CN112974136A - Gluing device and gluing method for aluminum profile structure - Google Patents

Gluing device and gluing method for aluminum profile structure Download PDF

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Publication number
CN112974136A
CN112974136A CN202110159611.0A CN202110159611A CN112974136A CN 112974136 A CN112974136 A CN 112974136A CN 202110159611 A CN202110159611 A CN 202110159611A CN 112974136 A CN112974136 A CN 112974136A
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CN
China
Prior art keywords
hole
glue
sliding block
gluing
driving
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CN202110159611.0A
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Chinese (zh)
Inventor
孙恒芳
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孙恒芳
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Priority to CN202110159611.0A priority Critical patent/CN112974136A/en
Publication of CN112974136A publication Critical patent/CN112974136A/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C5/00Apparatus in which liquid or other fluent material is projected, poured or allowed to flow on to the surface of the work
    • B05C5/002Apparatus in which liquid or other fluent material is projected, poured or allowed to flow on to the surface of the work the work consisting of separate articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C11/00Component parts, details or accessories not specifically provided for in groups B05C1/00 - B05C9/00
    • B05C11/10Storage, supply or control of liquid or other fluent material; Recovery of excess liquid or other fluent material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C13/00Means for manipulating or holding work, e.g. for separate articles
    • B05C13/02Means for manipulating or holding work, e.g. for separate articles for particular articles

Abstract

The invention provides a gluing device and a gluing method for an aluminum profile structure, wherein the gluing device comprises a rack, the aluminum profile structure and a gluing component; through the drive effect of first sliding block, can force the second sliding block to drive the head of gluing of injecting glue ware and insert in the first through-hole of going up, drive the position that the through-hole was gone up to the second through the third sliding block simultaneously to the cutting unit removal, accomplish the injecting glue process to the first through-hole of going up through the injecting glue ware to accomplish the cutting process to the gluey material of flowing out the second through-hole through the cutting unit. Therefore, the integrated operating device for injecting glue and cutting glue into the through holes at the corners of the aluminum profile is realized, and the working efficiency is obviously improved.

Description

Gluing device and gluing method for aluminum profile structure
Technical Field
The invention relates to a processing method of an aluminum profile structure, in particular to a structure and a method of a device for processing the positions of connecting corner valves of the aluminum profile structure together by injecting glue and cutting the glue.
Background
Aluminum profile structures have been widely used in various fields due to their excellent sealability and durability. The aluminum profile structure can be processed into devices with various structural types according to specific occasions.
When the aluminum profile structure is processed to form the fan frame structure, because the aluminum profile structure has a vertical angle, a connecting angle valve is generally required to be installed at the connecting position of the vertical angle, that is, the aluminum profile structures of the transverse section and the longitudinal section are connected and fixed through the connecting angle valve. After assembly, the junction angle valve is inside and is generally not visible from the outside. And, in the place of frame corner, the framework outside has the injecting glue through-hole to still have the export of gluing, formed the position of injecting glue in the place of frame corner promptly.
In order to further improve the sealing performance or the heat preservation performance of the structure, glue is generally injected at a position where the angle valve is connected, and in the prior art, a glue injector is generally used for manually injecting glue to the frame through hole. On one hand, the existing glue injection mode cannot be produced and processed in batch, so that the working efficiency is reduced; on the other hand, after glue injection, a part of glue injection material flows out of the outlet, and the flowing glue injection material needs to be manually cut to ensure the attractiveness and flatness, so that the labor cost is increased again, and the working efficiency is inhibited again.
Disclosure of Invention
In order to solve the problems in the prior art, the invention provides a device structure and a gluing method which are convenient for automatically gluing glue in through holes at the corner positions of a fan frame aluminum profile structure and automatically cutting glue materials flowing out of an outflow port.
The invention provides a gluing device for an aluminum profile structure, which comprises a rack, the aluminum profile structure and a gluing component;
the frame is provided with a platform, and a fixing component is arranged on the platform;
the aluminum profile structure is of a rectangular structure, a transverse section and a vertical section which are vertically connected are arranged at the corner of the aluminum profile structure, a first upper through hole is formed in the transverse section, a second upper through hole is formed in the vertical section, and the first upper through hole and the second upper through hole are communicated with each other;
the glue dispensing assembly is provided with a sliding plate, a first sliding block, a second sliding block, a third sliding block, a glue injector and a cutting unit; the sliding plate is provided with a first sliding groove, a second sliding groove and a third sliding groove, the first sliding block, the second sliding block and the third sliding block are sequentially arranged in the first sliding groove, the second sliding groove and the third sliding groove respectively, the outer side of the first sliding block is connected with a driving structure, and the driving structure is used for driving the first sliding block to move in the first sliding groove; the first sliding block is connected with the second sliding block through a first connecting rod, and the first sliding block is connected with the third sliding block through a second connecting rod; the glue injection device is characterized in that a limiting block is arranged in the second sliding groove and provided with a through hole, a glue injection head of the glue injection device penetrates through the through hole, a main body part of the glue injection device is connected with a driving plate, and the driving plate is connected with a glue injection power structure.
The beneficial effect of above-mentioned scheme does: through the drive effect of first sliding block, can force the second sliding block to drive the head of gluing of injecting glue ware and insert in the first through-hole of going up, drive the position that the through-hole was gone up to the second through the third sliding block simultaneously to the cutting unit removal, accomplish the injecting glue process to the first through-hole of going up through the injecting glue ware to accomplish the cutting process to the gluey material of flowing out the second through-hole through the cutting unit. Therefore, the integrated operating device for injecting glue and cutting glue into the through holes at the corners of the aluminum profile is realized, and the working efficiency is obviously improved.
A preferable scheme is that the vertical section is provided with a first upper through hole and a second upper through hole which are communicated with each other, the first upper through hole and the first upper through hole are arranged on the vertical section, and the second upper through hole is arranged on the transverse section; the first lower through hole is positioned below the first upper through hole, and the second lower through hole is positioned below the second upper through hole;
the glue beating assemblies are divided into two groups, namely a first group of glue beating assemblies and a second group of glue beating assemblies, the first group of glue beating assemblies and the second group of glue beating assemblies are arranged in parallel in the vertical direction, a first sliding block of the first group of glue beating assemblies is connected with a first sliding block of the second group of glue beating assemblies through a linkage rod, and the linkage rod is connected with the driving structure;
the first group of gluing components are used for pouring glue into the first upper through holes and cutting the glue flowing out of the second upper through holes; the second group of gluing components are used for pouring glue into the first lower through hole and cutting the glue flowing out of the second lower through hole.
The beneficial effect of above-mentioned scheme does: generally speaking, the corner position has an upper through hole and a lower through hole, and the device provided by the invention is provided with two groups of gluing components, and the two groups of gluing components are driven by a driving structure, namely, sliding blocks of the two groups of gluing components are connected by a linkage rod, and the pushing process is completed by a driving structure such as an air cylinder. Namely, the glue injection process of the two through holes is completed at one time, and the cutting process of the glue flowing out of the two through holes is completed at the same time.
A preferred scheme is that the cutting unit is provided with a movable plate, a cutting motor, a driving wheel, a driven wheel, a first cutting knife and a second cutting knife, the movable plate is connected with the third sliding block, the driving wheel and the driven wheel are rotatably arranged on an end plate of the movable plate, the driving wheel is connected with the cutting motor, the driving wheel is connected with the first cutting knife, the driven wheel is connected with the second cutting knife, and the first cutting knife and the second cutting knife are used for jointly cutting the adhesive material flowing out from the second upper through hole.
The beneficial effect of above-mentioned scheme does: through the setting of this kind of structure, through the control action to the motor, can be corresponding to first cutter and second cutter carry out closure and open the control, and then accomplish the cutting process to the adhesive material when closed. In addition, the lengths of the first cutter and the second cutter can be lengthened, so that the adhesive material flowing out of the second upper through hole and the second lower through hole can be cut by the first cutter and the second cutter through the group of cutter units.
Preferably, the second sliding block is provided with a first driving sliding groove, the first connecting rod is arranged in the first driving sliding groove, the third sliding block is provided with a second driving sliding groove, and the second connecting rod is arranged in the second driving sliding groove;
the driving structure and/or the glue injection power structure are/is an air cylinder structure.
The beneficial effect of above-mentioned scheme does: the first connecting rod slides in the first driving sliding groove, the second sliding block can be driven to slide in the second sliding groove in the sliding process, and meanwhile, the third sliding block is driven to slide in the third sliding groove through the sliding of the second connecting rod in the second driving sliding groove.
Preferably, the platform is provided with a positioning protrusion, and clamping components are arranged on two sides of the aluminum profile structure, and the clamping components and the positioning protrusion form the fixing component;
the clamping assembly comprises a fixed shell, a screwing rod, a rotating ring and a limiting rod; the rotating ring is sleeved and fixed on the screwing rod, the screwing rod is arranged on the fixed shell in a penetrating mode, the rotating ring can drive the screwing rod to move towards a frame of the aluminum profile structure, and a rotating handle is arranged on the rotating ring;
the sliding plate is of a fan-shaped structure, the fan-shaped structure is provided with a notch, the notch is provided with a notch transverse section and a notch longitudinal section, the notch transverse section is used for being matched and positioned with the transverse section of the connecting angle valve, and the notch longitudinal section is used for being matched and positioned with the longitudinal section of the connecting angle valve.
The beneficial effect of above-mentioned scheme does: can fix a position and fix aluminum profile struction through the location arch with clamping assembly, in addition, through the setting of breach department, also can further promote to put the accuracy to aluminum profile struction in the location of the horizontal section of corner position and vertical section.
The invention provides a gluing method of a gluing device of an aluminum profile structure, which comprises the following steps:
s1: placing an aluminum profile structure to be subjected to glue pouring on the platform, and fixing the aluminum profile structure in position through the fixing assembly;
s2: the driving structure drives the first sliding block to slide along the first sliding chute, namely to move towards the position of the connecting angle valve, and accordingly drives the second sliding block to move along the second sliding chute towards the first upper through hole through the first connecting rod, and drives the third sliding block to move along the third sliding chute towards the second upper through hole through the second connecting rod;
s3: the second sliding block drives the glue injecting head of the glue injector to enter the first upper through hole, the limiting block limits the main body part of the glue injector to move continuously, the driving plate is driven by the glue injecting power structure to enable the glue injector to inject glue into the first upper through hole, and the glue flows in the connecting angle valve and finally flows out along the outlet of the second upper through hole;
and S4, the third sliding block drives the cutting unit to move towards the direction of the second upper through hole, the cutting unit is close to the peripheral outer wall of the second upper through hole, and after the glue injection process of the connecting angle is completed, the cutting unit cuts the glue injection material flowing out of the second upper through hole.
A preferable scheme is that the vertical section is provided with a first upper through hole and a second upper through hole which are communicated with each other, the first upper through hole and the first upper through hole are arranged on the vertical section, and the second upper through hole is arranged on the transverse section; the first lower through hole is positioned below the first upper through hole, and the second lower through hole is positioned below the second upper through hole;
the glue beating assemblies are divided into two groups, namely a first group of glue beating assemblies and a second group of glue beating assemblies, the first group of glue beating assemblies and the second group of glue beating assemblies are arranged in parallel in the vertical direction, a first sliding block of the first group of glue beating assemblies is connected with a first sliding block of the second group of glue beating assemblies through a linkage rod, and the linkage rod is connected with the driving structure;
the first group of gluing components are used for pouring glue into the first upper through holes and cutting the glue flowing out of the second upper through holes; the second group of gluing components are used for pouring glue into the first lower through hole and cutting the glue flowing out of the second lower through hole;
the gluing method comprises the following steps:
the linkage rod is driven to move through the driving structure, so that the first sliding blocks of the first group of gluing components and the second group of gluing components slide along the first sliding groove; moreover, the glue injection process of the first upper through hole and the glue injection and cutting process of the second upper through hole are completed through the first group of glue injection assemblies; and meanwhile, the glue injection process of the first lower through hole and the glue injection process of the second lower through hole are completed through the second group of glue injection assemblies.
A preferable scheme is that the cutting unit is provided with a moving plate, a cutting motor, a driving wheel, a driven wheel, a first cutting knife and a second cutting knife, the moving plate is connected with the third sliding block, the driving wheel and the driven wheel are rotatably arranged on an end plate of the moving plate, the driving wheel is connected with the cutting motor, the driving wheel is connected with the first cutting knife, the driven wheel is connected with the second cutting knife, and the first cutting knife and the second cutting knife are used for jointly cutting the adhesive material flowing out of the second upper through hole;
the gluing method comprises the following steps:
the third sliding block drives the movable plate to move close to the outer wall of the second upper through hole, the cutting motor works to correspondingly drive the driving wheel and the driven wheel to rotate, so that the first cutter and the second cutter move in the opposite direction or move away from each other, and the cutting process of the material flowing out of the second upper through hole is completed when the first cutter and the second cutter move in the opposite direction.
Preferably, the second sliding block is provided with a first driving sliding groove, the first connecting rod is arranged in the first driving sliding groove, the third sliding block is provided with a second driving sliding groove, and the second connecting rod is arranged in the second driving sliding groove; the driving structure and/or the glue injection power structure is/are of an air cylinder structure;
when the first connecting rod slides in the first driving sliding groove, the second sliding block is correspondingly driven to slide along the first driving sliding groove, and simultaneously, when the second connecting rod slides in the second driving sliding groove, the third sliding block is correspondingly driven to slide along the second driving sliding groove.
Preferably, the platform is provided with a positioning protrusion, and clamping components are arranged on two sides of the aluminum profile structure, and the clamping components and the positioning protrusion form the fixing component;
the clamping assembly comprises a fixed shell, a screwing rod, a rotating ring and a limiting rod; the rotating ring is sleeved and fixed on the screwing rod, the screwing rod is arranged on the fixed shell in a penetrating mode, the rotating ring can drive the screwing rod to move towards a frame of the aluminum profile structure, and a rotating handle is arranged on the rotating ring;
the sliding plate is of a fan-shaped structure, the fan-shaped structure is provided with a notch, the notch is provided with a notch transverse section and a notch longitudinal section, the notch transverse section is used for matching and positioning with the transverse section of the connecting angle valve, and the notch longitudinal section is used for matching and positioning with the longitudinal section of the connecting angle valve;
the gluing method comprises the following steps:
positioning the frame of the aluminum profile structure through the positioning bulges;
the rotating handle drives the rotating ring and the screwing rod to perform screwing movement, so that the end screwing plate of the screwing rod screws and fixes the frame;
when the aluminum profile structure is placed on the platform, the transverse section of the notch is matched and positioned with the transverse section of the connecting angle valve, and the longitudinal section of the notch is matched and positioned with the longitudinal section of the connecting angle valve.
Drawings
Fig. 1 is a schematic structural diagram of a gluing device with an aluminum profile structure.
Fig. 2 is a schematic structural diagram of an aluminum profile structure of the gluing device with the aluminum profile structure.
Fig. 3 is a structural schematic diagram of an aluminum profile structural part and a gluing component of the gluing device with an aluminum profile structure.
Fig. 4 is a structural schematic diagram of an aluminum profile structural part and a gluing component of the gluing device with an aluminum profile structure.
Fig. 5 is a structural schematic diagram of an aluminum profile structural part and a gluing component of the gluing device with an aluminum profile structure.
Fig. 6 is a structural schematic diagram of an aluminum profile structural part and a gluing component of the gluing device with an aluminum profile structure.
Fig. 7 is a schematic structural diagram of two groups of gluing components of the gluing device with an aluminum profile structure.
Fig. 8 is a schematic structural view of two groups of gluing components of the gluing device with an aluminum profile structure without a sliding plate.
Fig. 9 is a partially enlarged view of fig. 7.
Fig. 10 is a schematic view of the structure of the clamping assembly of the gluing device in an aluminum profile structure.
Detailed Description
The first embodiment:
as shown in fig. 1 to 6, the gluing device for an aluminum profile structure provided by the invention comprises a frame 10, an aluminum profile structure 11 and a gluing assembly 20.
The frame 10 has a platform 12 with a mounting assembly 13 on the platform 12.
Aluminum profile struction 11 places on platform 12, and fixes through fixed subassembly 13, and aluminum profile struction 11 is the aluminum profile struction of rectangle structure, and is provided with perpendicular continuous horizontal section 16 and vertical section 17 in aluminum profile struction 11's corner department, has first through-hole 14 of going up on horizontal section 16, through-hole 15 on the vertical section 17 second, and first through-hole 14 and the second go up through-hole 15 and communicate each other. Preferably, the first upper through hole 14 and the second upper through hole 15 communicate with each other inside the aluminum profile structure through a connection angle valve or a butt connector.
The gluing component 20 is provided with a sliding plate 24, a first sliding block 21, a second sliding block 22, a third sliding block 23, a glue injector 25 and a cutting unit 26; the sliding plate 24 is provided with a first sliding groove 31, a second sliding groove 32 and a third sliding groove 33, the first sliding block 21, the second sliding block 22 and the third sliding block 23 are sequentially and respectively arranged in the first sliding groove 31, the second sliding groove 32 and the third sliding groove 33, the outer side of the first sliding block 21 is connected with the driving structure 27, and the driving structure 27 is used for driving the first sliding block 21 to move in the first sliding groove 31; the first sliding block 21 is connected with the second sliding block 22 through a first connecting rod 28, and the first sliding block 21 is connected with the third sliding block 23 through a second connecting rod 29; a limiting block 35 is arranged in the second sliding groove 32, the limiting block 35 is provided with a through hole, the glue injecting head 251 of the glue injector 25 penetrates through the through hole, the main body portion 252 of the glue injector 25 is connected with the driving plate 253, and the driving plate 253 is connected with the glue injecting power structure 254.
The invention provides a gluing method of a gluing device of an aluminum profile structure 11, which comprises the following steps:
s1: placing an aluminum profile structure 11 to be glue-poured on a platform 12, and fixing the aluminum profile structure 11 through a fixing component 13;
s2: the driving structure 27 drives the first sliding block 21 to slide along the first sliding slot 31, i.e. to move towards the corner of the frame, and accordingly drives the second sliding block 22 to move along the second sliding slot 32 towards the first upper through hole 14 through the first connecting rod 28, and simultaneously drives the third sliding block 23 to move along the third sliding slot 33 towards the second upper through hole 15 through the second connecting rod 29;
s3: the second slide block 22 drives the glue injecting head 251 of the glue injector 25 to enter the first upper through hole 14, meanwhile, the limit block 35 limits the main body 252 of the glue injector 25 to move continuously, the glue injecting power structure 254 drives the driving plate 253 to enable the glue injector 25 to inject glue into the first upper through hole 14, and the glue flows in the frame and finally flows out along the outlet of the second upper through hole 15;
and S4, the third slide block 23 drives the cutting unit 26 to move towards the direction of the second upper through hole 15, the cutting unit 26 is close to the peripheral outer wall of the second upper through hole 15, and after the glue injection process for the connecting angle is completed, the cutting unit 26 cuts the glue injection material flowing out of the second upper through hole 15.
Second embodiment:
the present embodiment further has a first lower through hole 51 and a second lower through hole 52 communicating with each other, the first upper through hole 14 and the first lower through hole being provided at the vertical section 17, the second lower through hole being provided at the lateral section 16; the first lower through hole 51 is located below the first upper through hole 14, and the second lower through hole 52 is located below the second upper through hole 15;
as shown in fig. 7 and 8, the glue dispensing assemblies 20 are two groups, which are respectively a first group of glue dispensing assemblies 201 and a second group of glue dispensing assemblies 202, the first group of glue dispensing assemblies 201 are arranged in parallel with the second group of glue dispensing assemblies 202 in the vertical direction, a first sliding block 211 of the first group of glue dispensing assemblies 201 is connected with a first sliding block 212 of the second group of glue dispensing assemblies 202 through a linkage rod 213, and the linkage rod 213 is connected with the driving structure 27;
the first group of gluing components 201 are used for pouring glue into the first upper through hole 14 and cutting the glue flowing out of the second upper through hole 15; the second group of gluing assemblies 202 is used for pouring glue into the first lower through hole 51 and cutting the glue flowing out of the second lower through hole 52;
the gluing method comprises the following steps:
the driving structure 27 drives the linkage rod 213 to move, so that the first sliding blocks 211 and 212 of the first group gluing component 201 and the second group gluing component 202 slide along the first sliding chute 31; moreover, the glue injection process for the first upper through hole 14 and the glue injection cutting process for the second upper through hole 15 are completed through the first group of glue injection assemblies 201; meanwhile, the glue injection process for the first lower through hole 51 and the glue injection process for the second lower through hole 52 are completed by the second set of glue injection assemblies 202.
The third embodiment:
as shown in fig. 9, the cutting unit 26 has a moving plate 61, a cutting motor 62, a driving wheel 63, a driven wheel 64, a first cutting knife 65 and a second cutting knife 66, the moving plate 61 is connected with the third sliding block 23, the driving wheel 63 and the driven wheel 64 are rotatably arranged on an end plate 67 of the moving plate 61, the driving wheel 63 is connected with the cutting motor 62, the driving wheel 63 is connected with the first cutting knife 65, the driven wheel 64 is connected with the second cutting knife 66, and the first cutting knife 65 and the second cutting knife 66 are used for jointly cutting the adhesive material flowing out of the second upper through hole 15;
the gluing method comprises the following steps:
the third sliding block 23 drives the moving plate 61 to move close to the outer wall around the second upper through hole 15, the cutting motor 62 works to correspondingly drive the driving wheel and the driving wheel 63 to rotate from the wheel 64, so that the first cutting knife 65 and the second cutting knife 66 move in opposite directions or move away from each other, and the cutting process of the material flowing out of the second upper through hole 15 is completed when the materials move in opposite directions. Further, the lengths of the first and second cutters 65, 66 are lengthened, which enables the first and second cutters 65, 66 to simultaneously perform the cutting process of the outflow adhesive material for the second upper and lower through holes, i.e., the cutting process for the two sets of holes is performed by providing one set of cutting units.
The fourth embodiment:
the second slide block 22 is provided with a first driving slide slot 221, the first connecting rod 28 is arranged in the first driving slide slot 221, the third slide block 23 is provided with a second driving slide slot 231, and the second connecting rod 29 is arranged in the second driving slide slot 231; the driving structure 27 and/or the glue injection power structure 254 are cylinder structures;
when the first connecting rod 28 slides in the first driving slot 221, it correspondingly drives the second sliding block 22 to slide along the first driving slot 221, and when the second connecting rod 29 slides in the second driving slot 231, it correspondingly drives the third sliding block 23 to slide along the second driving slot 231.
Fifth embodiment:
the platform 12 is provided with a positioning bulge 71, the two sides of the aluminum profile structure 11 are provided with clamping components 72, and the clamping components 72 and the positioning bulge 71 form a fixing component 13;
as shown in fig. 10, the clamping assembly 72 includes a fixed housing 73, a tightening rod 74, a rotating ring 75, and a stopper rod 76; the rotating ring 75 is sleeved and fixed on the screwing rod, the screwing rod 74 is arranged on the fixed shell 73 in a penetrating mode, the rotating ring 75 can drive the screwing rod 74 to move towards the frame of the aluminum profile structure 11, and the rotating ring 75 is provided with a rotating handle 77;
the sliding plate 24 is a fan-shaped structure, the fan-shaped structure is provided with a notch, the notch is provided with a notch transverse section 241 and a notch longitudinal section 242, the notch transverse section 241 is used for matching and positioning the transverse section 16, and the notch longitudinal section 242 is used for matching and positioning the vertical section 17;
the gluing method comprises the following steps:
positioning the frame of the aluminum profile structure 11 through the positioning protrusions 71;
the rotating handle 77 drives the rotating ring 75 and the screwing rod 74 to perform screwing movement, so that the end screwing plate 78 of the screwing rod 74 screws and fixes the frame;
when aluminum profile structure 11 is placed on platform 12, notched transverse section 241 is cooperatively positioned with transverse section 16 and notched longitudinal section 242 is cooperatively positioned with vertical section 17.

Claims (6)

1. The utility model provides an aluminium alloy structure beat mucilage binding and put which characterized in that includes:
a frame having a platform with a fixed assembly thereon;
the aluminum profile structure is of a rectangular structure, a transverse section and a vertical section which are vertically connected are arranged at the corner of the aluminum profile structure, a first upper through hole is formed in the transverse section, a second upper through hole is formed in the vertical section, and the first upper through hole and the second upper through hole are communicated with each other;
the gluing component is provided with a sliding plate, a first sliding block, a second sliding block, a third sliding block, a glue injector and a cutting unit; the sliding plate is provided with a first sliding groove, a second sliding groove and a third sliding groove, the first sliding block, the second sliding block and the third sliding block are sequentially arranged in the first sliding groove, the second sliding groove and the third sliding groove respectively, the outer side of the first sliding block is connected with a driving structure, and the driving structure is used for driving the first sliding block to move in the first sliding groove; the first sliding block is connected with the second sliding block through a first connecting rod, and the first sliding block is connected with the third sliding block through a second connecting rod; the glue injection device is characterized in that a limiting block is arranged in the second sliding groove and provided with a through hole, a glue injection head of the glue injection device penetrates through the through hole, a main body part of the glue injection device is connected with a driving plate, and the driving plate is connected with a glue injection power structure.
2. The gluing device of aluminum profile structure as recited in claim 1,
the first upper through hole and the first lower through hole are arranged on the vertical section, and the second lower through hole is arranged on the transverse section; the first lower through hole is positioned below the first upper through hole, and the second lower through hole is positioned below the second upper through hole;
the glue beating assemblies are divided into two groups, namely a first group of glue beating assemblies and a second group of glue beating assemblies, the first group of glue beating assemblies and the second group of glue beating assemblies are arranged in parallel in the vertical direction, a first sliding block of the first group of glue beating assemblies is connected with a first sliding block of the second group of glue beating assemblies through a linkage rod, and the linkage rod is connected with the driving structure;
the first group of gluing components are used for pouring glue into the first upper through holes and cutting the glue flowing out of the second upper through holes; the second group of gluing components are used for pouring glue into the first lower through hole and cutting the glue flowing out of the second lower through hole.
3. The gluing device of aluminum profile structure as recited in claim 1,
the cutting unit is provided with a movable plate, a cutting motor, a driving wheel, a driven wheel, a first cutter and a second cutter, the movable plate is connected with the third sliding block, the driving wheel and the driven wheel are rotatably arranged on an end plate of the movable plate, the driving wheel is connected with the cutting motor, the driving wheel is connected with the first cutter, the driven wheel is connected with the second cutter, and the first cutter and the second cutter are used for jointly cutting the adhesive material flowing out of the second upper through hole;
the driving structure and/or the glue injection power structure is/are of an air cylinder structure;
the sliding plate is of a fan-shaped structure, the fan-shaped structure is provided with a notch, the notch is provided with a notch transverse section and a notch longitudinal section, the notch transverse section is used for being matched and positioned with the transverse section, and the notch longitudinal section is used for being matched and positioned with the longitudinal section.
4. The gluing method of the gluing device of the aluminum profile structure according to claim 1, characterized by comprising the following steps:
s1: placing an aluminum profile structure to be subjected to glue pouring on the platform, and fixing the aluminum profile structure in position through the fixing assembly;
s2: the driving structure drives the first sliding block to slide along the first sliding groove, namely to move towards the corner of the frame, and accordingly drives the second sliding block to move along the second sliding groove towards the first upper through hole through the first connecting rod, and drives the third sliding block to move along the third sliding groove towards the second upper through hole through the second connecting rod;
s3: the second sliding block drives the glue injecting head of the glue injector to enter the first upper through hole, the limiting block limits the main body part of the glue injector to move continuously, the driving plate is driven by the glue injecting power structure to enable the glue injector to inject glue into the first upper through hole, and the glue flows in the frame and finally flows out along the outlet of the second upper through hole;
and S4, the third sliding block drives the cutting unit to move towards the direction of the second upper through hole, the cutting unit is close to the peripheral outer wall of the second upper through hole, and after the glue injection process of the connecting angle is completed, the cutting unit cuts the glue injection material flowing out of the second upper through hole.
5. The gluing method of the gluing device of the aluminum profile structure according to claim 4,
the first upper through hole and the first lower through hole are arranged on the vertical section, and the second lower through hole is arranged on the transverse section; the first lower through hole is positioned below the first upper through hole, and the second lower through hole is positioned below the second upper through hole;
the glue beating assemblies are divided into two groups, namely a first group of glue beating assemblies and a second group of glue beating assemblies, the first group of glue beating assemblies and the second group of glue beating assemblies are arranged in parallel in the vertical direction, a first sliding block of the first group of glue beating assemblies is connected with a first sliding block of the second group of glue beating assemblies through a linkage rod, and the linkage rod is connected with the driving structure;
the first group of gluing components are used for pouring glue into the first upper through holes and cutting the glue flowing out of the second upper through holes; the second group of gluing components are used for pouring glue into the first lower through hole and cutting the glue flowing out of the second lower through hole;
the gluing method comprises the following steps:
the linkage rod is driven to move through the driving structure, so that the first sliding blocks of the first group of gluing components and the second group of gluing components slide along the first sliding groove; moreover, the glue injection process of the first upper through hole and the glue injection and cutting process of the second upper through hole are completed through the first group of glue injection assemblies; and meanwhile, the glue injection process of the first lower through hole and the glue injection process of the second lower through hole are completed through the second group of glue injection assemblies.
6. The gluing method of the gluing device of the aluminum profile structure according to claim 4,
the cutting unit is provided with a movable plate, a cutting motor, a driving wheel, a driven wheel, a first cutter and a second cutter, the movable plate is connected with the third sliding block, the driving wheel and the driven wheel are rotatably arranged on an end plate of the movable plate, the driving wheel is connected with the cutting motor, the driving wheel is connected with the first cutter, the driven wheel is connected with the second cutter, and the first cutter and the second cutter are used for jointly cutting the adhesive material flowing out of the second upper through hole;
the sliding plate is of a fan-shaped structure, the fan-shaped structure is provided with a notch, the notch is provided with a notch transverse section and a notch longitudinal section, the notch transverse section is used for being matched and positioned with the transverse section, and the notch longitudinal section is used for being matched and positioned with the longitudinal section;
the gluing method comprises the following steps:
the third sliding block drives the moving plate to move close to the outer wall around the second upper through hole, the cutting motor works to correspondingly drive the driving wheel and the driven wheel to rotate, so that the first cutter and the second cutter move oppositely or move away from each other, and the cutting process of the material flowing out of the second upper through hole is completed when the first cutter and the second cutter move oppositely;
when the aluminum profile structure is placed on the platform, the transverse section of the notch is matched and positioned with the transverse section, and the longitudinal section of the notch is matched and positioned with the longitudinal section.
CN202110159611.0A 2021-02-05 2021-02-05 Gluing device and gluing method for aluminum profile structure Pending CN112974136A (en)

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