embodiments with reference to the accompanying drawings.
In a specific embodiment, the utility model provides a tooling structure for cutting bent pipes in a linear manner, as shown in fig. 1, the tooling structure comprises a tray body 1, an inlet pipe orifice 4 and an outlet pipe orifice 5 are arranged at one side edge of the tray body 1, a snake-shaped groove 2 is arranged on one side surface of the tray body 1, the initial end of the snake-shaped groove 2 is connected with the inlet pipe orifice 4, the final end of the snake-shaped groove 2 is connected with the outlet pipe orifice 5, and the inside of the snake-shaped groove 2 is used for placing and fixing the bent pipes; the width of the serpentine groove 2 is 4.6 to 6.6mm, and may be 4.6mm、4.7mm、4.8mm、4.9mm、5mm、5.1mm、5.2mm、5.3mm、5.4mm、5.5mm、5.6mm、5.7mm、5.8mm、5.9mm、6mm、6.2mm、6.4mm、6.6mm, for example, but is not limited to the values listed, and other values not listed in the range are equally applicable.
According to the utility model, the specific design of the tray body 1 ensures that the bent pipe is stably installed, the cutting precision is high, the disassembly is easy, the flatness of the generated bent pipe product is high, the product cannot deform, the surface has no chromatic aberration, the structure is simple, the operability is strong, and the bent pipe product is suitable for popularization.
The present utility model is not limited to the specific cross section size, flatness, etc. of the disc body 1, and those skilled in the art can adapt to the actual situation.
It should be noted that when the precision is ensured in the conventional pipe bending cutting, the product can be easily polluted, the pipe bending is easy to deform during disassembly, the pipe bending is assembled on the tray body 1 after deformation, the tray body 1 is damaged, and the flatness cannot meet the requirement.
The width of the snake-shaped groove 2 is 4.6-6.6 mm, and compared with the width of a common bent pipe which is 4-6 mm, the width of the snake-shaped groove 2 is 0.6mm more, so that the bent pipe can be prevented from being damaged and deformed in the snake-shaped groove 2, and the cutting precision of the bent pipe is further ensured.
Further, the tray body 1 is a stainless steel tray body 1. It should be noted that, in the utility model, the tray body 1 is a stainless steel tray body 1, because the tray body 1 made of the material can enable the bent pipe to be fixed better, the flatness of the body and the bent pipe can not be damaged, and the processing is more convenient.
Further, the thickness of the disk body 1 is 1 to 1.5cm, and may be, for example, 1cm, 1.1cm, 1.2cm, 1.3cm, 1.4cm, 1.5cm, etc., but not limited to the values recited, and other values not recited in the numerical range are applicable as well. The thickness of the tray body 1 is 1-1.5 cm, and the bent pipe can be fixed more firmly within the range, so that the flatness of the body and the bent pipe cannot be damaged.
Further, the serpentine grooves 2 are uniformly distributed on the surface of the tray body 1. In the utility model, the serpentine grooves 2 are uniformly distributed on the surface of the tray body 1, so that the bending processing is more accurate, the bending is difficult to break, and the cutting precision and the flatness of the bent pipe are ensured.
Further, the depth of the serpentine groove 2 is 0.6 to 0.8mm, for example, 0.6mm, 0.62mm, 0.64mm, 0.66mm, 0.68mm, 0.7mm, 0.72mm, 0.74mm, 0.76mm, 0.78mm, 0.8mm, etc., but not limited to the above-mentioned values, and other values not mentioned in the above-mentioned numerical ranges are equally applicable.
Further, the serpentine groove 2 is provided with at least three inflection points 3, which may be, for example, 3, 4, 5, 6, 7, 10, 20, etc., but is not limited to the recited values, and other non-recited values within the range are equally applicable.
Further, the curvature of the serpentine groove 2 at the inflection point 3 is 3 to 5rad, and may be 3rad, 3.2rad, 3.4rad, 3.6rad, 3.8rad, 4rad, 4.2rad, 4.4rad, 4.6rad, 4.8rad, 5rad, etc., for example, but not limited to the recited values, and other non-recited values within the range of values are equally applicable.
Further, the connection radian between the starting end of the serpentine groove 2 and the inlet 4 is 4-5 rad, for example, 4rad, 4.1rad, 4.2rad, 4.3rad, 4.4rad, 4.5rad, 4.6rad, 4.7rad, 4.8rad, 4.9rad, 5rad, etc., but not limited to the recited values, and other non-recited values are applicable within the range of the values.
Further, the connection radian between the end of the serpentine groove 2 and the outlet 5 is 4-5 rad, which may be, for example, 4rad, 4.1rad, 4.2rad, 4.3rad, 4.4rad, 4.5rad, 4.6rad, 4.7rad, 4.8rad, 4.9rad, 5rad, etc., but not limited to the above-mentioned values, and other non-mentioned values are applicable in the above-mentioned range.
Further, the lengths of the inlet pipe orifice 4 and the outlet pipe orifice 5 are the same.
Example 1
The embodiment provides a frock structure of return bend line cutting, wherein:
The tooling structure comprises a tray body 1, wherein an inlet pipe orifice 4 and an outlet pipe orifice 5 are arranged at one side edge of the tray body 1, and the lengths of the inlet pipe orifice 4 and the outlet pipe orifice 5 are the same. A serpentine groove 2 is arranged on one side surface of the tray body 1, the initial end of the serpentine groove 2 is connected with a pipe inlet 4, the final end of the serpentine groove 2 is connected with a pipe outlet 5, and the serpentine groove 2 is used for placing and fixing an elbow; the width of the serpentine groove 2 is 5.6mm.
The tray body 1 is a stainless steel tray body 1, and the thickness of the tray body 1 is 1cm.
The snakelike recess 2 equipartition is at the surface of disk body 1, and the degree of depth of snakelike recess 2 is 0.6mm, and snakelike recess 2 is provided with six inflection points 3, and the radian of snakelike recess 2 of inflection point 3 department is 3rad. The connection radian of the starting end of the serpentine groove 2 and the pipe inlet 4 is 5rad. The arc of engagement of the terminating end of the serpentine groove 2 with the outlet orifice 5 is 5rad.
In summary, the specific design of the tray body 1 ensures that the bent pipe is stably installed, the cutting precision is high, the disassembly is easy, the flatness of the generated bent pipe product is high, the product cannot deform, the surface has no chromatic aberration, the structure is simple, the operability is strong, and the bent pipe product is suitable for popularization.
The foregoing is merely illustrative of the present utility model, and the present utility model is not limited thereto, and it should be apparent to those skilled in the art that any changes or substitutions that fall within the technical scope of the present utility model disclosed herein are within the scope of the present utility model.

Claims (10)

1. The tooling structure for the wire cutting of the bent pipe is characterized by comprising a tray body, wherein an inlet pipe orifice and an outlet pipe orifice are formed in one side edge of the tray body, a snake-shaped groove is formed in one side surface of the tray body, the initial end of the snake-shaped groove is connected with the inlet pipe orifice, the final end of the snake-shaped groove is connected with the outlet pipe orifice, and the inside of the snake-shaped groove is used for placing and fixing the bent pipe;
the width of the serpentine groove is 4.6-6.6 mm.
2. The tooling structure for wire cutting of elbows of claim 1, wherein the tray is a stainless steel tray.
3. The tooling structure for cutting the bent pipe line according to claim 1, wherein the thickness of the tray body is 1-1.5 cm.
4. The tooling structure for cutting the bent pipe line according to claim 1, wherein the serpentine grooves are uniformly distributed on the surface of the tray body.
5. The tooling structure for cutting bent pipes according to claim 1, wherein the depth of the serpentine groove is 0.6-0.8 mm.
6. The tooling structure for wire cutting of elbows of claim 1, wherein the serpentine groove is provided with at least three inflection points.
7. The tooling structure for cutting an elbow according to claim 6, wherein the radian of the serpentine groove at the inflection point is 3-5 rad.
8. The tooling structure for cutting the bent pipe according to claim 1, wherein the connection radian of the starting end of the serpentine groove and the pipe inlet is 4-5 rad.
9. The tooling structure for cutting the bent pipe according to claim 1, wherein the connection radian of the termination end of the serpentine groove and the pipe outlet is 4-5 rad.
10. The tooling structure for cutting the bent pipe according to claim 1, wherein the lengths of the inlet pipe orifice and the outlet pipe orifice are the same.
CN202322754430.XU 2023-10-13 2023-10-13 Frock structure of return bend line cutting Active CN220993047U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322754430.XU CN220993047U (en) 2023-10-13 2023-10-13 Frock structure of return bend line cutting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322754430.XU CN220993047U (en) 2023-10-13 2023-10-13 Frock structure of return bend line cutting

Publications (1)

Publication Number Publication Date
CN220993047U true CN220993047U (en) 2024-05-24

Family

ID=91113623

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322754430.XU Active CN220993047U (en) 2023-10-13 2023-10-13 Frock structure of return bend line cutting

Country Status (1)

Country Link
CN (1) CN220993047U (en)

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