Description
High Pressure Jet Pump Spare Parts: 05098991 Socket Head Screw, 3/8-16 x 3-3/4
Article | Numéro de pièce | Description | Quantité | Article | Numéro de pièce | Description | Quantité |
1 | 05146592 | Joint d’étanchéité, Topworks Support | 2 | 14 | 72162253 | Ventouse | 2 |
2 | 20476377 | Soutien, Topworks | 2 | 15 | 05130091 | Cartouche de joint hydraulique | 2 |
3 | 10118206 | Joint torique, 1.31×1.56× .13 | 2 | 16 | 72175989 | Bride de retenue de bague | 2 |
4 | 05144514 | Vérin hydraulique | 1 | 17 | 72158494 | Assemblage de joints UHP | 2 |
5 | 05098991 | Vis à tête creuse, 3/8-16×3-3/4 | 8 | 18 | 72166738 | Cylindre UHP | 2 |
6 | 95688743 | Rondelle de blocage, .38 | 8 | 19 | 72163802 | Paquebot | 2 |
7 | 72101190 | Assemblage du piston | 1 | 20 | 20474325 | Goujon, 1-1/8-12×18.31 | 8 |
8 | 10074771 | Joint torique, 5.25×5.50× .13 | 2 | 21 | 72170157 | Assemblage de la tête de scellage | 2 |
9 | 05120092 | Anneau de secours, 5.25×5.50× .13 | 2 | 22 | 72178493 | Assemblage de brides | 2 |
10 | 72175997 | Culasse hydraulique | 2 | 23 | 20464590 | Rondelle plate, 1.13 | 8 |
11 | 05097886 | Vis à tête creuse, 3/4-16×2-1/4 | 12 | 24 | 20461761 | Écrou hexagonal, 1-1/8-12 | 8 |
12 | 05144183 | Ensemble d’entretoise, interrupteur de proximité | 2 | 25 | 20489339 | Adaptateur, JIC/Tuyau, 50× .38 | 1 |
05144191 | Joint torique, .69× .88× .09 | 26 | 72176756 | Joint torique, 3,88×4,25× .19 | 6 | ||
13 | 72141569 | Kit, Détecteur de proximité | 2 | ||||
72134224 | Commutateur de proximité | ||||||
95119012 | Vis à tête creuse, 1/4-20×1 |
The size of the 05098991 Socket Head Screw is 3/8-16 x 3-3/4, which means it has a 3/8 inch diameter and a 16 threads per inch pitch.
The 3/8 inch diameter of the screw provides a high level of strength and durability, while the 16 threads per inch pitch allows for a secure and reliable fastening.
The length of the screw, which is 3-3/4 inches or 95.25 millimeters, is relatively long and can be used in a variety of applications where a longer screw is needed.
Like other Socket Head Screws, the 05098991 is typically made from materials such as steel, stainless steel, titanium, or aluminum, depending on the specific requirements of the application.
It is important to ensure that the screw meets the requirements and specifications of the project before use to ensure a safe and reliable fastening.
Q: How can I determine the appropriate torque for installing a Socket Head Screw into the high pressure jet pump?
A: Determining the appropriate torque for installing a Socket Head Screw involves several factors, including the size and material of the screw, the material of the mating part, and the specific application requirements.
Here are some general guidelines to help you determine the appropriate torque for installing a Socket Head Screw into the high pressure jet pump:
1. Consult a torque chart
A torque chart can provide general guidelines for the recommended torque values based on the size and material of the screw.
However, it’s important to note that these values are only guidelines and may need to be adjusted based on the specific application requirements.
2. Consider the material of the mating part
The material of the mating part can affect the recommended torque value.
For example, if the mating part is made of a soft or brittle material, such as plastic or ceramic, a lower torque value may be necessary to prevent damage.
3. Consider the size and length of the screw
The size and length of the screw can affect the recommended torque value.
Longer screws may require a higher torque value to achieve the necessary clamping force, while shorter screws may require a lower torque value.
4. Consider the application requirements
The specific requirements of the application, such as load capacity, vibration resistance, and environmental factors, may affect the recommended torque value.
It’s important to consider these factors when determining the appropriate torque for the Socket Head Screw.
5. Perform a torque test
To ensure that the Socket Head Screw is installed with the appropriate torque, it may be necessary to perform a torque test.
This involves using a torque wrench to tighten the screw to the recommended torque value, and then checking the clamping force with a calibrated torque measuring device to ensure that it meets the requirements of the application.
It’s important to note that over-tightening or under-tightening a Socket Head Screw can lead to problems, such as stripping the threads, damaging the mating part, or causing the fastener to fail under load.
It’s important to follow the recommended torque values and to perform a torque test if necessary to ensure a safe and reliable installation.
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