A wood chip high temperature pretreatment equipment

By introducing flat detection parts and crack detection parts into the high-temperature pretreatment equipment of wood chips, combined with rolling conveying and electric heating, the problems of large deformation and detection difficulties after heating of wood chips are solved, and efficient quality control of wood chips is achieved.

CN117484627BActive Publication Date: 2025-08-12ZHEJIANG JINLI ENVIRONMENTAL PROTECTION PAPER CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202311440716.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-01
Publication Date
2025-08-12
Estimated Expiration
2043-11-01

AI Technical Summary

Technical Problem

The existing high-temperature pretreatment equipment for wood chips has a large deformation after heating, making it difficult to achieve auxiliary cracking and flatness detection, affecting the fiber strength and quality of wood chips.

Method used

A high-temperature pretreatment equipment for wood chips is designed, including flat detection parts and crack detection parts. The cracking and flatness detection of wood chips is realized through a conical detection head and pressure sensor, and the rolling conveyor and electric heating plate are combined for heating and transporting to ensure that the deformation range of wood chips is controllable.

Benefits of technology

It realizes effective control of the deformation range of wood chips, timely detection and removal of defective products, improves the heat treatment quality and processing quality of wood chips, and ensures the flatness and integrity of wood chips.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117484627B_ABST
    Figure CN117484627B_ABST
Patent Text Reader

Abstract

The present invention provides a high-temperature pretreatment device for wood chips, which relates to the technical field of wood chip production and processing, including a mounting support, a support cover fastener is mounted on the mounting support, a rolling mounting member is mounted on the support cover fastener, a row of rolling conveying members is fixedly mounted on the rolling mounting member, a row of rolling conveying members is elastically rolled and bonded to the mounting support, a transverse driving member is fixedly mounted on the rolling mounting member, a detection mounting member is mounted on the transverse driving member, and a flatness detection member is slidably connected to the detection mounting member; the device can assist in cracking and flatness detection, effectively ensure the deformation range of the wood chips, can detect cracked wood chips in time and uniformly alarm, effectively ensure the heat treatment quality of the wood chips, and solve the problem that the current high-temperature pretreatment equipment for wood chips is not convenient for assisting in flattening and heating, and the deformation of the wood chips after heating is large.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of wood chip production and processing, in particular to a high-temperature pretreatment device for wood chips. Background Art

[0002] Wood chips are sheets obtained by cutting wood. In actual processing and production work, heating is required. Heating can reduce the cracking and deformation of wood products caused by the shrinkage and swelling of wood. The wood is subjected to high-temperature heat treatment under conditions of high temperature, lack of oxygen, and the participation of water vapor. This will partially decompose the hemicellulose components inside the wood, and nutrients such as starch and sugar will react and volatilize, and new chemical bonds will be re-formed inside the wood, thereby achieving the purpose of improving the dimensional stability, weather resistance and durability of the wood. The current high-temperature pre-pretreatment equipment for wood chips is not convenient for assisting in flattening heating work. The deformation of the wood chips after heating is large, which is not convenient for assisting in the auxiliary cracking and flatness detection of the wood chips. The cracking of the wood chips will affect the fiber strength of the wood chips. Summary of the Invention

[0003] In view of this, the present invention provides a high-temperature pretreatment device for wood chips, which has a flatness detection part. Through the detection interference structure, it can assist in cracking and flatness detection, effectively ensuring the deformation range of the wood chips. At the same time, wood chips with cracks can be detected in time and uniformly alarmed. The detection method is simple and reasonable, effectively ensuring the heat treatment quality of the wood chips, effectively ensuring the quality of the wood chips after processing, and ensuring their flatness and integrity.

[0004] The present invention provides a high-temperature pretreatment device for wood chips, which specifically includes a mounting support member, a support cover fastener is mounted on the mounting support member; a rolling mounting member is mounted on the support cover fastener; a row of rolling conveying members is fixedly mounted on the rolling mounting member; a row of rolling conveying members is elastically rolled and bonded to the mounting support member; a transverse driving member is fixedly mounted on the rolling mounting member; a detection mounting member is mounted on the transverse driving member; a flatness detecting member is slidably connected to the detection mounting member; a cracking detecting member is fixedly mounted on the flatness detecting member, and the cracking detecting member is located inside the detection mounting member; the cracking detecting member is electrically connected to the support member. Cover fastener; the flatness detection part is electrically connected to the support cover fastener; the mounting support part includes: a mounting support plate, an electric heating plate, a ground connecting plate, a liquid inlet auxiliary pump, an isolation mesh plate and a support flat plate, the mounting support plate is fixedly embedded with an electric heating plate, and the electric heating plate is externally connected to a power supply; there are two ground connecting plates, and a row of through holes are respectively provided on the two ground connecting plates; the two ground connecting plates are respectively welded to the mounting support plates; the liquid inlet auxiliary pump is mounted on the mounting support plate; the liquid inlet auxiliary pump is externally connected to a water tank; the isolation mesh plate is fixedly embedded on the mounting support plate; the support flat plate is fixedly welded to the mounting support plate.

[0005] Furthermore, the flatness detection part includes: a flatness detection installation slider, a connecting spring, a second sliding connecting column and a detection head, the flatness detection installation slider is slidably connected to the detection installation slot block; a connecting spring is installed inside the flatness detection installation slider; a second sliding connecting column is slidably connected to the flatness detection installation slider; the end of the second sliding connecting column is fixedly welded with a detection head; the end of the detection head is a conical structure; the detection head elastically fits on the supporting plate.

[0006] Furthermore, the rolling conveyor includes: a driving feed motor and a driving roller, the driving feed motor is fixedly mounted on the mounting support plate; a driving roller is welded on the output shaft of the driving feed motor, and the driving roller is rotatably connected to the rolling connecting frame; the outside of the driving roller is provided with a frosted anti-slip coating.

[0007] Furthermore, the detection mounting part includes: a detection mounting slot block and a detection auxiliary slider, the detection mounting slot block is welded with a detection auxiliary slider; the detection auxiliary slider is slidably connected to the transverse driving mounting plate; the detection auxiliary slider is threadedly connected with a driving transverse screw rod.

[0008] Furthermore, the crack detection component includes: a crack detection sliding mounting tube, a crack pressure spring, a sliding control column and a crack pressure sensor, the crack detection sliding mounting tube is fixedly mounted on a flat detection mounting slider; the crack detection sliding mounting tube is internally sleeved with a crack pressure spring; the crack detection sliding mounting tube is slidingly connected with a sliding control column; the crack detection sliding mounting tube is connected between the crack detection sliding mounting tube and the sliding control column; the crack pressure sensor is fixedly sleeved on the sliding control column; the crack pressure sensor elastically fits the detection mounting slot block.

[0009] Furthermore, the rolling mounting part includes: a rolling connecting frame, an exhaust auxiliary slot, a first sliding connecting column, an elastic connecting column and a connecting tension spring, and the rolling connecting frame is provided with an exhaust auxiliary slot; four first sliding connecting columns are fixedly welded on the rolling connecting frame; the four first sliding connecting columns are respectively slidably connected to the support mounting cover; the elastic connecting column is fixedly welded on the rolling connecting frame; the connecting tension spring is sleeved on the elastic connecting column; the connecting tension spring is connected between the top of the elastic connecting column and the top of the support mounting cover; the exhaust auxiliary slot is aligned with the exhaust electric fan.

[0010] Furthermore, the mounting support also includes: a supporting roller, and the supporting plate is rotatably connected to the supporting roller.

[0011] Furthermore, the transverse driving component includes: a transverse driving mounting plate, a driving transverse motor and a driving transverse screw, the transverse driving mounting plate is welded to the rolling connecting frame; the driving transverse motor is installed on the transverse driving mounting plate; the driving transverse screw is installed on the output shaft of the driving transverse motor, and the driving transverse screw is rotatably connected to the rolling connecting frame.

[0012] Furthermore, the support cover fastener includes: a support mounting cover, an exhaust electric fan, a controller and an alarm control light, the support mounting cover is fixedly welded to the mounting support plate; the exhaust electric fan is fixedly mounted on the support mounting cover; the controller is fixedly mounted on the support mounting cover; the alarm control light is fixedly mounted on the support mounting cover; and a through slot is provided on the side of the support mounting cover.

[0013] Furthermore, the flatness detection part also includes: a flatness detection mounting plate and a flatness pressure sensor, the flatness detection mounting plate is slidably connected inside the flatness detection mounting slider; the flatness detection mounting plate is attached to the end of the connecting spring; a flatness pressure sensor is fixedly installed on the bottom of the flatness detection mounting plate; the flatness pressure sensor is attached to the second sliding connecting column; the flatness pressure sensor is electrically connected to the controller.

[0014] Compared with the prior art, the present invention has the following beneficial effects:

[0015] It can assist in flatness detection and cracking detection, effectively ensuring the quality of wood chips after high-temperature pretreatment, and defective products can be removed in time. It utilizes the conical structure of the detection head to form a gap after the sheet cracks, and the detection head will directly sink into it, resulting in extrusion cracking. The principle of the pressure sensor has a simple and reasonable structure and accurate detection. It can assist in cracking and flatness detection, effectively ensuring the deformation range of the wood chips, and has controllable deformation of the wood chips. At the same time, cracked wood chips can be detected in time and a unified alarm can be issued. The detection method is simple and reasonable, effectively ensuring the heat treatment quality of the wood chips and effectively ensuring the quality of the wood chips after processing.

[0016] In addition, by adopting the set rolling conveying parts, auxiliary rolling conveying work can be achieved, and while assisting in conveying the sheet, auxiliary driving roller pressing can be achieved to assist in flattening the sheet. It can assist in pressing and flattening during high-temperature pretreatment to improve the processing flatness of the sheet. By adopting rolling mounting parts, elastic rolling can be assisted to ensure the rolling fit and the adaptability of the sheet thickness. The electric heating plate can assist in heating work, and the liquid inlet auxiliary pump can assist in adding water. Steam heating can be performed, and it is flexible to use.

[0017] In addition, the use of detection mounting parts can realize the work of driving sliding, effectively ensuring the detection range of the structure, and can adapt to the width of the sheet. It can perform the same-direction moving detection on the texture of the sheet to ensure the accuracy of the inspection. It is faster and more comprehensive than manual labor, and improves the efficiency of sheet preprocessing. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.

[0019] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0020] In the attached figure:

[0021] Figure 1 It is a schematic diagram of the overall structure of the pretreatment device of the present invention.

[0022] Figure 2 It is a cross-sectional view of the internal structure of the pretreatment device of the present invention.

[0023] Figure 3 It is a schematic structural diagram of the rolling conveyor of the present invention.

[0024] Figure 4 It is a schematic diagram of the mounting support structure of the present invention.

[0025] Figure 5 This is a structural diagram of the support cover fastener of the present invention.

[0026] Figure 6 It is a structural schematic diagram of the rolling mounting part of the present invention.

[0027] Figure 7 It is a schematic structural diagram of the transverse driving member of the present invention.

[0028] Figure 8 It is a structural schematic diagram of the flatness detection piece of the present invention.

[0029] Reference numerals:

[0030] 1. Mounting support; 101. Mounting support plate; 1011. Electric heating plate; 102. Ground connection plate; 103. Liquid inlet auxiliary pump; 104. Isolation mesh plate; 105. Support plate; 106. Support roller; 2. Support cover fastener; 201. Support mounting cover; 202. Exhaust electric fan; 203. Controller; 204. Alarm control light; 3. Rolling mounting member; 301. Rolling connecting frame; 3011. Exhaust auxiliary slot; 302. First sliding connecting column; 303. Elastic connecting column; 304. Connecting tension spring; 4. Rolling conveyor; 401. Drive feed motor; 402. Driving roller; 5. Transverse driving member; 501. Transverse driving mounting plate; 502. Driving transverse motor; 503. Driving transverse screw rod; 6. Detection mounting member; 601. Detection mounting slot block; 602. Detection auxiliary slider; 7. Leveling detection member; 701. Leveling detection mounting slider; 702. Connecting spring; 703. Second sliding connecting column; 7031. Detection head; 704. Leveling detection mounting plate; 705. Leveling pressure sensor; 8. Cracking detection member; 801. Cracking detection sliding mounting cylinder; 802. Cracking pressure spring; 803. Sliding control column; 804. Cracking pressure sensor. DETAILED DESCRIPTION

[0031] In order to make the purpose, scheme and advantages of the technical solution of the present invention more clear, the technical solution of the embodiment of the present invention will be clearly and completely described below in conjunction with the drawings of specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the common meanings in the art. The same reference numerals in the drawings represent the same components.

[0032] Example 1: Please refer to Figures 1 to 8 As shown:

[0033] The present invention provides a wood chip high temperature pretreatment device, comprising a mounting support 1, a support cover fastener 2 is mounted on the mounting support 1; a rolling mounting member 3 is mounted on the support cover fastener 2; a row of rolling conveying members 4 is fixedly mounted on the rolling mounting member 3; a row of rolling conveying members 4 is elastically rolled and bonded to the mounting support 1; a transverse driving member 5 is fixedly mounted on the rolling mounting member 3; a detection mounting member 6 is mounted on the transverse driving member 5; a flatness detecting member 7 is slidably connected to the detection mounting member 6; a cracking detecting member 8 is fixedly mounted on the flatness detecting member 7, and the cracking detecting member 8 is located inside the detection mounting member 6; the cracking detecting member 8 is electrically connected to the support cover fastener 2; the flatness detecting member 7 is electrically connected to the support cover fastener 2; the mounting support The support member 1 includes: an installation support plate 101, an electric heating plate 1011, a ground connecting plate 102, a liquid inlet auxiliary pump 103, an isolation mesh plate 104 and a support flat plate 105. The electric heating plate 1011 is fixedly embedded in the installation support plate 101, and the electric heating plate 1011 is externally connected to a power supply; there are two ground connecting plates 102, and a row of through holes are respectively provided on the two ground connecting plates 102; the two ground connecting plates 102 are respectively welded to the installation support plate 101; the liquid inlet auxiliary pump 103 is installed on the installation support plate 101; the liquid inlet auxiliary pump 103 is externally connected to a water tank; the isolation mesh plate 104 is fixedly embedded in the installation support plate 101; the support flat plate 105 is fixedly welded to the installation support plate 101.

[0034] Among them, the mounting support 1 also includes: a support roller 106, and the support flat plate 105 is rotatably connected to the support roller 106, and the support roller 106 is used for anti-wear rolling discharge; the support cover fastener 2 includes: a support mounting cover 201, an exhaust electric fan 202, a controller 203 and an alarm control light 204, and the support mounting cover 201 is fixedly welded to the mounting support plate 101; the exhaust electric fan 202 is fixedly mounted on the support mounting cover 201; the controller 203 is fixedly mounted on the support mounting cover 201; the alarm control light 204 is fixedly mounted on the support mounting cover 201; and a through slot is provided on the side of the support mounting cover 201; The rolling mounting member 3 includes: a rolling connecting frame 301, an exhaust auxiliary slot 3011, a first sliding connecting column 302, an elastic connecting column 303 and a connecting tension spring 304. The rolling connecting frame 301 is provided with an exhaust auxiliary slot 3011; four first sliding connecting columns 302 are fixedly welded on the rolling connecting frame 301; the four first sliding connecting columns 302 are respectively slidably connected to the support mounting cover 201; the elastic connecting column 303 is fixedly welded on the rolling connecting frame 301; the connecting tension spring 304 is sleeved on the elastic connecting column 303; the connecting tension spring 304 is connected between the top of the elastic connecting column 303 and the top of the support mounting cover 201 The auxiliary exhaust slot 3011 is aligned with the exhaust electric fan 202; the rolling conveyor 4 includes: a driving feed motor 401 and a driving roller 402, the driving feed motor 401 is fixedly mounted on the mounting support plate 101; a driving roller 402 is welded on the output shaft of the driving feed motor 401, and the driving roller 402 is rotatably connected to the rolling connection frame 301; the driving roller 402 is provided with a frosted anti-slip coating on the outside. By adopting the set rolling conveyor 4, auxiliary rolling conveying work can be achieved, and auxiliary driving roller pressure can be achieved to assist in flattening the sheet while assisting in conveying the sheet. During the high-temperature pretreatment process, it assists in pressing and leveling to improve the processing flatness of the sheet. The rolling mounting part 3 can assist in elastic rolling to ensure the rolling fit and the thickness adaptability of the sheet. The electric heating plate 1011 can assist in heating, and the liquid inlet auxiliary pump 103 can assist in adding water, and steam heating can be performed. It is flexible to use, and the exhaust electric fan 202 can discharge water vapor to prevent water vapor from spreading everywhere. As the temperature rises, the feeding motor 401 drives the driving roller 402 to drive the sheet to slide and move, so as to adjust the position, ensure uniform heating, and assist in rolling and leveling.

[0035] Among them, the transverse driving component 5 includes: a transverse driving mounting plate 501, a driving transverse motor 502 and a driving transverse screw 503, and the transverse driving mounting plate 501 is welded to the rolling connecting frame 301; the transverse driving mounting plate 501 is installed with a driving transverse motor 502; the driving transverse screw 503 is installed on the output shaft of the driving transverse motor 502, and the driving transverse screw 503 is rotatably connected to the rolling connecting frame 301; the detection mounting component 6 includes: a detection mounting slot block 601 and a detection auxiliary slider 602, and the detection mounting slot block 601 is welded with a detection auxiliary slider 602; the detection auxiliary slider 602 is slidably connected to the transverse driving mounting plate 501; the detection auxiliary slider 602 is threadedly connected with a driving transverse screw rod 503. By adopting the detection mounting part 6, the driving sliding work can be realized, which effectively guarantees the detection range of the structure, can adapt to the sheet width, and perform the same-direction moving detection on the texture of the sheet to ensure the accuracy of the inspection. It is faster and more comprehensive than manual work, and improves the efficiency of sheet preprocessing. By adopting the driving transverse motor 502, the driving transverse screw rod 503 is driven to rotate, and the detection auxiliary slider 602 is driven to slide and adjust the position, thereby driving the flat detection part 7 to adjust the detection position, and cooperating with the rolling conveyor 4 to convey the sheet back and forth to adjust the detection position.

[0036] Example 2: Based on Example 1, the flatness detection member 7 includes: a flatness detection installation slider 701, a connecting spring 702, a second sliding connection column 703 and a detection head 7031. The flatness detection installation slider 701 is slidably connected to the detection installation slot block 601; a connecting spring 702 is set inside the flatness detection installation slider 701; the second sliding connection column 703 is slidably connected to the flatness detection installation slider 701; the end of the second sliding connection column 703 is fixedly welded with a detection head 7031; the end of the detection head 7031 is a conical structure; the detection head 7031 is elastically attached to the support plate 105; the flatness detection member 7 also includes: a flatness detection mounting plate 704 The flattening pressure sensor 705 is connected to the flattening detection mounting plate 704 in a sliding manner inside the flattening detection mounting slider 701; the flattening detection mounting plate 704 is attached to the end of the connecting spring 702; the flattening pressure sensor 705 is fixedly installed on the bottom of the flattening detection mounting plate 704; the flattening pressure sensor 705 is attached to the second sliding connecting column 703; the flattening pressure sensor 705 is electrically connected to the controller 203; the cracking detection component 8 includes: a cracking detection sliding mounting cylinder 801, a cracking pressure spring 802, a sliding control column 803 and a cracking pressure sensor 804, the cracking detection sliding mounting cylinder 801 is fixedly mounted on the flattening detection mounting slider 701; ... The interior of the mounting cylinder 801 is provided with a cracking pressure spring 802; a sliding control column 803 is slidably connected to the cracking detection sliding mounting cylinder 801; the cracking pressure spring 802 is connected between the cracking detection sliding mounting cylinder 801 and the sliding control column 803; the cracking pressure sensor 804 is fixedly mounted on the sliding control column 803; the cracking pressure sensor 804 elastically fits the detection mounting slot block 601. By adopting the provided cracking detection member 8, it is possible to assist in flatness detection and cracking detection work, effectively ensuring the quality of the wood chips after high-temperature pretreatment, and defective products can be promptly rejected. The detection head 7031 with a conical structure is used to form a crack after the sheet appears. The gap, the detection head 7031 will directly sink into, resulting in extrusion cracking. The principle of the pressure sensor 804 is simple and reasonable in structure, accurate in detection, and can assist in cracking and flatness detection, effectively ensuring the deformation range of the wood chips, and has controllable deformation of the wood chips. At the same time, the cracked wood chips can be detected in time and uniformly alarmed. The detection method is simple and reasonable, effectively ensuring the heat treatment quality of the wood chips, effectively ensuring the quality of the wood chips after processing, and ensuring their flatness and integrity. When there is a problem of excessive flatness, the flatness pressure sensor 705 feels that the pressure exceeds the critical value, and the controller 203 controls the alarm control light 204 to alarm, and the overall detection is accurate.

[0037] Specific usage and function of this embodiment: In the present invention, first, the electric heating plate 1011 can assist in heating, and the liquid inlet auxiliary pump 103 can assist in adding water. The fiber direction of the sheet material is axially aligned with the driving roller 402 and placed on the isolation mesh plate 104. The connecting tension spring 304 elastically pulls the driving roller 402 on the rolling connecting frame 301 to fit the sheet material. As the temperature rises, the feeding motor 401 drives the driving roller 402 to drive the sheet material to slide and move, thereby adjusting the position and ensuring uniform heating. It also assists in roller pressing and leveling. Under the drive of the driving transverse motor 502, the driving transverse screw rod 503 is driven to rotate, and the detection auxiliary slider 602 is driven to slide and adjust the position, thereby driving the leveling detection part 7 to adjust the detection position. The rolling conveyor 4 can be combined to convey the sheet material back and forth to adjust the detection position. During this process, when the wood chip slides on the detection head 7031 and there is a flatness problem such as excessive height, the detection head 7031 is squeezed, and the second sliding connecting column 703 is driven to squeeze the flattening pressure sensor 705. The flattening pressure sensor 705 feels that the pressure exceeds the critical value, and the controller 203 controls the alarm control light 204 to alarm. Similarly, when the detection head 7031 directly sinks into the sheet material, the detection head 7031 is stuck, driving the flattening detection installation slider 701 to move, squeezing the cracking pressure sensor 804, and the pressure of the cracking pressure sensor 804 increases. At this time, the alarm control light 204 is controlled by the controller 203 to alarm. The overall detection is accurate, and finally the wood chip can be discharged.

[0038] The above are merely exemplary embodiments of the present invention and are not intended to limit the scope of protection of the present invention. The scope of protection of the present invention is determined by the appended claims.

Claims

1. A wood chip high temperature pretreatment device, comprising a mounting support (1), wherein a support cover fastener (2) is mounted on the mounting support (1); characterized in that: The support cover fastener (2) is provided with a rolling mounting member (3); a row of rolling conveying members (4) is fixedly mounted on the rolling mounting member (3); a row of rolling conveying members (4) is elastically rolled and bonded to the mounting support member (1); a transverse driving member (5) is fixedly mounted on the rolling mounting member (3); a detection mounting member (6) is mounted on the transverse driving member (5); a flatness detecting member (7) is slidably connected to the detection mounting member (6); a cracking detecting member (8) is fixedly mounted on the flatness detecting member (7), and the cracking detecting member (8) is located inside the detection mounting member (6); the cracking detecting member (8) is electrically connected to the support cover fastener (2); the flatness detecting member (7) is electrically connected to the support cover fastener (2); the mounting support member (1) comprises: a mounting support plate (101), an electrical A heating plate (1011), a ground connection plate (102), a liquid inlet auxiliary pump (103), an isolation mesh plate (104) and a support plate (105); the installation support plate (101) is fixedly embedded with an electric heating plate (1011), and the electric heating plate (1011) is externally connected to a power supply; two ground connection plates (102) are provided, and a row of through holes is respectively provided on the two ground connection plates (102); the two ground connection plates (102) are respectively welded to the installation support plate (101); the liquid inlet auxiliary pump (103) is installed on the installation support plate (101); the liquid inlet auxiliary pump (103) is externally connected to a water tank; the isolation mesh plate (104) is fixedly embedded on the installation support plate (101); the support plate (105) is fixedly welded to the installation support plate (101); The support cover fastener (2) comprises: a support mounting cover (201), an exhaust electric fan (202), a controller (203) and an alarm control light (204); the support mounting cover (201) is fixedly welded to the mounting support plate (101); the exhaust electric fan (202) is fixedly mounted on the support mounting cover (201); the controller (203) is fixedly mounted on the support mounting cover (201); the alarm control light (204) is fixedly mounted on the support mounting cover (201); and a through slot is provided on the side surface of the support mounting cover (201); The detection installation member (6) comprises: a detection installation slot block (601) and a detection auxiliary slider (602); the detection installation slot block (601) is welded with the detection auxiliary slider (602); The flatness detection member (7) comprises: a flatness detection installation slider (701); the flatness detection installation slider (701) is slidably connected to the detection installation slot block (601); The crack detection component (8) comprises: a crack detection sliding installation tube (801), a crack pressure spring (802), a sliding control column (803) and a crack pressure sensor (804); the crack detection sliding installation tube (801) is fixedly installed on the flat detection installation slider (701); the crack detection sliding installation tube (801) is internally sleeved with a crack pressure spring (802); the crack detection sliding installation tube (801) is slidably connected with a sliding control column (803); the crack pressure spring (802) is connected between the crack detection sliding installation tube (801) and the sliding control column (803); the crack pressure sensor (804) is fixedly sleeved on the sliding control column (803); and the crack pressure sensor (804) elastically fits the detection installation slot block (601).

2. The wood chip high temperature pretreatment equipment according to claim 1, characterized in that: The mounting support (1) further comprises a supporting roller (106), and the supporting plate (105) is rotatably connected to the supporting roller (106).

3. The wood chip high temperature pretreatment equipment according to claim 1, characterized in that: The rolling mounting member (3) comprises: a rolling connection frame (301), an exhaust auxiliary slot (3011), a first sliding connection column (302), an elastic connection column (303) and a connecting tension spring (304); the rolling connection frame (301) is provided with an exhaust auxiliary slot (3011); four first sliding connection columns (302) are fixedly welded on the rolling connection frame (301); the four first sliding connection columns (302) are respectively slidably connected to the support mounting cover (201); the elastic connection column (303) is fixedly welded to the rolling connection frame (301); the connecting tension spring (304) is sleeved on the elastic connection column (303); the connecting tension spring (304) is connected between the top of the elastic connection column (303) and the top of the support mounting cover (201); the exhaust auxiliary slot (3011) is aligned with the exhaust electric fan (202).

4. The wood chip high temperature pretreatment equipment according to claim 3, characterized in that: The rolling conveyor (4) comprises: a driving feed motor (401) and a driving roller (402); the driving feed motor (401) is fixedly mounted on the mounting support plate (101); a driving roller (402) is welded to the output shaft of the driving feed motor (401), and the driving roller (402) is rotatably connected to the rolling connection frame (301); and the driving roller (402) is provided with a frosted anti-slip coating on the outside.

5. The wood chip high temperature pretreatment equipment according to claim 3, characterized in that: The transverse driving member (5) comprises: a transverse driving mounting plate (501), a driving transverse motor (502) and a driving transverse screw (503); the transverse driving mounting plate (501) is welded to the rolling connection frame (301); the driving transverse motor (502) is mounted on the transverse driving mounting plate (501); the driving transverse screw (503) is mounted on the output shaft of the driving transverse motor (502), and the driving transverse screw (503) is rotatably connected to the rolling connection frame (301).

6. The wood chip high temperature pretreatment equipment according to claim 5, characterized in that: The detection auxiliary slider (602) is slidably connected to the transverse driving mounting plate (501); and a driving transverse screw rod (503) is threadedly connected to the detection auxiliary slider (602).

7. The wood chip high temperature pretreatment equipment according to claim 6, characterized in that: The flatness detection member (7) comprises: a connecting spring (702), a second sliding connecting column (703) and a detection head (7031); the connecting spring (702) is mounted inside the flatness detection installation slider (701); the second sliding connecting column (703) is slidably connected to the flatness detection installation slider (701); the detection head (7031) is fixedly welded to the end of the second sliding connecting column (703); the end of the detection head (7031) is a conical structure; and the detection head (7031) is elastically fitted on the supporting plate (105).

8. The wood chip high temperature pretreatment equipment according to claim 7, characterized in that: The flatness detection member (7) further comprises: a flatness detection mounting plate (704) and a flatness pressure sensor (705); the flatness detection mounting plate (704) is slidably connected to the inside of the flatness detection mounting slider (701); the flatness detection mounting plate (704) is attached to the end of the connecting spring (702); a flatness pressure sensor (705) is fixedly mounted on the bottom of the flatness detection mounting plate (704); the flatness pressure sensor (705) is attached to the second sliding connection column (703); and the flatness pressure sensor (705) is electrically connected to the controller (203).

Citation Information

Patent Citations

  • Strip steel flatness detection device

    CN212205951U

  • High-temperature anti-cracking testing device for processing anti-cracking ecological board

    CN215297203U

  • Wood deformation adjusting equipment

    CN216099475U