CN216707738U - A discharge apparatus for skirting line production - Google Patents

A discharge apparatus for skirting line production Download PDF

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Publication number
CN216707738U
CN216707738U CN202123432743.0U CN202123432743U CN216707738U CN 216707738 U CN216707738 U CN 216707738U CN 202123432743 U CN202123432743 U CN 202123432743U CN 216707738 U CN216707738 U CN 216707738U
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plate
skirting line
turnover plate
vertical
turnover
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国建
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Xiongxian Guojian Plastic Products Co ltd
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Xiongxian Guojian Plastic Products Co ltd
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Abstract

The utility model provides a discharging device for skirting line production, which comprises a support, a vertical plate, a turnover plate, a pressing assembly, a telescopic structure and a receiving assembly. Wherein, the vertical plate is fixedly arranged on the bracket. The turnover plate is arranged below the vertical plate and has a horizontal state and an inclined state which can be turned over; when the turnover plate is in a horizontal state, the turnover plate is used for supporting and connecting a skirting line led out from a discharge hole of the cutting equipment; when the turnover plate is turned to be in an inclined state, the turnover plate is used for leading out the cut skirting line in a sliding manner. The material pressing assembly is used for pressing the skirting line on the turnover plate in the vertical direction when the turnover plate is in the horizontal state. One end of the telescopic structure is hinged with the support, and the other end of the telescopic structure is hinged with the turnover plate so as to drive the turnover plate to rotate in a pitching mode. The material receiving assembly is arranged on the support and located below the turnover plate and used for receiving skirting lines falling off from the turnover plate. The utility model provides a discharging device for skirting line production.

Description

A discharge apparatus for skirting line production
Technical Field
The utility model belongs to the technical field of auxiliary equipment for skirting line production, and particularly relates to a discharging device for skirting line production.
Background
The skirting line is a beautifying ornament, is mainly used in the design of rooms, can play a role in visual balance to beautify the decoration effect, and has a protection function to prevent the bottom of the wall surface from being impacted and polluted. Common non-pure wood skirting line is extruded through the extruder after multiple raw and other materials are mixed, cools off through cooling arrangement again, finally is cut by cutting equipment equidistance, and isometric skirting line finished product is derived at cutting equipment's discharge gate.
In the prior art, before the cutting device cuts the skirting line, the skirting line is already led out at the discharge hole of the cutting device, and at the moment, the cutting device needs to wait for the skirting line to reach the standard length and then cut the skirting line. In this in-process, the skirting line of deriving forms cantilever structure, because its self produced moment of torsion, the part that easily makes the derivation is broken, consequently can set up a platform with the discharge gate parallel and level in cutting equipment's discharge gate department, and be equipped with a fixed staff, stir every section skirting line one side by the cutting down, in order to prevent to interfere with the skirting line of next section derivation, a certain amount is collected to the skirting line accumulation on the platform, shifting, this kind of mode human cost is great, waste time and energy, it is relatively poor to unload the effect, the practicality is poor.
SUMMERY OF THE UTILITY MODEL
The embodiment of the utility model provides a discharging device for skirting line production, and aims to solve the problems of poor discharging effect and poor practicability in the existing skirting line production process.
In order to achieve the purpose, the utility model adopts the technical scheme that: the utility model provides a discharge apparatus for skirting line production, includes:
the bracket is arranged at the discharge port of the cutting equipment; setting the leading-out direction of a skirting line led out from a discharge hole of the cutting equipment as a first direction;
the vertical plate is fixedly arranged on the bracket along the first direction and is arranged along the vertical direction;
the turnover plate is arranged below the vertical plate along the first direction, is hinged with the vertical plate and rotates in a pitching mode on the vertical plate, and has a horizontal state and an inclined state which can be turned over and converted; when the turnover plate is in a horizontal state, the turnover plate is used for supporting and connecting a skirting line led out from a discharge hole of the cutting equipment; when the turnover plate is turned to be in an inclined state, the turnover plate is used for leading out the cut skirting line in a sliding manner;
the pressing assemblies are arranged on the vertical plate at intervals along the first direction and used for pressing skirting lines on the turnover plate in the vertical direction when the turnover plate is in a horizontal state;
one end of the telescopic structure is hinged with the support, and the other end of the telescopic structure is hinged with the turnover plate so as to drive the turnover plate to rotate in a pitching manner; and
connect the material subassembly, set up on the support, and be located the below of returning face plate for receive by the skirting line under the returning face plate landing.
In a possible implementation manner, the vertical plate is a rectangular plate, and one end of the vertical plate, which is close to the cutting equipment, is provided with a first arc part;
the turnover plate is a rectangular plate, and a second arc part is arranged at one end, close to the cutting equipment, of the turnover plate.
In one possible implementation, a horizontal direction perpendicular to the first direction is set as a second direction;
the material pressing component comprises:
the fixed shaft is positioned above the turnover plate, one end of the fixed shaft is fixedly connected with the vertical plate, and the other end of the fixed shaft extends out along the second direction;
the swing rod is obliquely arranged and provided with a first end and a second end, the first end of the swing rod is rotatably connected with the fixed shaft, the height of the second end of the swing rod is lower than that of the first end of the swing rod, and the swing rod is far away from the cutting equipment along the first direction; and
and the pinch roller is rotatably arranged at the second end of the oscillating bar, the rotating axis of the pinch roller is arranged along the second direction, and the pinch roller is in rolling contact with the top surface of the skirting line which is supported and connected on the turnover plate.
In some embodiments, each pressing assembly further includes a limiting pin shaft, and the limiting pin shaft is fixedly arranged on the vertical plate, is parallel to the fixing shaft, is spaced from the fixing shaft, and is used for abutting against the swing rod in the process that the turnover plate is turned to an inclined state, so as to limit a corner of the swing rod.
In one possible implementation, the telescopic structure is a hydraulic telescopic rod; the telescopic structure is provided with a fixed end and a telescopic end, the fixed end is hinged with the bracket, and the telescopic end is hinged with the turnover plate;
wherein, articulated parts are arranged on the bracket and the turnover plate.
In one possible implementation, the receiving assembly includes:
the material loading part is arranged below the turnover plate and is provided with a material storage groove for receiving and temporarily storing the skirting line; and
the elastic structures are arranged on the bracket and are positioned below the loading part; the top end of each elastic structure is elastically abutted to the material loading piece.
In some embodiments/exemplarily/examples, each of the elastic structures comprises:
the fixed cylinder is fixedly arranged on the bracket and provided with a cylindrical cavity, and the top end of the fixed cylinder is provided with a sliding hole communicated with the cylindrical cavity; the diameter of the sliding hole is smaller than that of the cylindrical cavity;
the sliding rod is arranged in the sliding hole in a sliding mode along the vertical direction; the bottom end of the sliding rod is positioned in the cylindrical cavity and is provided with a first abutting plate; the top end of the sliding rod is provided with a second abutting plate which abuts against the material loading piece; and
the spring is arranged in the cylindrical cavity, the top end of the spring is abutted to the first abutting plate, and the bottom end of the spring is abutted to the bottom surface of the cylindrical cavity so as to bounce the sliding rod.
In some embodiments/exemplarily, a horizontal direction perpendicular to the first direction is set as a second direction;
the material loading part comprises a horizontal plate and a vertical plate; the horizontal plate is erected at the top end of each elastic structure; the vertical plates are two, and the two vertical plates are respectively and integrally connected with the two ends of the horizontal plate along the second direction so as to form the material storage tank by being surrounded by the horizontal plate.
In this implementation mode/application embodiment, can hold in the palm the skirting line of deriving by the cutting equipment discharge gate through riser and the returning face plate of setting on the support and connect to the two carries on spacingly to two degrees of freedom of skirting line, can prevent that the skirting line from deriving the in-process and taking place the rupture, guarantees the quality of skirting line. In addition, the material subassembly of pressing that sets up can carry on spacingly to another degree of freedom of skirting line, can guarantee the stability of skirting line transmission in-process on the returning face plate moreover. The retractable structure can convert the turnover plate in a horizontal state and an inclined state, so that the skirting line which is supported and connected in the horizontal state of the turnover plate can slide into the material receiving assembly, the discharging effect is good, manpower can be greatly saved, the discharging efficiency of the skirting line is improved, and the practicability is high.
Drawings
Fig. 1 is a first structural schematic diagram of a discharging device for skirting line production according to an embodiment of the present invention;
fig. 2 is a schematic structural diagram ii of a discharging device for skirting line production according to an embodiment of the present invention;
fig. 3 is a schematic front view of a discharging device for skirting line production according to an embodiment of the present invention; (one of the elastic structures is a cross section view)
FIG. 4 is an enlarged view of the discharging device for the skirting line production provided in the embodiment of FIG. 3;
description of reference numerals:
10. a support; 20. a vertical plate; 21. a first arc portion; 30. a turnover plate; 31. a second arc portion; 40. a material pressing component; 41. a fixed shaft; 42. a swing rod; 43. a pinch roller; 44. a limiting pin shaft; 50. a telescopic structure; 60. a material receiving assembly; 61. a loading member; 611. a horizontal plate; 612. a vertical plate; 62. an elastic structure; 621. a fixed cylinder; 622. a slide bar; 623. a spring.
Detailed Description
In order to make the technical problems, technical solutions and advantageous effects to be solved by the present invention more clearly apparent, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Referring to fig. 1 to 4 together, the discharging device for the production of the skirting line provided by the present invention will now be described. The discharging device for skirting line production comprises a support 10, a vertical plate 20, a turnover plate 30, a material pressing assembly 40, a telescopic structure 50 and a material receiving assembly 60. Wherein, the derivation direction of the skirting line of setting for being derived by the cutting equipment discharge gate is first direction. The support 10 can be arranged at the discharge opening of the cutting device. The vertical plate 20 is fixedly arranged on the bracket 10 along a first direction and is arranged along a vertical direction. The turnover plate 30 is arranged below the vertical plate 20 along the first direction and is hinged with the vertical plate 20 so as to rotate on the vertical plate 20 in a pitching manner, and the turnover plate 30 has a horizontal state and an inclined state which can be turned and converted; when the turnover plate 30 is in a horizontal state, the skirting line led out from the discharge hole of the cutting equipment can be supported and connected; when the turnover plate 30 is turned to be in an inclined state, the cut skirting line can slide and be led out. The material pressing assemblies 40 are arranged in a plurality of numbers, and each material pressing assembly 40 is arranged on the vertical plate 20 at intervals along the first direction, so that when the turnover plate 30 is in a horizontal state, skirting lines on the turnover plate 30 can be pressed in the vertical direction. One end of the telescopic structure 50 is hinged with the bracket 10, and the other end is hinged with the turnover plate 30 to drive the turnover plate 30 to rotate in pitch. The material receiving assembly 60 is disposed on the bracket 10 and below the turnover plate 30, and can receive the skirting line slid down by the turnover plate 30.
Compared with the prior art, the discharging device capable of producing the skirting line provided by the embodiment can support and connect the skirting line led out by the discharge port of the cutting equipment through the vertical plate 20 and the turnover plate 30 arranged on the support 10, and the two degrees of freedom of the skirting line are limited, so that the skirting line can be prevented from being broken in the leading-out process, and the quality of the skirting line is ensured. In addition, the material pressing assembly 40 can limit the other degree of freedom of the skirting line and can ensure the stability of the skirting line in the transmission process on the turnover plate 30. The telescopic structure 50 can convert the turnover plate 30 in a horizontal state and an inclined state, so that the skirting line which is supported and connected in the horizontal state of the turnover plate 30 can slide down to the material receiving assembly 60, the discharging effect is good, manpower can be greatly saved, the discharging efficiency of the skirting line is improved, and the practicability is high.
In some embodiments, the vertical plate 20 and the turnover plate 30 can be configured as shown in fig. 1. Referring to fig. 1, the vertical plate 20 is a rectangular plate, and one end of the vertical plate 20 close to the cutting device is provided with a first arc portion 21. The turnover plate 30 is a rectangular plate, and one end of the turnover plate 30 close to the cutting equipment is provided with a second arc part 31. Because riser 20 and returning face plate 30 are all apart from cutting equipment and have certain interval, consequently first circular arc portion 21 and second circular arc portion 31 can guarantee that the skirting line can pass through to returning face plate 30 and go up and one side of riser 20, prevent to be destroyed because of interfering the skirting line that leads to, can guarantee the quality of skirting line to a certain extent.
It should be noted that the upper end surface of the turnover plate 30 is flush with or slightly lower than the discharge hole of the cutting device.
In some embodiments, the pressing assembly 40 may be configured as shown in fig. 1. Referring to fig. 1, a horizontal direction perpendicular to the first direction is set as the second direction.
The pressing assembly 40 includes a fixed shaft 41, a swing link 42 and a pressing wheel 43. The fixing shaft 41 is located above the turnover plate 30, one end of the fixing shaft 41 is fixedly connected with the vertical plate 20, and the other end of the fixing shaft extends out along the second direction. The swing rod 42 is obliquely arranged and provided with a first end of the swing rod 42 and a second end of the swing rod 42, the first end of the swing rod 42 is rotatably connected with the fixed shaft 41, the height of the second end of the swing rod 42 is lower than that of the first end of the swing rod 42, and the second end of the swing rod 42 is far away from the cutting equipment along the first direction. The pressing wheel 43 is rotatably arranged at the second end of the swing rod 42, the rotating axis is arranged along the second direction, and the pressing wheel 43 can be in rolling contact with the top surface of the skirting line supported on the turnover plate 30. The swing rod 42 can rotate in a pitching manner on the fixed shaft 41, and can press the skirting line prevented on the turnover plate 30 under the action of gravity of the pressing wheel 43, so that the skirting line is prevented from shaking or deviating under the action of vibration, and the swing rod is simple in structure and high in practicability.
It should be noted that the pressing wheel 43 is a rubber wheel.
In some embodiments, the pressing assembly 40 may be configured as shown in fig. 1. Referring to fig. 1, each pressing assembly 40 further includes a limiting pin 44, the limiting pin 44 is fixedly disposed on the vertical plate 20, is parallel to the fixed shaft 41, and is spaced apart from the fixed shaft, and can abut against the swing rod 42 when the turnover plate 30 is turned to an inclined state, so as to limit a corner of the swing rod 42. After the turnover plate 30 is in the inclined state, the swing link 42 can be further turned downwards under the action of gravity, so that when the turnover plate 30 returns to the horizontal state, the turnover plate interferes with the pressing wheel 43, and the turnover plate cannot return to the horizontal state. Therefore, the limit pin 44 can limit the swing link 42 to prevent the swing link 42 from further turning downwards. Preferably, the swing link 42 is turned downwards at the limit position that the pressing wheel 43 is just abutted to the upper plate surface of the turning plate 30 in the horizontal state. The structure can ensure the stability of the turnover plate 30 in turnover, thereby ensuring the unloading effect.
In some embodiments, the above-mentioned telescopic structure 50 may adopt a structure as shown in fig. 2. Referring to fig. 2, the telescoping structure 50 is a hydraulic telescoping rod; the telescopic structure 50 has a fixed end hinged to the bracket 10 and a telescopic end hinged to the flipping board 30. Wherein, the support 10 and the turning plate 30 are provided with hinged parts.
In this embodiment, a hinge rod hinged to the telescopic end is provided at the hinge portion between the roll-over plate 30 and the vertical plate 20, and this structure can ensure that the roll-over plate 30 has a larger roll-over stroke. Of course, the telescopic end can also be hinged directly to the lower face of the roll-over panel 30.
In some embodiments, the receiving assembly 60 may be configured as shown in fig. 2 to 3. Referring to fig. 2 to 3, the receiving assembly 60 includes a receiving member 61 and an elastic structure 62. Wherein, the material loading part 61 is arranged below the turnover plate 30 and is provided with a material storage groove capable of receiving and temporarily storing the skirting line. A plurality of elastic structures 62 are arranged, and each elastic structure 62 is arranged on the bracket 10 and is positioned below the loading part 61; the tip of each elastic structure 62 is elastically abutted against the carrier 61. Because the skirting line that slides down on returning face plate 30 can directly drop in depositing the silo, under its action of gravity, can lead to the skirting line to take place to collide with or the flaw appears. Therefore, the elastic structure 62 can buffer the skirting line falling due to gravity, so that the quality of the skirting line falling is guaranteed, and the novel skirting line structure is simple in structure and high in practicability.
In some embodiments, the elastic structure 62 may be configured as shown in fig. 2 to 4. Referring to fig. 2 to 4, each elastic structure 62 includes a fixed cylinder 621, a slide rod 622, and a spring 623. The fixed cylinder 621 is fixedly arranged on the bracket 10, the fixed cylinder 621 is provided with a cylindrical cavity, and the top end of the fixed cylinder 621 is provided with a slide hole communicated with the cylindrical cavity; the diameter of the slide hole is smaller than that of the cylindrical cavity. The sliding rod 622 is slidably arranged in the sliding hole along the vertical direction; the bottom end of the sliding rod 622 is positioned in the cylindrical cavity and is provided with a first abutting plate; the top end of the sliding rod 622 is provided with a second abutting plate abutting against the material loading piece 61. The spring 623 is arranged in the cylindrical cavity, the top end of the spring 623 is abutted with the first abutting plate, and the bottom end of the spring 623 is abutted with the bottom surface of the cylindrical cavity so as to bounce the sliding rod 622. Through spring 623 bullet slide bar 622, the skirting line that falls into in the storage tank can be guaranteed to cushion with carrying material piece 61 butt by the second butt portion, and then guarantees the quality of skirting line, simple structure, the practicality is strong.
In some embodiments, the receiving assembly 60 may be configured as shown in fig. 2 to 3. Referring to fig. 2 to 3, a horizontal direction perpendicular to the first direction is set as the second direction.
The loading part 61 comprises a horizontal plate 611 and a vertical plate 612; a horizontal plate 611 is erected at the top end of each elastic structure 62; the number of the vertical plates 612 is two, and the two vertical plates 612 are respectively and integrally connected with two ends of the horizontal plate 611 along the second direction so as to form a material storage tank by enclosing the horizontal plate 611. The setting of storing the silo can prevent that the skirting line from dropping to the outside, and then is convenient for collect the skirting line.
Because the material loading part 61 and the second abutting part are in abutting connection, when the skirting line in the material storage cavity is fully piled up, the material loading part 61 and the skirting line can be directly conveyed and transferred by the forklift.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.

Claims (8)

1. A discharge apparatus for skirting line production, its characterized in that includes:
the bracket is used for being arranged at a discharge port of the cutting equipment; setting the leading-out direction of a skirting line led out from a discharge hole of the cutting equipment as a first direction;
the vertical plate is fixedly arranged on the bracket along the first direction and is arranged along the vertical direction;
the turnover plate is arranged below the vertical plate along the first direction, is hinged with the vertical plate and rotates in a pitching mode on the vertical plate, and has a horizontal state and an inclined state which can be turned over and converted; when the turnover plate is in a horizontal state, the turnover plate is used for supporting and connecting a skirting line led out from a discharge hole of the cutting equipment; when the turnover plate is turned to be in an inclined state, the turnover plate is used for leading out the cut skirting line in a sliding manner;
the pressing assemblies are arranged on the vertical plate at intervals along the first direction and used for pressing skirting lines on the turnover plate in the vertical direction when the turnover plate is in a horizontal state;
one end of the telescopic structure is hinged with the support, and the other end of the telescopic structure is hinged with the turnover plate so as to drive the turnover plate to rotate in a pitching manner; and
connect the material subassembly, set up on the support, and be located the below of returning face plate for receive by the skirting line under the returning face plate landing.
2. The discharging device for skirting line production as claimed in claim 1, wherein said vertical plate is a rectangular plate, and one end of said vertical plate near the cutting device is provided with a first arc portion;
the turnover plate is a rectangular plate, and a second arc part is arranged at one end, close to the cutting equipment, of the turnover plate.
3. The discharging device for skirting line production as claimed in claim 1, wherein a horizontal direction perpendicular to said first direction is set as a second direction;
the material pressing component comprises:
the fixed shaft is positioned above the turnover plate, one end of the fixed shaft is fixedly connected with the vertical plate, and the other end of the fixed shaft extends out along the second direction;
the swing rod is obliquely arranged and provided with a first end and a second end, the first end of the swing rod is rotatably connected with the fixed shaft, the height of the second end of the swing rod is lower than that of the first end of the swing rod, and the swing rod is far away from the cutting equipment along the first direction; and
the pinch roller rotates to be arranged at the second end of the swing rod, the rotating axis of the pinch roller is arranged along the second direction, and the pinch roller is in rolling contact with the top surface of the skirting line which is supported and connected on the turnover plate.
4. The discharging device for skirting line production as claimed in claim 3, wherein each said pressing assembly further comprises a limiting pin fixed on said vertical plate, and arranged parallel to and spaced from said fixed shaft, for abutting against said swing link to limit the rotation angle of said swing link when said turnover plate is turned to an inclined state.
5. The discharge apparatus for skirting line production as claimed in claim 1, wherein said telescopic structure is a hydraulic telescopic rod; the telescopic structure is provided with a fixed end and a telescopic end, the fixed end is hinged with the bracket, and the telescopic end is hinged with the turnover plate;
wherein, hinged parts are arranged on the bracket and the turnover plate.
6. The discharge device for skirting line production as claimed in claim 1, wherein said receiving assembly comprises:
the material carrying part is arranged below the turnover plate and is provided with a material storage groove for receiving and temporarily storing the skirting line; and
the elastic structures are arranged on the bracket and are positioned below the loading part; the top end of each elastic structure is elastically abutted to the material loading piece.
7. The discharge device for the production of skirting lines as claimed in claim 6, wherein each of said elastic structures comprises:
the fixed cylinder is fixedly arranged on the bracket and provided with a cylindrical cavity, and the top end of the fixed cylinder is provided with a sliding hole communicated with the cylindrical cavity; the diameter of the sliding hole is smaller than that of the cylindrical cavity;
the sliding rod is arranged in the sliding hole in a sliding mode along the vertical direction; the bottom end of the sliding rod is positioned in the cylindrical cavity and is provided with a first abutting plate; a second abutting plate abutted against the material loading piece is arranged at the top end of the sliding rod; and
the spring is arranged in the cylindrical cavity, the top end of the spring is abutted to the first abutting plate, and the bottom end of the spring is abutted to the bottom surface of the cylindrical cavity so as to bounce the sliding rod.
8. The discharging device for skirting line production as claimed in claim 7, wherein the horizontal direction perpendicular to said first direction is set as a second direction;
the material loading part comprises a horizontal plate and a vertical plate; the horizontal plate is erected at the top end of each elastic structure; the vertical plates are two, and the two vertical plates are respectively and integrally connected with the two ends of the horizontal plate along the second direction so as to form the material storage tank by being surrounded by the horizontal plate.
CN202123432743.0U 2021-12-30 2021-12-30 A discharge apparatus for skirting line production Active CN216707738U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123432743.0U CN216707738U (en) 2021-12-30 2021-12-30 A discharge apparatus for skirting line production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123432743.0U CN216707738U (en) 2021-12-30 2021-12-30 A discharge apparatus for skirting line production

Publications (1)

Publication Number Publication Date
CN216707738U true CN216707738U (en) 2022-06-10

Family

ID=81890004

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123432743.0U Active CN216707738U (en) 2021-12-30 2021-12-30 A discharge apparatus for skirting line production

Country Status (1)

Country Link
CN (1) CN216707738U (en)

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