CN218488636U - Positioning mechanism of wooden door and door pocket cutting equipment - Google Patents

Positioning mechanism of wooden door and door pocket cutting equipment Download PDF

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Publication number
CN218488636U
CN218488636U CN202222648464.6U CN202222648464U CN218488636U CN 218488636 U CN218488636 U CN 218488636U CN 202222648464 U CN202222648464 U CN 202222648464U CN 218488636 U CN218488636 U CN 218488636U
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door
original plate
door pocket
cutting
wooden
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CN202222648464.6U
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Chinese (zh)
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朱立伟
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Xuzhou Gongzhiyou Cnc Technology Co ltd
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Xuzhou Gongzhiyou Cnc Technology Co ltd
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Abstract

The utility model relates to a timber cuts processing technology field, particularly relates to timber, door pocket cutting means's positioning mechanism, including pay-off part, locating part, range finding sensor, the pay-off part is located the first side that cuts the part, the locating part is located the second side that cuts the part, defines the first side that cuts the part is the feed side, the second side that cuts the part is the returning charge side. The utility model discloses a location sets up location cylinder and clamping jaw, the location cylinder can get into panel for the first time and fix in limit position, be convenient for carry on first side unhairing limit cut and the position measurement of the first end of panel, can calculate the total length after the panel unhairing limit through range sensor expert and the cooperation of drive assembly, according to the total length of panel, drive assembly can control panel berth preset position and cut by cutting parts, form the timber or the door pocket of fixed width, advance one at panel and go out the in-process, accomplish the location of panel promptly and cut.

Description

Positioning mechanism of wooden door and door pocket cutting equipment
Technical Field
The utility model relates to a timber cuts processing technology field, particularly relates to timber, door pocket cutting tool's positioning mechanism.
Background
The wooden door is generally cut by an original plate through the steps of measuring, marking and cutting, for example, the size is determined through manual measuring by a pull ruler, a specific cutting line of the plate to be cut is determined in a marking mode at a preset position, in addition, the existing sawing machine generally cuts one edge at a time, namely, four times of cutting actions are carried out, in addition, when the cutting edge is replaced, the plate needs to be moved by manual assistance, the cutting edge is replaced, the sawing is not accurate enough, and the wooden door is not beneficial to the mass processing and production of the wooden door.
In addition, a scheme that the cut wooden door or door pocket is in a fixed size by using a fixed knife pitch mode exists, but the fixed knife pitch scheme requires a large number of saw knives, and the saw knives correspondingly need to be matched with a driving device, so that the production cost is increased greatly, and therefore, how to measure the wooden door or door pocket original plate to be cut becomes an urgent problem to be solved.
SUMMERY OF THE UTILITY MODEL
The utility model provides a positioning mechanism of a wooden door and door pocket cutting device, which comprises a feeding part, a positioning part and a distance measuring sensor, wherein the feeding part is positioned at the first side of the cutting part, the positioning part is positioned at the second side of the cutting part, the first side of the cutting part is defined as a feeding side, and the second side of the cutting part is a returning side;
the feeding part is used for supporting a wooden door raw plate or a door pocket raw plate, so that the wooden door raw plate or the door pocket raw plate can be supported by the feeding part and moves from the feeding side to the returning side, and the positioning part is arranged to completely pull the wooden door raw plate or the door pocket raw plate entering the returning side into the returning side of the cutting part and push the wooden door raw plate or the door pocket raw plate entering the returning side completely into the feeding side;
wherein, the distance measuring sensor is set to measure the total length of the wooden door original plate or the door pocket original plate after the wooden door original plate or the door pocket original plate completely enters the return material side from the feeding side.
Preferably, the locating part is including location cylinder and clamping jaw, the location cylinder is including stretching out position and compression position, and when the end conflict that stretches out of timber raw plate or door pocket raw plate and location cylinder, timber raw plate or door pocket raw plate are spacing, and definition timber raw plate or door pocket raw plate are spacing position for limit position.
Preferably, the distance measuring sensor includes laser range finding sensor, the light path direction of laser range finding sensor is parallel with the former thickness direction of timber raw plate or door pocket, just the light path of laser range finding sensor passes through limit position, works as when limit position does not have former board of timber or door pocket, and laser range finding sensor outputs first distance signal, works as when limit position has former board of timber or door pocket, laser range finding sensor output second distance signal.
Preferably, the clamping jaw is set to clamp the wooden door original plate or the door pocket original plate after the positioning cylinder is located at the compression position, and can be driven by the driving part to move along the feeding direction, so that the wooden door original plate or the door pocket original plate completely enters the material returning side and enters the feeding side from the material returning side.
Preferably, the clamping jaw comprises a fixed jaw and a movable jaw, the movable jaw is controlled by a clamping cylinder, when the clamping cylinder extends, the fixed jaw and the movable jaw are close to each other to clamp the plate, and when the clamping cylinder shortens, the fixed jaw and the movable jaw are far away from each other to release the plate.
Preferably, the driving part comprises a support frame, a guide rail and a driver, the clamping jaw is mounted on the support frame, the support frame is connected on the guide rail, and the driver is used for driving the support frame to slide along the length direction of the guide rail.
Preferably, the feeding part comprises a first transmission table and a second transmission table, and the distance between the two outer side edges of the first transmission table and the second transmission table is larger than the width of the wooden door original plate or the door pocket original plate.
Preferably, the length of the first transfer station is greater than the length of the second transfer station.
Preferably, the cutting part is used for cutting the wooden door original plate or the door pocket original plate along the direction perpendicular to the feeding direction.
Preferably, the device further comprises a longitudinally cutting part, wherein the longitudinally cutting part comprises a first cutter and a second cutter, and the cutting direction of the first cutter and the cutting direction of the second cutter are parallel to the feeding direction.
Compared with the prior art, the utility model has the advantages of:
the utility model discloses a location sets up location cylinder and clamping jaw, the location cylinder can get into panel for the first time and fix in limit position, be convenient for carry on first side unhairing limit cut and the position measurement of the first end of panel, can calculate the total length after the panel unhairing limit through range sensor expert and the cooperation of drive assembly, according to the total length of panel, drive assembly can control panel berth preset position and cut by cutting parts, form the timber or the door pocket of fixed width, advance one at panel and go out the in-process, accomplish the location of panel promptly and cut.
Drawings
The drawings are not intended to be drawn to scale. In the drawings, each identical or nearly identical component that is illustrated in various figures may be represented by a like numeral. For purposes of clarity, not every component may be labeled in every drawing. Embodiments of various aspects of the present invention will now be described, by way of example, with reference to the accompanying drawings, in which:
FIG. 1 is a schematic structural view of a positioning mechanism of the wooden door and door pocket cutting device of the present invention;
FIG. 2 is a top view of the positioning mechanism of the wood door and jamb cutting apparatus of the present invention;
FIG. 3 is a simplified view of a panel shown in the present invention in the feeding side of the positioning mechanism;
FIG. 4 is a simplified diagram of the movement of the sheet material from the feeding side to the return side as shown in the present invention;
figure 5 is a simplified view of a sheet material being gripped by the jaws of the present invention;
fig. 6 is a simplified view of the plate material of the present invention fully entering the return side;
FIG. 7 is a schematic view of the movement of the plate material from the material returning side to the feeding side according to the present invention;
FIG. 8 is a schematic view showing the plate material of the present invention being cut by the cutting member during the movement from the material returning side to the material feeding side;
fig. 9 is a schematic view of the structure at a in fig. 1.
Detailed Description
For a better understanding of the technical aspects of the present invention, specific embodiments are described below in conjunction with the appended drawings.
With reference to fig. 1-2, the utility model provides a positioning mechanism of timber, door pocket cutting equipment, including pay-off part 10, positioning element 30, range finding sensor 33, pay-off part 10 is located the first side of cutting part 20, and positioning element 30 is located the second side of cutting part 20, and the definition cuts the first side of part 20 and is feed side 201, and the second side of cutting part 20 is returning charge side 202.
Because the length of the door and the door pocket is usually larger than the width of the door and the door pocket, in order to improve the cutting efficiency of the crosscut component 20, the feeding direction is defined as the width direction of the wood door and the door pocket, the cutting direction of the crosscut component 20 is perpendicular to the feeding direction, namely, in the feeding process of the original plate along the feeding direction, the crosscut component 20 can perform deburring and fixed-width cutting, and the distance between two adjacent cutting lines is the width of the wood door or the door pocket.
It will be appreciated that the feeding member 10 is adapted to support a wooden door or door pocket blank so that the wooden door or door pocket blank can be supported by the feeding member 10 and moved from the feeding side 201 to the return side 202, and the positioning member 30 is adapted to pull the wooden door or door pocket blank that has entered the return side 202 completely into the return side 202 of the cutting member 20 and to push the wooden door or door pocket blank that has entered the return side 202 completely into the feeding side 201.
Therefore, by the connection of the positioning component 30 on the material returning side 202, the wooden door original plate or the door pocket original plate can completely pass through the cutting component 20, that is, in the feeding direction along the wooden door original plate or the door pocket original plate, the cutting component 20 can transversely cut at any position, that is, a plurality of plates with preset width are formed.
In an alternative embodiment, several sheets having a predetermined width are fed along their length, and the sheets are then positioned by the cutting member 20.
Therefore, through the feed of the feed component 10 and the positioning component 30 in a joint mode, the sizing and cutting of the plate can be flexibly completed by using only one cutting component 20.
Wherein the distance measuring sensor 33 is configured to measure the total length of the wooden door or door pocket blank after the wooden door or door pocket blank has completely entered the return side 202 from the feeding side 201.
Therefore, after the total length of the wooden door original plate or the door pocket original plate is measured, the wooden door original plate or the door pocket original plate can be distributed into a plurality of products and a piece of waste material according to the total length and the width of the wooden door or the door pocket to be processed.
For example, if the total length of the wooden door blank is 2.22m and the width of the wooden door is 0.8m, only two wooden doors with a width of 0.8m can be cut, and the rest is waste. How to cut at a predetermined position and form two wooden doors of 0.8m in width requires the positioning member 30 to position the relative position between the wooden door original plate and the cut member 20.
Specifically, the position of the distance measuring sensor 33 and the position of the cutting member 20 are fixed relative to each other, and the positioning member 30 pushes the wooden door original plate or the door pocket original plate from the return side 202 toward the return side 201, and stops at a predetermined position, so that the cutting member 20 cuts the wooden door original plate or the door pocket original plate at the predetermined position, and a plurality of boards having a predetermined width are formed on the wooden door original plate or the door pocket original plate.
Feeding component
In the preferred embodiment, the feeding unit 10 includes a first conveying table 11 and a second conveying table 12, and the distance between the outer edges of the first conveying table 11 and the second conveying table 12 is greater than the width of the wooden door or door pocket plate.
Optionally, the first transfer station 11 and the second transfer station 12 are unpowered conveyors, such as air-float stations.
Preferably, the first transfer table 11 and the second transfer table 12 are smooth-surfaced support tables.
In this way, after the wooden door or door pocket original plate is placed on the first transmission table 11 and the second transmission table 12, the operator pushes the wooden door or door pocket original plate to move to the material return side 202.
In other embodiments, the first conveying table 11 and the second conveying table 12 may be powered, such as a conveyor belt, and the conveying direction is toward the feeding side 202, but when the positioning member 30 conveys the wooden door or door pocket plate from the feeding side 201 to the feeding side 202, the first conveying table 11 and the second conveying table 12 should be driven reversely or become unpowered.
Preferably, the length of the first transfer station 11 is greater than the length of the second transfer station 12.
When the width of the wooden door is determined, the board is required to enter along the length direction in the height determining operation, the shorter second transmission platform 12 cannot completely support the board, and the longer first transmission platform 11 is required to be used for moving the board from the feeding side 201 to the returning side 202. Preferably, the cutting member 20 is used to cut the wooden door or door pocket original plate perpendicularly to the feeding direction.
Positioning member
Referring to fig. 9, the positioning member 30 includes a clamping jaw 32, and the clamping jaw 32 is configured to clamp the wooden door or door pocket original plate and is moved by the driving member 50 in the feeding direction so that the wooden door or door pocket original plate completely enters the return side 202 and enters the feeding side 201 from the return side 202.
Furthermore, the positioning part 30 further comprises a positioning cylinder 31, the positioning cylinder 31 comprises an extending position and a compressing position, and when the wooden door original plate or the door pocket original plate is abutted against the extending end of the positioning cylinder 31, the wooden door original plate or the door pocket original plate is limited; the clamping jaws 32 are arranged to clamp the wooden door blank or door pocket blank after the positioning cylinder 31 is in the compressed position.
Specifically, the positioning cylinder 31 includes a cylinder body 311 and an extension rod 312, and after the extension rod 312 extends, the first edge of the plate can be positioned.
Further, the holding jaw 32 is configured to hold the wooden door original plate or the door pocket original plate after the positioning cylinder 31 is in the compression position, and the holding jaw 32 is moved in the feeding direction by the driving part 50.
Specifically, the clamping jaw 32 includes a fixed jaw 311 and a movable jaw 322, the movable jaw 322 is controlled by a clamping cylinder 323, when the clamping cylinder 323 extends, the fixed jaw 311 and the movable jaw 322 approach each other to clamp the plate, and when the clamping cylinder 323 shortens, the fixed jaw 311 and the movable jaw 322 move away from each other to release the plate.
Preferably, the driving part 50 comprises a support frame, a guide rail 51 and a driver, wherein the clamping jaw 32 is installed on the support frame, the support frame is connected on the guide rail 51, and the driver is used for driving the support frame to slide along the length direction of the guide rail 51.
Optionally, the support frame is a metal frame with a rectangular cross section, two ends of the metal frame are provided with threaded sleeves, the outer contours of the threaded sleeves are rectangular cross sections, the threaded sleeves slide in sliding grooves of the guide rails 51, threaded holes are formed in the threaded sleeves, one ends of the guide rails 51 are provided with electric lead screws, and the support frame is controlled to move along the length direction of the guide rails 51 through transmission of the lead screws and the threaded sleeves.
In an alternative embodiment, two guide rails 51 are provided on the frame 100, and are arranged in parallel along the feeding direction, a plurality of rollers 34 are provided between the two guide rails 51 for supporting the original plate rolling backward, when the driving shaft is driven by the driving motor to rotate, a gear fixed at the end of the driving shaft engages with a rack on the rail 51, so as to drive the supporting frame to move, and the plurality of clamping jaws 32 and the positioning cylinder 31 move along with the supporting frame, so that the original plate is pulled backward or pushed forward.
Cutting member
Preferably, the cutting member 20 is used to cut the wooden door or door pocket original plate perpendicularly to the feeding direction.
In an alternative embodiment, the cutting member 20 includes a pressing mechanism and a cross cutting mechanism, the pressing mechanism and the cross cutting mechanism form a passage for the wood door or the door pocket raw plate to pass through, the pressing mechanism includes a pressing position and a lifting position, and the cross cutting mechanism is configured to move in a direction perpendicular to the feeding direction and cut the raw plate along the length (height direction of the wood door) of the wood door or the door pocket.
The timber is carried to the passageway and is entered into between swager constructs and the horizontal cutting mechanism by feeding mechanism, and until conflicting behind the location cylinder 31, the swager constructs the pushing down, compresses tightly former panel, and at this moment, horizontal cutting mechanism goes on deckle edge to the first edge of entering and cuts.
Further, after the original plate continues to move and stops at the preset position, the transverse cutting mechanism can continue to cut the plate in the transverse direction.
In an alternative embodiment, a longitudinal cutting part 40 is further disposed on the material returning side 202, the longitudinal cutting part 40 includes a first cutter 41 and a second cutter 42, the cutting direction of the first cutter 41 and the second cutter 42 is parallel to the feeding direction, and the longitudinal cutting part 40 can perform height-based cutting on the raw plate, that is, the distance between the first cutter 41 and the second cutter 42 is the height of the cut wooden door or door pocket.
In this way, the longitudinal cutting member 40 can be completely cut along the feeding direction of the wooden door original plate or the door pocket original plate, i.e. a plate with a preset height is formed.
Alternatively, the position of the first cutter 41 is fixed, and the second cutter 42 is driven by the adjusting member 43, so that the distance between the first cutter 41 and the second cutter 42 can be changed, and thus the height of the cut sheet material can be changed.
Distance measuring and spacing
The distance measuring sensor 33 comprises a laser distance measuring sensor, the light path direction of the laser distance measuring sensor is parallel to the thickness direction of the wooden door original plate or the door pocket original plate, the light path of the laser distance measuring sensor passes through the limiting position, when the limiting position does not have the wooden door original plate or the door pocket original plate, the laser distance measuring sensor outputs a first distance signal, and when the limiting position has the wooden door original plate or the door pocket original plate, the laser distance measuring sensor outputs a second distance signal.
Specifically, the laser distance measuring sensor is arranged above the limit position, when the transverse cutting mechanism carries out deburring and cutting on the first edge of the entering wood door original plate or door pocket original plate, the clamping jaw 32 clamps the wood door original plate or door pocket original plate and continuously moves towards the direction of the material return side 202, when the first edge of the wood door original plate or door pocket original plate contacts with the light path of the laser distance measuring sensor, an electric signal is generated, when the wood door original plate or door pocket original plate continuously moves and contacts with the light path of the laser distance measuring sensor at the second edge, an electric signal is generated again, therefore, the time between two electric signals and the driving speed of the driving part 50 can calculate the total length of the wood door original plate or door pocket original plate, for example, the total length of the plate is 2.22m, according to the width of 0.8m of each door plate, 0.8m from the first edge is defined as a first cutting line, 1.6m from the first edge is a second cutting line, the width of the residual waste material is 0.62m, the distance of the limit position is 0.1m from the distance of the part 20, so that the driving part moves towards the second cutting line, namely, the cutting position of the wood door is measured by the feeding line, and the feeding position of the cutting line is the first cutting side 201.8 m, namely, the moving of the cutting side is measured again, namely the cutting line is measured after the cutting line of the wood door is measured.
Example 1
Taking a wooden door raw plate as an example, as shown in fig. 3, the wooden raw plate moves from the feeding side 201 to the returning side 202, at this time, the telescopic rod 312 extends out, the first edge of the wooden raw plate abuts against the telescopic rod 312, the first edge is positioned, as shown in fig. 4, the cutting component 20 debugs the first edge of the wooden raw plate, an operator takes out waste materials, the reference edge of the deburred wooden raw plate abuts against the telescopic rod 312, at this time, the telescopic rod 312 retracts, as shown in fig. 5, the clamping jaw 32 clamps the wooden raw plate and is driven by the driving component 50 to move continuously towards the returning side 202 until the wooden raw plate completely passes through the optical path of the laser ranging sensor, as shown in fig. 6, in the process, the first cutting knife 41 and the second cutting knife 42 cut both sides of the plate material, and fix the height of the wooden door; meanwhile, the laser distance measuring sensor detects a first distance signal (plate material enters, height is high) when the first edge passes and a second distance signal (plate material leaves, height is low) when the second edge passes, so that the total length of the wood original plate can be obtained according to the driving speed of the driving part 50, for example, the total length is 2.22m; referring to fig. 7, the wood original plate is driven by the driving part 50 to move toward the feeding side 201, and referring to fig. 8, according to the width of each door panel of 0.8m, a first cutting line 0.8m away from the first edge, a second cutting line 1.6m away from the first edge, a remaining width of the waste material is 0.62m, and a limiting position is 0.1m away from the cutting part 20, so that the driving part 50 drives the wood original plate to move 0.72m from the return side 202 to the feeding side 201, which is the position of the second cutting line, and cuts the waste material of 0.62m and the plate material of 1.6m, and then moves 0.8m, which is the position of the first cutting line, to form two wood door panels of 0.8 m.
Example 2
Taking the cutting of the door pocket as an example, the difference from the cutting of the wooden door original plate is that the width of the door pocket is relatively narrow, for example 0.2m, so that more door pockets can be formed by one door pocket original plate.
In combination with above embodiment, the utility model discloses a location sets up location cylinder and clamping jaw, the location cylinder can be fixed panel entering for the first time in limit position, be convenient for carry on the first side unhairing limit cut and the position measurement of the first end of panel, can calculate the total length after the panel unhairing limit through range finding sensor expert and the cooperation of drive part, according to the total length of panel, drive part can control panel berth preset position and cut by cutting part, form the timber or the door pocket of fixed width, advance an in-process at panel, accomplish the location of panel promptly and cut.
Although the present invention has been described with reference to the preferred embodiments, it is not intended to limit the present invention. The present invention is intended to cover by those skilled in the art various modifications and adaptations of the invention without departing from the spirit and scope of the invention. Therefore, the protection scope of the present invention is subject to the claims.

Claims (10)

1. The positioning mechanism of the wooden door and door pocket cutting equipment is characterized by comprising a feeding part (10), a positioning part (30) and a distance measuring sensor (33), wherein the feeding part (10) is positioned on the first side of a cutting part (20), the positioning part (30) is positioned on the second side of the cutting part (20), the first side of the cutting part (20) is defined as a feeding side (201), and the second side of the cutting part (20) is defined as a return side (202);
the feeding part (10) is used for supporting a wooden door original plate or a door pocket original plate, so that the wooden door original plate or the door pocket original plate can be supported by the feeding part (10) and moves from the feeding side (201) to the returning side (202), the positioning part (30) is arranged to completely pull the wooden door original plate or the door pocket original plate entering the returning side (202) into the returning side (202) of the cutting part (20) and push the wooden door original plate or the door pocket original plate completely entering the returning side (202) into the feeding side (201);
wherein the distance measuring sensor (33) is arranged to measure the total length of the wooden door original plate or the door pocket original plate after the wooden door original plate or the door pocket original plate completely enters the return side (202) from the feeding side (201).
2. The wooden door and door pocket cutting device positioning mechanism according to claim 1, characterized in that the positioning part (30) comprises a positioning cylinder (31) and a clamping jaw (32), the positioning cylinder (31) comprises an extending position and a compressing position, when the wooden door or door pocket original plate is abutted against the extending end of the positioning cylinder (31), the wooden door or door pocket original plate is limited, and the limited position of the wooden door or door pocket original plate is defined as the limiting position.
3. The wooden door and door pocket cutting device positioning mechanism as claimed in claim 2, wherein the distance measuring sensor (33) comprises a laser distance measuring sensor, the optical path direction of the laser distance measuring sensor is parallel to the thickness direction of the wooden door or door pocket original plate, and the optical path of the laser distance measuring sensor passes through a limiting position, when the limiting position has no wooden door or door pocket original plate, the laser distance measuring sensor outputs a first distance signal, and when the limiting position has wooden door or door pocket original plate, the laser distance measuring sensor outputs a second distance signal.
4. The positioning mechanism for wooden door and door pocket cutting equipment as claimed in claim 2, wherein said clamping jaw (32) is configured to clamp the wooden door original plate or door pocket original plate after said positioning cylinder (31) is in the compression position, and can be driven by the driving part (50) to move along the feeding direction, so that the wooden door original plate or door pocket original plate completely enters the return side (202) and enters the feeding side (201) from the return side (202).
5. A positioning mechanism for a wood door and door pocket cutting device according to claim 2, characterized in that the clamping jaw (32) comprises a fixed jaw (311) and a movable jaw (322), the movable jaw (322) is controlled by a clamping cylinder (323), when the clamping cylinder (323) is extended, the fixed jaw (311) and the movable jaw (322) are close to each other to clamp the sheet material, when the clamping cylinder (323) is shortened, the fixed jaw (311) and the movable jaw (322) are far away from each other to release the sheet material.
6. A positioning mechanism for a wood door and door pocket cutting device according to claim 4, wherein the driving part (50) comprises a support frame, a guide rail (51) and a driver, the clamping jaw (32) is installed on the support frame, the support frame is connected on the guide rail (51), and the driver is used for driving the support frame to slide along the length direction of the guide rail (51).
7. The positioning mechanism of the wood door and door pocket cutting equipment is characterized in that the feeding part (10) comprises a first transmission platform (11) and a second transmission platform (12), and the distance between the two outer side edges of the first transmission platform (11) and the second transmission platform (12) is larger than the width of a wood door original plate or a door pocket original plate.
8. A positioning mechanism for a wood door and door pocket cutting machine according to claim 7, characterized in that the length of the first transfer table (11) is greater than the length of the second transfer table (12).
9. The positioning mechanism of a wooden door and door pocket cutting device as claimed in claim 1, wherein the cutting member (20) is used to cut the wooden door or door pocket original plate perpendicular to the feeding direction.
10. The positioning mechanism of the wood door and door pocket cutting equipment as claimed in claim 1, characterized by further comprising a longitudinally-cut part (40), wherein the longitudinally-cut part (40) comprises a first cutter (41) and a second cutter (42), and the cutting directions of the first cutter (41) and the second cutter (42) are parallel to the feeding direction.
CN202222648464.6U 2022-10-08 2022-10-08 Positioning mechanism of wooden door and door pocket cutting equipment Active CN218488636U (en)

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Application Number Priority Date Filing Date Title
CN202222648464.6U CN218488636U (en) 2022-10-08 2022-10-08 Positioning mechanism of wooden door and door pocket cutting equipment

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Application Number Priority Date Filing Date Title
CN202222648464.6U CN218488636U (en) 2022-10-08 2022-10-08 Positioning mechanism of wooden door and door pocket cutting equipment

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116330407A (en) * 2023-04-17 2023-06-27 江苏工之友工业设计研究有限公司 Continuous fixed-width cutting system and method for wooden door and door pocket

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116330407A (en) * 2023-04-17 2023-06-27 江苏工之友工业设计研究有限公司 Continuous fixed-width cutting system and method for wooden door and door pocket

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: Positioning mechanism for wooden door and door frame cutting equipment

Granted publication date: 20230217

Pledgee: Wuxi Rural Commercial Bank Co.,Ltd. Fengxian Branch

Pledgor: Xuzhou Gongzhiyou CNC Technology Co.,Ltd.

Registration number: Y2024980026011