Shank installation tool
By designing a Shank installation tool with compatible card slots and positioning slots, the problem of time-consuming and laborious Shank replacement has been solved, enabling fast and accurate installation and improving operational efficiency and the reliability of the installation tool.
Patent Information
- Application Number
- CN202422988185.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-04
AI Technical Summary
In the existing technology, Shank replacement requires manual operation, which is time-consuming and labor-intensive, resulting in inconvenience and low efficiency.
A Shank installation tool was designed, comprising a body and a base. By setting parallel contact surfaces and adaptable slots and positioning grooves, the relative position and orientation between the Shank and the mounting base are ensured, enabling fast and accurate installation.
It simplifies the Shank installation process, improves operational efficiency, reduces errors and uncertainties, lowers the skill requirements for operators, and makes installation easier and faster.
Smart Images

Figure CN223671254U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a semiconductor technical field, concretely relates to a Shank's installation tool. BACKGROUND
[0002] PNP is a kind of device that wafer on wafer is taken down and is sealed in carrier tape, and the wafer is taken and placed by suction nozzle installed on machine table, and different products correspond to different models of suction nozzle, wherein the base body of installation suction nozzle is called Shank.
[0003] However, after long time wafer taking and placing action reaches Shank service life, Shank spring fails, and it is necessary to manually replace 8 Shanks of each device, which is time-consuming and laborious. UTILITY MODEL CONTENTS
[0004] The utility model solves the problem that Shank needs to be manually installed at present, which is time-consuming and laborious.
[0005] To solve the above problems, the utility model provides a Shank's installation tool, the installation tool includes:
[0006] A body is used to fix the Shank;
[0007] A base body is connected with the body, and the base body is used to be installed on the installation base;
[0008] When the base body is installed on the installation base, the installation tool can keep the relative position between the Shank and the installation base.
[0009] Optionally, the body is provided with a first fixing part for fixing the Shank, and the base body is provided with a second fixing part installed on the installation base;
[0010] The first fixing part includes a first contact surface in contact with the Shank, the second fixing part includes a second contact surface in contact with the installation base, and at least one first contact surface and the corresponding second contact surface are parallel.
[0011] Technical effect: by setting the first contact surface and the corresponding second contact surface parallel, the direction of Shank in the installation tool can be ensured, and then the direction of Shank installed to the installation base can be ensured.
[0012] Optionally, the first fixing part includes a clamping groove matched with the shape of the Shank.
[0013] Technical effects: By setting the card slot to be matched with the shape of Shank, the Shank can be kept stable during installation, avoiding the damage of Shank caused by sliding.
[0014] Optionally, the second fixing part includes a positioning slot matched with the shape of the installation base.
[0015] Technical effects: By setting the positioning slot matched with the shape of the installation base, the installation tool can be quickly and accurately installed on the installation base, thereby ensuring the relative position between Shank and the installation base.
[0016] Optionally, the first contact surface includes a first side surface of the card slot in contact with the Shank, and the second contact surface includes a second side surface of the positioning slot in contact with the installation base, and the first side surface is parallel to the second side surface.
[0017] Technical effects: By setting the first side surface parallel to the second side surface, the Shank and the installation base can be completely horizontal and vertical when the Shank is installed on the installation base, achieving quick installation and avoiding the need for multiple adjustments during manual operation, reducing replacement time.
[0018] Optionally, the Shank includes a head for installing a suction nozzle, and the first fixing part includes a first card slot for fixing the head, and when the Shank is installed on the installation base, the distance between the upper surface of the first card slot and the upper surface of the positioning slot is equal to the distance between the upper surface of the head and the upper surface of the installation base.
[0019] Technical effects: By limiting the distance between the upper surface of the first card slot and the upper surface of the positioning slot, the installation height of multiple Shanks can be ensured at the same time when replacing the Shank each time, without frequent adjustment, reducing replacement time.
[0020] Optionally, the Shank includes a head for installing a suction nozzle, and the first fixing part includes a first card slot for containing the head, and when the Shank is installed on the installation base, the lower surface of the first card slot is in contact with the lower surface of the head, and the distance between the lower surface of the first card slot and the upper surface of the positioning slot is equal to the distance between the lower surface of the head and the upper surface of the installation base.
[0021] Technical effects: By limiting the distance between the lower surface of the first clamping groove and the upper surface of the positioning groove, the installation height of multiple Shanks can be ensured at the same time by simply placing the Shank in the installation tool each time the Shank is replaced, without the need for frequent debugging, reducing the replacement time.
[0022] Optionally, the first clamping groove is a square groove matched with the shape of the head, and the positioning groove is a square groove matched with the shape of the mounting base.
[0023] Technical effects: By setting the first clamping groove as a square groove and the positioning groove as a square groove, the installation direction of the Shank can be ensured by only ensuring the parallel relationship between the first clamping groove and the positioning groove.
[0024] Optionally, the Shank further comprises a connecting portion, one end of the connecting portion being connected with the head, and the other end of the connecting portion being used for cooperating with the fixing groove on the mounting base, and the first fixing portion further comprises a second clamping groove matched with the shape of the connecting portion for installing the connecting portion.
[0025] Technical effects: The Shank can be fixed by the first clamping groove and the second clamping groove, and the Shank can be moved by moving the installation tool, thereby achieving the installation of the Shank.
[0026] Optionally, the groove depth of the positioning groove is greater than the groove depth of the second clamping groove, and a step is formed at the edge where the positioning groove and the second clamping groove contact, to prevent the mounting base from passing through the positioning groove.
[0027] Technical effects: The step helps to avoid misplacement and deviation during installation, thereby improving the accuracy and precision of the overall installation, reducing the number of trial and error during installation, and simplifying the installation process and improving the installation efficiency.
[0028] The Shank installation tool provided by the embodiments of the present application can ensure stability and reliability during operation by installing the Shank on the body, and facilitate quick and accurate installation of the Shank on the mounting base by installing the base on the mounting base to maintain the relative position between the Shank and the mounting base. This design reduces errors and uncertainties during installation, improves operation efficiency, and in addition, the installation tool is simple and convenient to operate, simplifies the installation process of the Shank, reduces the skill level requirement for the operator, and makes the installation work more easy and fast. BRIEF DESCRIPTION OF DRAWINGS
[0029] Figure 1 The first structure schematic view of the Shank installation tool provided by the embodiments of the present application is shown in the figure;
[0030] Figure 2 is a top view of the installation tool shown in Figure 1
[0031] Figure 3 is a structural schematic view of Shank,
[0032] Figure 4 is a top view of the installation tool shown in Figure 1
[0033] Figure 5 is a second structural schematic view of the installation tool of Shank provided by the embodiment of the application,
[0034] Figure 6 is a top view of the installation tool shown in Figure 5
[0035] Figure 7 is a structural schematic view of the installation tool installing Shank shown in Figure 5
[0036] Explanation of reference signs:
[0037] 1, installation tool; 11, body; 12, base; 13, first fixing part; 14, second fixing part;
[0038] 131, first clamping groove; 132, second clamping groove; 133, third clamping groove; 141, positioning groove;
[0039] 1321, first sub-clamping groove; 1322, second sub-clamping groove;
[0040] 2, Shank; 3, installation base
[0041] 21, head; 22, connecting part;
[0042] 221, first part; 222, second part; 223, protruding part. DETAILED DESCRIPTION
[0043] In order to make the above-mentioned purpose, features and advantages of the utility model more obvious and easy to understand, the specific embodiment of the utility model will be described in detail below.
[0044] Please refer to Figure 1 and Figure 2 , Figure 1 is a first structural schematic view of the installation tool of Shank provided by the embodiment of the application, Figure 2 is a top view of the installation tool shown in Figure 1 The installation tool is shown in a top view. The embodiment of the present application provides an installation tool 1 of Shank 2, the installation tool 1 comprises a body 11 and a base 12, the body 11 is used for fixing Shank 2, and the base 12 is connected with the body 11 and is used for being installed on a mounting base 3; wherein when the base 12 is installed on the mounting base 3, the installation tool 1 can keep the relative position between Shank 2 and the mounting base 3. By installing Shank 2 on the body 11, the stability and reliability in the operation process can be ensured, and by installing the base 12 on the mounting base 3 to keep the relative position between Shank 2 and the mounting base 3, Shank 2 can be quickly and accurately installed on the mounting base 3, which reduces the error and uncertainty in the installation process, improves the operation efficiency, in addition, the installation tool 1 is simple and convenient in design, easy to operate, simplifies the installation process of Shank 2, reduces the requirement for the skill level of the operator, and makes the installation work more easy and fast.
[0045] In some embodiments, the body 11 and the base 12 are integrally formed to facilitate processing and manufacturing.
[0046] In some embodiments, the body 11 and the base 12 are detachably connected, and then the base 12 or the body 11 can be replaced to support various models and specifications of Shank 2 to adapt to different application scenarios and requirements, improve the maintainability and expandability of the installation tool 1.
[0047] The body 11 is provided with a first fixing part 13 for fixing Shank 2, and the base 12 is provided with a second fixing part 14 for being installed on the mounting base 3; wherein the first fixing part 13 comprises a first contact surface in contact with Shank 2, the second fixing part 14 comprises a second contact surface in contact with the mounting base 3, and at least one first contact surface and the corresponding second contact surface are parallel.
[0048] Wherein the second contact surface corresponding to the first contact surface can be exemplarily understood as follows: if the first contact surface is the upper surface of the first fixing part 13, the second contact surface is the upper surface of the second fixing part 14; if the first contact surface is the lower surface of the first fixing part 13, the second contact surface is the lower surface of the second fixing part 14; if the first contact surface is the side surface of the first fixing part 13, the second contact surface is the side surface of the second fixing part 14, and so on.
[0049] The parallel between the at least one first contact surface and the corresponding second contact surface can be understood as: the upper surface of the first fixed part 13 is parallel to the upper surface of the second fixed part 14, and / or the lower surface of the first fixed part 13 is parallel to the lower surface of the second fixed part 14, and / or the side surface of the first fixed part 13 is parallel to the side surface of the second fixed part 14. By setting the first contact surface parallel to the corresponding second contact surface, the direction of the Shank 2 in the installation tool 1 can be ensured, and then the direction of the Shank 2 installed to the installation base 3 can be ensured.
[0050] The first fixed part 13 includes a clamping groove matched with the shape of the Shank 2, for fixing the Shank 2. For example, if the shape of the Shank 2 is square, the clamping groove is a square groove matched with the shape of the Shank 2; if the shape of the Shank 2 is circular, the clamping groove is a circular groove matched with the shape of the Shank 2; if the shape of the Shank 2 is irregular, the clamping groove is an irregular groove matched with the shape of the Shank 2; if the shape of the Shank 2 is a plurality of shapes spliced, the clamping groove is a spliced groove matched with the shape of the Shank 2. The actual situation can be set, which is not limited here. By setting the clamping groove matched with the shape of the Shank 2, the Shank 2 can be kept stable during installation, avoiding the damage of the Shank 2 caused by sliding.
[0051] The second fixed part 14 includes a positioning groove 141 matched with the shape of the installation base 3, for installing the installation tool 1 to the installation base 3. For example, if the installation base 3 is square, the positioning groove 141 is a square groove matched with the shape of the installation base 3; if the installation base 3 is circular, the positioning groove 141 is a circular groove matched with the shape of the installation base 3; if the installation base 3 is irregular, the positioning groove 141 is an irregular groove matched with the shape of the installation base 3; if the installation base 3 is a plurality of shapes spliced, the positioning groove 141 is a spliced groove matched with the shape of the installation base 3. By setting the positioning groove 141 matched with the shape of the installation base 3, the installation tool 1 can be quickly and accurately installed to the installation base 3, and then the relative position between the Shank 2 and the installation base 3 can be ensured.
[0052] The first contact surface includes a first side surface of the clamping groove in contact with the Shank 2, and the second contact surface includes a second side surface of the positioning groove 141 in contact with the installation base 3, and the first side surface is parallel to the second side surface. By setting the first side surface parallel to the second side surface, the Shank 2 and the installation base 3 can be completely horizontal and vertical when the Shank 2 is installed to the installation base 3, realizing quick installation and avoiding the need for multiple adjustments during manual operation, reducing replacement time.
[0053] Please continue to readFigure 3 , Figure 3 is a structure diagram of Shank, Shank2 is a small handle with spring structure, Shank2 includes a head 21 and a connecting part 22, the head 21 is used for installing a suction nozzle, one end of the connecting part 22 is connected with the head 21, and the other end of the connecting part 22 is used for cooperating with a fixing groove on the mounting base 3. Wherein, the connecting part 22 includes a first part 221 and a second part 222 which are arranged in connection, the first part 221 is arranged through the head 21 and is used for fixing the head 21, and the second part 222 is used for cooperating with the fixing groove to mount Shank2 on the mounting base 3, and the length and width of the second part 222 are greater than those of the first part 221.
[0054] Please refer to Figures 1 to 3 , the first fixing part 13 includes a first clamping groove 131 matched with the shape of the head 21 and a second clamping groove 132 matched with the shape of the connecting part 22, the first clamping groove 131 is used for fixing the head 21, and the second clamping groove 132 is used for mounting the connecting part 22. Shank2 can be fixed through the first clamping groove 131 and the second clamping groove 132, Shank2 can be moved by moving the mounting tool 1, and then the installation of Shank2 can be realized.
[0055] In some embodiments, the first fixing part 13 further includes a third clamping groove 133, the third clamping groove 133 is arranged on the side of the first clamping groove 131 away from the second clamping groove 132, the shape of the third clamping groove 133 is matched with the shape of the first part 221, and the third clamping groove 133 is used for fixing the protruding part 223 in the first part 221 after penetrating through the head 21, and the depth of the third clamping groove 133 is less than that of the first clamping groove 131. By arranging the third clamping groove 133 matched with the shape of the protruding part 223, Shank2 can be better fixed, and the stability of Shank2 in the replacement process can be ensured.
[0056] Please refer to Figure 4 , Figure 4 is a structure diagram of Shank installed by the mounting tool shown in Figure 1 When Shank2 is installed on the mounting base 3, the distance between the upper surface of the first clamping groove 131 and the upper surface of the positioning groove 141 is equal to the distance between the upper surface of the head 21 and the upper surface of the mounting base 3. By limiting the distance between the upper surface of the first clamping groove 131 and the upper surface of the positioning groove 141, when Shank2 is replaced each time, Shank2 can be placed in the mounting tool 1, and the installation height of multiple Shank2 can be ensured at the same time, frequent debugging is not needed, the replacement time is reduced, and quality accidents caused by poor installation are also reduced.
[0057] Please refer to Figure 5 and Figure 6, Figure 5 A second structural schematic diagram of the Shank installation tool provided in an embodiment of this application; Figure 6 for Figure 5 The top view of the installation tool is shown. In some embodiments, the first fixing part 13 includes a first slot 131 for accommodating the head 21 and the protruding part 223 that passes through the head 21. By providing a first slot to simultaneously accommodate the head 21 and the protruding part 223, the processing technology of the installation tool 1 can be simplified, and the production of the installation tool 1 can be facilitated.
[0058] Understandably, the installation tool 1 also includes a fastener located in the first slot 131, which is used to secure the head 21 to ensure stable installation of Shank2.
[0059] Please see Figure 7 , Figure 7 for Figure 5 The diagram shows the structure of the Shank2 after installation using the mounting tool. When the Shank2 is installed on the mounting base 3, the lower surface of the first slot 131 contacts the lower surface of the head 21. The distance between the lower surface of the first slot 131 and the upper surface of the positioning groove 141 is equal to the distance between the lower surface of the head 21 and the upper surface of the mounting base 3. By limiting the distance between the lower surface of the first slot 131 and the upper surface of the positioning groove 141, when replacing the Shank2, it is only necessary to place the Shank2 in the mounting tool 1 to ensure the installation height of multiple Shank2s simultaneously. This eliminates the need for frequent adjustments, reduces replacement time, and also reduces quality accidents caused by improper installation.
[0060] In some embodiments, the head 21 of the Shank2 has a square structure, the connecting part 22 of the Shank2 has a circular structure, and the mounting base 3 has a square structure. Correspondingly, the first slot 131 is a square slot adapted to the shape of the head 21, the second slot 132 is a cylindrical slot adapted to the shape of the connecting part 22, and the positioning slot 141 is a square slot adapted to the shape of the mounting base 3. By setting the first slot 131 and the positioning slot 141 to be square slots, it is only necessary to ensure the parallel relationship between the first slot 131 and the positioning slot 141 to ensure the installation direction of the Shank2, thereby eliminating the need for frequent adjustments, reducing replacement time, increasing equipment production time, and improving output.
[0061] In some embodiments, the second card slot 132 includes a first sub-card slot 1321 fixing the first part 221 and a second sub-card slot 1322 fixing the second part 222, wherein the depth of the first sub-card slot 1321 is less than that of the second sub-card slot 1322, and the length of the first sub-card slot 1321 is less than that of the second sub-card slot 1322. It can be understood that the first sub-card slot 1321 and the second sub-card slot 1322 are in communication.
[0062] The depth of the positioning slot 141 is greater than that of the second card slot 132, and a step is formed at the edge where the positioning slot 141 and the second card slot 132 contact, so as to prevent the mounting base 3 from passing through the positioning slot 141. The step helps to avoid misplacement and deviation during installation, thereby improving the accuracy and precision of the overall installation, reducing the number of trial and error during installation, and thus simplifying the installation process and improving the installation efficiency.
[0063] In some embodiments, the mounting base 3 is designed with components that are easy to disassemble and replace, so as to facilitate maintenance and upgrading when needed.
[0064] Although the utility model discloses as above, the utility model is not limited to this. Any person skilled in the art, without departing from the spirit and scope of the utility model, can make various changes and modifications, therefore the protection scope of the utility model should be the range limited by the claim as the criterion.
Claims
1. A tool for installing a Shank, characterized by, The mounting tool comprises: a body for fixing the Shank, the body being provided with a first fixing part for fixing the Shank, the first fixing part comprising a first contact surface in contact with the Shank; a base connected to the body, the base being used for mounting on a mounting base, the base being provided with a second fixing part for mounting on the mounting base, the second fixing part comprising a second contact surface in contact with the mounting base, at least one of the first contact surface and the corresponding second contact surface being parallel; wherein, when the base is mounted on the mounting base, the mounting tool can maintain the relative position between the Shank and the mounting base.
2. The installation tool of claim 1, wherein, The first fixing part comprises a clamping groove matched with the shape of the Shank.
3. The installation tool of claim 2, wherein, The second fixing part comprises a positioning groove matched with the shape of the mounting base.
4. The installation tool of claim 3, wherein, The first contact surface comprises a first side surface of the clamping groove in contact with the Shank, and the second contact surface comprises a second side surface of the positioning groove in contact with the mounting base, the first side surface being parallel to the second side surface.
5. The installation tool of claim 4, wherein, The Shank comprises a head for mounting a suction nozzle, the first fixing part comprises a first clamping groove for fixing the head, and when the Shank is mounted on the mounting base, the distance between the upper surface of the first clamping groove and the upper surface of the positioning groove is equal to the distance between the upper surface of the head and the upper surface of the mounting base.
6. The installation tool of claim 4, wherein, The Shank comprises a head for mounting a suction nozzle, the first fixing part comprises a first clamping groove for accommodating the head, and when the Shank is mounted on the mounting base, the lower surface of the first clamping groove is in contact with the lower surface of the head, and the distance between the lower surface of the first clamping groove and the upper surface of the positioning groove is equal to the distance between the lower surface of the head and the upper surface of the mounting base.
7. The installation tool of claim 5, wherein, The first clamping groove is a square groove matched with the shape of the head, and the positioning groove is a square groove matched with the shape of the mounting base.
8. The installation tool of claim 5 or 6, wherein, The Shank further comprises a connecting part, one end of the connecting part being connected to the head, and the other end of the connecting part being used for cooperating with a fixing groove on the mounting base, and the first fixing part further comprises a second clamping groove matched with the shape of the connecting part for mounting the connecting part.
9. The installation tool of claim 8, wherein, The depth of the positioning groove is greater than the depth of the second clamping groove, and a step is formed at the edge where the positioning groove and the second clamping groove are in contact, so as to prevent the mounting base from passing through the positioning groove.