Auxiliary sleeve-insertion device, sleeve-insertion assembly and sleeve-insertion method for gasket
By designing the auxiliary sleeve wear assembly of the washer, the structure of the body and cover body is utilizing the structure of the body, so that the gasket can be quickly and simply put on the connector, solving the problem of inefficiency of traditional hand-woven sleeves, achieving efficient and large-scale sleeve wear requirements, and supporting the use of various types of gaskets.
Patent Information
- Application Number
- CN201911317663.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-12-19
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2039-12-19
AI Technical Summary
Under the traditional method, the washer needs to be manually inserted on the connector, which is inefficient and difficult to meet the needs of large-scale use.
An auxiliary sleeve assembly for washer is designed, including the body and the cover body, through the design of placement holes and through holes, so that the washers can be quickly and simply penetrated on the connector, and the sleeve process of two different types of washers is further optimized through the guide body.
It realizes the single-use, simple and quick fitting of the washer on the connector, which improves work efficiency, is suitable for large-scale use needs, and supports the simultaneous fitting of various types of washer.
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Figure CN111002021B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of gasket sleeve insertion, and in particular to a gasket sleeve insertion auxiliary device, a sleeve insertion component and a sleeve insertion method. Background Art
[0002] When two parts are connected by bolts or rivets, it is usually necessary to put washers on the connectors. For example, anti-loosening washers or waterproof washers can be put on the connectors. When connectors are needed in large quantities, it is necessary to put corresponding washers on each connector. The traditional method is to put washers on each connector manually, which is inefficient and not suitable for large-scale use. Summary of the invention
[0003] Based on this, a gasket auxiliary sleeve-threading device, a sleeve-threading assembly and a sleeve-threading method are proposed, which can simply and quickly thread the gasket on the connecting piece to meet the needs of large-scale use.
[0004] The technical solution is as follows:
[0005] On the one hand, a gasket auxiliary insertion assembly is provided, comprising: a main body, the main body is provided with at least two placement holes for placing a first gasket, and the depth of the placement holes matches the thickness of the first gasket; and a cover body, the cover body is provided with at least two first through holes for allowing one end of a connecting piece to pass through, and the first through holes can be arranged one-to-one with the placement holes.
[0006] The auxiliary insertion assembly of the above-mentioned gasket is as follows: when the first gasket needs to be inserted on the connecting piece, the first gasket is inserted into the placement hole of the main body; the other end of the connecting piece is inserted into the placement hole, so that the other end of the connecting piece passes through the inner hole of the first gasket, and one end of the connecting piece extends out of the placement hole; the cover body is placed on the main body from above the main body, so that one end of the connecting piece passes through the first through hole on the cover body; the whole body composed of the main body and the cover body is turned over, so that the main body is above the cover body; the main body is removed along the length direction of the connecting piece, and under the action of gravity, the first gasket is placed on the connecting piece. The auxiliary insertion assembly of the above-mentioned gasket is provided with at least two placement holes on the main body, and at least two first through holes are correspondingly provided on the cover body. At least two scattered first gaskets are placed on the main body, and the first gaskets are moved on the surface of the main body by flicking or flicking the first gaskets, so that the first gaskets fall into the placement holes quickly and conveniently under the action of gravity; then the other end of a connecting piece is inserted into the inner hole of the first gasket; the cover body is placed on the main body so that one end of each connecting piece passes through the first through hole; then the whole body composed of the main body and the cover body is turned over, so that at least two first gaskets can be put on the connecting pieces one by one in a one-time, simple and fast manner, which is convenient for subsequent use, has high work efficiency, and can meet the needs of large-scale use.
[0007] The technical solution is further described below:
[0008] In one embodiment, the auxiliary sleeve assembly of the gasket also includes a guide body, which is provided with at least two second through holes for placing the second gasket, the thickness of the guide body matches the thickness of the second gasket, and the second through holes can be arranged one-to-one with the placement holes.
[0009] In one embodiment, the guide body is provided with a first guide portion for guiding the second gasket to enter the second through hole.
[0010] In one embodiment, the guide body is provided with a first positioning portion, and the main body is provided with a second positioning portion for positioning and cooperating with the first positioning portion.
[0011] In one embodiment, the first positioning portion is configured as a positioning pin, and the second positioning portion is configured as a positioning hole capable of being positioned and matched with the positioning pin.
[0012] In one of the embodiments, the bottom wall of the placement hole is provided with a first plug hole for inserting the other end of the connector.
[0013] In one of the embodiments, the bottom wall of the placement hole is provided with a second guide portion for guiding the other end of the connector to be inserted into the first insertion hole.
[0014] In one embodiment, the cover body is provided with a third guide portion for guiding one end of the connector to be inserted into the first through hole; and / or the body is provided with a fourth guide portion for guiding the first gasket to enter the placement hole.
[0015] On the other hand, a gasket auxiliary insertion device is provided, including a connecting piece, a first gasket and the auxiliary insertion assembly, wherein the first gasket can enter the placement hole, one end of the connecting piece can pass through the first through hole, and the other end of the connecting piece can pass through the inner hole of the first gasket.
[0016] The auxiliary threading device of the above-mentioned gasket is provided with at least two placement holes on the main body, and at least two first through holes are correspondingly provided on the cover body. At least two scattered first gaskets are placed on the main body, and the first gaskets are moved on the surface of the main body by flicking or flicking the first gaskets, so that the first gaskets fall into the placement holes quickly and conveniently under the action of gravity; then the other end of a connecting piece is inserted into the inner hole of the first gasket; the cover body is placed on the main body so that one end of each connecting piece passes through the first through hole; then the main body and the cover body are turned over, so that at least two first gaskets can be threaded on the connecting pieces one by one in a one-time, simple and fast manner, which is convenient for subsequent use, has high work efficiency, and can meet the needs of large-scale use.
[0017] On the other hand, a method for threading a gasket is provided, comprising the following steps: allowing a first gasket to enter a placement hole of a main body; inserting the other end of a connecting piece into the placement hole, so that the other end of the connecting piece passes through an inner hole of the first gasket; placing a cover on the main body, so that one end of the connecting piece passes through a first through hole of the cover; flipping the cover and the main body, so that the main body is arranged above the cover; and removing the main body.
[0018] In one embodiment, after the step of allowing the first gasket to enter the placement hole of the main body, before the step of inserting the other end of the connector into the placement hole and allowing the other end of the connector to pass through the inner hole of the first gasket, it also includes: covering the guide body on the main body so that the second through hole of the guide body is arranged corresponding to the placement hole; allowing the second gasket to enter the second through hole of the guide body; passing the other end of the connector through the inner hole of the second gasket and the inner hole of the first gasket in sequence; covering the guide body with a cover so that one end of the connector passes through the first through hole of the cover; flipping the cover, the guide body and the main body so that the main body and the guide body are arranged above the cover; removing the main body and the guide body.
[0019] The above-mentioned gasket threading method has at least the following advantages: 1. It can thread at least two first washers one by one on the connecting piece in a one-time, simple and fast manner, which is convenient for subsequent use, has high work efficiency, and can meet the needs of large-scale use; 2. It can thread two different types of washers (first washers, second washers) on a connecting piece in a one-time, simple and fast manner. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a structural schematic diagram of a gasket auxiliary sleeve-donning device according to an embodiment;
[0021] Figure 2 for Figure 1 An exploded view of the auxiliary sleeve-threading device of the gasket;
[0022] Figure 3 for Figure 1 A schematic diagram of the structure of the auxiliary sleeve-wearing device of the gasket when the cover body is separated from the main body;
[0023] Figure 4 for Figure 1 A schematic diagram of the structure of the main body, guide body and cover body of the auxiliary sleeve-threading device of the gasket being turned over;
[0024] Figure 5 A flowchart of a method for putting on a gasket according to an embodiment;
[0025] Figure 6 The present invention is a flow chart of a gasket wearing method according to another embodiment.
[0026] Description of reference numerals:
[0027] 10. Auxiliary donning device, 100. Main body, 110. Placement hole, 111. First plug hole, 200. Cover body, 210. First through hole, 300. Guide body, 310. Second through hole, 410. First gasket, 420. Second gasket, 500. Connector, 510. First connecting section, 520. Second connecting section, 530. Middle protrusion. DETAILED DESCRIPTION
[0028] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and specific implementation methods. It should be understood that the specific implementation methods described herein are only used to explain the present invention and do not limit the scope of protection of the present invention.
[0029] It should be noted that when an element is referred to as being "disposed on" or "fixed on" another element, it may be directly on the other element or there may be a central element. When an element is referred to as being "fixed on" another element, or being "fixedly connected" to another element, they may be fixed in a detachable manner or in a non-detachable manner. When an element is considered to be "connected" or "rotatably connected" to another element, it may be directly connected to the other element or there may be a central element at the same time. The terms "vertical", "horizontal", "left", "right", "upper", "lower" and similar expressions used herein are for illustrative purposes only and do not represent the only implementation method.
[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to restrict the present invention. The term "and / or" used herein includes any and all combinations of one or more related listed items.
[0031] The terms "first", "second", "third" and the like in the present invention do not represent specific quantities and orders, but are merely used to distinguish names.
[0032] It should also be understood that when interpreting an element, even if not explicitly described, the element is interpreted as including a range of error, which should be within the acceptable deviation range of the specific value determined by those skilled in the art. For example, "approximately", "approximately" or "substantially" can mean within one or more standard deviations, which are not limited here.
[0033] like Figures 1 to 4 As shown, in one embodiment, a gasket auxiliary insertion assembly is provided, including: a main body 100, the main body 100 is provided with at least two placement holes 110 for placing the first gasket 410, and the depth of the placement hole 110 matches the thickness of the first gasket 410; and a cover body 200, the cover body 200 is provided with at least two first through holes 210 for one end of the connector 500 to pass through, and the first through holes 210 can be arranged one-to-one with the placement holes 110.
[0034] The auxiliary sleeve assembly of the gasket in the above embodiment requires that when the first gasket 410 is sleeved on the connecting member 500, the first gasket 410 is inserted into the placement hole 110 of the main body 100; the other end of the connecting member 500 is inserted into the placement hole 110, so that the other end of the connecting member 500 passes through the inner hole of the first gasket 410, and one end of the connecting member 500 extends out of the placement hole 110; the cover body 200 is placed on the main body 100 from above (such as Figure 2As shown in direction A, one end of the connector 500 passes through the first through hole 210 on the cover body 200; the body 100 and the cover body 200 are turned over so that the body 100 is above the cover body 200; the body 100 is removed along the length direction of the connector 500, and under the action of gravity, the first gasket 410 is sleeved on the connector 500. The auxiliary insertion assembly of the gasket in the above-mentioned embodiment is provided with at least two placement holes 110 on the main body 100, and at least two first through holes 210 are correspondingly provided on the cover body 200. At least two scattered first gaskets 410 are placed on the main body 100, and the first gaskets 410 are moved on the surface of the main body 100 by flicking or flicking the first gaskets 410, so that the first gaskets 410 fall into the placement holes 110 quickly and conveniently under the action of gravity; then the other end of a connecting piece 500 is inserted into the inner hole of the first gasket 410; the cover body 200 is covered on the main body 100, so that one end of each connecting piece 500 passes through the first through hole 210; then the whole body 100 and the cover body 200 is turned over, so that at least two first gaskets 410 can be put on the connecting piece 500 one by one, simply and quickly at one time, which is convenient for subsequent use, has high work efficiency, and meets the needs of large-scale use.
[0035] It should be noted that at least two placement holes 110 can be arranged in an array on the body 100 (for example, arranged in ten columns and eight rows or twenty columns and thirty rows), and at least two first through holes 210 can be arranged in an array on the cover 200 (for example, arranged in ten columns and eight rows or twenty columns and thirty rows), so that when the cover 200 is covered on the body 100, the first through holes 210 are arranged corresponding to the placement holes 110, so that the connector 500 can pass through smoothly to avoid scattering during the flipping process. The shape and opening size of the placement hole 110 can be flexibly adjusted according to the size of the first gasket 410 to be placed, and it is only necessary to place the first gasket 410 in the placement hole 110, so that the other end of the connector 500 can pass through the inner hole of the first gasket 410. The size of the first through hole 210 can be flexibly adjusted according to the diameter of one end of the connector 500, and it is only necessary to support the middle protrusion 530 of the connector 500 after flipping. The main body 100 and the cover body 200 may be in a plate shape, which is convenient for processing and use.
[0036] It should be emphasized that the depth of the placement hole 110 matches the thickness of the first gasket 410, which means that the depth of the placement hole 110 can be flexibly adjusted according to the thickness of the first gasket 410 to be placed. For example, when only one first gasket 410 needs to be placed in a placement hole 110, the depth of the placement hole 110 can be set to be equal to or approximately equal to the thickness of one first gasket 410. In this way, at least two first gaskets 410 are placed scattered on the working surface of the body 100. When the first gaskets 410 are moved on the working surface by moving or flicking them, a first gasket 410 can fall into each placement hole 110 under the action of gravity. When two or more first washers 410 need to be placed in a placement hole 110, the depth of the placement hole 110 can be set to be equal to or approximately equal to the thickness of the two or more first washers 410. In this way, at least two first washers 410 are placed scattered on the working surface of the main body 100. When the first washers 410 are moved on the working surface by being moved or brushed, two or more first washers 410 can fall into each placement hole 110 under the action of gravity.
[0037] like Figures 1 to 4 As shown, in one embodiment, the auxiliary sleeve assembly of the gasket further includes a guide body 300, and the guide body 300 is provided with at least two second through holes 310 for placing the second gasket 420. The thickness of the guide body 300 matches the thickness of the second gasket 420, and the second through holes 310 can be arranged one-to-one with the placement holes 110. In this way, after the first gasket 410 enters the placement hole 110, when it is necessary to further put the second gasket 420 on the connecting piece 500, the guide body 300 is covered on the working surface of the body 100 from above (such as Figure 2At least two second washers 420 are placed on the surface of the guide body 300 in a scattered manner. When the second washers 420 are moved on the surface of the guide body 300, a second washer 420 can fall into each second through hole 310 under the action of gravity, so that the second washer 420 is stacked on the first washer 410, and the inner hole of the first washer 410 is connected to the inner hole of the second washer 420. Then, the other end of a connector 500 is inserted into the inner hole of the second washer 420 and the inner hole of the first washer 410 in sequence. The cover body 200 is placed on the guide body 300, so that one end of each connector 500 passes through the first through hole 210; then the body 100, the guide body 300 and the cover body 200 are turned over so that the body 100 and the guide body 300 are above the cover body 200; the body 100 and the guide body 300 are removed along the length direction of the connector 500, and under the action of gravity, the first gasket 410 and the second gasket 420 are both sleeved on the connector 500. In this way, the first gasket 410 and the second gasket 420 can be correspondingly sleeved on the connector 500 in a one-time, simple and fast manner, which is convenient for subsequent use, has high work efficiency, and meets the needs of large-scale use.
[0038] In one embodiment, the guide body 300 is provided with a first guide portion (not shown) for guiding the second gasket 420 to enter the second through hole 310. In this way, the first guide portion can make the second gasket 420 enter the second through hole 310 more smoothly, accurately and quickly during the movement, thereby ensuring work efficiency. The first guide portion can be a guide bevel or a guide fillet provided at the opening edge of the second through hole 310, and it only needs to be able to guide the second gasket 420 to enter the second through hole 310.
[0039] In one embodiment, the guide body 300 is provided with a first positioning portion (not shown), and the main body 100 is provided with a second positioning portion (not shown) for positioning and cooperating with the first positioning portion. In this way, when the guide body 300 is covered on the working surface of the main body 100 from above, the first positioning portion and the second positioning portion are used for positioning and cooperating, so that the second through hole 310 can be accurately set correspondingly with the placement hole 110, ensuring that the second gasket 420 can be stacked on the first gasket 410 in the placement hole 110 after entering the second through hole 310, and the inner hole of the second gasket 420 can be accurately connected with the inner hole of the first gasket 410, ensuring that the other end of the connector 500 can smoothly pass through the inner hole of the second gasket 420 and the inner hole of the first gasket 410.
[0040] The first positioning portion and the second positioning portion can be matched with each other by means of a pin and a hole, or by means of a positioning block and a positioning groove. It is only necessary to ensure that when the guide body 300 is covered on the working surface of the main body 100 from above, the second through hole 310 can be accurately set corresponding to the placement hole 110.
[0041] In one embodiment, the first positioning portion is configured as a positioning pin (not shown), and the second positioning portion is configured as a positioning hole (not shown) that can be positioned and matched with the positioning pin. In this way, when the guide body 300 is covered on the working surface of the main body 100 from above, the positioning pin is inserted into the positioning hole, so that the guide body 300 and the main body 100 can be accurately matched, so that the second through hole 310 can be accurately set correspondingly with the placement hole 110, ensuring that the second gasket 420 can be stacked on the first gasket 410 in the placement hole 110 after entering the second through hole 310, and the inner hole of the second gasket 420 can be accurately connected with the inner hole of the first gasket 410, ensuring that the other end of the connector 500 can smoothly pass through the inner hole of the second gasket 420 and the inner hole of the first gasket 410. Preferably, a positioning pin is respectively provided at two diagonal positions of the guide body 300, and a positioning hole is opened at the corresponding position of the main body 100, so that the positioning accuracy is higher.
[0042] It should be noted that the first gasket 410 and the second gasket 420 can be two different types of gaskets. For example, the first gasket 410 can be a waterproof sealing gasket, and the second gasket 420 can be a galvanized flat gasket. The shape and opening size of the second through hole 310 can be flexibly adjusted according to the size of the second gasket 420 to be placed. It only needs to be able to place the second gasket 420 in the second through hole 310 so that the other end of the connector 500 can pass through the inner hole of the second gasket 420. The guide body 300 can be in a plate shape, which is convenient for processing and opening the second through hole 310, and is also convenient for covering the body 100.
[0043] It should be emphasized that the thickness of the guide body 300 matches the thickness of the second gasket 420, which means that the depth of the second through hole 310 can be flexibly adjusted according to the thickness of the second gasket 420 to be placed. For example, when only one second gasket 420 needs to be placed in one second through hole 310, the depth of the second through hole 310 can be set to be equal to or approximately equal to the thickness of one second gasket 420, that is, the thickness of the guide body 300 is equal to or approximately equal to the thickness of one second gasket 420. In this way, at least two second gaskets 420 are scattered on the surface of the guide body 300. When the second gaskets 420 are moved on the surface of the guide body 300, under the action of gravity, one second gasket 420 can fall into each second through hole 310 and one second gasket 420 is stacked on the first gasket 410. When two or more second washers 420 need to be placed in a second through hole 310, the depth of the second through hole 310 can be set to be equal to or approximately equal to the thickness of the two or more second washers 420, that is, the thickness of the guide body 300 is equal to or approximately equal to the superimposed thickness of the two or more second washers 420. In this way, at least two second washers 420 are scattered on the surface of the guide body 300. When the second washers 420 are moved on the surface of the guide body 300 by moving them, gravity allows two or more second washers 420 to fall into each second through hole 310, and allows the two or more second washers 420 to overlap on the first washer 410.
[0044] like Figure 4 As shown, on the basis of any of the above embodiments, the bottom wall of the placement hole 110 is provided with a first insertion hole 111 for inserting the other end of the connector 500. In this way, after the other end of the connector 500 is inserted into the inner hole of the gasket (the first gasket 410, the second gasket 420), it is further inserted into the first insertion hole 111, so that the connector 500 can be kept in a vertical or approximately vertical state. When the cover 200 is covered on the body 100 or the guide body 300 from above, one end of the connector 500 can smoothly pass through the first through hole 210, avoiding the one end of the connector 500 from colliding with the cover 200 due to the tilt of the connector 500, further improving the work efficiency. The shape and opening size of the first insertion hole 111 can be flexibly adjusted according to the diameter of the other end of the connector 500, and it is only necessary to ensure that the other end of the connector 500 can be inserted into the first insertion hole 111 and the connector 500 can be kept in a vertical or approximately vertical state.
[0045] Furthermore, the bottom wall of the placement hole 110 is provided with a second guide portion (not shown) for guiding the other end of the connector 500 to be inserted into the first plug hole 111. In this way, the second guide portion can make the other end of the connector 500 more smoothly and accurately inserted into the first plug hole 111, ensuring that the connector 500 can remain in a vertical or approximately vertical state after being inserted into the first plug hole 111. The second guide portion can be a guide bevel or guide fillet set at the opening edge of the first plug hole 111, as long as it can guide the other end of the connector 500 to be inserted into the first plug hole 111.
[0046] On the basis of any of the above embodiments, the cover body 200 is provided with a third guide portion (not shown) for guiding one end of the connector 500 to be inserted into the first through hole 210. In this way, the third guide portion can make one end of the connector 500 more smoothly and accurately inserted into the first through hole 210, avoiding the one end of the connector 500 from interfering with the cover body 200. The third guide portion can be a guide bevel or guide fillet provided at the opening edge of the first through hole 210, and only needs to be able to guide the one end of the connector 500 to be inserted into the first through hole 210.
[0047] Based on any of the above embodiments, the body 100 is provided with a fourth guide portion (not shown) for guiding the first gasket 410 to enter the placement hole 110. In this way, the fourth guide portion can make the first gasket 410 enter the placement hole 110 more smoothly and accurately, and the first gasket 410 can enter the placement hole 110 by simply flicking or flicking. The fourth guide portion can be a guide bevel or guide fillet set at the opening edge of the placement hole 110, as long as it can guide the first gasket 410 to enter the placement hole 110.
[0048] like Figures 1 to 4 As shown, in one embodiment, a gasket auxiliary putting-on device 10 is also provided, including a connecting piece 500, a first gasket 410 and an auxiliary putting-on assembly of any of the above embodiments, the first gasket 410 can enter the placement hole 110, one end of the connecting piece 500 can pass through the first through hole 210, and the other end of the connecting piece 500 can pass through the inner hole of the first gasket 410.
[0049] The auxiliary insertion device 10 of the gasket in the above-mentioned embodiment needs to insert the first gasket 410 onto the connecting piece 500 so that the first gasket 410 enters the placement hole 110 of the main body 100; insert the other end of the connecting piece 500 into the placement hole 110 so that the other end of the connecting piece 500 passes through the inner hole of the first gasket 410, and one end of the connecting piece 500 extends outward toward the placement hole 110; cover the cover body 200 on the main body 100 from above the main body 100 so that one end of the connecting piece 500 passes through the first through hole 210 on the cover body 200; flip the whole body 100 and the cover body 200 so that the main body 100 is above the cover body 200; remove the main body 100 along the length direction of the connecting piece 500, and under the action of gravity, the first gasket 410 is sleeved on the connecting piece 500. The auxiliary putting-on device 10 of the gasket in the above-mentioned embodiment has at least two placement holes 110 on the main body 100, and at least two first through holes 210 correspondingly provided on the cover body 200. At least two scattered first gaskets 410 are placed on the main body 100, and the first gaskets 410 are moved on the surface of the main body 100 by flicking or flicking the first gaskets 410, so that the first gaskets 410 fall into the placement holes 110 quickly and conveniently under the action of gravity; then the other end of a connecting piece 500 is inserted into the inner hole of the first gasket 410; the cover body 200 is covered on the main body 100, so that one end of each connecting piece 500 passes through the first through hole 210; then the main body 100 and the cover body 200 are turned over, so that at least two first gaskets 410 can be put on the connecting piece 500 one by one, simply and quickly at one time, which is convenient for subsequent use, has high work efficiency, and can meet the needs of large-scale use.
[0050] The connecting member 500 may be a bolt, a stud or a rivet on the rear side box of the motorcycle, and in particular may be a connecting member 500 having a middle protrusion 530 (flange or protrusion) between two ends.
[0051] like Figure 2As shown, in one embodiment, the connector 500 includes a first connecting section 510 for inserting into the inner holes of the first gasket 410 and the second gasket 420, a second connecting section 520 for inserting into the first through hole 210, and an intermediate protrusion 530 arranged between the first connecting section 510 and the second connecting section 520, and the outer diameter of the intermediate protrusion 530 is greater than the diameter of the first through hole 210. In this way, the first connecting section 510 is inserted into the inner hole of the first gasket 410 and the inner hole of the second gasket 420 in the placement hole 110, so that the second gasket 420 is abutted or spaced with the middle protrusion 530, and the second connecting section 520 extends outward toward the placement hole 110; the cover body 200 is placed on the guide body 300 from above the main body 100, so that the second connecting section 520 passes through the first through hole 210 on the cover body 200; the whole formed by the main body 100, the guide body 300 and the cover body 200 is turned over, so that the main body 100 and the guide body 300 It is located above the cover body 200; the main body 100 and the guide body 300 are removed along the length direction of the connecting piece 500. Under the action of gravity, the first gasket 410 and the second gasket 420 are both sleeved on the first connecting section 510 and contact the middle protrusion 530; at the same time, the middle protrusion 530 conflicts with the cover body 200, so that the connecting piece 500 with the first gasket 410 and the second gasket 420 is inserted into the first through hole 210 on the cover body 200 without falling off. When it is needed, it only needs to be taken out from the first through hole 210, which is simple and convenient.
[0052] like Figure 5 As shown, in one embodiment, a method for threading a gasket is also provided, comprising the following steps: S100, allowing the first gasket 410 to enter the placement hole 110 of the main body 100; S200, inserting the other end of the connecting piece 500 into the placement hole 110, so that the other end of the connecting piece 500 passes through the inner hole of the first gasket 410; S300, covering the cover body 200 on the main body 100, so that one end of the connecting piece 500 passes through the first through hole 210 of the cover body 200; S400, turning the cover body 200 and the main body 100 over, so that the main body 100 is arranged above the cover body 200; S500, removing the main body 100.
[0053] The method for putting on the gasket of the above embodiment is that when the first gasket 410 needs to be put on the connecting piece 500, at least two scattered first gaskets 410 are placed on the main body 100, and the first gaskets 410 are moved on the surface of the main body 100 by flicking or flicking the first gaskets 410, so that the first gaskets 410 fall into the placement hole 110 quickly and conveniently under the action of gravity; then the other end of each connecting piece 500 is inserted into the inner hole of the first gasket 410; the cover body 200 is placed on the main body 100, so that one end of each connecting piece 500 passes through the first through hole 210; then the whole body 100 and the cover body 200 is turned over, so that the main body 100 is arranged above the cover body 200; finally, the main body 100 is removed, so that at least two first gaskets 410 can be put on the connecting piece 500 one by one in a one-time, simple and fast manner, which is convenient for subsequent use, has high work efficiency, and meets the needs of large-scale use.
[0054] like Figure 6As shown, in one embodiment, after the step of inserting the first gasket 410 into the placement hole 110 of the body 100, before the step of inserting the other end of the connector 500 into the placement hole 110 and passing the other end of the connector 500 through the inner hole of the first gasket 410, the method further includes: S200a, covering the guide body 300 on the body 100 so that the second through hole 310 of the guide body 300 is arranged corresponding to the placement hole 110; S300a, inserting the second gasket 420 into the second through hole 310 of the guide body 300; hole 310; S400a pass the other end of the connector 500 through the inner hole of the second gasket 420 and the inner hole of the first gasket 410 in sequence; S500a cover the cover 200 on the guide body 300 so that one end of the connector 500 passes through the first through hole 210 of the cover 200; S600a turn over the cover 200, the guide body 300 and the body 100 so that the body 100 and the guide body 300 are arranged above the cover 200; S700a remove the body 100 and the guide body 300. In this way, after the first gasket 410 enters the placement hole 110, when it is necessary to further put the second gasket 420 on the connector 500, cover the guide body 300 from above on the working surface of the body 100. At least two second washers 420 are placed scattered on the surface of the guide body 300. When the second washers 420 are moved on the surface of the guide body 300, a second washer 420 can fall into each second through hole 310 under the action of gravity, so that the second washer 420 is stacked on the first washer 410, and the inner hole of the first washer 410 is connected to the inner hole of the second washer 420. Then, the other end of a connector 500 is inserted into the inner hole of the second washer 420 and the inner hole of the first washer 410 in sequence. The cover body 200 is placed on the guide body 300, so that one end of each connector 500 passes through the first through hole 210; then the body 100, the guide body 300 and the cover body 200 are turned over so that the body 100 and the guide body 300 are above the cover body 200; the body 100 and the guide body 300 are removed along the length direction of the connector 500, and under the action of gravity, the first gasket 410 and the second gasket 420 are both sleeved on the connector 500. In this way, the first gasket 410 and the second gasket 420 can be correspondingly sleeved on the connector 500 in a one-time, simple and fast manner, which is convenient for subsequent use, has high work efficiency, and meets the needs of large-scale use.
[0055] The method for threading the gaskets of the above-mentioned embodiment has at least the following advantages: 1. It can thread at least two first gaskets 410 one by one on the connecting piece 500 in a one-time, simple and fast manner, which is convenient for subsequent use, has high work efficiency, and can meet the needs of large-scale use; 2. It can thread two different types of gaskets (first gasket 410, second gasket 420) on a connecting piece 500 in a one-time, simple and fast manner.
[0056] The technical features of the above embodiments may be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0057] The above embodiments only express several implementation methods of the present invention, and the descriptions thereof are relatively specific and detailed, but they cannot be understood as restrictions on the scope of the invention patent. It should be pointed out that, for ordinary technicians in this field, several variations and improvements can be made without departing from the concept of the present invention, which all belong to the protection scope of the present invention. Therefore, the protection scope of the patent of the present invention shall be subject to the attached claims.
Claims
1. A gasket auxiliary sleeve assembly, characterized in that: include: A body, wherein the body is provided with at least two placement holes for placing the first gasket, and the depth of the placement holes matches the thickness of the first gasket; and A cover body, wherein the cover body is provided with at least two first through holes for allowing one end of the connecting member to pass through, and the first through holes can be arranged in a one-to-one correspondence with the placement holes; A guide body, wherein the guide body is provided with at least two second through holes for placing second washers, the thickness of the guide body matches the thickness of the second washers, and the second through holes can be arranged in a one-to-one correspondence with the placement holes; A connecting member, the connecting member comprising a first connecting section for inserting into the inner holes of the first gasket and the second gasket, a second connecting section for inserting into the first through hole, and a middle protrusion disposed between the first connecting section and the second connecting section, wherein the outer diameter of the middle protrusion is greater than the diameter of the first through hole; The first gasket and the second gasket are of different types.
2. The auxiliary sleeve assembly of the gasket according to claim 1, characterized in that: The guide body is provided with a first guide portion for guiding the second gasket to enter the second through hole.
3. The auxiliary sleeve assembly of the gasket according to claim 1, characterized in that: The guide body is provided with a first positioning portion, and the main body is provided with a second positioning portion for positioning and cooperating with the first positioning portion.
4. The auxiliary sleeve assembly of the gasket according to claim 3, characterized in that: The first positioning portion is configured as a positioning pin, and the second positioning portion is configured as a positioning hole capable of being positioned and matched with the positioning pin.
5. The auxiliary sleeve-donning assembly of a gasket according to any one of claims 1 to 4, characterized in that: The bottom wall of the placement hole is provided with a first plug hole for inserting the other end of the connector.
6. The auxiliary sleeve-donning assembly of the gasket according to claim 5, characterized in that: The bottom wall of the placement hole is provided with a second guide portion for guiding the other end of the connector to be inserted into the first insertion hole.
7. The auxiliary sleeve-donning assembly of a gasket according to any one of claims 1 to 4, characterized in that: The cover body is provided with a third guide portion for guiding one end of the connector to be inserted into the first through hole; and / or the body is provided with a fourth guide portion for guiding the first gasket to enter the placement hole.
8. A gasket auxiliary sleeve-wearing device, characterized in that: It comprises a connector, a first gasket and the auxiliary sleeve assembly as described in any one of claims 1 to 7, wherein the first gasket can enter the placement hole, one end of the connector can pass through the first through hole, and the other end of the connector can pass through the inner hole of the first gasket.
9. A method for inserting a gasket, characterized in that: The following steps are involved: Place the first gasket into the placement hole of the body; The guide body cover is arranged on the main body so that the second through hole of the guide body is arranged corresponding to the placement hole; Allowing the second gasket to enter the second through hole of the guide body; Pass the other end of the connector through the inner hole of the second gasket and the inner hole of the first gasket in sequence; Covering the guide body with a cover body so that one end of the connector passes through the first through hole of the cover body; Turning over the cover, the guide and the main body so that the main body and the guide are arranged above the cover; Remove the main body and the guide body; Wherein, the connecting member includes a first connecting section for inserting into the inner hole of the first washer and the inner hole of the second washer, a second connecting section for inserting into the first through hole, and an intermediate protrusion arranged between the first connecting section and the second connecting section, the outer diameter of the intermediate protrusion is larger than the diameter of the first through hole, and the first washer and the second washer are of different types.
Citation Information
Patent Citations
Device for quickly combining washers with screws and method for applying device
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Auxiliary penetrating and sleeving device for gasket and penetrating and sleeving assembly
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