Conical head bolt part assembling device

By designing a tapered bolt part assembly device including adhesive and sealing parts, the problem of small diameter end hole diameter in mesh rod assembly is solved, resulting in time-consuming and labor-intensive bolt operation, and bolt assembly that can quickly pass through the tapered head without tools is achieved, improving assembly efficiency.

CN120042841AActive Publication Date: 2025-05-27JIANGSU PERMANENT STEEL STRUCTURE
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Patent Information

Application Number
CN202510521521.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-05-27
Estimated Expiration
2045-04-24

AI Technical Summary

Technical Problem

During the assembly of the mesh rod, the aperture at the small diameter end of the cone head is small, which makes it time-consuming and labor-intensive to pull the bolt out of the threaded part from the cone head.

Method used

A tapered bolt part assembly device is designed, including adhesives and sealing parts. The adhesive member includes an adhesive sleeve, a positioning sleeve, an elastic part and a locking part. The positioning sleeve and a locking part are used to limit and push the bolts. The sealing member includes a plug, a lower pressure part, a movable part and an elastic part. By manually twisting the sealing member, the plug and movable part are pushed to unlock, and the elastic part is used to push the bolt through the cone head.

Benefits of technology

The threaded portion of the bolt can be passed through the cone head without the help of other tools, which significantly saves operating time and effort and improves assembly efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of net rack rod piece machining, and particularly discloses a conical head bolt part assembling device which comprises a bonding piece and a plugging piece, the bonding piece comprises a bonding sleeve, a positioning sleeve, a first elastic part and a locking part, the outer side of the bonding sleeve is coated with glue, the bonding sleeve can be bonded with the inner wall of a conical head, the positioning sleeve can contain a bolt, and the plugging piece can plug the bolt. The positioning sleeve is connected into the bonding sleeve through the first elastic part, and the locking part is rotationally connected into the bonding sleeve and used for locking the positioning sleeve when the first elastic part is in a compressed state. The bonding sleeve comprises a plug, a downward pressing part, a movable part and a second elastic part, the plug can be inserted into the conical head and makes contact with the end of the bolt, the movable part is connected with the plug through the second elastic part, the downward pressing part is inserted into the plug, the movable part can stretch out of the plug and limit the plug, and the downward pressing part can push the movable part to stretch into the plug; according to the cone head bolt part assembling device, the thread part of the bolt can rapidly penetrate through the cone head, and time and labor are saved.
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Description

Technical Field

[0001] The present invention relates to the technical field of grid member processing, and particularly relates to an assembly device for conical head bolt parts. Background Art

[0002] Due to its excellent spatial stress performance, high flexibility, and relatively economical and efficient construction cost, the grid structure has become the preferred structural form for many large-scale construction projects. As the core component of the grid structure, the performance and quality of grid members directly determine the stability, safety, and durability of the entire grid structure. Grid members are rod-shaped components used in grid structures, which are connected into a grid-like structure through nodes to bear various loads and actions. Grid members mainly consist of rods, nodes, and supports. The rod is the main load-bearing member; the node is an important component for connecting rods, usually composed of welded balls, bolt balls, or steel plate nodes, etc.; the support is used to support the grid structure and transfer the load to the lower structure, and can evenly distribute the load to each rod and node to form a stable spatial stress system. The rod includes a rod body, a conical head, and a bolt. During assembly, the bolt needs to be glued into the conical head in advance, then the conical head with the bolt is moved to the end of the rod body, and the connection between the conical head and the rod body is spot-welded. Subsequently, at the rod body after spot-welding, the connection between the conical head and the rod body is welded by welding equipment to form a rod. After welding, the rod is moved into shot blasting equipment, and the rod is polished and cleaned by the shot blasting equipment. Then, the polished and cleaned rod is painted, and finally, the rods are bundled according to a certain quantity.

[0003] A Chinese patent document with the publication number CN110405420B discloses a processing technology for steel structure grid members, including the following steps: blanking, chamfering, rust removal, welding, removing welding slag, painting, and marking; the painting equipment includes a bracket, a rod clamping device, a rod painting device, a rod picking device, and a collection box. Through the rod clamping device, the feeding and fixing of the rod are completed, and at the same time, the rotation during the rod painting process is completed; through the rod painting device, the painting of the rod is completed; and then through the rod picking device, the painted rod is picked up.

[0004] The following deficiencies also exist in the above prior art: The conical head has a large-diameter end and a small-diameter end. In order to prevent the bolt from falling off, during assembly, the bolt needs to be glued into the conical head from the large-diameter end of the conical head first, and then the large-diameter end of the conical head is aligned with the end of the rod and spot-welded. When pulling out the threaded part of the bolt from the conical head for use, tools need to be used to pull out the threaded part of the bolt from the conical head for subsequent threaded connection between the bolt and the bolt ball. Since the aperture of the small-diameter end part of the conical head is small, it is time-consuming and laborious to operate. Summary of the Invention

[0005] The invention provides a cone head bolt parts assembly device, aiming to solve the problem in the related art that when pulling out the threaded part of the bolt from the cone head to connect the bolt with the bolt ball thread, the operation is time-consuming and laborious due to the small hole diameter of the small diameter end of the cone head.

[0006] The cone head bolt parts assembly device of the present invention comprises a feeding mechanism, a discharging mechanism, a loading mechanism, a material taking mechanism and a spot welding mechanism, and also comprises a supporting mechanism, the supporting mechanism comprises an adhesive member and a sealing member, the adhesive member comprises an adhesive sleeve, a positioning sleeve, an elastic part 1 and a locking part, the outer side of the adhesive sleeve is coated with glue and can be bonded to the inner wall of the cone head, the positioning sleeve can hold the bolt, the positioning sleeve is connected to the adhesive sleeve through the elastic part 1, the locking part is rotatably connected to the adhesive sleeve and is used to lock the positioning sleeve when the elastic part 1 is in a compressed state; the adhesive sleeve comprises a plug, a pressing part, a movable part and an elastic part 2, the plug can be inserted into the cone head and contact the end of the bolt, the movable part is connected to the plug through the elastic part 2, the pressing part is inserted into the plug, the movable part can extend out of the plug and limit the plug, and the pressing part can push the movable part and extend into the plug.

[0007] Beneficial effect: the adhesive is first placed on the feeding mechanism through the discharge mechanism, and then the bolt is inserted into the positioning sleeve on the adhesive, and then the cone head is set on the adhesive sleeve, and the adhesive sleeve is bonded to the inner wall of the cone head, and finally the blocking piece is installed on the cone head, and the bolt is limited, thereby completing the assembly of the truss rod. When the threaded portion of the bolt is subsequently passed through the cone head for use, the blocking piece can be manually twisted so that the plug on the blocking piece pushes the locking portion to move and releases the lock of the positioning sleeve. After pushing the pressing part to retract the movable portion into the plug and removing the plug from the cone head, the elastic part can apply thrust to the bolt to make the threaded portion of the bolt pass through the cone head. There is no need to use other tools to pull the bolt, saving time and effort.

[0008] Preferably, a conical surface is provided on the outer side of the adhesive sleeve, and glue is coated on the conical surface.

[0009] The effect is that the conical surface on the bonding sleeve can be matched with the inner wall of the cone head, so that the bonding sleeve and the inner wall of the cone head are tightly bonded.

[0010] Preferably, the adhesive component further comprises a swivel and a connecting portion, the swivel is rotatably connected in the adhesive sleeve, and the swivel is connected to the locking portion via the connecting portion.

[0011] The effect is that the locking part can be supported by rotating the rotating ring connected in the adhesive sleeve.

[0012] Preferably, the number of the locking parts is four, and a circular limiting cavity is formed between the four locking parts for limiting the position of the bolt.

[0013] The effect is that: through the circular limiting cavity formed between the four locking parts, the bolt can be limited and guided to prevent the bolt from tilting due to gravity after disengaging from the positioning sleeve in the horizontal state, so as to ensure that the bolt can pass through the insertion hole on the conical head.

[0014] Preferably, a locking groove is provided on the outer side of the positioning sleeve, and the locking part is slidably connected in the locking groove.

[0015] The effect is that: through the locking groove, when the second elastic part is in a compressed state, the positioning sleeve can be locked by the locking part.

[0016] Preferably, the locking groove includes an arc section and an opening section. The arc section is communicated with the opening section, and the opening section penetrates to the bottom of the positioning sleeve.

[0017] The effect is that: when the locking part is located in the arc section, the locking part can lock the positioning sleeve. At this time, the second elastic part is in a compressed state. When the locking part moves to the opening section, the locking of the positioning sleeve by the locking part is released, and the second elastic part can push the positioning sleeve to move the bolt in the direction towards the small-diameter end part of the conical head.

[0018] Preferably, a damping block is connected inside the bonding sleeve, and the damping block is in contact with the inner wall of the positioning sleeve.

[0019] The effect is that: through the damping block, after the locking of the positioning sleeve by the locking part is released, the speed of the second elastic part pushing the positioning sleeve to move can be slowed down first, providing time for the plugging member to be pulled out from the insertion hole, so as to avoid the first elastic part immediately pushing the bolt to move and causing harm to the staff when the plugging member is not completely disengaged from the conical head.

[0020] Preferably, a channel is provided on the plug, and the movable part is slidably connected in the channel.

[0021] Preferably, an inclined surface is provided on the movable part, and the pressing part is in contact with the inclined surface on the movable part.

[0022] The effect is that: through the pressing part, the inclined surface on the movable part can be pushed, so that the movable part moves towards the direction close to the axis of the plug, facilitating the release of the locking of the plug.

[0023] Preferably, the feeding mechanism includes a mounting frame, a feeding member and positioning parts. The feeding member is connected inside the mounting frame, and a plurality of positioning parts are provided, and all the plurality of positioning parts are connected to the feeding member.

[0024] The beneficial effects of the present invention are: 1. First, place the bonding part on the feeding mechanism through the feeding mechanism. Then, insert the bolt into the positioning sleeve on the bonding part. Next, set the tapered head on the bonding sleeve and bond the inner wall of the bonding sleeve to the tapered head. Finally, install the plugging part on the tapered head to limit the bolt, thus completing the assembly of the grid member. When the threaded part of the bolt passes through the tapered head for subsequent use, the plugging part can be turned to make the plug on the plugging part push the locking part to move and release the locking of the positioning sleeve. After pushing the pressing part to make the movable part retract into the plug and removing the plug from the tapered head, the elastic part can apply a thrust to the bolt to make the threaded part of the bolt pass through the tapered head, eliminating the need to use other tools to pull the bolt, saving time and effort.

[0025] 2. Through the circular limiting cavity formed between the four locking parts, the bolt can be limited and guided to ensure that the bolt can pass through the jack on the tapered head.

[0026] 3. Through the damping block in contact with the positioning sleeve, after the locking of the positioning sleeve by the locking part is released, the speed of the elastic part two pushing the positioning sleeve can be slowed down first, providing time for the plugging part to be pulled out of the jack, so as to avoid injury to the staff caused by the elastic part one immediately pushing the bolt to move when the plugging part has not completely disengaged from the tapered head. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 is a three-dimensional structural schematic diagram of the present invention.

[0028] Figure 2 is a partial three-dimensional structural schematic diagram of the present invention.

[0029] Figure 3 is a three-dimensional structural schematic diagram of the loading mechanism, material taking mechanism, spot welding mechanism and rod body of the present invention.

[0030] Figure 4 is of the present invention Figure 3 amplified structural schematic diagram at A in

[0031] Figure 5 is a planar structural schematic diagram of the feeding mechanism, supporting mechanism and tapered head of the present invention.

[0032] Figure 6 is an exploded view of the supporting mechanism, tapered head and bolt of the present invention.

[0033] Figure 7 is a planar structural schematic diagram of the supporting mechanism and bolt of the present invention.

[0034] Figure 8 is a three-dimensional schematic diagram of the bonding part of the present invention.

[0035] Figure 9 is a sectional structural schematic diagram of the bonding part and tapered head of the present invention.

[0036] Figure 10 It is a schematic cross-sectional structure diagram of the bonding part, tapered head and bolt of the present invention.

[0037] Figure 11 It is a schematic three-dimensional structure diagram of the plugging part of the present invention.

[0038] Figure 12 It is a schematic cross-sectional structure diagram of the plugging part, tapered head and bolt of the present invention.

[0039] Reference signs: 1. Feeding mechanism; 11. Mounting frame; 12. Feeding member; 13. Positioning portion; 2. Unloading mechanism; 3. Loading mechanism; 31. Frame body; 32. Supporting member; 4. Material taking mechanism; 5. Spot welding mechanism; 6. Supporting mechanism; 61. Bonding part; 611. Bonding sleeve; 612. Positioning sleeve; 613. First elastic portion; 614. Locking groove; 615. Rotating ring; 616. Connecting portion; 617. Locking portion; 618. Damping block; 62. Plugging part; 621. Plug; 622. Channel; 623. Pressing-down portion; 624. Movable portion; 625. Second elastic portion; 70. Tapered head; 701. Insertion hole; 702. Abutting surface; 80. Bolt; 90. Rod body. Detailed implementation manners

[0040] The embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present invention and should not be construed as a limitation to the present invention.

[0041] As Figures 1 to 12As shown in the figure, the assembly device for the conical head bolt parts of the present invention includes a feeding mechanism 1, a supporting mechanism 6, a blanking mechanism 2, a loading mechanism 3, a picking mechanism 4 and a spot welding mechanism 5. The rod body 90 can be transported to the loading mechanism 3 by an external conveying device (the external conveying device is a prior art and is not shown in the figure), and the loading mechanism 3 supports the rod body 90. Two feeding mechanisms 1 are provided, and the two feeding mechanisms 1 are respectively located on both sides of the loading mechanism 3. Two blanking mechanisms 2 are provided, and the two blanking mechanisms 2 are respectively arranged in cooperation with the two feeding mechanisms 1. The blanking mechanism 2 can sequentially place the supporting mechanism 6, the bolt 80 and the conical head 70 on the feeding mechanism 1, and fix the bolt 80 in the conical head 70 through the supporting mechanism 6. By manually driving the supporting mechanism 6, the bolt 80 can be pushed so that the threaded part of the bolt 80 automatically extends out of the small-diameter end part of the conical head 70, which is time-saving and labor-saving. Two picking mechanisms 4 are provided, and the two picking mechanisms 4 are respectively installed on both sides of the loading mechanism 3. After the bolt 80 is fixed in the conical head 70, the picking mechanism 4 can pick up the conical head 70 with the bolt 80 therein and move it to the end of the rod body 90. The spot welding mechanism 5 can perform spot welding on the connection part between the conical head 70 and the rod body 90 to prevent the conical head 70 at the end of the rod body 90 from falling off when the rod body 90 moves to the welding equipment.

[0042] When assembling the grid members, first, the external conveying device transports the rod body 90 to the loading mechanism 3, and the loading mechanism 3 supports the rod body 90. Then, the blanking mechanism 2 places the supporting mechanism 6, the bolt 80 and the conical head 70 on the feeding mechanism 1 one by one, and the supporting mechanism 6 fixes the bolt 80 in the conical head 70. Subsequently, the picking mechanism 4 picks up the conical head 70 with the bolt 80 fixed thereon and moves the conical head 70 to the end of the rod body 90. Finally, the spot welding mechanism 5 performs spot welding on the connection part between the conical head 70 and the rod body 90, thus completing the assembly among the conical head 70, the bolt 80 and the rod body 90.

[0043] Such as Figures 1 to 5As shown, the feeding mechanism 1 includes a mounting frame 11, a feeding member 12, and a positioning portion 13. The feeding member 12 is installed within the mounting frame 11 and is used to support and feed the supporting mechanism 6, the tapered head 70, and the bolt 80. After the bolt 80 is fixed within the tapered head 70 through the supporting mechanism 6, the tapered head 70 containing the bolt 80 is moved to the picking mechanism 4, and the picking mechanism 4 picks up the tapered head 70 containing the bolt 80 and moves the tapered head 70 to the end of the rod body 90 to facilitate subsequent spot welding of the connection between the tapered head 70 and the rod body 90. The feeding member 12 includes a motor, a conveyor belt, and two driving rollers. The two driving rollers are respectively rotatably connected to both ends inside the mounting frame 11, the conveyor belt is drivingly connected between the two driving rollers, the motor is connected to the mounting frame 11, and the output shaft of the motor is connected to one of the driving rollers. Starting the motor can drive the transmission between the conveyor belt and the two driving rollers. The positioning portion 13 is provided in multiple numbers, and the multiple positioning portions 13 are equidistantly connected to the outer side of the conveyor belt and are used to position the supporting mechanism 6. The loading mechanism 3 includes a frame body 31 and a supporting member 32. The supporting member 32 is connected to the frame body 31 and is used to support the rod body 90.

[0044] When assembling the grid members, the supporting mechanism 6 is first placed on the positioning portion 13 of the conveyor belt through the feeding mechanism 2, the supporting mechanism 6 is positioned by the positioning portion 13, then the bolt 80 is placed inside the supporting mechanism 6, and finally the tapered head 70 is sleeved on the outer side of the supporting mechanism 6, and the supporting mechanism 6 is adhesively bonded to the inner wall of the tapered head 70, thereby fixing the bolt 80 inside the tapered head 70. Subsequently, the feeding member 12 is started to convey the tapered head 70 to the picking mechanism 4, and the picking mechanism 4 picks up the tapered head 70 containing the bolt 80 and moves the tapered head 70 to the end of the rod body 90.

[0045] As Figure 2 、 Figures 5 to 12 shown, a jack 701 is provided at the small-diameter end portion of the tapered head 70 for the threaded portion of the bolt 80 to pass through the small-diameter end portion of the tapered head 70. The supporting mechanism 6 includes an adhesive member 61 and a plugging member 62. The adhesive member 61 can be adhesively bonded inside the tapered head 70 and support the bolt 80 so that the bolt 80 is coaxially arranged with the tapered head 70, and the threaded portion of the bolt 80 faces upward. The plugging member 62 can plug the jack 701 and be in close contact with the top of the bolt 80, thereby fixing the bolt 80 inside the tapered head 70. When using the bolt 80, the plugging member 62 is taken out from the jack 701 at the small-diameter end portion of the tapered head 70 and the adhesive member 61 is driven so that the adhesive member 61 pushes the threaded portion of the bolt 80 through the jack 701, which is time-saving and labor-saving.

[0046] Continue to refer to Figure 2 、 Figures 5 to 12As shown, the bonding member 61 includes a bonding sleeve 611, a positioning sleeve 612, a first elastic part 613, a swivel ring 615, a connecting part 616, a locking part 617 and a damping block 618. The bonding sleeve 611 is sleeved on the positioning part 13. The outer side of the bonding sleeve 611 is a conical surface, which is adapted to the inner wall of the tapered head 70. Glue can be coated on the conical surface of the bonding sleeve 611 by an external glue coating device (the external glue coating device is a prior art and is not shown in the figure), so that the bonding sleeve 611 can be bonded to the inner wall of the tapered head 70. The positioning sleeve 612 is arranged inside the bonding sleeve 611. The first elastic part 613 is connected between the positioning sleeve 612 and the bonding sleeve 611. The first elastic part 613 is a compression spring. A locking groove 614 is arranged on the outer side of the positioning sleeve 612. There are four locking grooves 614. The locking groove 614 is provided with an arc section and an opening section. The arc section and the opening section are connected and the opening section penetrates to the bottom of the positioning sleeve 612. The swivel ring 615 is rotatably connected inside the bonding sleeve 611. There are four locking parts 617 and four connecting parts 616. The four locking parts 617 are connected to the swivel ring 615 through the four connecting parts 616. The four locking parts 617 are respectively slidably connected to the four locking grooves 614; When the locking part 617 slides in the arc section of the locking groove 614, the locking part 617 can lock the positioning sleeve 612, and the first elastic part 613 is in a compressed state. When the locking part 617 moves to the opening section, the locking part 617 releases the locking of the positioning sleeve 612. At this time, the first elastic part 613 can push the positioning sleeve 612 to move towards the small-diameter end part of the tapered head 70, and the positioning sleeve 612 pushes the bolt 80, so that the threaded part of the bolt 80 passes through the insertion hole 701 on the tapered head 70. A circular limiting cavity is formed between the four locking parts 617, and the inner diameter of the circular limiting cavity is equal to the outer diameter of the large head of the bolt 80. The bolt 80 can be limited through the circular limiting cavity to prevent the bolt 80 from tilting due to gravity after being separated from the positioning sleeve 612 in the horizontal state, so as to ensure that the threaded part of the bolt 80 can pass through the insertion hole 701 on the tapered head 70. The damping block 618 is connected inside the bonding sleeve 611 and is in contact with the inner wall of the positioning sleeve 612. Through the damping block 618, after the locking part 617 releases the locking of the positioning sleeve 612, the speed of the first elastic part 613 pushing the positioning sleeve 612 can be slowed down, and after the damping block 618 is separated from the positioning sleeve 612, the speed of the first elastic part 613 pushing the positioning sleeve 612 can be accelerated, so as to avoid injury to the staff caused by the first elastic part 613 immediately pushing the bolt 80 to move when the plugging member 62 has not completely separated from the tapered head 70.

[0047] Continue to refer to Figure 2 、 Figures 5 to 12As shown, the plugging member 62 includes a plug 621, a downward pressing portion 623, a movable portion 624, and a second elastic portion 625. The plug 621 is inserted into the jack 701, and the plug 621 is in a T shape. One end of the plug 621 extending into the jack 701 is in contact with the end of the bolt 80. Four channels 622 are provided on the outer side of the plug 621, and one end of the channel 622 is communicated with the inner side of the plug 621. The downward pressing portion 623 is inserted into the end of the plug 621 extending out of the jack 701, and the downward pressing portion 623 is slidably connected with the four channels 622. Four movable portions 624 are provided, and the four movable portions 624 are respectively slidably connected in the four channels 622. The second elastic portion 625 is a compression spring, and four second elastic portions 625 are provided. The four movable portions 624 are respectively connected with the plug 621 through the four second elastic portions 625. Through the second elastic portion 625, the movable portion 624 can extend out of the channel 622 and contact the abutting surface 702, so as to lock the plug 621 at the small-diameter end portion of the tapered head 70, and further block and limit the top of the bolt 80 to realize the fixation of the bolt 80. A slope is provided at the top of the movable portion 624, and the downward pressing portion 623 is in contact with the slope at the top of the movable portion 624. When the downward pressing portion 623 moves downward, it can push the slope of the movable portion 624, so that the movable portion 624 moves toward the direction close to the central axis of the plug 621 and compresses the second elastic portion 625 until one end of the movable portion 624 extending out of the channel 622 completely enters the channel 622, thereby releasing the lock on the plug 621, so as to facilitate the removal of the plug 621 from the small-diameter end portion of the tapered head 70. When the plug 621 plugs the jack 701 at the small-diameter end portion of the tapered head 70, the jack 701 can be closed by the plug 621 to prevent the paint from entering the tapered head 70 from the jack 701 and adhering to the threaded portion of the bolt 80 during the subsequent painting process, thereby affecting the subsequent use of the bolt 80.

[0048] Working principle: Start the external conveying device to convey the rod body 90 to the loading mechanism 3 for subsequent assembly.

[0049] Start the external glue coating device to coat glue on the conical surface of the bonding sleeve 611.

[0050] Start the feeding mechanism 2 to clamp and move the bonding sleeve 611 until the bonding sleeve 611 is sleeved on the positioning portion 13.

[0051] Start the feeding mechanism 2 to clamp and move the bolt 80 so that the bolt 80 is inserted into the positioning sleeve 612 inside the bonding sleeve 611.

[0052] Start the feeding mechanism 2 to clamp and move the tapered head 70 so that the tapered head 70 is sleeved on the outside of the bonding sleeve 611, and the bonding sleeve 611 is adhesively fixed to the inner wall of the tapered head 70 through the glue coated on its conical surface.

[0053] Start the discharging mechanism 2 to clamp the plug 621 and push the pressing part 623 downward. The downward movement of the pressing part 623 can push the inclined surface of the movable part 624, so that the movable part 624 moves towards the direction close to the central axis of the plug 621 and compresses the second elastic part 625 until one end of the movable part 624 extending out of the channel 622 completely enters the channel 622. Then, the discharging mechanism 2 inserts the plug 621 into the jack 701 at the small-diameter end part of the taper head 70. Then, release the pressing part 623. At this time, under the elastic force of the second elastic part 625, the second elastic part 625 pushes the movable part 624 to move away from the axis of the plug 621 until the movable part 624 extends out of the channel 622 and contacts the abutting surface 702, thereby locking the plug 621 at the small-diameter end part of the taper head 70. At this time, the two ends of the bolt 80 are blocked and limited by the plug 621 and the positioning sleeve 612, and then the bolt 80 is fixed in the taper head 70.

[0054] Start the feeding mechanism 1 to convey the taper head 70 equipped with the bolt 80 to the picking mechanism 4. Then, start the picking mechanism 4 to pick up the taper head 70 equipped with the bolt 80 and drive the taper head 70 to move to the end part of the rod body 90. Finally, start the spot welding mechanism 5 to perform spot welding on the connection part between the taper head 70 and the rod body 90.

[0055] When using the grid member, the threaded part of the bolt 80 needs to pass through the jack 701 at the small-diameter end part of the taper head 70 for subsequent installation. The staff can first turn the plug 621 to make the movable part 624 push the locking part 617 to rotate until the locking part 617 moves from the arc section of the locking groove 614 to the opening section. Then, push the pressing part 623 to make the pressing part 623 push the inclined surface of the movable part 624, so that the movable part 624 moves towards the direction close to the central axis of the plug 621 and compresses the second elastic part 625 until one end of the movable part 624 extending out of the channel 622 completely enters the channel 622, thereby unlocking the plug 621 and removing the plug 621 from the jack 701 at the small-diameter end part of the taper head 70. At this time, the first elastic part 613 in the compressed state pushes the positioning sleeve 612, so that the bolt 80 moves towards the direction close to the small-diameter end part of the taper head 70, and the damping block 618 reduces the moving speed of the positioning sleeve 612, so that the staff has enough time to remove the unlocked plug 621 from the jack 701. After the damping block 618 is separated from the positioning sleeve 612, the first elastic part 613 speeds up the pushing speed of the positioning sleeve 612, so that the positioning sleeve 612 applies a thrust to the bolt 80, thereby making the threaded part of the bolt 80 pass through the jack 701 at the small-diameter end part of the taper head 70. And after the bolt 80 is separated from the positioning sleeve 612, the circular limiting cavity formed between the four locking parts 617 limits and guides the bolt 80 to ensure that the threaded part of the bolt 80 can pass through the jack 701 on the taper head 70.

[0056] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present invention.

Claims

1. A cone head bolt parts assembly device, comprising a feeding mechanism (1), a discharging mechanism (2), a loading mechanism (3), a taking mechanism (4) and a spot welding mechanism (5), characterized in that: The support mechanism (6) further comprises a support mechanism (6), wherein the support mechanism (6) comprises an adhesive member (61) and a sealing member (62), wherein the adhesive member (61) comprises an adhesive sleeve (611), a positioning sleeve (612), an elastic portion (613) and a locking portion (617), wherein the outer side of the adhesive sleeve (611) is coated with glue and can be bonded to the inner wall of the cone head, wherein the positioning sleeve (612) can contain bolts, wherein the positioning sleeve (612) is connected to the adhesive sleeve (611) via the elastic portion (613), and wherein the locking portion (617) is rotatably connected to the adhesive sleeve (611) and is used to lock the positioning sleeve (612) when the elastic portion (613) is in a compressed state; The bonding sleeve (611) comprises a plug (621), a pressing portion (623), a movable portion (624) and a second elastic portion (625); the plug (621) can be inserted into the cone head and contact the end of the bolt; the movable portion (624) is connected to the plug (621) via the second elastic portion (625); the pressing portion (623) is inserted into the plug (621); the movable portion (624) can extend out of the plug (621) and limit the plug (621); and the pressing portion (623) can push the movable portion (624) and extend into the plug (621).

2. The cone head bolt component assembly device according to claim 1, characterized in that: The outer side of the bonding sleeve (611) is provided with a conical surface, and glue is coated on the conical surface.

3. The cone head bolt component assembly device according to claim 1, characterized in that: The adhesive component (61) further comprises a rotating ring (615) and a connecting portion (616); the rotating ring (615) is rotatably connected in the adhesive sleeve (611); and the rotating ring (615) is connected to the locking portion (617) via the connecting portion (616).

4. The cone head bolt component assembly device according to claim 3, characterized in that: The locking portions (617) are arranged in four numbers, and a circular limiting cavity is formed between the four locking portions (617) for limiting the position of the bolt.

5. The cone head bolt component assembly device according to claim 1, characterized in that: A locking groove (614) is provided on the outer side of the positioning sleeve (612), and the locking portion (617) is slidably connected in the locking groove (614).

6. The cone head bolt component assembly device according to claim 5, characterized in that: The locking groove (614) comprises an arc section and an opening section, the arc section is communicated with the opening section, and the opening section penetrates to the bottom of the positioning sleeve (612).

7. The cone head bolt component assembly device according to claim 1, characterized in that: The adhesive sleeve (611) is internally connected to a damping block (618), and the damping block (618) is in contact with the inner wall of the positioning sleeve (612).

8. The cone head bolt component assembly device according to claim 1, characterized in that: The plug (621) is provided with a channel (622), and the movable portion (624) is slidably connected in the channel (622).

9. The cone head bolt component assembly device according to claim 1, characterized in that: The movable portion (624) is provided with an inclined surface, and the pressing portion (623) is in contact with the inclined surface on the movable portion (624).

10. The cone head bolt component assembly device according to claim 1, characterized in that: The feeding mechanism (1) comprises a mounting frame (11), a feeding piece (12) and a positioning portion (13); the feeding piece (12) is connected inside the mounting frame (11); a plurality of positioning portions (13) are provided, and the plurality of positioning portions (13) are all connected to the feeding piece (12).

Citation Information

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