An insulating blanket clamping and placing device
By designing an insulating blanket clip pick-up device, the inconvenient carpet clips and safety risks of insulating blanket clips are solved, convenient access and safe storage are achieved, and the adaptability and safety of the device are improved.
Patent Information
- Application Number
- CN202310816518.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-05
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2043-07-05
AI Technical Summary
The existing insulating blankets are inconvenient to carry when working at high altitudes, easily fall off, and there are safety risks when used.
An insulating blanket clip pick-up device is designed, including a plastic bending sleeve, a spring push member, a limiting member, an independent take-out member and a push-in member. Through the bendability of the plastic bending sleeve and the shoulder strap design, the insulating blanket clip is achieved convenient access and safe storage.
Improve the adaptability and safety of insulated blanket clips, reduce the risk of falling, facilitate operation, and enhance safety and flexibility during use.
Smart Images

Figure CN116767693B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of insulating blanket clamps, and particularly to a device for picking and placing insulating blankets. Background Art
[0002] With the economic development and the improvement of people's living standards, users have higher and higher requirements for power supply reliability. To build and promote a "zero planned power outage" demonstration area and achieve zero power outage perception for users, a strong and intelligent power grid is the foundation, and innovative live working technologies provide scientific and technological support. Among them, live working insulation safety tools refer to the tools used when working on live equipment or approaching live parts. The insulating blanket clamp is one of such working tools.
[0003] Existing insulating blanket clamps are usually carried up manually during high-altitude operations. Manually carrying usually involves placing them in a package or clamping the insulating blanket clamp on the outer edge of the insulating boom truck. The insulating blanket clamp in the package is inconvenient to use as it requires frequent opening and closing of the package. And the insulating blanket clamp clamped on the insulating boom truck has a risk of slipping during use and is prone to falling. Therefore, the present invention proposes a device for picking and placing insulating blankets. Summary of the Invention
[0004] The purpose of this application is: to solve the problems in the above background art, this application provides a device for picking and placing insulating blankets.
[0005] To achieve the above purpose, this application specifically adopts the following technical solutions:
[0006] A device for picking and placing insulating blankets, comprising:
[0007] A plastic bending sleeve, one end of which is sealed and the other end is fixedly connected with a mounting frame, and a carrying strap is connected between the mounting frame and the sealed end;
[0008] A spring pusher, a plastic guiding column is fixedly connected between the inner end of the plastic bending sleeve and the mounting frame. The spring pusher includes a fixing piece fixedly connected to one end inside the plastic bending sleeve. A pushing spring sleeved on the plastic guiding column is fixedly connected to the fixing piece, and a pushing piece sleeved on the plastic guiding column is fixedly connected to the other end of the pushing spring;
[0009] A limiting member, a sliding through groove is formed along the length direction on the side surface of the plastic bending sleeve. The limiting member includes a pulling plate slidably installed in the sliding through groove and fixedly connected to the pushing piece, and a clamping member for limiting the pulling plate is installed between one end of the sliding through groove and the pulling plate;
[0010] An independent removal member includes a U-shaped groove constructed in the installation frame and connected to the outside, one side of the U-shaped groove is connected to the plastic bending sleeve and a curved pocket plate is slidably inserted therein, a pressing buckle is connected between the outer convex surface of the curved pocket plate and the inner end of the U-shaped groove, and a spring pull rod that slides through the installation frame is fixedly connected to the inner concave side of the curved pocket plate;
[0011] The push-in piece is arranged at the end side of the installation frame and is vertically arranged with the independent removal piece, and is used for pushing the insulating blanket clip to move toward the inside of the plastic bending sleeve.
[0012] Furthermore, the shoulder strap comprises a cloth belt 1 fixedly connected to the outer end side of the mounting frame, a cloth belt 2 is fixedly connected to the outer side of the sealing end of the plastic bending sleeve, and a snap-on buckle is connected between the cloth belt 1 and the cloth belt 2.
[0013] Furthermore, the plastic bending sleeve comprises an aluminum-plastic inner frame, the inner and outer surfaces of the aluminum-plastic inner frame are wrapped with an insulating sleeve, and the outer peripheral side of the insulating sleeve is arrayed with a plurality of rubber support rings along its length direction.
[0014] Furthermore, guide strips are fixedly connected on both sides of the plastic bending sleeve, and a rubber rod parallel to the plastic guide column is fixedly connected between the two ends of the plastic bending sleeve through a vertical rod, and a sliding cavity for inserting an insulating blanket clip is constructed between the two guide strips and the rubber rod, and the push plate is slidably installed in the sliding cavity.
[0015] Furthermore, the pulling plate includes an L-shaped plate fixedly connected to the side of the push plate, one end of the L-shaped plate movably passes through the sliding groove and a plug rod is installed on the end surface for sliding through, one end of the plug rod is fixedly connected to a pressing plate, and a support spring mounted on the plug rod is connected between the pressing plate and the L-shaped plate.
[0016] Furthermore, the clamping member includes a U-shaped fixing block fixedly connected to the end of the sliding through groove, and two relatively arranged clamping plates are movably installed in the U-shaped fixing block, and a reset spring is connected between the opposite sides of the two clamping plates and the inner wall of the U-shaped fixing block, and the opposite side ends of the two clamping plates are constructed with beveled clamping blocks and the middle is constructed with a protrusion, and the L-shaped plate is constructed with a clamping groove that engages with the beveled clamping block, and the end of the insertion rod is fixedly connected with an extrusion block for abutting against the two protrusions.
[0017] Furthermore, the arc-shaped pocket plate includes an arc-shaped baffle plate, on which an arc-shaped supporting block is vertically structured, and the arc-shaped baffle plate is fitted at an opening where the U-shaped groove is connected to the plastic bending sleeve.
[0018] Furthermore, the press buckle includes a connecting frame fixedly connected to the bottom of the U-shaped groove, two relatively arranged inclined blocks are slidably installed on both sides of the connecting frame, and a resistance spring is connected between the inclined block and the inner wall of the connecting frame. The arc-shaped support block is configured with an insert plate at one end facing the connecting frame, a trapezoidal clamping block is configured at the end of the insert plate, a retaining ring is configured on the insert plate, and an anti-trapezoidal block located between the trapezoidal clamping block and the retaining ring is slidably sleeved on the insert plate.
[0019] Furthermore, the installation frame is constructed with two positioning blocks symmetrically arranged on both sides of the U-shaped groove, the spring pull rod includes a column rod fixedly connected to the two ends of the arc-shaped baffle and sliding through the positioning blocks, a tension spring sleeved on the column rod is connected between the arc-shaped support block and the positioning block, and an arc-shaped lower pressure plate is fixedly connected between the free ends of the two column rods.
[0020] Furthermore, the pushing member includes an embedded groove constructed on the inner end side of the mounting frame and connected to the U-shaped groove, a pushing plate with the same shape as the insulating blanket clip is slidably inserted in the embedded groove, and the push plate is fixedly connected to the side opposite to the U-shaped groove with two pushing rods that slide through the mounting frame, a strip plate is fixedly connected between the other ends of the two pushing rods, and a compression spring mounted on the push rod is connected between the strip plate and the mounting frame.
[0021] The beneficial effects of this application are as follows:
[0022] The present application can conveniently bend it into an arc shape by providing a plastic bending sleeve, so that it can be conveniently fitted on the body of a person and then carried on the shoulder of the person using a strap, or it can be kept straight and thus stand upright in an insulated bucket arm vehicle, thereby improving the adaptability of the device. When taking out the insulating blanket clip, you only need to press the spring pull rod to disengage it from the pressing buckle, which can drive the insulating blanket clip on the arc pocket plate to move out. When pressed again, the push spring will push the next insulating blanket clip into the U-shaped groove, thereby increasing the convenience of taking out the blanket clip back and forth.
[0023] When storing the unused insulating blanket clips, the present application can move the pulling plate to connect it with the card connector to compress the positioning push spring, and at the same time press the spring pull rod to drive the arc pocket plate to disengage from the pressing buckle, and then put the insulating blanket clip into the arc pocket plate and reinsert it into the bottom of the U-shaped groove, and use the pushing piece to push the insulating blanket clip on it into the plastic bending sleeve for stacking and placement, which is convenient to operate, and the overall closed setting of the plastic bending sleeve only uses the installation frame to take and place the insulating blanket clip, which is safer and prevents falling. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a three-dimensional structural diagram of this application;
[0025] Figure 2 This is another partial three-dimensional structural diagram of the present application from another viewing angle;
[0026] Figure 3 is a half-sectional view of the three-dimensional structure in this application Figure 2 ;
[0027] Figure 4 is a partial three-dimensional structure diagram of this application
[0028] Figure 5 is this application Figure 1 a half-sectional view of the three-dimensional structure in
[0029] Figure 6 is a three-dimensional structure diagram of the pulling plate of this application
[0030] Figure 7 is a half-sectional view of the three-dimensional structure of the clamping part of this application
[0031] Figure 8 is a partial half-sectional view of the three-dimensional structure of this application
[0032] Figure 9 is this application Figure 8 an enlarged view of part A in
[0033] Figure 10 is another partial half-sectional view of the three-dimensional structure of this application
[0034] Figure 11 is an exploded view of another partial three-dimensional structure of this application
[0035] Reference numerals: 1, plastic bending sleeve; 101, sliding slot; 102, aluminum-plastic inner frame; 103, insulating sleeve; 104, rubber support ring; 105, guide bar; 106, vertical rod; 107, rubber rod; 108, sliding cavity; 2, mounting frame; 201, positioning block; 3, carrying strap; 301, first cloth strap; 302, second cloth strap; 303, snap fastener; 4, spring pusher; 401, fixing plate; 402, pushing spring; 403, pushing piece; 5, plastic guide post; 6, limiting member; 601, pulling plate; 6011, L-shaped plate; 60111, card slot; 6012, inserting rod; 60121, extrusion block; 6013, pressing plate; 6014, supporting spring; 602, clamping member; 6021, U-shaped fixing block; 6022, clamping plate; 6023, reset spring; 6024, beveled clamping block; 6025, convex block; 7, independent extraction member; 701, U-shaped groove; 702, arc-shaped pocket plate; 7021, arc-shaped baffle; 7022, arc-shaped supporting block; 703, pressing buckle; 7031, connecting frame; 7032, inclined block; 7033, abutting spring; 7034, inserting plate; 7035, trapezoidal clamping block; 7036, retaining ring; 7037, inverted trapezoidal block; 704, spring pull rod; 7041, column rod; 7042, tension spring; 7043, arc-shaped lower pressing plate; 8, pushing member; 801, embedding groove; 802, pushing plate; 803, pushing rod; 804, strip plate; 805, compression spring. Detailed implementation manners
[0036] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application.
[0037] As Figures 1-5 and Figure 8 shown, an insulating blanket clamping and placing device proposed in an embodiment of the present application includes:
[0038] A plastic bending sleeve 1, one end of which is sealed and the other end is fixedly connected to a mounting frame 2. A carrying strap 3 is connected between the mounting frame 2 and the sealed end. The cross-section of the plastic bending sleeve 1 is oval, which not only saves the occupied space, but also has no corners on the side. When a person carries it on the back through the carrying strap 3, it is safer and will not be injured by sharp corners;
[0039] A spring pusher 4, a plastic guide column 5 is fixedly connected between the inner end of the plastic bending sleeve 1 and the mounting frame 2, the spring pusher 4 includes a fixed plate 401 fixedly connected to one end of the inside of the plastic bending sleeve 1, a push spring 402 sleeved on the plastic guide column 5 is fixedly connected to the fixed plate 401, and a push plate 403 sleeved on the plastic guide column 5 is fixedly connected to the other end of the push spring 402, wherein the plastic guide column 5 is made of aluminum-plastic tube material, which can be deformed synchronously with the bending of the plastic bending sleeve 1, so as to guide the push spring 402, which is safer, and the push plate 403 is to resist the insulating blanket clip, so that the insulating blanket clip can always remain vertical relative to the length direction of the plastic bending sleeve 1, to avoid its offset and cause space reduction, thereby improving the space utilization rate inside the plastic bending sleeve 1;
[0040] The limiting member 6, the side of the plastic bending sleeve 1 is configured with a sliding groove 101 along its length direction, the limiting member 6 includes a pulling plate 601 slidably installed in the sliding groove 101 and fixedly connected to the push piece 403, and a clamping member 602 for limiting the pulling plate 601 is installed between one end of the sliding groove 101 and the pulling plate 601. In the initial state, the pushing spring 402 will resist the pushing plate 403 located at the end side of the sliding groove 101, and is arranged opposite to the clamping member 602, and when the pulling plate 601 moves toward the clamping member 602, it will drive the pushing piece 403 to move synchronously, so that the pushing spring 402 is compressed, and the connection with the clamping member 602 can be used to position the compression of the pushing spring 402 to prevent it from popping out;
[0041] The independent removal member 7 comprises a U-shaped groove 701 constructed in the installation frame 2 and connected to the outside, one side of the U-shaped groove 701 is connected to the plastic bending sleeve 1 and a curved pocket plate 702 is slidably inserted therein, a pressing buckle 703 is connected between the outer convex surface of the curved pocket plate 702 and the inner end of the U-shaped groove 701, and a spring pull rod 704 that slides through the installation frame 2 is fixedly connected to the inner concave side of the curved pocket plate 702, wherein the inner concave surface of the curved pocket plate 702 is misaligned at the opening edge where the U-shaped groove 701 is connected to the plastic bending sleeve 1, so that the insulating blanket clip in the plastic bending sleeve 1 can be blocked to prevent it from entering the U-shaped groove 701;
[0042] It should be noted that when performing live working at high altitudes, multiple insulation blanket clips are pre-stored inside the plastic bending sleeve 1 carried on the back of the personnel or inside the plastic bending sleeve 1 placed in the insulating boom truck. When it is necessary to take out the insulation blanket clips, it is necessary to first disconnect the connection between the pulling plate 601 and the clamping member 602, so that the pushing spring 402 generates a pushing force on the pushing piece 403, thereby driving all the insulation blanket clips to move towards the installation frame 2. At this time, there is no insulation blanket clip in the U-shaped groove 701. Then, by pressing and releasing the spring pull rod 704 once, the arc-shaped holding plate 702 can move downward and then move upward after disengaging from the pressing buckle 703. When moving downward, the insulation blanket clips inside the plastic bending sleeve 1 can enter the U-shaped groove 701 and be held by the arc-shaped holding plate 702. Then, pulling the spring pull rod 704 outward towards the outside of the installation frame 2 can synchronously move out the insulation blanket clips, thus completing the taking operation. For subsequent taking, it only needs to be pressed again towards the inside of the U-shaped groove 701. The operation is convenient, fast, and labor-saving, and only one is taken out at a time, reducing the risk of being involved in dropping;
[0043] The pushing member 8 is arranged on the end side of the installation frame 2 and is perpendicular to the independent taking-out member 7, and is used to push the insulation blanket clip towards the inside of the plastic bending sleeve 1;
[0044] When re-storing the unused insulation blanket clips, the pushing spring 402 can be compressed by driving the pulling plate 601, so that the space on the movable side of the pushing piece 403 is vacated. Then, by pressing and pulling, the spring pull rod 704 can lift the arc-shaped holding plate 702. Insert the unused insulation blanket clip into the U-shaped groove 701 and hold it by the arc-shaped holding plate 702. Press the spring pull rod 704 towards the inside of the U-shaped groove 701 again until it reaches the bottom end. At this time, the concave surface of the arc-shaped holding plate 702 is flush with the opening bottom side of the plastic bending sleeve 1. The insulation blanket clip on the arc-shaped holding plate 702 can be pushed into the inside of the plastic bending sleeve 1 by the pushing member 8. Repeating the above operation can store the insulation blanket clips one by one. Since the plastic bending sleeve 1 can wrap and enclose the insulation blanket clips therein, and there is only an access opening provided on the installation frame 2, and the arc-shaped holding plate 702 blocks the opening end of the plastic bending sleeve 1 under normal conditions, the spring blanket clips will not easily fall out, greatly increasing the safety of the device.
[0045] As Figure 1 shown, in some embodiments, the carrying strap 3 includes a first cloth strap 301 fixedly connected to the outer end side of the installation frame 2, a second cloth strap 302 fixedly connected to the outside of the sealing end of the plastic bending sleeve 1, and a snap buckle 303 connected between the first cloth strap 301 and the second cloth strap 302. It should be noted that the snap buckle 303 adopts the plug structure of a schoolbag strap, and the connection between the first cloth strap 301 and the second cloth strap 302 can be disconnected and connected at any time, which is convenient for personnel to carry the whole device on the back and increases the flexibility of the device.
[0046] like Figure 3 As shown, in some embodiments, the plastic bending sleeve 1 includes an aluminum-plastic inner frame 102, and the inner and outer surfaces of the aluminum-plastic inner frame 102 are wrapped with an insulating sleeve 103. The outer peripheral side of the insulating sleeve 103 is arrayed along its length direction with multiple rubber support rings 104. The aluminum-plastic inner frame 102 is made of aluminum-plastic plate and can undergo plastic deformation, so that it can be bent according to the body shape of the person when the person is carrying it on the back, so as to fit the person's body, which can not only reduce the space occupied, but also increase the contact area with the person, prevent random shaking after being carried on the back, and increase safety. The insulating sleeve 103 is to prevent conduction with the charged area, and a certain gap is set between the rubber support rings 104, which can bend with the bending of the aluminum-plastic inner frame 102, and the rubber support rings 104 can protect the internal device structure, especially when a collision occurs or the device falls as a whole, it can convert the hard collision into an elastic collision, reduce the damage to the internal structure and parts, and further improve the safety of the device.
[0047] like Figures 4-5 As shown, in some embodiments, guide strips 105 are fixedly connected to both sides of the plastic bending sleeve 1, and a rubber rod 107 parallel to the plastic guide column 5 is fixedly connected between the two ends of the plastic bending sleeve 1 through a vertical rod 106. A sliding cavity 108 for inserting an insulating blanket clamp is constructed between the two guide strips 105 and the rubber rod 107, and the push piece 403 is slidably installed in the sliding cavity 108. It should be noted that the structure of the insulating blanket clamp is two mutually hinged arc-shaped clamping rods, and two cross-arranged handles connected to the arc-shaped clamping rods. The overall It is arranged in an "X" shape, and the two guide strips 105 are used to support the connecting corners of the two handles and the two arc-shaped clamping rods, which can prevent the insulating blanket from opening when it moves inside the plastic bending sleeve 1, thereby maintaining the stability of the shape. The rubber rod 107 is inserted between the two arc-shaped clamping rods, and cooperates with the plastic guide column 5 to support and position the arc-shaped clamping rods up and down, further ensuring the stability of its shape, avoiding the insulating blanket from being offset and stuck when it moves in the sliding cavity 108, and increasing safety.
[0048] like Figure 6As shown, in some embodiments, the pulling plate 601 includes an L-shaped plate 6011 fixedly connected to the side surface of the pushing piece 403. One end of the L-shaped plate 6011 movably penetrates through the sliding slot 101, and a plug rod 6012 is slidably penetrated and installed on the end surface. One end of the plug rod 6012 is fixedly connected to a pressing plate 6013. A support spring 6014 sleeved on the plug rod 6012 is connected between the pressing plate 6013 and the L-shaped plate 6011. By providing the L-shaped plate 6011 and connecting one end thereof to the side of the pushing piece 403 facing the engaging member 602, when driving the pushing piece 403 to move towards the engaging member 602, the force application point of the driving force can be changed from the same horizontal plane as the pushing piece 403 to the L-shaped plate 6011. Moreover, by using the arrangement of the support spring 6014 and the plug rod 6012, the L-shaped plate 6011 and the pushing piece 403 can be driven by pushing the pressing plate 6013, so that the force application point on the L-shaped plate 6011 can be offset towards the pressing plate 6013 again, effectively reducing the turning force transmitted to the pushing piece 403, avoiding excessive offset of the pushing piece 403 and getting stuck in the sliding cavity 108, improving the smoothness of movement and increasing the structural safety.
[0049] As Figure 7As shown, in some embodiments, the clamping member 602 includes a U-shaped fixing block 6021 fixedly connected to the end of the sliding slot 101. Two oppositely arranged clamping plates 6022 are movably installed in the U-shaped fixing block 6021. A return spring 6023 is connected between the opposite sides of the two clamping plates 6022 and the inner wall of the U-shaped fixing block 6021. The opposite ends of the two clamping plates 6022 are configured with beveled clamping blocks 6024 and the middle parts are configured with protrusions 6025. The concave side of the U-shaped fixing block 6021 is configured with two spacer plates respectively arranged opposite to the clamping plates 6022. The protrusion 6025 slides through the spacer plate. A clamping groove 60111 engaged with the beveled clamping block 6024 is configured on the L-shaped plate 6011. An extrusion block 60121 for abutting against the two protrusions 6025 is fixedly connected to the end of the insertion rod 6012. When the pulling plate 601 moves towards the clamping member 602, it will drive the pushing piece 403 to move synchronously until the L-shaped plate 6011 abuts against the beveled clamping blocks 6024 of the two clamping plates 6022 in a staggered manner, so that the clamping plates 6022 can squeeze the return spring 6023, so that the beveled clamping block 6024 can be inserted into the clamping groove 60111 to complete the positioning operation of the pulling plate 601. When it is necessary to release the positioning, only need to push the pressing plate 6013 to drive the extrusion block 60121 at the end of the insertion rod 6012 to move between the two protrusions 6025 until the two protrusions 6025 are pushed away from each other, so that the beveled clamping block 6024 is disengaged from the clamping groove 60111. It should be noted that the elastic force of the pushing spring 402 is greater than the elastic force of the supporting spring 6014. Therefore, after the L-shaped plate 6011 is disengaged from the clamping, it will be driven by the pushing spring 402 and move in a direction away from the clamping plate 6022 to get out of the range of the beveled clamping block 6024, without the need for additional pulling, which is more convenient and saves manpower.
[0050] As Figure 8As shown, in some embodiments, the arc-shaped pocket plate 702 includes an arc-shaped baffle 7021, and an arc-shaped support block 7022 is vertically structured on the arc-shaped baffle 7021. The arc-shaped baffle 7021 is fitted at the opening where the U-shaped groove 701 and the plastic bending sleeve 1 are connected. In the initial state, the position of the spring pull rod 704 is limited by pressing the buckle 703. Therefore, the position of the arc-shaped baffle 7021 can block the opening end of the plastic bending sleeve 1 to a certain extent, thereby preventing the insulating blanket clip in the plastic bending sleeve 1 from entering the U-shaped groove 701. After a single press, the arc-shaped pocket plate 702 will not only disengage from the push buckle 703, but also disengage from the obstruction of the opening of the plastic bending sleeve 1. Therefore, the push piece can use the elastic force of the push spring 402 to push a single insulating blanket clip onto the arc-shaped support block 7022. Then, when the arc-shaped pocket plate 702 is pulled outward, the opening of the plastic bending sleeve 1 will always be blocked to prevent the next insulating blanket clip from entering, and the insulating blanket clip on the arc-shaped support block 7022 will be pulled out of the installation frame 2, thereby completing the single retrieval operation, avoiding the risk of falling during retrieval and increasing safety.
[0051] like Figure 9 As shown, in some embodiments, the pressing buckle 703 includes a connecting frame 7031 fixedly connected to the bottom of the U-shaped groove 701, two inclined blocks 7032 arranged opposite to each other are slidably installed on both sides of the connecting frame 7031, and a resisting spring 7033 is connected between the inclined block 7032 and the inner wall of the connecting frame 7031, and an arc-shaped supporting block 7022 is configured with a plug plate 7034 at one end facing the connecting frame 7031, and a trapezoidal block 7035 is configured at the end of the plug plate 7034, and a retaining ring 7036 is configured on the plug plate 7034, and an anti-trapezoidal block 7037 located between the trapezoidal block 7035 and the retaining ring 7036 is slidably sleeved on the plug plate 7034. When the spring pull rod 704 is pushed toward the U-shaped groove 701, the arc-shaped supporting block 7022 and the plug plate 7034 can be driven to move toward the inside of the connecting frame 7031, so that the trapezoidal block 7035 and the two inclined blocks 7032 are The inclined surfaces of the reverse trapezoidal blocks 7037 are misaligned and conflict with each other, and pass through them to enter the interior of the connecting frame 7031. Moreover, the elastic force of the spring pull rod 704 can always generate a tendency force for the arc-shaped supporting block 7022 to move toward the outside of the U-shaped groove 701, thereby effectively limiting the engagement of the trapezoidal block 7035 with the inclined block 7032. When the pressing continues, the retaining ring 7036 on the plug plate 7034 will push the reverse trapezoidal block 7037 to move between the two inclined blocks 7032. After passing through the inclined block 7032, the elastic force of the spring pull rod 704 will make the inclined surface of the reverse trapezoidal block 7037 conflict with the corner of the inclined block 7032, thereby spreading the two inclined blocks 7032 apart, making it convenient to drive the trapezoidal block 7035 to disengage from the connecting frame 7031, completing the operations of pressing and engaging and pressing and disengaging, and facilitating the operations of limiting and removing the insulating blanket clip, thereby saving a lot of manpower and improving the convenience of the device.
[0052] like Figure 8 and Figure 11 As shown, in some embodiments, the installation frame 2 is constructed with two positioning blocks 201 symmetrically arranged on both sides of the U-shaped groove 701, the spring pull rod 704 includes a column 7041 fixedly connected to the two ends of the arc-shaped baffle 7021 and slidingly passing through the positioning block 201, a tension spring 7042 sleeved on the column 7041 is connected between the arc-shaped support block 7022 and the positioning block 201, an arc-shaped lower pressure plate 7043 is fixedly connected between the free ends of the two column rods 7041, and the tension spring 7042 is in a tensioned state when the arc-shaped pocket plate 702 is connected to the pressing buckle 703. When the two are disconnected, the tension spring 7042 can drive the arc-shaped blocking piece 7021 to move toward the opening of the U-shaped groove 701, so as to facilitate the insulating blanket clip supported thereon to move out of the U-shaped groove 701, without the need for personnel to pull the column rod 7041, thus saving a lot of manpower. The arc-shaped lower pressure plate 7043 is provided on the one hand to facilitate personnel to press, and on the other hand to cover the opening of the U-shaped groove 701 when the arc-shaped pocket plate 702 is connected to the pressing buckle 703, so as to prevent the spring blanket clip inside from falling out, thereby increasing the safety of the device.
[0053] like Figures 10-11 As shown, in some embodiments, the push-in member 8 includes an embedded groove 801 constructed on the inner end side of the installation frame 2 and connected to the U-shaped groove 701, and a push plate 802 with the same shape as the insulating blanket clip is slidably inserted in the embedded groove 801. The push plate 802 is fixedly connected to the side opposite to the U-shaped groove 701 with two push rods 803 that slide through the installation frame 2, and a strip plate 804 is fixedly connected between the other ends of the two push rods 803. A compression spring 805 sleeved on the push rod 803 is connected between the strip plate 804 and the installation frame 2. When the unused spring blanket clip needs to be stored, it is only necessary to pull out the spring pull rod 704, insert the spring blanket clip into the U-shaped groove 701, and then move the spring pull rod 704 toward the U-shaped groove 701. By pressing inward, the arc pocket plate 702 moves toward the pressing buckle 703 until it can no longer move. At this time, the inner concave surface of the arc support block 7022 is flush with the open bottom side of the plastic bending sleeve 1, and the strip plate 804 can be pushed to drive the push rod 803 and the push plate 802 to move toward the U-shaped groove 701, so as to resist the spring blanket clip in the U-shaped groove 701 to move horizontally toward the plastic bending sleeve 1. After that, the pressure on the spring pull rod 704 can be released to cover the insulating blanket clip, completing the quick storage operation and increasing the convenience of the device. The provision of the strip plate 804 is convenient for pushing the push plate 802 on the one hand, and on the other hand, the strip plate 804 can be used as a handle when carrying the device as a whole, thereby increasing the flexibility of the device.
[0054] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but rather to the broadest scope consistent with the principles and novel features disclosed herein.
Claims
1. An insulating blanket clamping and placing device, characterized in that, Comprising: A plastic bending sleeve (1), one end of which is sealed and the other end is fixedly connected with a mounting frame (2), and a carrying strap (3) is connected between the mounting frame (2) and the sealed end; A spring pusher (4), a plastic guide post (5) is fixedly connected between the inner end of the plastic bending sleeve (1) and the mounting frame (2), the spring pusher (4) includes a fixed piece (401) fixedly connected to one end inside the plastic bending sleeve (1), a pushing spring (402) sleeved on the plastic guide post (5) is fixedly connected to the fixed piece (401), and a pushing piece (403) sleeved on the plastic guide post (5) is fixedly connected to the other end of the pushing spring (402); A limiting member (6), a sliding through groove (101) is formed on the side surface of the plastic bending sleeve (1) along its length direction, the limiting member (6) includes a pulling plate (601) slidably installed in the sliding through groove (101) and fixedly connected to the pushing piece (403), and a clamping member (602) for limiting the pulling plate (601) is installed between one end of the sliding through groove (101) and the pulling plate (601); An independent extraction member (7), including a U-shaped groove (701) formed in the mounting frame (2) and communicating with the outside, one side of the U-shaped groove (701) communicates with the plastic bending sleeve (1) and an arc-shaped pocket plate (702) is slidably inserted therein, a pressing buckle (703) is connected between the outer convex surface of the arc-shaped pocket plate (702) and the inner end of the U-shaped groove (701), and a spring pull rod (704) slidably penetrating through the mounting frame (2) is fixedly connected to the inner concave side of the arc-shaped pocket plate (702); A pushing member (8), arranged on the end side of the mounting frame (2) and perpendicular to the independent extraction member (7), for pushing the insulating blanket clip to move towards the inside of the plastic bending sleeve (1).
2. The insulating blanket clamping and placing device according to claim 1, characterized in that The carrying strap (3) includes a first cloth strip (301) fixedly connected to the outer end side of the mounting frame (2), a second cloth strip (302) is fixedly connected to the outside of the sealed end of the plastic bending sleeve (1), and a snap fastener belt buckle (303) is connected between the first cloth strip (301) and the second cloth strip (302).
3. The insulating blanket clamping and placing device according to claim 1, characterized in that The plastic bending sleeve (1) includes an aluminum-plastic inner frame (102), insulating sleeves (103) are wrapped on both the inner and outer surfaces of the aluminum-plastic inner frame (102), and a plurality of rubber support rings (104) are arranged in an array along the length direction of the outer peripheral side of the insulating sleeve (103).
4. The insulating blanket clamping and placing device according to claim 1, wherein Guide strips (105) are fixedly connected to both sides inside the plastic bending sleeve (1), a rubber rod (107) parallel to the plastic guide post (5) is fixedly connected between the two ends inside the plastic bending sleeve (1) through a vertical rod (106), a sliding cavity (108) for inserting the insulating blanket clip is formed between the two guide strips (105) and the rubber rod (107), and the pushing piece (403) is slidably installed in the sliding cavity (108).
5. The insulating blanket clamping and placing device according to claim 1, characterized in that, The pulling plate (601) comprises an L-shaped plate (6011) fixedly connected to the side of the push plate (403); one end of the L-shaped plate (6011) movably passes through the sliding groove (101) and a plug rod (6012) is installed on the end surface to slide through; one end of the plug rod (6012) is fixedly connected to a pressing plate (6013); a supporting spring (6014) sleeved on the plug rod (6012) is connected between the pressing plate (6013) and the L-shaped plate (6011).
6. The insulating blanket clamping and placing device according to claim 5, characterized in that, The clamping member (602) comprises a U-shaped fixing block (6021) fixedly connected to the end of the sliding groove (101); two clamping plates (6022) arranged opposite to each other are movably installed in the U-shaped fixing block (6021); a return spring (6023) is connected between the opposite sides of the two clamping plates (6022) and the inner wall of the U-shaped fixing block (6021); the opposite side ends of the two clamping plates (6022) are configured with an oblique clamping block (6024) and a protrusion (6025) is configured in the middle; the L-shaped plate (6011) is configured with a clamping groove (60111) engaged with the oblique clamping block (6024); and the end of the insertion rod (6012) is fixedly connected with an extrusion block (60121) for contacting the two protrusions (6025).
7. The insulating blanket clamping and placing device according to claim 1, wherein, The arc-shaped pocket plate (702) comprises an arc-shaped baffle (7021), on which an arc-shaped support block (7022) is vertically structured, and the arc-shaped baffle (7021) is fitted at an opening where the U-shaped groove (701) is connected to the plastic bending sleeve (1).
8. The insulating blanket clamping and placing device according to claim 7, characterized in that, The press buckle (703) comprises a connecting frame (7031) fixedly connected to the bottom of the U-shaped groove (701), two inclined blocks (7032) arranged opposite to each other are slidably installed on both sides of the connecting frame (7031), a resisting spring (7033) is connected between the inclined block (7032) and the inner wall of the connecting frame (7031), an insert plate (7034) is configured at one end of the arc-shaped support block (7022) facing the connecting frame (7031), a trapezoidal clamping block (7035) is configured at the end of the insert plate (7034), a retaining ring (7036) is configured on the insert plate (7034), and an anti-trapezoidal block (7037) located between the trapezoidal clamping block (7035) and the retaining ring (7036) is slidably sleeved on the insert plate (7034).
9. The insulating blanket clamping and placing device according to claim 7, characterized in that The installation frame (2) is constructed with two positioning blocks (201) symmetrically arranged on both sides of the U-shaped groove (701); the spring pull rod (704) includes a column (7041) fixedly connected to the two ends of the arc-shaped baffle (7021) and slidingly passing through the positioning block (201); a tension spring (7042) sleeved on the column (7041) is connected between the arc-shaped support block (7022) and the positioning block (201); and an arc-shaped lower pressure plate (7043) is fixedly connected between the free ends of the two column rods (7041).
10. The insulating blanket clamping and placing device according to claim 1, characterized in that, The pushing member (8) includes an embedding groove (801) constructed on the inner end side of the installation frame (2) and communicating with the U-shaped groove (701). A pushing plate (802) having the same shape as the insulating blanket clip is slidably inserted into the embedding groove (801). Two pushing rods (803) that slide through the installation frame (2) are fixedly connected to the side of the pushing plate (802) opposite to the U-shaped groove (701). A strip plate (804) is fixedly connected between the other ends of the two pushing rods (803). A compression spring (805) sleeved on the pushing rod (803) is connected between the strip plate (804) and the installation frame (2).
Citation Information
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